Chondrogenic Potential of Umbilical Cord-Derived Mesenchymal Stromal Cells: Insights and Innovations

IF 1.1 4区 医学 Q3 ORTHOPEDICS Indian Journal of Orthopaedics Pub Date : 2024-08-24 DOI:10.1007/s43465-024-01239-8
Naveen Jeyaraman, Madhan Jeyaraman, Sathish Muthu, Sangeetha Balaji, Swaminathan Ramasubramanian, Bishnu Prasad Patro
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Abstract

Background

The advent of tissue engineering and regenerative medicine has introduced innovative approaches to treating degenerative and traumatic injuries, particularly in cartilage, a tissue with limited self-repair capabilities. Among the various stem cell sources, umbilical cord-derived mesenchymal stromal cells (UC-MSCs) have garnered significant interest due to their non-invasive collection, minimal ethical concerns, and robust regenerative potential, particularly in cartilage regeneration.

Methods

A comprehensive literature review was conducted using multiple databases, including PubMed, Scopus, Web of Science, and Google Scholar. Search terms focused on "umbilical cordderived mesenchymal stromal cells," "chondrogenesis," "cartilage regeneration," and related topics. Studies published in the past two decades were included, with selection criteria emphasizing methodological rigor and relevance to UC-MSC chondrogenesis. The review synthesizes findings from various sources to provide a thorough analysis of the potential of UC-MSCs in cartilage tissue engineering.

Results

UC-MSCs exhibit significant chondrogenic potential, supported by their ability to differentiate into chondrocytes under specific conditions. Recent advancements include the development of biomaterial scaffolds and the application of genetic engineering techniques, such as CRISPR/Cas9, to enhance chondrogenic differentiation. Despite these advancements, challenges remain in standardizing cell isolation techniques, scaling up production for clinical use, and ensuring the long-term functionality of regenerated cartilage.

Conclusion

UC-MSCs offer a promising solution for cartilage regeneration in the field of regenerative medicine. Ongoing research is focused on overcoming current challenges through the use of advanced technologies, including bioreactors and gene editing. Collaborative efforts among researchers, clinicians, and bioengineers are essential to translating the potential of UC-MSCs into effective clinical therapies, which could significantly advance tissue regeneration and therapeutic innovation.

Graphical Abstract

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脐带间充质基质细胞的软骨生成潜能:见解与创新
背景组织工程和再生医学的出现,为治疗退行性和创伤性损伤,尤其是自我修复能力有限的软骨组织,带来了创新方法。在各种干细胞来源中,脐带间充质基质细胞(UC-MSCs)因其非侵入性采集、极少的伦理问题和强大的再生潜力(尤其是在软骨再生方面)而备受关注。搜索关键词主要集中在 "脐带间充质基质细胞"、"软骨生成"、"软骨再生 "及相关主题。过去二十年中发表的研究被纳入其中,选择标准强调方法的严谨性和与 UC-间充质干细胞软骨成因的相关性。综述综合了各种来源的研究结果,对 UC-间充质干细胞在软骨组织工程中的潜力进行了深入分析。结果 UC-间充质干细胞表现出显著的软骨生成潜力,这得益于它们在特定条件下分化成软骨细胞的能力。最近的进展包括生物材料支架的开发和基因工程技术(如 CRISPR/Cas9)的应用,以增强软骨源分化。尽管取得了这些进展,但在细胞分离技术标准化、扩大临床应用生产规模以及确保再生软骨的长期功能性等方面仍存在挑战。目前的研究重点是通过使用生物反应器和基因编辑等先进技术来克服当前的挑战。研究人员、临床医生和生物工程师之间的合作对于将 UC 间充质干细胞的潜力转化为有效的临床疗法至关重要,这将极大地推动组织再生和治疗创新。
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
185
审稿时长
9 months
期刊介绍: IJO welcomes articles that contribute to Orthopaedic knowledge from India and overseas. We publish articles dealing with clinical orthopaedics and basic research in orthopaedic surgery. Articles are accepted only for exclusive publication in the Indian Journal of Orthopaedics. Previously published articles, articles which are in peer-reviewed electronic publications in other journals, are not accepted by the Journal. Published articles and illustrations become the property of the Journal. The copyright remains with the journal. Studies must be carried out in accordance with World Medical Association Declaration of Helsinki.
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