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Published in: World Journal of Surgery 12/2005

01-12-2005

Antibody Response of Autogenous Splenic Tissue Implanted in the Abdominal Cavity of Mice

Authors: Sérgio I. Nunes, MD, PhD, Alice B. Rezende, MD, Francisco M. Teixeira, MS, Ana Paula Ferreira, PhD, Márcio M.J. Alves, MD, PhD, Nelson Jamel, MD, PhD, Raimunda V.C. Assis, MD, PhD, Henrique C. Teixeira, PhD

Published in: World Journal of Surgery | Issue 12/2005

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Abstract

There is still controversy about the immunologic function of autotransplanted splenic tissue. In this study, splenic autotransplantation was performed in the abdominal cavity of mice, and the plaque-forming cell (PFC) assay was used to investigate the frequency of antibody-forming cells in response to sheep red blood cell (SRBC) immunization. BALB/c mice were divided into four groups according to the location of the autogenous graft: intraomental (IO), free peritoneal splenosis (FPS), retroperitoneal (RP), and nongrafted control (CT). Thirty days after surgery the mice were immunized intraperitoneally with SRBCs, and 4 days later splenic immunoglobulin M anti-SRBC-secreting cells were determined by counting the number of PFCs. All the immunized mice showed increased numbers of PFCs that were about 2 logs higher than those in the the nonimmunized controls (P < 0.005). The frequencies of anti-SRBC-producing cells in the tissues grafted in various sites of the abdominal cavity (IO, FPS, RP), in the normal spleen from nonoperated controls (CT), or in the sham-operated control group (SCT) were not notably different (5582 ± 2475 PFC/107 cells for IO; 4849 ± 1856 for FPS; 6604 ± 2903 for RP; 5940 ± 5029 for CT; and 6172 ± 2203 for SCT). Similar histology with small architectural variations was observed in all implants; less white pulp was involved, and there was more congestion in the red pulp, with extensive sinusoids and reticular fiber proliferation. This study shows that the T cell-dependent antibody response in implanted splenic tissues is as efficient as in the intact spleen, with no difference between the graft sites studied. This immune response does not depend on the slight architectural variations observed in the splenic implants.
Literature
1.
go back to reference Resende V, Petroianu A. Functions of the splenic remnant after subtotal splenectomy for treatment of severe splenic injuries. Am J Surg 2003;185:311–315CrossRefPubMed Resende V, Petroianu A. Functions of the splenic remnant after subtotal splenectomy for treatment of severe splenic injuries. Am J Surg 2003;185:311–315CrossRefPubMed
2.
go back to reference Christo MC, DiDio LJA. Anatomical and surgical aspects of splenic segmentectomies. Ann Anat 1997;179:461–474PubMed Christo MC, DiDio LJA. Anatomical and surgical aspects of splenic segmentectomies. Ann Anat 1997;179:461–474PubMed
3.
go back to reference Pisters PWT, Pachter HL. Autologous splenic transplantation for splenic trauma. Ann Surg 1994;219:225–235PubMed Pisters PWT, Pachter HL. Autologous splenic transplantation for splenic trauma. Ann Surg 1994;219:225–235PubMed
4.
go back to reference King H, Shumacker Jr. HB. Splenic studies. I. Susceptibility to infection after splenectomy performed in infancy. Ann Surg 1952;136:239–242PubMedCrossRef King H, Shumacker Jr. HB. Splenic studies. I. Susceptibility to infection after splenectomy performed in infancy. Ann Surg 1952;136:239–242PubMedCrossRef
5.
go back to reference Horan M, Colebatch JH. Relation between splenectomy and subsequent infection: a clinical study. Arch Dis Child 1962;37:398–412PubMed Horan M, Colebatch JH. Relation between splenectomy and subsequent infection: a clinical study. Arch Dis Child 1962;37:398–412PubMed
6.
go back to reference Jamel MJ, Refineti RA, Silva MM, et al. Papel do remanescente esplênico no perfil lipídico. Arq Bras Cir Dig 2002;15:105–107 Jamel MJ, Refineti RA, Silva MM, et al. Papel do remanescente esplênico no perfil lipídico. Arq Bras Cir Dig 2002;15:105–107
7.
