骨蛋白使衰老的脂肪来源干细胞恢复活力并恢复其骨组织再生功能

IF 4.5 3区 医学 Q2 CELL & TISSUE ENGINEERING Stem Cell Reviews and Reports Pub Date : 2024-05-01 Epub Date: 2024-03-12 DOI:10.1007/s12015-024-10707-5
Yiran Zhang, Junni Zhang, Pooria Lesani, Zufu Lu, Hala Zreiqat
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引用次数: 0

摘要

随着年龄的增长,衰老干细胞的比例增加,干细胞的再生功能就会受到损害。因此,对抗干细胞衰老对基于干细胞的老年组织工程至关重要,但目前仍有大量研究尚未进行。骨生成素(OPN)是一种糖基化磷蛋白,是骨组织中关键的细胞外基质分子之一。OPN 可激活各种信号通路并调节细胞活动,包括细胞衰老。然而,OPN在干细胞衰老中的作用仍不为人知。本研究旨在探讨OPN是否能调节人脂肪间充质干细胞(ASCs)的细胞衰老和骨再生功能,并确定其潜在机制。我们首先建立了一个衰老间充质干细胞模型,采用连续传代至第10代(P10),与第4代间充质干细胞相比,衰老细胞的增殖和成骨分化能力降低。与P4 ASCs相比,P10 ASCs的条件培养基对人类成骨细胞(HOBs)的营养作用减弱。表面涂有 OPN 的 P10 ASCs 表型年轻化,成骨分化增强。涂有OPN的P10 ASCs的条件培养基改善了对HOBs的营养作用。OPN能调节衰老ASCs的形态,使其从更圆扁的细胞形态转变为面积更小的拉长形态。这些研究结果表明,OPN在恢复衰老ASCs功能方面的作用,可能是通过一种涉及细胞形态调节的机制。
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Osteopontin Rejuvenates Senescent Adipose-Derived Stem Cells and Restores their Bone Tissue Regenerative Function.

The regenerative function of stem cells is compromised when the proportion of senescent stem cells increases with ageing advance. Therefore, combating stem cell senescence is of great importance for stem cell-based tissue engineering in the elderly, but remains largely unexplored. Osteopontin (OPN), a glycosylated phosphoprotein, is one of the key extracellular matrix molecules in bone tissue. OPN activates various signalling pathways and modulates cellular activities, including cell senescence. However, the role of OPN in stem cell senescence remains largely unknown. This study aims to investigate if OPN modulates cell senescence and bone regenerative function in human adipose-derived mesenchymal stem cells (ASCs), and to determine the underlying mechanisms. We first developed a senescent ASC model using serial passaging until passage 10 (P10), in which senescent cells were characterised by reduced proliferation and osteogenic differentiation capacity compared to P4 ASCs. The conditioned medium from P10 ASCs exhibited a diminished trophic effect on human osteoblasts (HOBs), compared to that from P4 ASCs. P10 ASCs on OPN-coated surface showed rejuvenated phenotype and enhanced osteogenic differentiation. The conditioned medium from P10 ASCs on OPN-coating improved trophic effects on HOBs. OPN regulated the morphology of senescent ASCs, transforming them from a more rounded and flattened cell shape to an elongated shape with a smaller area. These findings demonstrated the effects of OPN in restoring senescent ASCs functions, possibly through a mechanism that involves the modulation of cell morphology, indicating that OPN might hold a great potential for rejuvenating senescent stem cells and could potentially open a new venue for regenerating bone tissue in age-related diseases.

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来源期刊
Stem Cell Reviews and Reports
Stem Cell Reviews and Reports 医学-细胞生物学
CiteScore
9.30
自引率
4.20%
发文量
0
审稿时长
3 months
期刊介绍: The purpose of Stem Cell Reviews and Reports is to cover contemporary and emerging areas in stem cell research and regenerative medicine. The journal will consider for publication: i) solicited or unsolicited reviews of topical areas of stem cell biology that highlight, critique and synthesize recent important findings in the field. ii) full length and short reports presenting original experimental work. iii) translational stem cell studies describing results of clinical trials using stem cells as therapeutics. iv) papers focused on diseases of stem cells. v) hypothesis and commentary articles as opinion-based pieces in which authors can propose a new theory, interpretation of a controversial area in stem cell biology, or a stem cell biology question or paradigm. These articles contain more speculation than reviews, but they should be based on solid rationale. vi) protocols as peer-reviewed procedures that provide step-by-step descriptions, outlined in sufficient detail, so that both experts and novices can apply them to their own research. vii) letters to the editor and correspondence. In order to facilitate this exchange of scientific information and exciting novel ideas, the journal has created five thematic sections, focusing on: i) the role of adult stem cells in tissue regeneration; ii) progress in research on induced pluripotent stem cells, embryonic stem cells and mechanism governing embryogenesis and tissue development; iii) the role of microenvironment and extracellular microvesicles in directing the fate of stem cells; iv) mechanisms of stem cell trafficking, stem cell mobilization and homing with special emphasis on hematopoiesis; v) the role of stem cells in aging processes and cancerogenesis.
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