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Published in: Arthritis Research & Therapy 4/2008

Open Access 01-08-2008 | Research article

Human palatine tonsil: a new potential tissue source of multipotent mesenchymal progenitor cells

Authors: Sasa Janjanin, Farida Djouad, Rabie M Shanti, Dolores Baksh, Kiran Gollapudi, Drago Prgomet, Lars Rackwitz, Arjun S Joshi, Rocky S Tuan

Published in: Arthritis Research & Therapy | Issue 4/2008

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Abstract

Introduction

Mesenchymal progenitor cells (MPCs) are multipotent progenitor cells in adult tissues, for example, bone marrow (BM). Current challenges of clinical application of BM-derived MPCs include donor site morbidity and pain as well as low cell yields associated with an age-related decrease in cell number and differentiation potential, underscoring the need to identify alternative sources of MPCs. Recently, MPC sources have diversified; examples include adipose, placenta, umbilicus, trabecular bone, cartilage, and synovial tissue. In the present work, we report the presence of MPCs in human tonsillar tissue.

Methods

We performed comparative and quantitative analyses of BM-MPCs with a subpopulation of adherent cells isolated from this lymphoid tissue, termed tonsil-derived MPCs (T-MPCs). The expression of surface markers was assessed by fluorescent-activated cell sorting analysis. Differentiation potential of T-MPCs was analyzed histochemically and by reverse transcription-polymerase chain reaction for the expression of lineage-related marker genes. The immunosuppressive properties of MPCs were determined in vitro in mixed lymphocyte reactions.

Results

Surface epitope analysis revealed that T-MPCs were negative for CD14, CD31, CD34, and CD45 expression and positive for CD29, CD44, CD90, and CD105 expression, a characteristic phenotype of BM-MPCs. Similar to BM-MPCs, T-MPCs could be induced to undergo adipogenic differentiation and, to a lesser extent, osteogenic and chondrogenic differentiation. T-MPCs did not express class II major histocompatibility (MHC) antigens, and in a similar but less pronounced manner compared with BM-MPCs, T-MPCs were immunosuppressive, inhibiting the proliferation of T cells stimulated by allogeneic T cells or by non-specific mitogenic stimuli via an indoleamine 2,3-dioxygenase-dependent mechanism.

Conclusion

Human palatine T-MPCs represent a new source of progenitor cells, potentially applicable for cell-based therapies.
Appendix
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Literature
1.
go back to reference Kolf CM, Cho E, Tuan RS: Mesenchymal stromal cells. Biology of adult mesenchymal stem cells: regulation of niche, self-renewal and differentiation. Arthritis Res Ther. 2007, 9: 204-10.1186/ar2116.PubMedCentralCrossRefPubMed Kolf CM, Cho E, Tuan RS: Mesenchymal stromal cells. Biology of adult mesenchymal stem cells: regulation of niche, self-renewal and differentiation. Arthritis Res Ther. 2007, 9: 204-10.1186/ar2116.PubMedCentralCrossRefPubMed
2.
go back to reference Kuo CK, Li WJ, Mauck RL, Tuan RS: Cartilage tissue engineering: its potential and uses. Curr Opin Rheumatol. 2006, 18: 64-73. 10.1097/01.bor.0000198005.88568.df.CrossRefPubMed Kuo CK, Li WJ, Mauck RL, Tuan RS: Cartilage tissue engineering: its potential and uses. Curr Opin Rheumatol. 2006, 18: 64-73. 10.1097/01.bor.0000198005.88568.df.CrossRefPubMed
3.
go back to reference Pittenger MF, Mackay AM, Beck SC, Jaiswal RK, Douglas R, Mosca JD, Moorman MA, Simonetti DW, Craig S, Marshak DR: Multilineage potential of adult human mesenchymal stem cells. Science. 1999, 284: 143-147. 10.1126/science.284.5411.143.CrossRefPubMed Pittenger MF, Mackay AM, Beck SC, Jaiswal RK, Douglas R, Mosca JD, Moorman MA, Simonetti DW, Craig S, Marshak DR: Multilineage potential of adult human mesenchymal stem cells. Science. 1999, 284: 143-147. 10.1126/science.284.5411.143.CrossRefPubMed
4.
go back to reference Tsuchida H, Hashimoto J, Crawford E, Manske P, Lou J: Engineered allogeneic mesenchymal stem cells repair femoral segmental defect in rats. J Orthop Res. 2003, 21: 44-53. 10.1016/S0736-0266(02)00108-0.CrossRefPubMed Tsuchida H, Hashimoto J, Crawford E, Manske P, Lou J: Engineered allogeneic mesenchymal stem cells repair femoral segmental defect in rats. J Orthop Res. 2003, 21: 44-53. 10.1016/S0736-0266(02)00108-0.CrossRefPubMed
5.
go back to reference Devine SM: Mesenchymal stem cells: will they have a role in the clinic?. J Cell Biochem Suppl. 2002, 38: 73-79. 10.1002/jcb.10046.CrossRefPubMed Devine SM: Mesenchymal stem cells: will they have a role in the clinic?. J Cell Biochem Suppl. 2002, 38: 73-79. 10.1002/jcb.10046.CrossRefPubMed
6.
