组织工程与膝关节软骨修复再生医学的未来发展方向:综合综述。

IF 1.5 4区 医学 Q2 MEDICINE, GENERAL & INTERNAL Croatian Medical Journal Pub Date : 2024-06-13
Dragan Primorac, Vilim Molnar, Dimitrios Tsoukas, Ilona Uzieliene, Carlo Tremolada, Petar Brlek, Emil Klarić, Dinko Vidović, Marija Zekušić, Jolita Pachaleva, Eiva Bernotiene, Adrian Wilson, Ali Mobasheri
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引用次数: 0

摘要

这篇综述评估了膝关节软骨修复再生医学的现状和未来发展方向,尤其关注组织工程策略。在此背景下,基于支架的方法已成为软骨再生的有前途的解决方案。合成支架虽然具有优异的机械性能,但往往缺乏有效组织整合所需的生物线索。天然支架虽然具有生物相容性和生物可降解性,但经常存在机械强度不足的问题。混合支架结合了合成材料和天然材料的元素,提供了一种平衡的方法,既增强了机械支持,又提高了生物功能。脱细胞细胞外基质支架的进步已显示出促进细胞浸润和与原生组织整合的潜力。此外,生物打印技术还能制造出复杂的生物活性支架,这些支架能近似地模拟原生软骨的带状组织,为细胞生长和分化提供最佳环境。本综述还探讨了基因治疗和基因编辑技术(包括 CRISPR-Cas9)的潜力,这些技术通过靶向参与组织再生的特定基因通路来加强软骨修复。将这些先进疗法与组织工程方法相结合,有望开发出个性化、持久的膝关节软骨损伤和骨关节炎治疗方法。总之,本综述强调了继续开展多学科合作的重要性,以推动这些创新疗法从实验室走向临床,并改善膝关节软骨损伤患者的治疗效果。
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Tissue engineering and future directions in regenerative medicine for knee cartilage repair: a comprehensive review.

This review evaluates the current landscape and future directions of regenerative medicine for knee cartilage repair, with a particular focus on tissue engineering strategies. In this context, scaffold-based approaches have emerged as promising solutions for cartilage regeneration. Synthetic scaffolds, while offering superior mechanical properties, often lack the biological cues necessary for effective tissue integration. Natural scaffolds, though biocompatible and biodegradable, frequently suffer from inadequate mechanical strength. Hybrid scaffolds, combining elements of both synthetic and natural materials, present a balanced approach, enhancing both mechanical support and biological functionality. Advances in decellularized extracellular matrix scaffolds have shown potential in promoting cell infiltration and integration with native tissues. Additionally, bioprinting technologies have enabled the creation of complex, bioactive scaffolds that closely mimic the zonal organization of native cartilage, providing an optimal environment for cell growth and differentiation. The review also explores the potential of gene therapy and gene editing techniques, including CRISPR-Cas9, to enhance cartilage repair by targeting specific genetic pathways involved in tissue regeneration. The integration of these advanced therapies with tissue engineering approaches holds promise for developing personalized and durable treatments for knee cartilage injuries and osteoarthritis. In conclusion, this review underscores the importance of continued multidisciplinary collaboration to advance these innovative therapies from bench to bedside and improve outcomes for patients with knee cartilage damage.

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来源期刊
Croatian Medical Journal
Croatian Medical Journal 医学-医学:内科
CiteScore
3.00
自引率
5.30%
发文量
105
审稿时长
6-12 weeks
期刊介绍: Croatian Medical Journal (CMJ) is an international peer reviewed journal open to scientists from all fields of biomedicine and health related research. Although CMJ welcomes all contributions that increase and expand on medical knowledge, the two areas are of the special interest: topics globally relevant for biomedicine and health and medicine in developing and emerging countries.
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