Skip to main content
Top
Published in: Indian Journal of Thoracic and Cardiovascular Surgery 1/2023

20-07-2023 | Heart Failure | Review Article

Managing valvular pathology during LVAD implantation

Authors: Michael J. Carr, Susan Ansley Smith, Mark S. Slaughter, Siddharth Pahwa

Published in: Indian Journal of Thoracic and Cardiovascular Surgery | Special Issue 1/2023

Login to get access

Abstract

Since the time of their invention, implantable continuous flow left ventricular assist devices (LVADs) have improved the quality of life and extended survival for patients with advanced heart failure. The decision surgeons and their physician colleagues make with these patients to undergo implantation must come with full understanding of the immediate, short-term, and long-term implications of such a life-changing procedure. The presence of pathology regarding the aortic, mitral, and tricuspid valves introduces particularly complex problems for the surgical treatment strategy. Concomitant valve repair or replacement increases cardiopulmonary bypass and cross clamp times, and could potentially lead to worse outcomes in the perioperative setting. Following perioperative recovery, valvular pathology may worsen or arise de novo given the often drastic immediate physiologic changes in blood flow, septal function, and, over time, ventricular remodeling. Over the past two decades, there has been vast improvement in the device manufacturing, surgical techniques, and medical management surrounding LVAD implantation. Yet, addressing concomitant valvular pathology remains a complex question with no perfect solutions. This review aims to briefly describe the evolution of approach to valvular pathology in the LVAD patient and offer our opinion and treatment rationale.
Literature
1.
go back to reference Slaughter MS, Rogers JG, Milano CA, Russell SD, Conte JV, Feldman D, et al. Advanced heart failure treated with continuous-flow left ventricular assist device. N Engl J Med. 2009;361:2241–51.PubMedCrossRef Slaughter MS, Rogers JG, Milano CA, Russell SD, Conte JV, Feldman D, et al. Advanced heart failure treated with continuous-flow left ventricular assist device. N Engl J Med. 2009;361:2241–51.PubMedCrossRef
2.
go back to reference Yuzefpolskaya MSS, Houston BA, Robinson MR, Gosev I, Reyentovich AKD, Cantor R, Jorde UP, Kirklin JK, Pagani FD, D’Alessandro DA. The Society of Thoracic Surgeons Intermacs 2022 Annual Report: Focus on 2018 Heart Transplant Allocation System. Ann Thorac Surg. 2022;115:311–27.PubMedCrossRef Yuzefpolskaya MSS, Houston BA, Robinson MR, Gosev I, Reyentovich AKD, Cantor R, Jorde UP, Kirklin JK, Pagani FD, D’Alessandro DA. The Society of Thoracic Surgeons Intermacs 2022 Annual Report: Focus on 2018 Heart Transplant Allocation System. Ann Thorac Surg. 2022;115:311–27.PubMedCrossRef
3.
go back to reference Rao V, Slater JP, Edwards NM, Naka Y, Oz MC. Surgical management of valvular disease in patients requiring left ventricular assist device support. Ann Thorac Surg. 2001;71:1448–53.PubMedCrossRef Rao V, Slater JP, Edwards NM, Naka Y, Oz MC. Surgical management of valvular disease in patients requiring left ventricular assist device support. Ann Thorac Surg. 2001;71:1448–53.PubMedCrossRef
4.
go back to reference Goldstein DJ, Meyns B, Xie R, Cowger J, Pettit S, Nakatani T, et al. Third Annual Report From the ISHLT Mechanically Assisted Circulatory Support Registry: a comparison of centrifugal and axial continuous-flow left ventricular assist devices. J Heart Lung Transplant. 2019;38:352–63.PubMedCrossRef Goldstein DJ, Meyns B, Xie R, Cowger J, Pettit S, Nakatani T, et al. Third Annual Report From the ISHLT Mechanically Assisted Circulatory Support Registry: a comparison of centrifugal and axial continuous-flow left ventricular assist devices. J Heart Lung Transplant. 2019;38:352–63.PubMedCrossRef
5.
go back to reference Loforte A, de By T, Gliozzi G, Schönrath F, Mariani C, Netuka I, et al. Impact of concomitant cardiac valvular surgery during implantation of continuous-flow left ventricular assist devices: a European registry for patients with mechanical circulatory support (EUROMACS) analysis. Artif Organs. 2022;46:813–26.PubMedCrossRef Loforte A, de By T, Gliozzi G, Schönrath F, Mariani C, Netuka I, et al. Impact of concomitant cardiac valvular surgery during implantation of continuous-flow left ventricular assist devices: a European registry for patients with mechanical circulatory support (EUROMACS) analysis. Artif Organs. 2022;46:813–26.PubMedCrossRef
6.
go back to reference John R, Naka Y, Park SJ, Sai-Sudhakar C, Salerno C, Sundareswaran KS, et al. Impact of concurrent surgical valve procedures in patients receiving continuous-flow devices. J Thorac Cardiovasc Surg. 2014;147:581–9.PubMedCrossRef John R, Naka Y, Park SJ, Sai-Sudhakar C, Salerno C, Sundareswaran KS, et al. Impact of concurrent surgical valve procedures in patients receiving continuous-flow devices. J Thorac Cardiovasc Surg. 2014;147:581–9.PubMedCrossRef
7.
go back to reference Milano C, Pagani FD, Slaughter MS, Pham DT, Hathaway DR, Jacoski MV, et al. Clinical outcomes after implantation of a centrifugal flow left ventricular assist device and concurrent cardiac valve procedures. Circulation. 2014;130:S3-11.PubMedCrossRef Milano C, Pagani FD, Slaughter MS, Pham DT, Hathaway DR, Jacoski MV, et al. Clinical outcomes after implantation of a centrifugal flow left ventricular assist device and concurrent cardiac valve procedures. Circulation. 2014;130:S3-11.PubMedCrossRef
8.