go back to reference Horwitz EM, Prockop DJ, Fitzpatrick LA, Koo WW, Gordon PL, Neel M, Sussman M, Orchard P, Marx JC, Pyeritz RE, Brenner MK: Transplantability and therapeutic effects of bone marrow-derived mesenchymal cells in children with osteogenesis imperfecta. Nat Med. 1999, 5: 309-313. 10.1038/6529.CrossRefPubMed Horwitz EM, Prockop DJ, Fitzpatrick LA, Koo WW, Gordon PL, Neel M, Sussman M, Orchard P, Marx JC, Pyeritz RE, Brenner MK: Transplantability and therapeutic effects of bone marrow-derived mesenchymal cells in children with osteogenesis imperfecta. Nat Med. 1999, 5: 309-313. 10.1038/6529.CrossRefPubMed
7.
go back to reference Le Blanc K, Rasmusson I, Sundberg B, Gotherstrom C, Hassan M, Uzunel M, Ringden O: Treatment of severe acute graft-versus-host disease with third party haploidentical mesenchymal stem cells. Lancet. 2004, 363: 1439-1441. 10.1016/S0140-6736(04)16104-7.CrossRefPubMed Le Blanc K, Rasmusson I, Sundberg B, Gotherstrom C, Hassan M, Uzunel M, Ringden O: Treatment of severe acute graft-versus-host disease with third party haploidentical mesenchymal stem cells. Lancet. 2004, 363: 1439-1441. 10.1016/S0140-6736(04)16104-7.CrossRefPubMed
8.
go back to reference Barry FP, Murphy JM: Mesenchymal stem cells: clinical applications and biological characterization. Int J Biochem Cell Biol. 2004, 36: 568-584. 10.1016/j.biocel.2003.11.001.CrossRefPubMed Barry FP, Murphy JM: Mesenchymal stem cells: clinical applications and biological characterization. Int J Biochem Cell Biol. 2004, 36: 568-584. 10.1016/j.biocel.2003.11.001.CrossRefPubMed
9.
go back to reference Beyth S, Borovsky Z, Mevorach D, Liebergall M, Gazit Z, Aslan H, Galun E, Rachmilewitz J: Human mesenchymal stem cells alter antigen-presenting cell maturation and induce T-cell unresponsiveness. Blood. 2005, 105: 2214-2219. 10.1182/blood-2004-07-2921.CrossRefPubMed Beyth S, Borovsky Z, Mevorach D, Liebergall M, Gazit Z, Aslan H, Galun E, Rachmilewitz J: Human mesenchymal stem cells alter antigen-presenting cell maturation and induce T-cell unresponsiveness. Blood. 2005, 105: 2214-2219. 10.1182/blood-2004-07-2921.CrossRefPubMed
10.
go back to reference Di Nicola M, Carlo-Stella C, Magni M, Milanesi M, Longoni PD, Matteucci P, Grisanti S, Gianni AM: Human bone marrow stromal cells suppress T-lymphocyte proliferation induced by cellular or nonspecific mitogenic stimuli. Blood. 2002, 99: 3838-3843. 10.1182/blood.V99.10.3838.CrossRefPubMed Di Nicola M, Carlo-Stella C, Magni M, Milanesi M, Longoni PD, Matteucci P, Grisanti S, Gianni AM: Human bone marrow stromal cells suppress T-lymphocyte proliferation induced by cellular or nonspecific mitogenic stimuli. Blood. 2002, 99: 3838-3843. 10.1182/blood.V99.10.3838.CrossRefPubMed
11.
go back to reference Tse WT, Pendleton JD, Beyer WM, Egalka MC, Guinan EC: Suppression of allogeneic T-cell proliferation by human marrow stromal cells: implications in transplantation. Transplantation. 2003, 75: 389-397. 10.1097/01.TP.0000045055.63901.A9.CrossRefPubMed Tse WT, Pendleton JD, Beyer WM, Egalka MC, Guinan EC: Suppression of allogeneic T-cell proliferation by human marrow stromal cells: implications in transplantation. Transplantation. 2003, 75: 389-397. 10.1097/01.TP.0000045055.63901.A9.CrossRefPubMed
12.
go back to reference Meisel R, Zibert A, Laryea M, Gobel U, Daubener W, Dilloo D: Human bone marrow stromal cells inhibit allogeneic T-cell responses by indoleamine 2,3-dioxygenase-mediated tryptophan degradation. Blood. 2004, 103: 4619-4621. 10.1182/blood-2003-11-3909.CrossRefPubMed Meisel R, Zibert A, Laryea M, Gobel U, Daubener W, Dilloo D: Human bone marrow stromal cells inhibit allogeneic T-cell responses by indoleamine 2,3-dioxygenase-mediated tryptophan degradation. Blood. 2004, 103: 4619-4621. 10.1182/blood-2003-11-3909.CrossRefPubMed
13.