go back to reference Brandt CT, Araujo LB, Barbosa CM. Autotransplantation of spleen tissue in children with mansonic schistosomiasis who underwent splenectomy: evaluation of splenic residual functions. Acta Cir Bras 1998;13:212–216CrossRef Brandt CT, Araujo LB, Barbosa CM. Autotransplantation of spleen tissue in children with mansonic schistosomiasis who underwent splenectomy: evaluation of splenic residual functions. Acta Cir Bras 1998;13:212–216CrossRef
8.
go back to reference Buntain WL, Gould HR. Splenic trauma in children and techniques of splenic salvage. World J. Surg. 1985;9:398–409CrossRefPubMed Buntain WL, Gould HR. Splenic trauma in children and techniques of splenic salvage. World J. Surg. 1985;9:398–409CrossRefPubMed
9.
go back to reference Leemans R, Manson W, Snijder JAM, et al. Immune response capacity after human splenic autotransplantation: restoration of response to individual pneumococcal vaccine subtypes. Ann Surg 1999;229:279–285CrossRefPubMed Leemans R, Manson W, Snijder JAM, et al. Immune response capacity after human splenic autotransplantation: restoration of response to individual pneumococcal vaccine subtypes. Ann Surg 1999;229:279–285CrossRefPubMed
10.
go back to reference Ando K, Miyano T, Yamataka A, et al. Torsion of autotransplanted splenic tissue in Gaucher disease. J Pediatr Surg 1997;32:747–749PubMed Ando K, Miyano T, Yamataka A, et al. Torsion of autotransplanted splenic tissue in Gaucher disease. J Pediatr Surg 1997;32:747–749PubMed
11.
go back to reference Sharma R, Mondal A, Kashyap R, et al. Radiolabeled denatured RBC scintigraphy in autologous splenic transplantation. Clin Nucl Med 1996;21:534–536CrossRefPubMed Sharma R, Mondal A, Kashyap R, et al. Radiolabeled denatured RBC scintigraphy in autologous splenic transplantation. Clin Nucl Med 1996;21:534–536CrossRefPubMed
12.
go back to reference Mikó I, Bráth E, Furka I, et al. Spleen autotransplantation in mice: a novel experimental model for immunology study. Microsurgery 2001;21:140–142PubMed Mikó I, Bráth E, Furka I, et al. Spleen autotransplantation in mice: a novel experimental model for immunology study. Microsurgery 2001;21:140–142PubMed
13.
go back to reference Gomez L, Egido R, Guarino G, et al. Studio istologico del trapianto splenico sperimentale nei ratti. Minerva Chir 2000;55:741–744PubMed Gomez L, Egido R, Guarino G, et al. Studio istologico del trapianto splenico sperimentale nei ratti. Minerva Chir 2000;55:741–744PubMed
14.
go back to reference Pabst R. Regeneration of autotransplanted splenic fragments: basic immunological and clinical relevance. Clin Exp Immunol 1999;117:423–424CrossRefPubMed Pabst R. Regeneration of autotransplanted splenic fragments: basic immunological and clinical relevance. Clin Exp Immunol 1999;117:423–424CrossRefPubMed
15.
go back to reference Moore FA, Moore EE, Moore GE, et al. Fivefold enlargement of implants in a splenic autotransplant recipient. Surgery 1993;113:462–465PubMed Moore FA, Moore EE, Moore GE, et al. Fivefold enlargement of implants in a splenic autotransplant recipient. Surgery 1993;113:462–465PubMed
16.
go back to reference Petroianu A. Avaliação da função fagocitária em remanescentes de esplenectomia subtotal e auto-implante esplênico autógeno. Rev Bras Hematol Hemoter 2003;25:25–30 Petroianu A. Avaliação da função fagocitária em remanescentes de esplenectomia subtotal e auto-implante esplênico autógeno. Rev Bras Hematol Hemoter 2003;25:25–30
17.
go back to reference Weber T, Hanisch E, Baum RP, et al. Late results of heterotopic autotransplantation of splenic tissue into the greater omentum. World J Surg 1998;22:883–889CrossRefPubMed Weber T, Hanisch E, Baum RP, et al. Late results of heterotopic autotransplantation of splenic tissue into the greater omentum. World J Surg 1998;22:883–889CrossRefPubMed
18.
go back to reference Cooney DR, Dearth JC, Swanson SE, et al. Relative merits of partial splenectomy, splenic reimplantation and immunization in preventing postsplenectomy infections. Surgery 1979;86:561–569PubMed Cooney DR, Dearth JC, Swanson SE, et al. Relative merits of partial splenectomy, splenic reimplantation and immunization in preventing postsplenectomy infections. Surgery 1979;86:561–569PubMed
19.
go back to reference Liaunigg A, Kastberger C, Leitner W, et al. Regeneration of autotransplanted splenic tissue at different implantation sites. Cell Tissue Res 1992;269:1–11CrossRefPubMed Liaunigg A, Kastberger C, Leitner W, et al. Regeneration of autotransplanted splenic tissue at different implantation sites. Cell Tissue Res 1992;269:1–11CrossRefPubMed
