胚胎干细胞源性间充质干细胞治疗骨再生细胞的动物实验研究骨缺损和骨髓炎。

IF 4.4 4区 医学 Q2 CELL & TISSUE ENGINEERING Tissue engineering and regenerative medicine Pub Date : 2025-01-01 Epub Date: 2024-11-29 DOI:10.1007/s13770-024-00683-9
Jin-Ho Park, Han-Sol Bae, Ingeun Kim, Jiwoon Jung, Yoonho Roh, Dongbin Lee, Tae Sung Hwang, Hee-Chun Lee, June-Ho Byun
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引用次数: 0

摘要

背景:骨缺损通常是由于意外事故、疾病或衰老而遇到的,在我们老龄化的社会中,对有效骨再生的需求,特别是牙种植体的需求正在增加。间充质干细胞(MSCs)是再生治疗的有希望的候选者;然而,获得足够数量的这些细胞用于临床应用仍然具有挑战性。DW-MSCs来源于胚胎干细胞,由大雄制药开发,即使在广泛培养后也表现出强大的增殖能力。方法:探讨DW-MSCs在多种骨缺损动物模型中的治疗潜力。DW-MSCs扩增超过13代,用于大鼠和犬骨缺损和骨髓炎模型的体内应用。研究重点是DW-MSCs的体内成骨分化、基于纤维蛋白的骨再生系统的建立、动物模型治疗后骨修复的评估以及与市售骨移植的比较。结果:结果显示,DW-MSCs相对于其他材料具有更强的成骨分化能力,纤维化过程通过三维培养效应不仅保存了DW-MSCs,而且增强了其增殖和分化能力。在这两种骨缺损模型中,DW-MSCs促进了显著的骨再生,减少了骨髓炎的炎症反应,并实现了有效的骨愈合。DW-MSCs的治疗结果与商业骨移植物相当,但在骨组织重构方面表现出质量上的优势。结论:我们的研究结果表明,DW-MSCs由于其高效和抗炎的特性,为骨再生治疗提供了一种很有前途的方法。
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Efficacy of Bone Regeneration Cell Therapy Using Mesenchymal Stem Cells Originating from Embryonic Stem Cells in Animal Models; Bone Defects and Osteomyelitis.

Background: Bone defects are commonly encountered due to accidents, diseases, or aging, and the demand for effective bone regeneration, particularly for dental implants, is increasing in our aging society. Mesenchymal stem cells (MSCs) are promising candidates for regenerative therapies; however, obtaining sufficient quantities of these cells for clinical applications remains challenging. DW-MSCs, derived from embryonic stem cells and developed by Daewoong Pharmaceutical, exhibit a robust proliferative capacity even after extensive culture.

Methods: This study explores the therapeutic potential of DW-MSCs in various animal models of bone defects. DW-MSCs were expanded for over 13 passages for in vivo use in rat and canine models of bone defects and osteomyelitis. The research focused on the in vivo osteogenic differentiation of DW-MSCs, the establishment of a fibrin-based system for bone regeneration, the assessment of bone repair following treatment in animal models, and comparisons with commercially available bone grafts.

Results: Results showed that DW-MSCs exhibited superior osteogenic differentiation compared to other materials, and the fibrinization process not only preserved but enhanced their proliferation and differentiation capabilities through a 3D culture effect. In both bone defect models, DW-MSCs facilitated significant bone regeneration, reduced inflammatory responses in osteomyelitis, and achieved effective bone healing. The therapeutic outcomes of DW-MSCs were comparable to those of commercial bone grafts but demonstrated qualitatively superior bone tissue restructuring.

Conclusion: Our findings suggest that DW-MSCs offer a promising approach for bone regeneration therapies due to their high efficacy and anti-inflammatory properties.

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来源期刊
Tissue engineering and regenerative medicine
Tissue engineering and regenerative medicine CELL & TISSUE ENGINEERING-ENGINEERING, BIOMEDICAL
CiteScore
6.80
自引率
5.60%
发文量
83
审稿时长
6-12 weeks
期刊介绍: Tissue Engineering and Regenerative Medicine (Tissue Eng Regen Med, TERM), the official journal of the Korean Tissue Engineering and Regenerative Medicine Society, is a publication dedicated to providing research- based solutions to issues related to human diseases. This journal publishes articles that report substantial information and original findings on tissue engineering, medical biomaterials, cells therapy, stem cell biology and regenerative medicine.
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