go back to reference Krampera M, Cosmi L, Angeli R, Pasini A, Liotta F, Andreini A, Santarlasci V, Mazzinghi B, Pizzolo G, Vinante F, Romagnani P, Maggi E, Romagnani S, Annunziato F: Role for interferon-gamma in the immunomodulatory activity of human bone marrow mesenchymal stem cells. Stem Cells. 2006, 24: 386-398. 10.1634/stemcells.2005-0008.CrossRefPubMed Krampera M, Cosmi L, Angeli R, Pasini A, Liotta F, Andreini A, Santarlasci V, Mazzinghi B, Pizzolo G, Vinante F, Romagnani P, Maggi E, Romagnani S, Annunziato F: Role for interferon-gamma in the immunomodulatory activity of human bone marrow mesenchymal stem cells. Stem Cells. 2006, 24: 386-398. 10.1634/stemcells.2005-0008.CrossRefPubMed
14.
go back to reference D'Ippolito G, Schiller PC, Ricordi C, Roos BA, Howard GA: Age-related osteogenic potential of mesenchymal stromal stem cells from human vertebral bone marrow. J Bone Miner Res. 1999, 14: 1115-1122. 10.1359/jbmr.1999.14.7.1115.CrossRefPubMed D'Ippolito G, Schiller PC, Ricordi C, Roos BA, Howard GA: Age-related osteogenic potential of mesenchymal stromal stem cells from human vertebral bone marrow. J Bone Miner Res. 1999, 14: 1115-1122. 10.1359/jbmr.1999.14.7.1115.CrossRefPubMed
15.
go back to reference Roobrouck VD, Ulloa-Montoya F, Verfaillie CM: Self-renewal and differentiation capacity of young and aged stem cells. Exp Cell Res. 2008, 314: 1937-1944. 10.1016/j.yexcr.2008.03.006.CrossRefPubMed Roobrouck VD, Ulloa-Montoya F, Verfaillie CM: Self-renewal and differentiation capacity of young and aged stem cells. Exp Cell Res. 2008, 314: 1937-1944. 10.1016/j.yexcr.2008.03.006.CrossRefPubMed
16.
go back to reference Noth U, Osyczka AM, Tuli R, Hickok NJ, Danielson KG, Tuan RS: Multilineage mesenchymal differentiation potential of human trabecular bone-derived cells. J Orthop Res. 2002, 20: 1060-1069. 10.1016/S0736-0266(02)00018-9.CrossRefPubMed Noth U, Osyczka AM, Tuli R, Hickok NJ, Danielson KG, Tuan RS: Multilineage mesenchymal differentiation potential of human trabecular bone-derived cells. J Orthop Res. 2002, 20: 1060-1069. 10.1016/S0736-0266(02)00018-9.CrossRefPubMed
17.
go back to reference Zuk PA, Zhu M, Mizuno H, Huang J, Futrell JW, Katz AJ, Benhaim P, Lorenz HP, Hedrick MH: Multilineage cells from human adipose tissue: implications for cell-based therapies. Tissue Eng. 2001, 7: 211-228. 10.1089/107632701300062859.CrossRefPubMed Zuk PA, Zhu M, Mizuno H, Huang J, Futrell JW, Katz AJ, Benhaim P, Lorenz HP, Hedrick MH: Multilineage cells from human adipose tissue: implications for cell-based therapies. Tissue Eng. 2001, 7: 211-228. 10.1089/107632701300062859.CrossRefPubMed
18.
go back to reference Sekiya I, Larson BL, Vuoristo JT, Cui JG, Prockop DJ: Adipogenic differentiation of human adult stem cells from bone marrow stroma (MSCs). J Bone Miner Res. 2004, 19: 256-264. 10.1359/JBMR.0301220.CrossRefPubMed Sekiya I, Larson BL, Vuoristo JT, Cui JG, Prockop DJ: Adipogenic differentiation of human adult stem cells from bone marrow stroma (MSCs). J Bone Miner Res. 2004, 19: 256-264. 10.1359/JBMR.0301220.CrossRefPubMed
19.
go back to reference De Bari C, Dell'Accio F, Tylzanowski P, Luyten FP: Multipotent mesenchymal stem cells from adult human synovial membrane. Arthritis Rheum. 2001, 44: 1928-1942. 10.1002/1529-0131(200108)44:8<1928::AID-ART331>3.0.CO;2-P.CrossRefPubMed De Bari C, Dell'Accio F, Tylzanowski P, Luyten FP: Multipotent mesenchymal stem cells from adult human synovial membrane. Arthritis Rheum. 2001, 44: 1928-1942. 10.1002/1529-0131(200108)44:8<1928::AID-ART331>3.0.CO;2-P.CrossRefPubMed
20.
go back to reference Djouad F, Bony C, Häupl T, Uzé G, Lahlou N, Louis-Plence P, Apparailly F, Canovas F, Rème T, Sany J, Jorgensen C, Noël D: Transcriptional profiles discriminate bone marrow-derived and synovium-derived mesenchymal stem cells. Arthritis Res Ther. 2005, 7: R1304-1315. 10.1186/ar1827.PubMedCentralCrossRefPubMed Djouad F, Bony C, Häupl T, Uzé G, Lahlou N, Louis-Plence P, Apparailly F, Canovas F, Rème T, Sany J, Jorgensen C, Noël D: Transcriptional profiles discriminate bone marrow-derived and synovium-derived mesenchymal stem cells. Arthritis Res Ther. 2005, 7: R1304-1315. 10.1186/ar1827.PubMedCentralCrossRefPubMed
21.