go back to reference John R, Kanwar MK, Cleveland JC Jr, Uriel N, Naka Y, Salerno C, et al. Concurrent valvular procedures during left ventricular assist device implantation and outcomes: A comprehensive analysis of the Multicenter Study of MagLev Technology in Patients Undergoing Mechanical Circulatory Support Therapy With HeartMate 3 trial portfolio. J Thorac Cardiovasc Surg. 2022;00498-6. https://doi.org/10.1016/j.jtcvs.2022.04.021. John R, Kanwar MK, Cleveland JC Jr, Uriel N, Naka Y, Salerno C, et al. Concurrent valvular procedures during left ventricular assist device implantation and outcomes: A comprehensive analysis of the Multicenter Study of MagLev Technology in Patients Undergoing Mechanical Circulatory Support Therapy With HeartMate 3 trial portfolio. J Thorac Cardiovasc Surg. 2022;00498-6. https://​doi.​org/​10.​1016/​j.​jtcvs.​2022.​04.​021.
9.
go back to reference Zamarripa Garcia MA, Enriquez LA, Dembitsky W, May-Newman K. The effect of aortic valve incompetence on the hemodynamics of a continuous flow ventricular assist device in a mock circulation. ASAIO J. 2008;54:237–44. Zamarripa Garcia MA, Enriquez LA, Dembitsky W, May-Newman K. The effect of aortic valve incompetence on the hemodynamics of a continuous flow ventricular assist device in a mock circulation. ASAIO J. 2008;54:237–44.
10.
go back to reference Truby LK, Garan AR, Givens RC, Wayda B, Takeda K, Yuzefpolskaya M, et al. Aortic insufficiency during contemporary left ventricular assist device support: analysis of the INTERMACS Registry. JACC Heart Fail. 2018;6:951–60.PubMedPubMedCentralCrossRef Truby LK, Garan AR, Givens RC, Wayda B, Takeda K, Yuzefpolskaya M, et al. Aortic insufficiency during contemporary left ventricular assist device support: analysis of the INTERMACS Registry. JACC Heart Fail. 2018;6:951–60.PubMedPubMedCentralCrossRef
11.
go back to reference Veenis JF, Yalcin YC, Brugts JJ, Constantinescu AA, Manintveld OC, Bekkers JA, et al. Survival following a concomitant aortic valve procedure during left ventricular assist device surgery: an ISHLT Mechanically Assisted Circulatory Support (IMACS) Registry analysis. Eur J Heart Fail. 2020;22:1878–87.PubMedCrossRef Veenis JF, Yalcin YC, Brugts JJ, Constantinescu AA, Manintveld OC, Bekkers JA, et al. Survival following a concomitant aortic valve procedure during left ventricular assist device surgery: an ISHLT Mechanically Assisted Circulatory Support (IMACS) Registry analysis. Eur J Heart Fail. 2020;22:1878–87.PubMedCrossRef
12.
go back to reference Cowger J, Pagani FD, Haft JW, Romano MA, Aaronson KD, Kolias TJ. The development of aortic insufficiency in left ventricular assist device-supported patients. Circ Heart Fail. 2010;3:668–74.PubMedPubMedCentralCrossRef Cowger J, Pagani FD, Haft JW, Romano MA, Aaronson KD, Kolias TJ. The development of aortic insufficiency in left ventricular assist device-supported patients. Circ Heart Fail. 2010;3:668–74.PubMedPubMedCentralCrossRef
13.
go back to reference Rajagopal K, Daneshmand MA, Patel CB, Ganapathi AM, Schechter MA, Rogers JG, et al. Natural history and clinical effect of aortic valve regurgitation after left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2013;145:1373–9.PubMedCrossRef Rajagopal K, Daneshmand MA, Patel CB, Ganapathi AM, Schechter MA, Rogers JG, et al. Natural history and clinical effect of aortic valve regurgitation after left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2013;145:1373–9.PubMedCrossRef
14.
go back to reference Feldman D, Pamboukian SV, Teuteberg JJ, Birks E, Lietz K, Moore SA, et al. The 2013 International Society for Heart and Lung Transplantation Guidelines for mechanical circulatory support: executive summary. J Heart Lung Transplant. 2013;32:157–87.PubMedCrossRef Feldman D, Pamboukian SV, Teuteberg JJ, Birks E, Lietz K, Moore SA, et al. The 2013 International Society for Heart and Lung Transplantation Guidelines for mechanical circulatory support: executive summary. J Heart Lung Transplant. 2013;32:157–87.PubMedCrossRef
15.
go back to reference Cowger JA, Aaronson KD, Romano MA, Haft J, Pagani FD. Consequences of aortic insufficiency during long-term axial continuous-flow left ventricular assist device support. J Heart Lung Transplant. 2014;33:1233–40.PubMedCrossRef Cowger JA, Aaronson KD, Romano MA, Haft J, Pagani FD. Consequences of aortic insufficiency during long-term axial continuous-flow left ventricular assist device support. J Heart Lung Transplant. 2014;33:1233–40.PubMedCrossRef
16.
go back to reference Pak SW, Uriel N, Takayama H, Cappleman S, Song R, Colombo PC, et al. Prevalence of de novo aortic insufficiency during long-term support with left ventricular assist devices. J Heart Lung Transplant. 2010;29:1172–6.PubMedCrossRef Pak SW, Uriel N, Takayama H, Cappleman S, Song R, Colombo PC, et al. Prevalence of de novo aortic insufficiency during long-term support with left ventricular assist devices. J Heart Lung Transplant. 2010;29:1172–6.PubMedCrossRef
17.
