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用于按需分子/细胞递药和中枢神经系统组织再生的生物活性可注射水凝胶。

Bioactive injectable hydrogels for on demand molecule/cell delivery and for tissue regeneration in the central nervous system.

机构信息

Institute of Science and Technology for Ceramics, National Research Council (ISTEC-CNR), Faenza Ravenna, Italy.

Tissue Engineering Laboratory, Department of Biotechnology, PSG Institute of Advanced Studies, Coimbatore, Tamil Nadu, India.

出版信息

Acta Biomater. 2022 Mar 1;140:88-101. doi: 10.1016/j.actbio.2021.11.038. Epub 2021 Nov 28.

Abstract

Currently there are no potential curative therapies that can improve the central nervous system (CNS) regeneration after traumatic injuries or diseases. Indeed, the regeneration of CNS is greatly impaired by limited drug penetration across the blood brain barrier (BBB), poor drug targeting, deficient progenitor neural cells and limited proliferation of mature neural cells. To overcome these limitations, bioengineered injectable hydrogels in combination with drug and cell therapy have been proposed to mimic the complexity of the CNS microenvironment and architecture. Additionally, to enhance relevant CNS regeneration, proper biophysical and biochemical cues are needed. Recently, great efforts have been devoted to tailor stimuli-responsive hydrogels as novel carrier systems which are able to guide neural tissue regeneration. This review provides an extensive overview on the most promising injectable hydrogels for neural tissue engineering. A special emphasis is made to highlight the ability of these hydrogels to deliver bioactive compounds/cells upon the exposure to internal and external stimuli. Bioactive injectable hydrogels have a broad application in central nervous system's (CNS) regeneration. This review gives an overview of the latest pioneering approaches in CNS recovery using stimuli-responsive hydrogels for several neurodegenerative disorders. STATEMENT OF SIGNIFICANCE: This review summarizes the latest innovations on bioactive injectable hydrogels, focusing on tailoring internal/external stimuli-responsive hydrogels for the new injectable systems design, able to guide neural tissue response. The purpose is to highlight the advantages and the limitations of thermo-responsive, photo responsive, magnetic responsive, electric responsive, ultrasound responsive and enzymes-triggered injectable hydrogels in developing customizable neurotherapies. We believe that this comprehensive review will help in identifying the strengths and gaps in the existing literature and to further support the use of injectable hydrogels in stimulating CNS regeneration.

摘要

目前,没有潜在的治疗方法可以改善创伤或疾病后中枢神经系统 (CNS) 的再生。事实上,CNS 的再生受到血脑屏障 (BBB) 药物通透性有限、药物靶向性差、祖细胞神经细胞不足和成熟神经细胞增殖有限的极大限制。为了克服这些限制,已经提出了生物工程可注射水凝胶与药物和细胞治疗相结合,以模拟 CNS 微环境和结构的复杂性。此外,为了增强相关的 CNS 再生,需要适当的生物物理和生化线索。最近,人们致力于设计对刺激有响应的水凝胶作为能够指导神经组织再生的新型载体系统。这篇综述广泛概述了最有前途的用于神经组织工程的可注射水凝胶。特别强调了这些水凝胶在暴露于内部和外部刺激时能够输送生物活性化合物/细胞的能力。生物活性可注射水凝胶在中枢神经系统 (CNS) 再生中有广泛的应用。本综述概述了使用对刺激有响应的水凝胶治疗几种神经退行性疾病的 CNS 恢复的最新开创性方法。意义陈述:本综述总结了生物活性可注射水凝胶的最新创新,重点是针对内部/外部刺激响应水凝胶进行定制设计,以引导神经组织反应。目的是突出热响应、光响应、磁响应、电响应、超声响应和酶触发可注射水凝胶在开发可定制神经疗法方面的优势和局限性。我们相信,这篇全面的综述将有助于确定现有文献中的优势和差距,并进一步支持使用可注射水凝胶来刺激 CNS 再生。

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