Bioactive peptides and proteins for tissue repair: microenvironment modulation, rational delivery, and clinical potential.

IF 22.9 2区 医学 Q1 MEDICINE, GENERAL & INTERNAL Military Medical Research Pub Date : 2024-12-05 DOI:10.1186/s40779-024-00576-x
Zhuo-Wen Hao, Zhe-Yuan Zhang, Ze-Pu Wang, Ying Wang, Jia-Yao Chen, Tian-Hong Chen, Guang Shi, Han-Ke Li, Jun-Wu Wang, Min-Chao Dong, Li Hong, Jing-Feng Li
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Abstract

Bioactive peptides and proteins (BAPPs) are promising therapeutic agents for tissue repair with considerable advantages, including multifunctionality, specificity, biocompatibility, and biodegradability. However, the high complexity of tissue microenvironments and their inherent deficiencies such as short half-live and susceptibility to enzymatic degradation, adversely affect their therapeutic efficacy and clinical applications. Investigating the fundamental mechanisms by which BAPPs modulate the microenvironment and developing rational delivery strategies are essential for optimizing their administration in distinct tissue repairs and facilitating clinical translation. This review initially focuses on the mechanisms through which BAPPs influence the microenvironment for tissue repair via reactive oxygen species, blood and lymphatic vessels, immune cells, and repair cells. Then, a variety of delivery platforms, including scaffolds and hydrogels, electrospun fibers, surface coatings, assisted particles, nanotubes, two-dimensional nanomaterials, and nanoparticles engineered cells, are summarized to incorporate BAPPs for effective tissue repair, modification strategies aimed at enhancing loading efficiencies and release kinetics are also reviewed. Additionally, the delivery of BAPPs can be precisely regulated by endogenous stimuli (glucose, reactive oxygen species, enzymes, pH) or exogenous stimuli (ultrasound, heat, light, magnetic field, and electric field) to achieve on-demand release tailored for specific tissue repair needs. Furthermore, this review focuses on the clinical potential of BAPPs in facilitating tissue repair across various types, including bone, cartilage, intervertebral discs, muscle, tendons, periodontal tissues, skin, myocardium, nervous system (encompassing brain, spinal cord, and peripheral nerve), endometrium, as well as ear and ocular tissue. Finally, current challenges and prospects are discussed.

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用于组织修复的生物活性肽和蛋白:微环境调节、合理递送和临床潜力。
生物活性肽和蛋白(BAPPs)具有多功能性、特异性、生物相容性和生物降解性等优点,是一种很有前景的组织修复治疗药物。然而,组织微环境的高度复杂性及其固有的缺陷,如半衰期短和对酶降解的易感性,对其治疗效果和临床应用产生了不利影响。研究BAPPs调节微环境的基本机制和制定合理的递送策略对于优化其在不同组织修复中的给药和促进临床转化至关重要。本文首先综述了BAPPs通过活性氧、血液和淋巴管、免疫细胞和修复细胞影响组织修复微环境的机制。然后,总结了各种递送平台,包括支架和水凝胶,电纺纤维,表面涂层,辅助颗粒,纳米管,二维纳米材料和纳米颗粒工程细胞,以结合BAPPs进行有效的组织修复,旨在提高加载效率和释放动力学的修饰策略也进行了综述。此外,BAPPs的递送可以通过内源性刺激(葡萄糖、活性氧、酶、pH)或外源性刺激(超声、热、光、磁场和电场)精确调节,以实现针对特定组织修复需求的按需释放。此外,本文将重点介绍BAPPs在促进各种类型组织修复方面的临床潜力,包括骨、软骨、椎间盘、肌肉、肌腱、牙周组织、皮肤、心肌、神经系统(包括脑、脊髓和周围神经)、子宫内膜以及耳和眼组织。最后,讨论了当前面临的挑战和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Military Medical Research
Military Medical Research Medicine-General Medicine
CiteScore
38.40
自引率
2.80%
发文量
485
审稿时长
8 weeks
期刊介绍: Military Medical Research is an open-access, peer-reviewed journal that aims to share the most up-to-date evidence and innovative discoveries in a wide range of fields, including basic and clinical sciences, translational research, precision medicine, emerging interdisciplinary subjects, and advanced technologies. Our primary focus is on modern military medicine; however, we also encourage submissions from other related areas. This includes, but is not limited to, basic medical research with the potential for translation into practice, as well as clinical research that could impact medical care both in times of warfare and during peacetime military operations.
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