go back to reference Shih DT, Lee DC, Chen SC, Tsai RY, Huang CT, Tsai CC, Shen EY, Chiu WT: Isolation and characterization of neurogenic mesenchymal stem cells in human scalp tissue. Stem Cells. 2005, 23: 1012-1020. 10.1634/stemcells.2004-0125.CrossRefPubMed Shih DT, Lee DC, Chen SC, Tsai RY, Huang CT, Tsai CC, Shen EY, Chiu WT: Isolation and characterization of neurogenic mesenchymal stem cells in human scalp tissue. Stem Cells. 2005, 23: 1012-1020. 10.1634/stemcells.2004-0125.CrossRefPubMed
22.
go back to reference Rzhaninova AA, Gornostaeva SN, Goldshtein DV: Isolation and phenotypical characterization of mesenchymal stem cells from human fetal thymus. Bull Exp Biol Med. 2005, 139: 134-140. 10.1007/s10517-005-0231-4.CrossRefPubMed Rzhaninova AA, Gornostaeva SN, Goldshtein DV: Isolation and phenotypical characterization of mesenchymal stem cells from human fetal thymus. Bull Exp Biol Med. 2005, 139: 134-140. 10.1007/s10517-005-0231-4.CrossRefPubMed
23.
go back to reference Ivanovski S, Gronthos S, Shi S, Bartold PM: Stem cells in the periodontal ligament. Oral Dis. 2006, 12: 358-363. 10.1111/j.1601-0825.2006.01253.x.CrossRefPubMed Ivanovski S, Gronthos S, Shi S, Bartold PM: Stem cells in the periodontal ligament. Oral Dis. 2006, 12: 358-363. 10.1111/j.1601-0825.2006.01253.x.CrossRefPubMed
24.
go back to reference Lee OK, Kuo TK, Chen WM, Lee KD, Hsieh SL, Chen TH: Isolation of multipotent mesenchymal stem cells from umbilical cord blood. Blood. 2004, 103: 1669-1675. 10.1182/blood-2003-05-1670.CrossRefPubMed Lee OK, Kuo TK, Chen WM, Lee KD, Hsieh SL, Chen TH: Isolation of multipotent mesenchymal stem cells from umbilical cord blood. Blood. 2004, 103: 1669-1675. 10.1182/blood-2003-05-1670.CrossRefPubMed
25.
go back to reference Sarugaser R, Lickorish D, Baksh D, Hosseini MM, Davies JE: Human umbilical cord perivascular (HUCPV) cells: a source of mesenchymal progenitors. Stem Cells. 2005, 23: 220-229. 10.1634/stemcells.2004-0166.CrossRefPubMed Sarugaser R, Lickorish D, Baksh D, Hosseini MM, Davies JE: Human umbilical cord perivascular (HUCPV) cells: a source of mesenchymal progenitors. Stem Cells. 2005, 23: 220-229. 10.1634/stemcells.2004-0166.CrossRefPubMed
26.
go back to reference Yen BL, Huang HI, Chien CC, Jui HY, Ko BS, Yao M, Shun CT, Yen ML, Lee MC, Chen YC: Isolation of multipotent cells from human term placenta. Stem Cells. 2005, 23: 3-9. 10.1634/stemcells.2004-0098.CrossRefPubMed Yen BL, Huang HI, Chien CC, Jui HY, Ko BS, Yao M, Shun CT, Yen ML, Lee MC, Chen YC: Isolation of multipotent cells from human term placenta. Stem Cells. 2005, 23: 3-9. 10.1634/stemcells.2004-0098.CrossRefPubMed
27.
go back to reference Caterson EJ, Nesti LJ, Danielson KG, Tuan RS: Human marrow-derived mesenchymal progenitor cells: isolation, culture expansion, and analysis of differentiation. Mol Biotechnol. 2002, 20: 245-256. 10.1385/MB:20:3:245.CrossRefPubMed Caterson EJ, Nesti LJ, Danielson KG, Tuan RS: Human marrow-derived mesenchymal progenitor cells: isolation, culture expansion, and analysis of differentiation. Mol Biotechnol. 2002, 20: 245-256. 10.1385/MB:20:3:245.CrossRefPubMed
28.
go back to reference Castro-Malaspina H, Gay RE, Resnick G, Kapoor N, Meyers P, Chiarieri D, McKenzie S, Broxmeyer HE, Moore MA: Characterization of human bone marrow fibroblast colony-forming cells (CFU-F) and their progeny. Blood. 1980, 56: 289-301.PubMed Castro-Malaspina H, Gay RE, Resnick G, Kapoor N, Meyers P, Chiarieri D, McKenzie S, Broxmeyer HE, Moore MA: Characterization of human bone marrow fibroblast colony-forming cells (CFU-F) and their progeny. Blood. 1980, 56: 289-301.PubMed
29.
