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对C3缺陷动物进行的移植研究揭示了补体第三成分(C3)在骨髓细胞植入过程中的新作用。

Transplantation studies in C3-deficient animals reveal a novel role of the third complement component (C3) in engraftment of bone marrow cells.

作者信息

Ratajczak M Z, Reca R, Wysoczynski M, Kucia M, Baran J T, Allendorf D J, Ratajczak J, Ross G D

机构信息

Stem Cell Biology Program at the James Graham Brown Cancer Center, University of Louisville, Louisville, KY 40202, USA.

出版信息

Leukemia. 2004 Sep;18(9):1482-90. doi: 10.1038/sj.leu.2403446.

Abstract

Mice deficient in complement C3 (C3(-/-)) are hematologically normal under steady-state conditions, and yet displayed a significant delay in hematopoietic recovery from either irradiation or transplantation of wild-type (WT) hematopoietic stem/progenitor cells (HSPC). Transplantation of histocompatible WT Sca-1(+) cells into C3(-/-) mice resulted in a (i) decrease in day 12 CFU-S, (ii) 5-7-day delay in platelet and leukocyte recovery, and (iii) reduced number of BM CFU-GM progenitors at day 16 after transplantation. Nevertheless, HSPC from C3(-/-) mice engrafted normally into irradiated WT mice, suggesting that there was a defect in the hematopoietic environment of C3(-/-) mice. Since C3(-/-) mice cannot activate/cleave C3, the C3 fragments C3a, C3a(des-Arg), and iC3b were examined for a role in HSPC engraftment. Liquid-phase C3a and C3a(des-Arg) increased CXCR4 incorporation into membrane lipid rafts (thus potentiating HSPC responses to SDF-1 gradients), whereas iC3b was deposited onto irradiated BM cells and functioned to tether CR3(CD11b/CD18)(+)HSPC to damaged stroma. The activity of C3a(des-Arg) suggested that C3aR(+)HSPC also expressed the C5L2 (receptor for C3a and C3a(des-Arg)) and this was confirmed. In conclusion, a novel mechanism for HSC engraftment was identified, which involves complement activation and specific C3 fragments that promote conditioning for transplantation and enhance HSPC engraftment.

摘要

补体C3缺陷(C3(-/-))的小鼠在稳态条件下血液学表现正常,但在接受野生型(WT)造血干/祖细胞(HSPC)照射或移植后,造血恢复出现显著延迟。将组织相容性WT Sca-1(+)细胞移植到C3(-/-)小鼠中导致:(i)移植后第12天CFU-S减少;(ii)血小板和白细胞恢复延迟5 - 7天;(iii)移植后第16天骨髓CFU-GM祖细胞数量减少。然而,C3(-/-)小鼠的HSPC能正常植入受照射的WT小鼠体内,这表明C3(-/-)小鼠的造血环境存在缺陷。由于C3(-/-)小鼠无法激活/裂解C3,因此对C3片段C3a、C3a(des-Arg)和iC3b在HSPC植入中的作用进行了研究。液相C3a和C3a(des-Arg)增加了CXCR4掺入膜脂筏(从而增强HSPC对SDF-1梯度的反应),而iC3b沉积在受照射的骨髓细胞上,起到将CR3(CD11b/CD18)(+)HSPC拴系到受损基质上的作用。C3a(des-Arg)的活性表明C3aR(+)HSPC也表达C5L2(C3a和C3a(des-Arg)的受体),这一点得到了证实。总之,确定了一种新的造血干细胞植入机制,该机制涉及补体激活和特定的C3片段,这些片段促进移植预处理并增强HSPC植入。

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