Campioni D, Lanza F, Moretti S, Ferrari L, Cuneo A
Department of Biomedical Science and Advanced Therapy, Hematology Section, University of Ferrara-St Anna Hospital, Ferrara, Italy.
Cytotherapy. 2008;10(1):69-82. doi: 10.1080/14653240701762364.
Little is known about human mesenchymal stromal cell (hMSC) phenotypic and functional subsets in response to environmental stimuli. The strategy used in this study focused on defining hMSC functional subpopulations based in particular on their Thy-1 (CD90) antigen (Ag) surface expression.
The effect of different in vitro microenvironmental conditions on the isolation and expansion of bone marrow-derived (BM) hMSC from hematologic malignancies (HM) and normal samples (NS) was assayed. hMSC clonogenic and differentiation potential, phenotypic profile and long-term capacity to sustain in vitro hemopoiesis were considered in relation to the different expansion protocols.
The results showed that angiogenic supplements used in combination with low serum content gave rise to the appearance of Thy-1(-) HM-MSC with high proliferative potential, capable of restoring the typical HM stromal impairment. The expression of the CD271 was partially maintained. We further report an enhancement towards the osteogenic and adipogenic differentiation capacity by the Thy-1(-) HM-MSC subset. Despite the angiogenic treatment, the Thy-1(-) MSC stopped short of full endothelial differentiation.
In this paper we provide evidence that in vitro angiogenic stimuli generate HM-MSC lacking CD90 Ag expression. The Thy-1(-) MSC subset is characterized by peculiar functional and phenotypic characteristics, thus supporting the role played by the microenvironment in selecting particular hMSC subsets maintaining normal tissue homeostasis or inducing pathologic processes.
关于人间充质基质细胞(hMSC)在环境刺激下的表型和功能亚群,人们了解甚少。本研究采用的策略尤其侧重于根据其Thy-1(CD90)抗原(Ag)表面表达来定义hMSC功能亚群。
检测了不同体外微环境条件对从血液系统恶性肿瘤(HM)和正常样本(NS)中分离和扩增骨髓来源(BM)hMSC的影响。针对不同的扩增方案,研究了hMSC的克隆形成和分化潜能、表型特征以及支持体外造血的长期能力。
结果表明,与低血清含量联合使用的血管生成补充剂导致出现具有高增殖潜能的Thy-1(-)HM-MSC,能够恢复典型的HM基质损伤。CD271的表达部分得以维持。我们进一步报告,Thy-1(-)HM-MSC亚群的成骨和成脂分化能力增强。尽管进行了血管生成治疗,但Thy-1(-)MSC未能完全分化为内皮细胞。
在本文中,我们提供证据表明体外血管生成刺激会产生缺乏CD90 Ag表达的HM-MSC。Thy-1(-)MSC亚群具有独特的功能和表型特征,从而支持了微环境在选择维持正常组织稳态或诱导病理过程的特定hMSC亚群中所起的作用。