go back to reference Baksh D, Davies JE, Zandstra PW: Adult human bone marrow-derived mesenchymal progenitor cells are capable of adhesion-independent survival and expansion. Exp Hematol. 2003, 31: 723-732. 10.1016/S0301-472X(03)00106-1.CrossRefPubMed Baksh D, Davies JE, Zandstra PW: Adult human bone marrow-derived mesenchymal progenitor cells are capable of adhesion-independent survival and expansion. Exp Hematol. 2003, 31: 723-732. 10.1016/S0301-472X(03)00106-1.CrossRefPubMed
30.
go back to reference Djouad F, Plence P, Bony C, Tropel P, Apparailly F, Sany J, Noel D, Jorgensen C: Immunosuppressive effect of mesenchymal stem cells favors tumor growth in allogeneic animals. Blood. 2003, 102: 3837-3844. 10.1182/blood-2003-04-1193.CrossRefPubMed Djouad F, Plence P, Bony C, Tropel P, Apparailly F, Sany J, Noel D, Jorgensen C: Immunosuppressive effect of mesenchymal stem cells favors tumor growth in allogeneic animals. Blood. 2003, 102: 3837-3844. 10.1182/blood-2003-04-1193.CrossRefPubMed
31.
go back to reference Baxter MA, Wynn RF, Jowitt SN, Wraith JE, Fairbairn LJ, Bellantuono I: Study of telomere length reveals rapid aging of human marrow stromal cells following in vitro expansion. Stem Cells. 2004, 22: 675-682. 10.1634/stemcells.22-5-675.CrossRefPubMed Baxter MA, Wynn RF, Jowitt SN, Wraith JE, Fairbairn LJ, Bellantuono I: Study of telomere length reveals rapid aging of human marrow stromal cells following in vitro expansion. Stem Cells. 2004, 22: 675-682. 10.1634/stemcells.22-5-675.CrossRefPubMed
32.
go back to reference Mendes SC, Tibbe JM, Veenhof M, Bakker K, Both S, Platenburg PP, Oner FC, de Bruijn JD, van Blitterswijk CA: Bone tissue-engineered implants using human bone marrow stromal cells: effect of culture conditions and donor age. Tissue Eng. 2002, 8: 911-920. 10.1089/107632702320934010.CrossRefPubMed Mendes SC, Tibbe JM, Veenhof M, Bakker K, Both S, Platenburg PP, Oner FC, de Bruijn JD, van Blitterswijk CA: Bone tissue-engineered implants using human bone marrow stromal cells: effect of culture conditions and donor age. Tissue Eng. 2002, 8: 911-920. 10.1089/107632702320934010.CrossRefPubMed
33.
go back to reference Stenderup K, Justesen J, Clausen C, Kassem M: Aging is associated with decreased maximal life span and accelerated senescence of bone marrow stromal cells. Bone. 2003, 33: 919-926. 10.1016/j.bone.2003.07.005.CrossRefPubMed Stenderup K, Justesen J, Clausen C, Kassem M: Aging is associated with decreased maximal life span and accelerated senescence of bone marrow stromal cells. Bone. 2003, 33: 919-926. 10.1016/j.bone.2003.07.005.CrossRefPubMed
34.
go back to reference Zheng H, Martin JA, Duwayri Y, Falcon G, Buckwalter JA: Impact of aging on rat bone marrow-derived stem cell chondrogenesis. J Gerontol A Biol Sci Med Sci. 2007, 62: 136-148.CrossRefPubMed Zheng H, Martin JA, Duwayri Y, Falcon G, Buckwalter JA: Impact of aging on rat bone marrow-derived stem cell chondrogenesis. J Gerontol A Biol Sci Med Sci. 2007, 62: 136-148.CrossRefPubMed
35.
go back to reference Passali D, Damiani V, Passali GC, Passali FM, Boccazzi A, Bellussi L: Structural and immunological characteristics of chronically inflamed adenotonsillar tissue in childhood. Clin Diagn Lab Immunol. 2004, 11: 1154-1157. 10.1128/CDLI.11.6.1154-1157.2004.PubMedCentralPubMed Passali D, Damiani V, Passali GC, Passali FM, Boccazzi A, Bellussi L: Structural and immunological characteristics of chronically inflamed adenotonsillar tissue in childhood. Clin Diagn Lab Immunol. 2004, 11: 1154-1157. 10.1128/CDLI.11.6.1154-1157.2004.PubMedCentralPubMed
36.
go back to reference Tsukahara S, Ikeda R, Goto S, Yoshida K, Mitsumori R, Sakamoto Y, Tajima A, Yokoyama T, Toh S, Furukawa K, Inoue I: Tumour necrosis factor alpha-stimulated gene-6 inhibits osteoblastic differentiation of human mesenchymal stem cells induced by osteogenic differentiation medium and BMP-2. Biochem J. 2006, 398: 595-603. 10.1042/BJ20060027.PubMedCentralCrossRefPubMed Tsukahara S, Ikeda R, Goto S, Yoshida K, Mitsumori R, Sakamoto Y, Tajima A, Yokoyama T, Toh S, Furukawa K, Inoue I: Tumour necrosis factor alpha-stimulated gene-6 inhibits osteoblastic differentiation of human mesenchymal stem cells induced by osteogenic differentiation medium and BMP-2. Biochem J. 2006, 398: 595-603. 10.1042/BJ20060027.PubMedCentralCrossRefPubMed
37.