go back to reference Toda K, Fujita T, Domae K, Shimahara Y, Kobayashi J, Nakatani T. Late aortic insufficiency related to poor prognosis during left ventricular assist device support. Ann Thorac Surg. 2011;92:929–34.PubMedCrossRef Toda K, Fujita T, Domae K, Shimahara Y, Kobayashi J, Nakatani T. Late aortic insufficiency related to poor prognosis during left ventricular assist device support. Ann Thorac Surg. 2011;92:929–34.PubMedCrossRef
18.
go back to reference Hiraoka A, Cohen JE, Shudo Y, MacArthur JW Jr, Howard JL, Fairman AS, et al. Evaluation of late aortic insufficiency with continuous flow left ventricular assist device†. Eur J Cardiothorac Surg. 2015;48:400–6.PubMedCrossRef Hiraoka A, Cohen JE, Shudo Y, MacArthur JW Jr, Howard JL, Fairman AS, et al. Evaluation of late aortic insufficiency with continuous flow left ventricular assist device†. Eur J Cardiothorac Surg. 2015;48:400–6.PubMedCrossRef
19.
go back to reference Dranishnikov N, Stepanenko A, Potapov EV, Dandel M, Siniawski H, Mladenow A, et al. Simultaneous aortic valve replacement in left ventricular assist device recipients: single-center experience. Int J Artif Organs. 2012;35:489–94.PubMedCrossRef Dranishnikov N, Stepanenko A, Potapov EV, Dandel M, Siniawski H, Mladenow A, et al. Simultaneous aortic valve replacement in left ventricular assist device recipients: single-center experience. Int J Artif Organs. 2012;35:489–94.PubMedCrossRef
20.
go back to reference Robertson JO, Naftel DC, Myers SL, Prasad S, Mertz GD, Itoh A, et al. Concomitant aortic valve procedures in patients undergoing implantation of continuous-flow left ventricular assist devices: an INTERMACS database analysis. J Heart Lung Transplant. 2015;34:797–805.PubMedCrossRef Robertson JO, Naftel DC, Myers SL, Prasad S, Mertz GD, Itoh A, et al. Concomitant aortic valve procedures in patients undergoing implantation of continuous-flow left ventricular assist devices: an INTERMACS database analysis. J Heart Lung Transplant. 2015;34:797–805.PubMedCrossRef
21.
go back to reference Holley CT, Fitzpatrick M, Roy SS, Alraies MC, Cogswell R, Souslian L, et al. Aortic insufficiency in continuous-flow left ventricular assist device support patients is common but does not impact long-term mortality. J Heart Lung Transplant. 2017;36:91–6.PubMedCrossRef Holley CT, Fitzpatrick M, Roy SS, Alraies MC, Cogswell R, Souslian L, et al. Aortic insufficiency in continuous-flow left ventricular assist device support patients is common but does not impact long-term mortality. J Heart Lung Transplant. 2017;36:91–6.PubMedCrossRef
22.
go back to reference Jimenez Contreras F, Mendiola Pla M, Schroder J, Bryner B, Agarwal R, Russell SD, et al. Progression of aortic valve insufficiency during centrifugal versus axial flow left ventricular assist device support. Eur J Cardiothorac Surg. 2022;61:1188–96.PubMedCrossRef Jimenez Contreras F, Mendiola Pla M, Schroder J, Bryner B, Agarwal R, Russell SD, et al. Progression of aortic valve insufficiency during centrifugal versus axial flow left ventricular assist device support. Eur J Cardiothorac Surg. 2022;61:1188–96.PubMedCrossRef
23.
go back to reference Tanaka Y, Nakajima T, Fischer I, Wan F, Kotkar K, Moon MR, et al. The impact of uncorrected mild aortic insufficiency at the time of left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2020;160:1490-500.e3.PubMedCrossRef Tanaka Y, Nakajima T, Fischer I, Wan F, Kotkar K, Moon MR, et al. The impact of uncorrected mild aortic insufficiency at the time of left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2020;160:1490-500.e3.PubMedCrossRef
24.
go back to reference Molina EJ, Shah P, Kiernan MS, Cornwell WK 3rd, Copeland H, Takeda K, et al. The Society of Thoracic Surgeons Intermacs 2020 Annual Report. Ann Thorac Surg. 2021;111:778–92.PubMedCrossRef Molina EJ, Shah P, Kiernan MS, Cornwell WK 3rd, Copeland H, Takeda K, et al. The Society of Thoracic Surgeons Intermacs 2020 Annual Report. Ann Thorac Surg. 2021;111:778–92.PubMedCrossRef
25.
go back to reference Cowger J, Rao V, Massey T, Sun B, May-Newman K, Jorde U, et al. Comprehensive review and suggested strategies for the detection and management of aortic insufficiency in patients with a continuous-flow left ventricular assist device. J Heart Lung Transplant. 2015;34:149–57.PubMedCrossRef Cowger J, Rao V, Massey T, Sun B, May-Newman K, Jorde U, et al. Comprehensive review and suggested strategies for the detection and management of aortic insufficiency in patients with a continuous-flow left ventricular assist device. J Heart Lung Transplant. 2015;34:149–57.PubMedCrossRef
26.
go back to reference Jung MH, Hansen PB, Sander K, Olsen PS, Rossing K, Boesgaard S, et al. Effect of increasing pump speed during exercise on peak oxygen uptake in heart failure patients supported with a continuous-flow left ventricular assist device. A double-blind randomized study. Eur J Heart Fail. 2014;16:403–8. Jung MH, Hansen PB, Sander K, Olsen PS, Rossing K, Boesgaard S, et al. Effect of increasing pump speed during exercise on peak oxygen uptake in heart failure patients supported with a continuous-flow left ventricular assist device. A double-blind randomized study. Eur J Heart Fail. 2014;16:403–8.
