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功能化水凝胶作为智能基因传递系统治疗肌肉骨骼疾病。

Functionalized hydrogels as smart gene delivery systems to treat musculoskeletal disorders.

机构信息

Center of Experimental Orthopaedics, Saarland University Medical Center, Kirrbergerstr. Bldg 37, 66421 Homburg, Saar, Germany.

Biotechnology Centre, Silesian University of Technology, Krzywoustego 8, 44-100 Gliwice, Poland; Department of Polymer Engineering, Hakim Sabzevari University, Sabzevar 9617976487, Iran.

出版信息

Adv Colloid Interface Sci. 2024 Sep;331:103232. doi: 10.1016/j.cis.2024.103232. Epub 2024 Jun 14.

Abstract

Despite critical advances in regenerative medicine, the generation of definitive, reliable treatments for musculoskeletal diseases remains challenging. Gene therapy based on the delivery of therapeutic genetic sequences has strong value to offer effective, durable options to decisively manage such disorders. Furthermore, scaffold-mediated gene therapy provides powerful alternatives to overcome hurdles associated with classical gene therapy, allowing for the spatiotemporal delivery of candidate genes to sites of injury. Among the many scaffolds for musculoskeletal research, hydrogels raised increasing attention in addition to other potent systems (solid, hybrid scaffolds) due to their versatility and competence as drug and cell carriers in tissue engineering and wound dressing. Attractive functionalities of hydrogels for musculoskeletal therapy include their injectability, stimuli-responsiveness, self-healing, and nanocomposition that may further allow to upgrade of them as "intelligently" efficient and mechanically strong platforms, rather than as just inert vehicles. Such functionalized hydrogels may also be tuned to successfully transfer therapeutic genes in a minimally invasive manner in order to protect their cargos and allow for their long-term effects. In light of such features, this review focuses on functionalized hydrogels and demonstrates their competence for the treatment of musculoskeletal disorders using gene therapy procedures, from gene therapy principles to hydrogel functionalization methods and applications of hydrogel-mediated gene therapy for musculoskeletal disorders, while remaining challenges are being discussed in the perspective of translation in patients. STATEMENT OF SIGNIFICANCE: Despite advances in regenerative medicine, the generation of definitive, reliable treatments for musculoskeletal diseases remains challenging. Gene therapy has strong value in offering effective, durable options to decisively manage such disorders. Scaffold-mediated gene therapy provides powerful alternatives to overcome hurdles associated with classical gene therapy. Among many scaffolds for musculoskeletal research, hydrogels raised increasing attention. Functionalities including injectability, stimuli-responsiveness, and self-healing, tune them as "intelligently" efficient and mechanically strong platforms, rather than as just inert vehicles. This review introduces functionalized hydrogels for musculoskeletal disorder treatment using gene therapy procedures, from gene therapy principles to functionalized hydrogels and applications of hydrogel-mediated gene therapy for musculoskeletal disorders, while remaining challenges are discussed from the perspective of translation in patients.

摘要

尽管再生医学取得了重大进展,但为肌肉骨骼疾病生成明确、可靠的治疗方法仍然具有挑战性。基于传递治疗性遗传序列的基因治疗具有很强的价值,可以为有效、持久的选择提供决定性的管理此类疾病。此外,支架介导的基因治疗提供了强大的替代方案,以克服与经典基因治疗相关的障碍,允许候选基因在损伤部位的时空传递。在肌肉骨骼研究的众多支架中,水凝胶除了其他有效系统(固体、混合支架)外,由于其作为组织工程和伤口敷料中药物和细胞载体的多功能性和能力,引起了越来越多的关注。水凝胶在肌肉骨骼治疗中的有吸引力的功能包括其可注射性、刺激响应性、自修复性和纳米组成,这可能进一步允许它们升级为“智能”高效和机械强度高的平台,而不仅仅是作为惰性载体。这种功能化水凝胶也可以被调整为以微创的方式成功传递治疗性基因,以保护它们的货物并允许它们的长期效果。有鉴于此,本综述重点介绍了功能化水凝胶,并展示了它们在使用基因治疗程序治疗肌肉骨骼疾病方面的能力,从基因治疗原则到水凝胶功能化方法以及水凝胶介导的基因治疗在肌肉骨骼疾病中的应用,同时讨论了在患者转化方面的遗留挑战。

意义声明

尽管再生医学取得了进展,但为肌肉骨骼疾病生成明确、可靠的治疗方法仍然具有挑战性。基因治疗在为有效、持久的选择提供决定性的管理此类疾病方面具有很强的价值。支架介导的基因治疗为克服与经典基因治疗相关的障碍提供了强大的替代方案。在许多用于肌肉骨骼研究的支架中,水凝胶引起了越来越多的关注。包括可注射性、刺激响应性和自修复性在内的功能,将它们调谐为“智能”高效和机械强度高的平台,而不仅仅是作为惰性载体。本综述介绍了使用基因治疗程序治疗肌肉骨骼疾病的功能化水凝胶,从基因治疗原则到功能化水凝胶以及水凝胶介导的基因治疗在肌肉骨骼疾病中的应用,同时从患者转化的角度讨论了遗留的挑战。

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