go back to reference Bartholomew A, Sturgeon C, Siatskas M, Ferrer K, McIntosh K, Patil S, Hardy W, Devine S, Ucker D, Deans R, Moseley A, Hoffman R: Mesenchymal stem cells suppress lymphocyte proliferation in vitro and prolong skin graft survival in vivo. Exp Hematol. 2002, 30: 42-48. 10.1016/S0301-472X(01)00769-X.CrossRefPubMed Bartholomew A, Sturgeon C, Siatskas M, Ferrer K, McIntosh K, Patil S, Hardy W, Devine S, Ucker D, Deans R, Moseley A, Hoffman R: Mesenchymal stem cells suppress lymphocyte proliferation in vitro and prolong skin graft survival in vivo. Exp Hematol. 2002, 30: 42-48. 10.1016/S0301-472X(01)00769-X.CrossRefPubMed
38.
go back to reference Le Blanc K: Immunomodulatory effects of fetal and adult mesenchymal stem cells. Cytotherapy. 2003, 5: 485-489. 10.1080/14653240310003611.CrossRefPubMed Le Blanc K: Immunomodulatory effects of fetal and adult mesenchymal stem cells. Cytotherapy. 2003, 5: 485-489. 10.1080/14653240310003611.CrossRefPubMed
39.
go back to reference Aggarwal S, Pittenger MF: Human mesenchymal stem cells modulate allogeneic immune cell responses. Blood. 2005, 105: 1815-1822. 10.1182/blood-2004-04-1559.CrossRefPubMed Aggarwal S, Pittenger MF: Human mesenchymal stem cells modulate allogeneic immune cell responses. Blood. 2005, 105: 1815-1822. 10.1182/blood-2004-04-1559.CrossRefPubMed
40.
go back to reference Krampera M, Glennie S, Dyson J, Scott D, Laylor R, Simpson E, Dazzi F: Bone marrow mesenchymal stem cells inhibit the response of naive and memory antigen-specific T cells to their cognate peptide. Blood. 2003, 101: 3722-3729. 10.1182/blood-2002-07-2104.CrossRefPubMed Krampera M, Glennie S, Dyson J, Scott D, Laylor R, Simpson E, Dazzi F: Bone marrow mesenchymal stem cells inhibit the response of naive and memory antigen-specific T cells to their cognate peptide. Blood. 2003, 101: 3722-3729. 10.1182/blood-2002-07-2104.CrossRefPubMed
41.
go back to reference Chan JL, Tang KC, Patel AP, Bonilla LM, Pierobon N, Ponzio NM, Rameshwar P: Antigen-presenting property of mesenchymal stem cells occurs during a narrow window at low levels of interferon-gamma. Blood. 2006, 107: 4817-4824. 10.1182/blood-2006-01-0057.PubMedCentralCrossRefPubMed Chan JL, Tang KC, Patel AP, Bonilla LM, Pierobon N, Ponzio NM, Rameshwar P: Antigen-presenting property of mesenchymal stem cells occurs during a narrow window at low levels of interferon-gamma. Blood. 2006, 107: 4817-4824. 10.1182/blood-2006-01-0057.PubMedCentralCrossRefPubMed
42.
go back to reference Dolhain RJ, ter Haar NT, Hoefakker S, Tak PP, de Ley M, Claassen E, Breedveld FC, Miltenburg AM: Increased expression of interferon (IFN)-gamma together with IFN-gamma receptor in the rheumatoid synovial membrane compared with synovium of patients with osteoarthritis. Br J Rheumatol. 1996, 35: 24-32. 10.1093/rheumatology/35.1.24.CrossRefPubMed Dolhain RJ, ter Haar NT, Hoefakker S, Tak PP, de Ley M, Claassen E, Breedveld FC, Miltenburg AM: Increased expression of interferon (IFN)-gamma together with IFN-gamma receptor in the rheumatoid synovial membrane compared with synovium of patients with osteoarthritis. Br J Rheumatol. 1996, 35: 24-32. 10.1093/rheumatology/35.1.24.CrossRefPubMed
43.
go back to reference Sunaga H, Oh M, Takahashi N, Fujieda S: Infection of Haemophilus parainfluenzae in tonsils is associated with IgA nephropathy. Acta Otolaryngol Suppl. 2004, 15-19. 10.1080/03655230410003323. 555 Sunaga H, Oh M, Takahashi N, Fujieda S: Infection of Haemophilus parainfluenzae in tonsils is associated with IgA nephropathy. Acta Otolaryngol Suppl. 2004, 15-19. 10.1080/03655230410003323. 555
44.
go back to reference Zoumbos NC, Gascon P, Djeu JY, Young NS: Interferon is a mediator of hematopoietic suppression in aplastic anemia in vitro and possibly in vivo. Proc Natl Acad Sci USA. 1985, 82: 188-192. 10.1073/pnas.82.1.188.PubMedCentralCrossRefPubMed Zoumbos NC, Gascon P, Djeu JY, Young NS: Interferon is a mediator of hematopoietic suppression in aplastic anemia in vitro and possibly in vivo. Proc Natl Acad Sci USA. 1985, 82: 188-192. 10.1073/pnas.82.1.188.PubMedCentralCrossRefPubMed
45.