27.
go back to reference Feldman CM, Silver MA, Sobieski MA, Slaughter MS. Management of aortic insufficiency with continuous flow left ventricular assist devices: bioprosthetic valve replacement. J Heart Lung Transplant. 2006;25:1410–2.PubMedCrossRef Feldman CM, Silver MA, Sobieski MA, Slaughter MS. Management of aortic insufficiency with continuous flow left ventricular assist devices: bioprosthetic valve replacement. J Heart Lung Transplant. 2006;25:1410–2.PubMedCrossRef
28.
go back to reference Doi A, Marasco SF. McGiffin DC. Is a bioprosthetic valve in the aortic position desirable with a continuous flow LVAD? J Card Surg. 2015;30:466–8. Doi A, Marasco SF. McGiffin DC. Is a bioprosthetic valve in the aortic position desirable with a continuous flow LVAD? J Card Surg. 2015;30:466–8.
29.
go back to reference Zaidi SH, Minhas AMK, Sagheer S, ManeshGangwani K, Dani SS, Goel SS, et al. Clinical outcomes of transcatheter aortic valve replacement (TAVR) Vs. surgical aortic valve replacement (SAVR) in patients with durable left ventricular assist device (LVAD). Curr Probl Cardiol. 2022;47:101313.PubMedCrossRef Zaidi SH, Minhas AMK, Sagheer S, ManeshGangwani K, Dani SS, Goel SS, et al. Clinical outcomes of transcatheter aortic valve replacement (TAVR) Vs. surgical aortic valve replacement (SAVR) in patients with durable left ventricular assist device (LVAD). Curr Probl Cardiol. 2022;47:101313.PubMedCrossRef
30.
go back to reference Phan K, Haswell JM, Xu J, Assem Y, Mick SL, Kapadia SR, et al. Percutaneous transcatheter interventions for aortic insufficiency in continuous-flow left ventricular assist device patients: a systematic review and meta-analysis. ASAIO J. 2017;63:117–22. Phan K, Haswell JM, Xu J, Assem Y, Mick SL, Kapadia SR, et al. Percutaneous transcatheter interventions for aortic insufficiency in continuous-flow left ventricular assist device patients: a systematic review and meta-analysis. ASAIO J. 2017;63:117–22.
31.
go back to reference McKellar SH, Deo S, Daly RC, Durham LA 3rd, Joyce LD, Stulak JM, et al. Durability of central aortic valve closure in patients with continuous flow left ventricular assist devices. J Thorac Cardiovasc Surg. 2014;147:344–8.PubMedCrossRef McKellar SH, Deo S, Daly RC, Durham LA 3rd, Joyce LD, Stulak JM, et al. Durability of central aortic valve closure in patients with continuous flow left ventricular assist devices. J Thorac Cardiovasc Surg. 2014;147:344–8.PubMedCrossRef
32.
go back to reference Morgan JA, Brewer RJ. Modified central closure technique for treatment of aortic insufficiency in patients on left ventricular assist device support. ASAIO J. 2012;58:626–8. Morgan JA, Brewer RJ. Modified central closure technique for treatment of aortic insufficiency in patients on left ventricular assist device support. ASAIO J. 2012;58:626–8.
33.
go back to reference Schechter MA, Joseph JT, Krishnamoorthy A, Finet JE, Ganapathi AM, Lodge AJ, et al. Efficacy and durability of central oversewing for treatment of aortic insufficiency in patients with continuous-flow left ventricular assist devices. J Heart Lung Transplant. 2014;33:937–42.PubMedCrossRef Schechter MA, Joseph JT, Krishnamoorthy A, Finet JE, Ganapathi AM, Lodge AJ, et al. Efficacy and durability of central oversewing for treatment of aortic insufficiency in patients with continuous-flow left ventricular assist devices. J Heart Lung Transplant. 2014;33:937–42.PubMedCrossRef
34.
go back to reference Cohn WE, Demirozu ZT, Frazier OH. Surgical closure of left ventricular outflow tract after left ventricular assist device implantation in patients with aortic valve pathology. J Heart Lung Transplant. 2011;30:59–63.PubMedCrossRef Cohn WE, Demirozu ZT, Frazier OH. Surgical closure of left ventricular outflow tract after left ventricular assist device implantation in patients with aortic valve pathology. J Heart Lung Transplant. 2011;30:59–63.PubMedCrossRef
35.
go back to reference Adamson RM, Dembitsky WP, Baradarian S, Chammas J, May-Newman K, Chillcott S, et al. Aortic valve closure associated with HeartMate left ventricular device support: technical considerations and long-term results. J Heart Lung Transplant. 2011;30:576–82.PubMedCrossRef Adamson RM, Dembitsky WP, Baradarian S, Chammas J, May-Newman K, Chillcott S, et al. Aortic valve closure associated with HeartMate left ventricular device support: technical considerations and long-term results. J Heart Lung Transplant. 2011;30:576–82.PubMedCrossRef
36.
go back to reference Savage EB. Patch closure of the aortic anulus in a recipient of a ventricular assist device. J Thorac Cardiovasc Surg. 2001;121:403.PubMedCrossRef Savage EB. Patch closure of the aortic anulus in a recipient of a ventricular assist device. J Thorac Cardiovasc Surg. 2001;121:403.PubMedCrossRef
37.
go back to reference Cohn WE, Frazier OH. The sandwich plug technique: simple, effective, and rapid closure of a mechanical aortic valve prosthesis at left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2011;142:455–7.PubMedCrossRef Cohn WE, Frazier OH. The sandwich plug technique: simple, effective, and rapid closure of a mechanical aortic valve prosthesis at left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2011;142:455–7.PubMedCrossRef
38.