20.
go back to reference Jerne NK, Nordin AA. Plaque formation in agar by single antibody-producing cells. Science 1963;140:405 Jerne NK, Nordin AA. Plaque formation in agar by single antibody-producing cells. Science 1963;140:405
21.
go back to reference Teixeira HC, Calich LM, Singer-Vermes LM, et al. Experimental paracoccidioidomycosis: early immunosuppression occurs in susceptible mice after infection with pathogenic fungi. Braz J Med Biol Res 1987;20:587–589PubMed Teixeira HC, Calich LM, Singer-Vermes LM, et al. Experimental paracoccidioidomycosis: early immunosuppression occurs in susceptible mice after infection with pathogenic fungi. Braz J Med Biol Res 1987;20:587–589PubMed
22.
go back to reference Dickerman JD, Horner SR, Coil JA, et al. The protective effect of intraperitoneal splenic autotransplants in mice exposed to an aerosolized suspension of type III Streptococcus pneumoniae. Blood 1979;54:354–358PubMed Dickerman JD, Horner SR, Coil JA, et al. The protective effect of intraperitoneal splenic autotransplants in mice exposed to an aerosolized suspension of type III Streptococcus pneumoniae. Blood 1979;54:354–358PubMed
23.
go back to reference Pabst R, Reilmann H. Regeneration of heterotopically transplanted autografts of splenic tissue. Cell Tissue Res 1980;209:137–143CrossRefPubMed Pabst R, Reilmann H. Regeneration of heterotopically transplanted autografts of splenic tissue. Cell Tissue Res 1980;209:137–143CrossRefPubMed
24.
go back to reference Leemans R, Harms G, Rijkers GT, et al. Spleen autotransplantation provides restoration of functional splenic lymphoid compartments and improves the humoral immune response to pneumococcal polysaccharide vaccine. Clin Exp Immunol 1999;117:596–604CrossRefPubMed Leemans R, Harms G, Rijkers GT, et al. Spleen autotransplantation provides restoration of functional splenic lymphoid compartments and improves the humoral immune response to pneumococcal polysaccharide vaccine. Clin Exp Immunol 1999;117:596–604CrossRefPubMed
25.
go back to reference Pabst R, Westermann J, Rothkötter HJ. Immunoarchitecture of regenerated splenic and lymph node transplants. Int Rev Cytol 1991;128:215–259PubMed Pabst R, Westermann J, Rothkötter HJ. Immunoarchitecture of regenerated splenic and lymph node transplants. Int Rev Cytol 1991;128:215–259PubMed
26.
go back to reference Likhite VV. Protection against fulminant sepsis in splenectomized mice by implantation of autochthonous splenic tissue. Exp. Hematol. 1978;6:433–439PubMed Likhite VV. Protection against fulminant sepsis in splenectomized mice by implantation of autochthonous splenic tissue. Exp. Hematol. 1978;6:433–439PubMed
27.
go back to reference Schwartz AD, Dadash-Zadeh M, Goldstein R, et al. Antibody response to intravenous immunization following splenic autotransplantation in Sprague-Dawley rats. Blood 1977;49:779–783PubMed Schwartz AD, Dadash-Zadeh M, Goldstein R, et al. Antibody response to intravenous immunization following splenic autotransplantation in Sprague-Dawley rats. Blood 1977;49:779–783PubMed
28.
go back to reference Livinstone CD, Levine BA, Sirinek KR. Site of splenic autotransplantation affects protection from sepsis. Am J Surg 1983;146:734–737 Livinstone CD, Levine BA, Sirinek KR. Site of splenic autotransplantation affects protection from sepsis. Am J Surg 1983;146:734–737
29.
go back to reference Tzoracoleftherakis E, Alivizatos V, Kalfarentzos F, et al. Complications of splenic tissue reimplantation. Ann R Coll Surg Engl 1991;73:83–86PubMed Tzoracoleftherakis E, Alivizatos V, Kalfarentzos F, et al. Complications of splenic tissue reimplantation. Ann R Coll Surg Engl 1991;73:83–86PubMed
Metadata
Title
Antibody Response of Autogenous Splenic Tissue Implanted in the Abdominal Cavity of Mice
Authors
Sérgio I. Nunes, MD, PhD
Alice B. Rezende, MD
Francisco M. Teixeira, MS
Ana Paula Ferreira, PhD
Márcio M.J. Alves, MD, PhD
Nelson Jamel, MD, PhD
Raimunda V.C. Assis, MD, PhD
Henrique C. Teixeira, PhD
Publication date
01-12-2005
Publisher
Springer-Verlag
Published in
World Journal of Surgery / Issue 12/2005
Print ISSN: 0364-2313
Electronic ISSN: 1432-2323
DOI
https://doi.org/10.1007/s00268-005-0060-7

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