go back to reference Cosmi L, Annunziato F, Galli MIG, Maggi RME, Nagata K, Romagnani S: CRTH2 is the most reliable marker for the detection of circulating human type 2 Th and type 2 T cytotoxic cells in health and disease. Eur J Immunol. 2000, 30: 2972-2979. 10.1002/1521-4141(200010)30:10<2972::AID-IMMU2972>3.0.CO;2-#.CrossRefPubMed Cosmi L, Annunziato F, Galli MIG, Maggi RME, Nagata K, Romagnani S: CRTH2 is the most reliable marker for the detection of circulating human type 2 Th and type 2 T cytotoxic cells in health and disease. Eur J Immunol. 2000, 30: 2972-2979. 10.1002/1521-4141(200010)30:10<2972::AID-IMMU2972>3.0.CO;2-#.CrossRefPubMed
46.
go back to reference Gotherstrom C, Ringden O, Tammik C, Zetterberg E, Westgren M, Le Blanc K: Immunologic properties of human fetal mesenchymal stem cells. Am J Obstet Gynecol. 2004, 190: 239-245. 10.1016/j.ajog.2003.07.022.CrossRefPubMed Gotherstrom C, Ringden O, Tammik C, Zetterberg E, Westgren M, Le Blanc K: Immunologic properties of human fetal mesenchymal stem cells. Am J Obstet Gynecol. 2004, 190: 239-245. 10.1016/j.ajog.2003.07.022.CrossRefPubMed
47.
go back to reference Gotherstrom C, Ringden O, Westgren M, Tammik C, Le Blanc K: Immunomodulatory effects of human foetal liver-derived mesenchymal stem cells. Bone Marrow Transplant. 2003, 32: 265-272. 10.1038/sj.bmt.1704111.CrossRefPubMed Gotherstrom C, Ringden O, Westgren M, Tammik C, Le Blanc K: Immunomodulatory effects of human foetal liver-derived mesenchymal stem cells. Bone Marrow Transplant. 2003, 32: 265-272. 10.1038/sj.bmt.1704111.CrossRefPubMed
48.
go back to reference Ahmed CM, Johnson HM: IFN-gamma and its receptor subunit IFNGR1 are recruited to the IFN-gamma-activated sequence element at the promoter site of IFN-gamma-activated genes: evidence of transactivational activity in IFNGR1. J Immunol. 2006, 177: 315-321.CrossRefPubMed Ahmed CM, Johnson HM: IFN-gamma and its receptor subunit IFNGR1 are recruited to the IFN-gamma-activated sequence element at the promoter site of IFN-gamma-activated genes: evidence of transactivational activity in IFNGR1. J Immunol. 2006, 177: 315-321.CrossRefPubMed
49.
go back to reference Shirey KA, Jung JY, Maeder GS, Carlin JM: Upregulation of IFN-gamma receptor expression by proinflammatory cytokines influences IDO activation in epithelial cells. J Interferon Cytokine Res. 2006, 26: 53-62. 10.1089/jir.2006.26.53.PubMedCentralCrossRefPubMed Shirey KA, Jung JY, Maeder GS, Carlin JM: Upregulation of IFN-gamma receptor expression by proinflammatory cytokines influences IDO activation in epithelial cells. J Interferon Cytokine Res. 2006, 26: 53-62. 10.1089/jir.2006.26.53.PubMedCentralCrossRefPubMed
50.
go back to reference Sprent J: Immunological memory. Curr Opin Immunol. 1997, 9: 371-379. 10.1016/S0952-7915(97)80084-2.CrossRefPubMed Sprent J: Immunological memory. Curr Opin Immunol. 1997, 9: 371-379. 10.1016/S0952-7915(97)80084-2.CrossRefPubMed
51.
go back to reference Glennie S, Soeiro I, Dyson PJ, Lam EW, Dazzi F: Bone marrow mesenchymal stem cells induce division arrest anergy of activated T cells. Blood. 2005, 105: 2821-2827. 10.1182/blood-2004-09-3696.CrossRefPubMed Glennie S, Soeiro I, Dyson PJ, Lam EW, Dazzi F: Bone marrow mesenchymal stem cells induce division arrest anergy of activated T cells. Blood. 2005, 105: 2821-2827. 10.1182/blood-2004-09-3696.CrossRefPubMed
52.
go back to reference Augello A, Tasso R, Negrini SM, Amateis A, Indiveri F, Cancedda R, Pennesi G: Bone marrow mesenchymal progenitor cells inhibit lymphocyte proliferation by activation of the programmed death 1 pathway. Eur J Immunol. 2005, 35: 1482-1490. 10.1002/eji.200425405.CrossRefPubMed Augello A, Tasso R, Negrini SM, Amateis A, Indiveri F, Cancedda R, Pennesi G: Bone marrow mesenchymal progenitor cells inhibit lymphocyte proliferation by activation of the programmed death 1 pathway. Eur J Immunol. 2005, 35: 1482-1490. 10.1002/eji.200425405.CrossRefPubMed
53.