go back to reference Kitada S, Kato TS, Thomas SS, Conwell SD, Russo C, Di Tullio MR, et al. Pre-operative echocardiographic features associated with persistent mitral regurgitation after left ventricular assist device implantation. J Heart Lung Transplant. 2013;32:897–904.PubMedPubMedCentralCrossRef Kitada S, Kato TS, Thomas SS, Conwell SD, Russo C, Di Tullio MR, et al. Pre-operative echocardiographic features associated with persistent mitral regurgitation after left ventricular assist device implantation. J Heart Lung Transplant. 2013;32:897–904.PubMedPubMedCentralCrossRef
39.
go back to reference Shah P, Yuzefpolskaya M, Hickey GW, Breathett K, Wever-Pinzon O, Ton VK, et al. Twelfth Interagency Registry for Mechanically Assisted Circulatory Support Report: Readmissions After Left Ventricular Assist Device. Ann Thorac Surg. 2022;113:722–37.PubMedPubMedCentralCrossRef Shah P, Yuzefpolskaya M, Hickey GW, Breathett K, Wever-Pinzon O, Ton VK, et al. Twelfth Interagency Registry for Mechanically Assisted Circulatory Support Report: Readmissions After Left Ventricular Assist Device. Ann Thorac Surg. 2022;113:722–37.PubMedPubMedCentralCrossRef
40.
go back to reference Kanwar MK, Rajagopal K, Itoh A, Silvestry SC, Uriel N, Cleveland JC Jr, et al. Impact of left ventricular assist device implantation on mitral regurgitation: an analysis from the MOMENTUM 3 trial. J Heart Lung Transplant. 2020;39:529–37.PubMedCrossRef Kanwar MK, Rajagopal K, Itoh A, Silvestry SC, Uriel N, Cleveland JC Jr, et al. Impact of left ventricular assist device implantation on mitral regurgitation: an analysis from the MOMENTUM 3 trial. J Heart Lung Transplant. 2020;39:529–37.PubMedCrossRef
41.
go back to reference Tang P, Duggal N, Haft J, Romano M, Bolling S, Colvin M, et al. Morphologic and functional changes after LVAD implantation in patients with preoperative severe mitral regurgitation. J Heart Lung Transplant. 2020;39:S116.CrossRef Tang P, Duggal N, Haft J, Romano M, Bolling S, Colvin M, et al. Morphologic and functional changes after LVAD implantation in patients with preoperative severe mitral regurgitation. J Heart Lung Transplant. 2020;39:S116.CrossRef
42.
go back to reference Morgan JA, Brewer RJ, Nemeh HW, Murthy R, Williams CT, Lanfear DE, et al. Left ventricular reverse remodeling with a continuous flow left ventricular assist device measured by left ventricular end-diastolic dimensions and severity of mitral regurgitation. ASAIO J. 2012;58:574–7. Morgan JA, Brewer RJ, Nemeh HW, Murthy R, Williams CT, Lanfear DE, et al. Left ventricular reverse remodeling with a continuous flow left ventricular assist device measured by left ventricular end-diastolic dimensions and severity of mitral regurgitation. ASAIO J. 2012;58:574–7.
43.
go back to reference Jain R, Truby LK, Topkara VK. Residual mitral regurgitation in patients with left ventricular assist device support - An INTERMACS analysis. J Heart Lung Transplant. 2022;41:1638–45.PubMedCrossRef Jain R, Truby LK, Topkara VK. Residual mitral regurgitation in patients with left ventricular assist device support - An INTERMACS analysis. J Heart Lung Transplant. 2022;41:1638–45.PubMedCrossRef
44.
go back to reference Fucci C, Sandrelli L, Pardini A, Torracca L, Ferrari M, Alfieri O. Improved results with mitral valve repair using new surgical techniques. Eur J Cardiothorac Surg. 1995;9:621–6.PubMedCrossRef Fucci C, Sandrelli L, Pardini A, Torracca L, Ferrari M, Alfieri O. Improved results with mitral valve repair using new surgical techniques. Eur J Cardiothorac Surg. 1995;9:621–6.PubMedCrossRef
45.
go back to reference Russo MJ, Merlo A, Johnson EM, Akhter S, McCarney S, Steiman J, et al. Transapical approach for mitral valve repair during insertion of a left ventricular assist device. Sci World J. 2013;2013: 925310.CrossRef Russo MJ, Merlo A, Johnson EM, Akhter S, McCarney S, Steiman J, et al. Transapical approach for mitral valve repair during insertion of a left ventricular assist device. Sci World J. 2013;2013: 925310.CrossRef
46.
go back to reference Tan F, Kerk KL, Tan TE, Sivathasan C, Sim D, Lim CP. Concomitant Alfieri stitch mitral valve repair in patients undergoing left ventricular assist device implantation. J Heart Lung Transplant. 2019;38:350.CrossRef Tan F, Kerk KL, Tan TE, Sivathasan C, Sim D, Lim CP. Concomitant Alfieri stitch mitral valve repair in patients undergoing left ventricular assist device implantation. J Heart Lung Transplant. 2019;38:350.CrossRef
47.
go back to reference Tanaka A, Onsager D, Song T, Cozadd D, Kim G, Sarswat N, et al. Surgically corrected mitral regurgitation during left ventricular assist device implantation is associated with low recurrence rate and improved midterm survival. Ann Thorac Surg. 2017;103:725–33.PubMedCrossRef Tanaka A, Onsager D, Song T, Cozadd D, Kim G, Sarswat N, et al. Surgically corrected mitral regurgitation during left ventricular assist device implantation is associated with low recurrence rate and improved midterm survival. Ann Thorac Surg. 2017;103:725–33.PubMedCrossRef
48.
