Developing an Optimal Biofunctional Scaffold for Hematopoietic Stem Cell Quiescent Maintenance and Expansion

He Dong, Sisi Qin, M. Rafailovich, Yupo Ma
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引用次数: 2

Abstract

Hematopoietic stem cells (HSCs), characterized by their CD34 glycoprotein expression, can be extensively exploited in a variety of clinical applications to treat bone-marrow related disorders and cancers, which affect hundreds of thousands worldwide. HSCs are known to efficiently self-renew and maintain their quiescent state in their in vivo microenvironment, but rapidly lose their multipotency in vitro due to quick onsets of differentiation. Shortages of available donor cells have led to scientific interest in developing biofunctional scaffolds – such as cross-linked polymer hydrogels – that mimic the natural stem cell niche. Here we show that a firm, gelatin-based hydrogel cross-linked by microbial transglutaminase (mTG) (in a ratio of 1:25 mTG to gelatin) is ideal for quiescent self-renewal, and that the purine derivative, Stemregenin 1 (SR1), aids in directing cell migration, proliferation, and stemness. The 1:25 ratio with exposure to SR1 yielded a promisingly high stemness level of 94.53%. Our results demonstrate the previously undocumented effectiveness of gelatin hydrogels as biomimetic scaffolds suitable for HSC expansion. Furthermore, our findings and the culture system we have developed are expected to facilitate bone marrow disease treatment by providing large quantities of quiescent HSCs for medical applications and potentially diminishing the high demand for marrow donors.
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用于造血干细胞静态维持和扩增的最佳生物功能支架的研制
造血干细胞(hsc)以其CD34糖蛋白表达为特征,可广泛用于各种临床应用,治疗骨髓相关疾病和癌症,影响全球数十万人。已知造血干细胞在体内微环境中能够有效地自我更新并维持其静止状态,但在体外由于分化的快速启动而迅速失去其多能性。可获得的供体细胞的短缺导致了科学家对开发生物功能支架的兴趣——比如交联聚合物水凝胶——模仿天然干细胞生态位。在这里,我们展示了一种由微生物转谷氨酰胺酶(mTG)交联的坚固的明胶基水凝胶(mTG与明胶的比例为1:25)是静态自我更新的理想选择,而嘌呤衍生物Stemregenin 1 (SR1)有助于指导细胞迁移、增殖和干细胞形成。以1:25的比例处理SR1,茎干水平有望达到94.53%。我们的研究结果证明了明胶水凝胶作为适合于造血干细胞扩增的仿生支架的有效性。此外,我们的发现和我们开发的培养系统有望通过为医学应用提供大量静止hsc来促进骨髓疾病的治疗,并潜在地减少对骨髓供体的高需求。
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