go back to reference Deng W, Han Q, Liao L, You S, Deng H, Zhao RC: Effects of allogeneic bone marrow-derived mesenchymal stem cells on T and B lymphocytes from BXSB mice. DNA Cell Biol. 2005, 24: 458-463. 10.1089/dna.2005.24.458.CrossRefPubMed Deng W, Han Q, Liao L, You S, Deng H, Zhao RC: Effects of allogeneic bone marrow-derived mesenchymal stem cells on T and B lymphocytes from BXSB mice. DNA Cell Biol. 2005, 24: 458-463. 10.1089/dna.2005.24.458.CrossRefPubMed
54.
go back to reference Corcione A, Benvenuto F, Ferretti E, Giunti D, Cappiello V, Cazzanti F, Risso M, Gualandi F, Mancardi GL, Pistoia V, Uccelli A: Human mesenchymal stem cells modulate B-cell functions. Blood. 2006, 107: 367-372. 10.1182/blood-2005-07-2657.CrossRefPubMed Corcione A, Benvenuto F, Ferretti E, Giunti D, Cappiello V, Cazzanti F, Risso M, Gualandi F, Mancardi GL, Pistoia V, Uccelli A: Human mesenchymal stem cells modulate B-cell functions. Blood. 2006, 107: 367-372. 10.1182/blood-2005-07-2657.CrossRefPubMed
55.
go back to reference Kierney PC, Dorshkind K: B lymphocyte precursors and myeloid progenitors survive in diffusion chamber cultures but B cell differentiation requires close association with stromal cells. Blood. 1987, 70: 1418-1424.PubMed Kierney PC, Dorshkind K: B lymphocyte precursors and myeloid progenitors survive in diffusion chamber cultures but B cell differentiation requires close association with stromal cells. Blood. 1987, 70: 1418-1424.PubMed
56.
go back to reference Kurosaka D, LeBien TW, Pribyl JA: Comparative studies of different stromal cell microenvironments in support of human B-cell development. Exp Hematol. 1999, 27: 1271-1281. 10.1016/S0301-472X(99)00067-3.CrossRefPubMed Kurosaka D, LeBien TW, Pribyl JA: Comparative studies of different stromal cell microenvironments in support of human B-cell development. Exp Hematol. 1999, 27: 1271-1281. 10.1016/S0301-472X(99)00067-3.CrossRefPubMed
57.
go back to reference Ame-Thomas P, Maby-El Hajjami H, Monvoisin C, Jean R, Monnier D, Caulet-Maugendre S, Guillaudeux T, Lamy T, Fest T, Tarte K: Human mesenchymal stem cells isolated from bone marrow and lymphoid organs support tumor B-cell growth: role of stromal cells in follicular lymphoma pathogenesis. Blood. 2007, 109: 693-702. 10.1182/blood-2006-05-020800.CrossRefPubMed Ame-Thomas P, Maby-El Hajjami H, Monvoisin C, Jean R, Monnier D, Caulet-Maugendre S, Guillaudeux T, Lamy T, Fest T, Tarte K: Human mesenchymal stem cells isolated from bone marrow and lymphoid organs support tumor B-cell growth: role of stromal cells in follicular lymphoma pathogenesis. Blood. 2007, 109: 693-702. 10.1182/blood-2006-05-020800.CrossRefPubMed
58.
go back to reference Uccelli A, Moretta L, Pistoia V: Immunoregulatory function of mesenchymal stem cells. Eur J Immunol. 2006, 36: 2566-2573. 10.1002/eji.200636416.CrossRefPubMed Uccelli A, Moretta L, Pistoia V: Immunoregulatory function of mesenchymal stem cells. Eur J Immunol. 2006, 36: 2566-2573. 10.1002/eji.200636416.CrossRefPubMed
59.
go back to reference Djouad F, Fritz V, Apparailly F, Louis-Plence P, Bony C, Sany J, Jorgensen C, Noel D: Reversal of the immunosuppressive properties of mesenchymal stem cells by tumor necrosis factor alpha in collagen-induced arthritis. Arthritis Rheum. 2005, 52: 1595-1603. 10.1002/art.21012.CrossRefPubMed Djouad F, Fritz V, Apparailly F, Louis-Plence P, Bony C, Sany J, Jorgensen C, Noel D: Reversal of the immunosuppressive properties of mesenchymal stem cells by tumor necrosis factor alpha in collagen-induced arthritis. Arthritis Rheum. 2005, 52: 1595-1603. 10.1002/art.21012.CrossRefPubMed
Metadata
Title
Human palatine tonsil: a new potential tissue source of multipotent mesenchymal progenitor cells
Authors
Sasa Janjanin
Farida Djouad
Rabie M Shanti
Dolores Baksh
Kiran Gollapudi
Drago Prgomet
Lars Rackwitz
Arjun S Joshi
Rocky S Tuan
Publication date
01-08-2008
Publisher
BioMed Central
Published in
Arthritis Research & Therapy / Issue 4/2008
Electronic ISSN: 1478-6362
DOI
https://doi.org/10.1186/ar2459

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