go back to reference Orasanu G, Al-Kindi SG, Robinson MR, Oliveira GH, Ginwalla M, Elamm C, et al. First-in-human experience with transcatheter mitral valve-in-valve implantation during left ventricular assist device placement. Circ Heart Fail. 2016;9: e003458.PubMedCrossRef Orasanu G, Al-Kindi SG, Robinson MR, Oliveira GH, Ginwalla M, Elamm C, et al. First-in-human experience with transcatheter mitral valve-in-valve implantation during left ventricular assist device placement. Circ Heart Fail. 2016;9: e003458.PubMedCrossRef
49.
go back to reference Kassis H, Cherukuri K, Agarwal R, Kanwar M, Elapavaluru S, Sokos GG, et al. Significance of residual mitral regurgitation after continuous flow left ventricular assist device implantation. JACC Heart Fail. 2017;5:81–8.PubMedCrossRef Kassis H, Cherukuri K, Agarwal R, Kanwar M, Elapavaluru S, Sokos GG, et al. Significance of residual mitral regurgitation after continuous flow left ventricular assist device implantation. JACC Heart Fail. 2017;5:81–8.PubMedCrossRef
50.
go back to reference Fukuhara S, Takeda K, Chiuzan C, Han J, Kurlansky PA, Takayama H, et al. Concomitant mitral repair and continuous-flow left ventricular assist devices: is it warranted? J Thorac Cardiovasc Surg. 2017;154:1303-12.e4.PubMedCrossRef Fukuhara S, Takeda K, Chiuzan C, Han J, Kurlansky PA, Takayama H, et al. Concomitant mitral repair and continuous-flow left ventricular assist devices: is it warranted? J Thorac Cardiovasc Surg. 2017;154:1303-12.e4.PubMedCrossRef
51.
go back to reference Robertson JO, Naftel DC, Myers SL, Tedford RJ, Joseph SM, Kirklin JK, et al. Concomitant mitral valve procedures in patients undergoing implantation of continuous-flow left ventricular assist devices: an INTERMACS database analysis. J Heart Lung Transplant. 2018;37:79–88.PubMedCrossRef Robertson JO, Naftel DC, Myers SL, Tedford RJ, Joseph SM, Kirklin JK, et al. Concomitant mitral valve procedures in patients undergoing implantation of continuous-flow left ventricular assist devices: an INTERMACS database analysis. J Heart Lung Transplant. 2018;37:79–88.PubMedCrossRef
52.
go back to reference Okoh A, Yanagida R, Schultheis M, Chaudari S, Fugar S, Nnaoma C, et al. Impact of baseline mitral regurgitation on postoperative outcomes after left ventricular assist device implantation as destination therapy. Transplant Proc. 2019;51:859–64.PubMedCrossRef Okoh A, Yanagida R, Schultheis M, Chaudari S, Fugar S, Nnaoma C, et al. Impact of baseline mitral regurgitation on postoperative outcomes after left ventricular assist device implantation as destination therapy. Transplant Proc. 2019;51:859–64.PubMedCrossRef
53.
go back to reference Pawale A, Itagaki S, Parikh A, Pinney SP, Adams DH, Anyanwu AC. Mitral valve repair for severe mitral valve regurgitation during left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2019;157:1841-8.e1.PubMedCrossRef Pawale A, Itagaki S, Parikh A, Pinney SP, Adams DH, Anyanwu AC. Mitral valve repair for severe mitral valve regurgitation during left ventricular assist device implantation. J Thorac Cardiovasc Surg. 2019;157:1841-8.e1.PubMedCrossRef
54.
go back to reference Pausch J, Bhadra O, Mersmann J, Conradi L, Sill B, Barten MJ, et al. Prognostic impact of functional mitral regurgitation prior to left ventricular assist device implantation. J Cardiothorac Surg. 2022;17:24.PubMedPubMedCentralCrossRef Pausch J, Bhadra O, Mersmann J, Conradi L, Sill B, Barten MJ, et al. Prognostic impact of functional mitral regurgitation prior to left ventricular assist device implantation. J Cardiothorac Surg. 2022;17:24.PubMedPubMedCentralCrossRef
55.
go back to reference Choi JH, Luc JGY, Moncho Escrivá E, Phan K, Rizvi SSA, Patel S, et al. Impact of concomitant mitral valve surgery with LVAD placement: systematic review and meta-analysis. Artif Organs. 2018;42:1139–47.PubMedCrossRef Choi JH, Luc JGY, Moncho Escrivá E, Phan K, Rizvi SSA, Patel S, et al. Impact of concomitant mitral valve surgery with LVAD placement: systematic review and meta-analysis. Artif Organs. 2018;42:1139–47.PubMedCrossRef
56.
go back to reference Hayashi H, Naka Y, Sanchez J, Takayama H, Kurlansky P, Ning Y, et al. The clinical importance of functional mitral regurgitation and atrial fibrillation in patients with left ventricular assist device. J Heart Lung Transplant. 2020;39:S115–6.CrossRef Hayashi H, Naka Y, Sanchez J, Takayama H, Kurlansky P, Ning Y, et al. The clinical importance of functional mitral regurgitation and atrial fibrillation in patients with left ventricular assist device. J Heart Lung Transplant. 2020;39:S115–6.CrossRef
57.
go back to reference Potapov EV, Antonides C, Crespo-Leiro MG, Combes A, Färber G, Hannan MM, et al. 2019 EACTS Expert Consensus on long-term mechanical circulatory support. Eur J Cardiothorac Surg. 2019;56:230–70.PubMedPubMedCentralCrossRef Potapov EV, Antonides C, Crespo-Leiro MG, Combes A, Färber G, Hannan MM, et al. 2019 EACTS Expert Consensus on long-term mechanical circulatory support. Eur J Cardiothorac Surg. 2019;56:230–70.PubMedPubMedCentralCrossRef
58.
