Influence of hypoxia on the domiciliation of Mesenchymal Stem Cells after infusion into rats: possibilities of targeting pulmonary artery remodeling via cells therapies?

被引:68
作者
Rochefort, GY
Vaudin, P
Bonnet, N
Pages, JC
Domenech, J
Charbord, P
Eder, V
机构
[1] Univ Tours, Fac Med, IFR135, LABPART,EA3852, F-370032 Tours, France
[2] Univ Tours, Fac Med, IFR135, INSERM,ESPRI,EA3588, F-370032 Tours, France
[3] Univ Tours, Fac Med, EA3856, F-370032 Tours, France
[4] Univ Orleans, EA 3895, F-45067 Orleans, France
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D O I
10.1186/1465-9921-6-125
中图分类号
R56 [呼吸系及胸部疾病];
学科分类号
摘要
Background: Bone marrow ( BM) cells are promising tools for vascular therapies. Here, we focused on the possibility of targeting the hypoxia-induced pulmonary artery hypertension remodeling with systemic delivery of BM-derived mesenchymal stem cells (MSCs) into non-irradiated rats. Methods: Six-week-old Wistar rats were exposed to 3-week chronic hypoxia leading to pulmonary artery wall remodeling. Domiciliation of adhesive BM-derived CD45(-) CD73(+) CD90(+) MSCs was first studied after a single intravenous infusion of Indium-111-labeled MSCs followed by whole body scintigraphies and autoradiographies of different harvested organs. In a second set of experiments, enhanced-GFP labeling allowed to observe distribution at later times using sequential infusions during the 3-week hypoxia exposure. Results: A 30% pulmonary retention was observed by scintigraphies and no differences were observed in the global repartition between hypoxic and control groups. Intrapulmonary radioactivity repartition was homogenous in both groups, as shown by autoradiographies. BM-derived GFP-labeled MSCs were observed with a global repartition in liver, in spleen, in lung parenchyma and rarely in the adventitial layer of remodeled vessels. Furthermore this global repartition was not modified by hypoxia. Interestingly, these cells displayed in vivo bone marrow homing, proving a preservation of their viability and function. Bone marrow homing of GFP-labeled MSCs was increased in the hypoxic group. Conclusion: Adhesive BM- derived CD45(-) CD73(+) CD90(+) MSCs are not integrated in the pulmonary arteries remodeled media after repeated intravenous infusions in contrast to previously described in systemic vascular remodeling or with endothelial progenitor cells infusions.
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共 21 条
[1]   Systemic delivery of bone marrow-derived mesenchymal stem cells to the infarcted myocardium - Feasibility, cell migration, and body distribution [J].
Barbash, IM ;
Chouraqui, P ;
Baron, J ;
Feinberg, MS ;
Etzion, S ;
Tessone, A ;
Miller, L ;
Guetta, E ;
Zipori, D ;
Kedes, LH ;
Kloner, RA ;
Leor, J .
CIRCULATION, 2003, 108 (07) :863-868
[2]   Chronic hypoxia induces nonreversible right ventricle dysfunction and dysplasia in rats [J].
Bonnet, P ;
Bonnet, S ;
Boissière, J ;
Le Net, JL ;
Gautier, M ;
de la Roque, ED ;
Eder, V .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2004, 287 (03) :H1023-H1028
[3]   Some HIV protease inhibitors alter lamin A/C maturation and stability, SREBP-1 nuclear localization and adipocyte differentiation [J].
Caron, M ;
Auclair, M ;
Sterlingot, H ;
Kornprobst, M ;
Capeau, J .
AIDS, 2003, 17 (17) :2437-2444
[4]   Hypoxia-induced pulmonary artery adventitial remodeling and neovascularization: contribution of progenitor cells [J].
Davie, NJ ;
Crossno, JT ;
Frid, MG ;
Hofmeister, SE ;
Reeves, JT ;
Hyde, DM ;
Carpenter, TC ;
Brunetti, JA ;
McNiece, IK ;
Stenmark, KR .
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2004, 286 (04) :L668-L678
[5]   Muscle regeneration by bone marrow derived myogenic progenitors [J].
Ferrari, G ;
Cusella-De Angelis, G ;
Coletta, M ;
Paolucci, E ;
Stornaiuolo, A ;
Cossu, G ;
Mavilio, F .
SCIENCE, 1998, 279 (5356) :1528-1530
[6]   STROMAL CELLS FROM HUMAN LONG-TERM MARROW CULTURES ARE MESENCHYMAL CELLS THAT DIFFERENTIATE FOLLOWING A VASCULAR SMOOTH-MUSCLE DIFFERENTIATION PATHWAY [J].
GALMICHE, MC ;
KOTELIANSKY, VE ;
BRIERE, J ;
HERVE, P ;
CHARBORD, P .
BLOOD, 1993, 82 (01) :66-76
[7]   The dynamic in vivo distribution of bone marrow-derived mesenchymal stent cells after infusion [J].
Gao, JZ ;
Dennis, JE ;
Muzic, RF ;
Lundberg, M ;
Caplan, AI .
CELLS TISSUES ORGANS, 2001, 169 (01) :12-20
[8]   Bone marrow-derived cells contribute to pulmonary vascular remodeling in hypoxia-induced pulmonary hypertension [J].
Hayashida, K ;
Fujita, J ;
Miyake, Y ;
Kawada, H ;
Ando, K ;
Ogawa, S ;
Fukuda, K .
CHEST, 2005, 127 (05) :1793-1798
[9]   Transplantability and therapeutic effects of bone marrow-derived mesenchymal cells in children with osteogenesis imperfecta [J].
Horwitz, EM ;
Prockop, DJ ;
Fitzpatrick, LA ;
Koo, WWK ;
Gordon, PL ;
Neel, M ;
Sussman, M ;
Orchard, P ;
Marx, JC ;
Pyeritz, RE ;
Brenner, MK .
NATURE MEDICINE, 1999, 5 (03) :309-313
[10]   Inhibition of rho-kinase attenuates hypoxia-induced angiogenesis in the pulmonary circulation [J].
Hyvelin, JM ;
Howell, K ;
Nichol, A ;
Costello, CM ;
Preston, RJ ;
McLoughlin, P .
CIRCULATION RESEARCH, 2005, 97 (02) :185-191