A versatile platform based on matrix metalloproteinase-sensitive peptides for novel diagnostic and therapeutic strategies in arthritis

IF 18 1区 医学 Q1 ENGINEERING, BIOMEDICAL Bioactive Materials Pub Date : 2025-05-01 Epub Date: 2025-01-18 DOI:10.1016/j.bioactmat.2025.01.011
Mingyang Li , Tao Deng , Quan Chen , Shenghu Jiang , Hang Li , Jiayi Li , Shenglan You , Hui-qi Xie , Bin Shen
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Abstract

Matrix metalloproteinases (MMPs), coupled with other proteinases and glycanases, can degrade proteoglycans, collagens, and other extracellular matrix (ECM) components in inflammatory and non-inflammatory arthritis, making them important pathogenic molecules and ideal disease indicators and pharmaceutical intervention triggers. For MMP responsiveness, MMP-sensitive peptides (MSPs) are among the most easily synthesized and cost-effective substrates, with free terminal amine and/or carboxyl groups extensively employed in multiple designs. We hereby provide a comprehensive review over the mechanisms and advances in MSP applications for the management of arthritis. These applications include early and precise diagnosis of MMP activity via fluorescence probe technologies; acting as nanodrug carriers to enable on-demand drug release triggered by pathological microenvironments; and facilitating cartilage engineering through MMP-mediated degradation, which promotes cell migration, matrix synthesis, and tissue integration. Specifically, the ultra-sensitive MSP diagnostic probes could significantly advance the early diagnosis and detection of osteoarthritis (OA), while MSP-based drug carriers for rheumatoid arthritis (RA) can intelligently release anti-inflammatory drugs effectively during flare-ups, or even before symptoms manifest. The continuous progress in MSP development may acceleratedly lead to novel management regimens for arthropathy in the future.
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基于基质金属蛋白酶敏感肽的多功能平台,用于关节炎的新诊断和治疗策略。
基质金属蛋白酶(Matrix metalloproteinases, MMPs)与其他蛋白酶和糖聚糖酶联用,可降解炎性和非炎性关节炎中的蛋白聚糖、胶原等细胞外基质(extracellular Matrix, ECM)成分,是重要的致病分子,是理想的疾病指标和药物干预触发因素。对于MMP响应性,MMP敏感肽(MSPs)是最容易合成和成本效益最高的底物之一,在多种设计中广泛使用游离末端胺和/或羧基。我们在此提供一个全面的审查机制和进展在MSP应用于关节炎的管理。这些应用包括通过荧光探针技术对MMP活性进行早期和精确诊断;作为纳米药物载体,使病理微环境触发的药物按需释放成为可能;并通过mmp介导的降解促进软骨工程,促进细胞迁移、基质合成和组织整合。具体来说,超灵敏的MSP诊断探针可以显著促进骨关节炎(OA)的早期诊断和检测,而基于MSP的类风湿性关节炎(RA)药物载体可以在发作期间甚至在症状出现之前有效地智能释放抗炎药物。MSP发展的持续进展可能会在未来加速导致新的关节病治疗方案。
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来源期刊
Bioactive Materials
Bioactive Materials Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
28.00
自引率
6.30%
发文量
436
审稿时长
20 days
期刊介绍: Bioactive Materials is a peer-reviewed research publication that focuses on advancements in bioactive materials. The journal accepts research papers, reviews, and rapid communications in the field of next-generation biomaterials that interact with cells, tissues, and organs in various living organisms. The primary goal of Bioactive Materials is to promote the science and engineering of biomaterials that exhibit adaptiveness to the biological environment. These materials are specifically designed to stimulate or direct appropriate cell and tissue responses or regulate interactions with microorganisms. The journal covers a wide range of bioactive materials, including those that are engineered or designed in terms of their physical form (e.g. particulate, fiber), topology (e.g. porosity, surface roughness), or dimensions (ranging from macro to nano-scales). Contributions are sought from the following categories of bioactive materials: Bioactive metals and alloys Bioactive inorganics: ceramics, glasses, and carbon-based materials Bioactive polymers and gels Bioactive materials derived from natural sources Bioactive composites These materials find applications in human and veterinary medicine, such as implants, tissue engineering scaffolds, cell/drug/gene carriers, as well as imaging and sensing devices.
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