go back to reference Veen KM, Mokhles MM, Soliman O, de By T, Mohacsi P, Schoenrath F, et al. Clinical impact and “natural” course of uncorrected tricuspid regurgitation after implantation of a left ventricular assist device: an analysis of the European Registry for Patients with Mechanical Circulatory Support (EUROMACS). Eur J Cardiothorac Surg. 2021;59:207–16.PubMedCrossRef Veen KM, Mokhles MM, Soliman O, de By T, Mohacsi P, Schoenrath F, et al. Clinical impact and “natural” course of uncorrected tricuspid regurgitation after implantation of a left ventricular assist device: an analysis of the European Registry for Patients with Mechanical Circulatory Support (EUROMACS). Eur J Cardiothorac Surg. 2021;59:207–16.PubMedCrossRef
59.
go back to reference Harjola VP, Mebazaa A, Čelutkienė J, Bettex D, Bueno H, Chioncel O, et al. Contemporary management of acute right ventricular failure: a statement from the Heart Failure Association and the Working Group on Pulmonary Circulation and Right Ventricular Function of the European Society of Cardiology. Eur J Heart Fail. 2016;18:226–41.PubMedCrossRef Harjola VP, Mebazaa A, Čelutkienė J, Bettex D, Bueno H, Chioncel O, et al. Contemporary management of acute right ventricular failure: a statement from the Heart Failure Association and the Working Group on Pulmonary Circulation and Right Ventricular Function of the European Society of Cardiology. Eur J Heart Fail. 2016;18:226–41.PubMedCrossRef
60.
go back to reference Morgan JA, Paone G, Nemeh HW, Murthy R, Williams CT, Lanfear DE, et al. Impact of continuous-flow left ventricular assist device support on right ventricular function. J Heart Lung Transplant. 2013;32:398–403.PubMedCrossRef Morgan JA, Paone G, Nemeh HW, Murthy R, Williams CT, Lanfear DE, et al. Impact of continuous-flow left ventricular assist device support on right ventricular function. J Heart Lung Transplant. 2013;32:398–403.PubMedCrossRef
61.
go back to reference Atluri P, Fairman AS, MacArthur JW, Goldstone AB, Cohen JE, Howard JL, et al. Continuous flow left ventricular assist device implant significantly improves pulmonary hypertension, right ventricular contractility, and tricuspid valve competence. J Card Surg. 2013;28:770–5.PubMedPubMedCentralCrossRef Atluri P, Fairman AS, MacArthur JW, Goldstone AB, Cohen JE, Howard JL, et al. Continuous flow left ventricular assist device implant significantly improves pulmonary hypertension, right ventricular contractility, and tricuspid valve competence. J Card Surg. 2013;28:770–5.PubMedPubMedCentralCrossRef
62.
go back to reference Nakanishi K, Homma S, Han J, Takayama H, Colombo PC, Yuzefpolskaya M, et al. Prevalence, predictors, and prognostic value of residual tricuspid regurgitation in patients with left ventricular assist device. J Am Heart Assoc. 2018;7: e008813.PubMedPubMedCentralCrossRef Nakanishi K, Homma S, Han J, Takayama H, Colombo PC, Yuzefpolskaya M, et al. Prevalence, predictors, and prognostic value of residual tricuspid regurgitation in patients with left ventricular assist device. J Am Heart Assoc. 2018;7: e008813.PubMedPubMedCentralCrossRef
63.
go back to reference Robertson JO, Grau-Sepulveda MV, Okada S, O’Brien SM, Matthew Brennan J, Shah AS, et al. Concomitant tricuspid valve surgery during implantation of continuous-flow left ventricular assist devices: a Society of Thoracic Surgeons database analysis. J Heart Lung Transplant. 2014;33:609–17.PubMedCrossRef Robertson JO, Grau-Sepulveda MV, Okada S, O’Brien SM, Matthew Brennan J, Shah AS, et al. Concomitant tricuspid valve surgery during implantation of continuous-flow left ventricular assist devices: a Society of Thoracic Surgeons database analysis. J Heart Lung Transplant. 2014;33:609–17.PubMedCrossRef
64.
go back to reference Mullan C, Caraballo C, Ravindra NG, Miller PE, Mori M, McCullough M, et al. Clinical impact of concomitant tricuspid valve procedures during left ventricular assist device implantation. J Heart Lung Transplant. 2020;39:926–33.PubMedCrossRef Mullan C, Caraballo C, Ravindra NG, Miller PE, Mori M, McCullough M, et al. Clinical impact of concomitant tricuspid valve procedures during left ventricular assist device implantation. J Heart Lung Transplant. 2020;39:926–33.PubMedCrossRef
65.
go back to reference Barac YD, Nicoara A, Bishawi M, Schroder JN, Daneshmand MA, Hashmi NK, et al. Durability and efficacy of tricuspid valve repair in patients undergoing left ventricular assist device implantation. JACC Heart Fail. 2020;8:141–50.PubMedCrossRef Barac YD, Nicoara A, Bishawi M, Schroder JN, Daneshmand MA, Hashmi NK, et al. Durability and efficacy of tricuspid valve repair in patients undergoing left ventricular assist device implantation. JACC Heart Fail. 2020;8:141–50.PubMedCrossRef
66.
go back to reference Mendiola Pla M, Chiang Y, Nicoara A, Poehlein E, Green CL, Gross R, et al. Surgical Treatment of Tricuspid Valve Regurgitation in Patients Undergoing Left Ventricular Assist Device Implantation: Interim analysis of the TVVAD trial. J Thorac Cardiovasc Surg. 2022;01243-0. https://doi.org/10.1016/j.jtcvs.2022.10.054. Mendiola Pla M, Chiang Y, Nicoara A, Poehlein E, Green CL, Gross R, et al. Surgical Treatment of Tricuspid Valve Regurgitation in Patients Undergoing Left Ventricular Assist Device Implantation: Interim analysis of the TVVAD trial. J Thorac Cardiovasc Surg. 2022;01243-0. https://​doi.​org/​10.​1016/​j.​jtcvs.​2022.​10.​054.
67.
go back to reference Anwer LA, Tchantchaleishvili V, Poddi S, Daly RC, Joyce LD, Kushwaha SS, et al. Atrial fibrillation should guide prophylactic tricuspid procedures during left ventricular assist device implantation. ASAIO J. 2018;64:586–93. Anwer LA, Tchantchaleishvili V, Poddi S, Daly RC, Joyce LD, Kushwaha SS, et al. Atrial fibrillation should guide prophylactic tricuspid procedures during left ventricular assist device implantation. ASAIO J. 2018;64:586–93.
68.
go back to reference Veen KM, Caliskan K, de By T, Mokhles MM, Soliman OI, Mohacsi P, et al. Outcomes after tricuspid valve surgery concomitant with left ventricular assist device implantation in the EUROMACS registry: a propensity score matched analysis. Eur J Cardiothorac Surg. 2019;56:1081–9.PubMedCrossRef Veen KM, Caliskan K, de By T, Mokhles MM, Soliman OI, Mohacsi P, et al. Outcomes after tricuspid valve surgery concomitant with left ventricular assist device implantation in the EUROMACS registry: a propensity score matched analysis. Eur J Cardiothorac Surg. 2019;56:1081–9.PubMedCrossRef
69.
go back to reference Tie H, Shi R, Welp H, Martens S, Li Z, Sindermann JR, et al. Tricuspid valve surgery in patients receiving left ventricular assist devices. Thorac Cardiovasc Surg. 2022;70:475–81.PubMedCrossRef Tie H, Shi R, Welp H, Martens S, Li Z, Sindermann JR, et al. Tricuspid valve surgery in patients receiving left ventricular assist devices. Thorac Cardiovasc Surg. 2022;70:475–81.PubMedCrossRef
70.
go back to reference Fujino T, Imamura T, Nitta D, Kim G, Smith B, Kalantari S, et al. Effect of concomitant tricuspid valve surgery with left ventricular assist device implantation. Ann Thorac Surg. 2020;110:918–24.PubMedPubMedCentralCrossRef Fujino T, Imamura T, Nitta D, Kim G, Smith B, Kalantari S, et al. Effect of concomitant tricuspid valve surgery with left ventricular assist device implantation. Ann Thorac Surg. 2020;110:918–24.PubMedPubMedCentralCrossRef
71.
go back to reference Akhter SA, Salabat MR, Philip JL, Valeroso TB, Russo MJ, Rich JD, et al. Durability of De Vega tricuspid valve annuloplasty for severe tricuspid regurgitation during left ventricular assist device implantation. Ann Thorac Surg. 2014;98:81–3.PubMedCrossRef Akhter SA, Salabat MR, Philip JL, Valeroso TB, Russo MJ, Rich JD, et al. Durability of De Vega tricuspid valve annuloplasty for severe tricuspid regurgitation during left ventricular assist device implantation. Ann Thorac Surg. 2014;98:81–3.PubMedCrossRef
72.
go back to reference Sugiura T, Kurihara C, Kawabori M, Critsinelis AC, Wang S, Civitello AB, et al. Concomitant valve procedures in patients undergoing continuous-flow left ventricular assist device implantation: a single-center experience. J Thorac Cardiovasc Surg. 2019;158:1083-9.e1.PubMedCrossRef Sugiura T, Kurihara C, Kawabori M, Critsinelis AC, Wang S, Civitello AB, et al. Concomitant valve procedures in patients undergoing continuous-flow left ventricular assist device implantation: a single-center experience. J Thorac Cardiovasc Surg. 2019;158:1083-9.e1.PubMedCrossRef
73.
go back to reference Maltais S, Haglund NA, Davis ME, Aaronson KD, Pagani FD, Dunlay SM, et al. Outcomes after concomitant procedures with left ventricular assist device implantation: implications by device type and indication. ASAIO J. 2016;62:403–9. Maltais S, Haglund NA, Davis ME, Aaronson KD, Pagani FD, Dunlay SM, et al. Outcomes after concomitant procedures with left ventricular assist device implantation: implications by device type and indication. ASAIO J. 2016;62:403–9.
74.
go back to reference Pal JD, Klodell CT, John R, Pagani FD, Rogers JG, Farrar DJ, et al. Low operative mortality with implantation of a continuous-flow left ventricular assist device and impact of concurrent cardiac procedures. Circulation. 2009;120:S215–9.PubMedCrossRef Pal JD, Klodell CT, John R, Pagani FD, Rogers JG, Farrar DJ, et al. Low operative mortality with implantation of a continuous-flow left ventricular assist device and impact of concurrent cardiac procedures. Circulation. 2009;120:S215–9.PubMedCrossRef
Metadata
Title
Managing valvular pathology during LVAD implantation
Authors
Michael J. Carr
Susan Ansley Smith
Mark S. Slaughter
Siddharth Pahwa
Publication date
20-07-2023
Publisher
Springer Nature Singapore
Published in
Indian Journal of Thoracic and Cardiovascular Surgery / Issue Special Issue 1/2023
Print ISSN: 0970-9134
Electronic ISSN: 0973-7723
DOI
https://doi.org/10.1007/s12055-023-01567-8

Other articles of this Special Issue 1/2023

Indian Journal of Thoracic and Cardiovascular Surgery 1/2023 Go to the issue