促进糖尿病血管化骨再生的先进生物反应性给药系统。

IF 5.5 2区 医学 Q2 MATERIALS SCIENCE, BIOMATERIALS
Xiaojun Zhou, Shuo Chen, Andrij Pich, Chuanglong He
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引用次数: 0

摘要

糖尿病(DM)患者骨缺损的治疗仍然是一个重大挑战,因为糖尿病微环境严重阻碍骨再生。糖尿病微环境中的许多异常因素,包括高血糖、氧化应激升高、炎症增加、骨免疫失衡和血管系统受损,都会导致骨组织受损、延迟甚至不愈合的发生率很高。刺激响应生物材料能够响应内源性生化信号,通过微环境调节和增强成骨能力的结合,已成为治疗糖尿病骨缺损的有效治疗系统。继自然骨愈合过程之后,通过先进的生物反应性药物输送系统耦合血管生成和成骨已被证明是促进糖尿病骨修复的重要途径。在本文中,我们系统地总结了DM诱导的骨愈合受损的机制和治疗策略,概述了药物输送系统的生物反应设计,并重点介绍了促进骨再生的血管化策略。因此,我们随后概述了开发生物反应性药物递送系统的最新进展,该系统通过重塑微环境和调节多种再生线索来促进糖尿病血管化骨再生。此外,我们讨论了具有独特功能的适应性药物输送系统的发展,以指导未来与dm相关的骨再生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced Bioresponsive Drug Delivery Systems for Promoting Diabetic Vascularized Bone Regeneration.

The treatment of bone defects in diabetes mellitus (DM) patients remains a major challenge since the diabetic microenvironments significantly impede bone regeneration. Many abnormal factors including hyperglycemia, elevated oxidative stress, increased inflammation, imbalanced osteoimmune, and impaired vascular system in the diabetic microenvironment will result in a high rate of impaired, delayed, or even nonhealing events of bone tissue. Stimuli-responsive biomaterials that can respond to endogenous biochemical signals have emerged as effective therapeutic systems to treat diabetic bone defects via the combination of microenvironmental regulation and enhanced osteogenic capacity. Following the natural bone healing processes, coupling of angiogenesis and osteogenesis by advanced bioresponsive drug delivery systems has proved to be of significant approach for promoting bone repair in DM. In this Review, we have systematically summarized the mechanisms and therapeutic strategies of DM-induced impaired bone healing, outlined the bioresponsive design for drug delivery systems, and highlighted the vascularization strategies for promoting bone regeneration. Accordingly, we then overview the recent advances in developing bioresponsive drug delivery systems to facilitate diabetic vascularized bone regeneration by remodeling the microenvironment and modulating multiple regenerative cues. Furthermore, we discuss the development of adaptable drug delivery systems with unique features for guiding DM-associated bone regeneration in the future.

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来源期刊
ACS Biomaterials Science & Engineering
ACS Biomaterials Science & Engineering Materials Science-Biomaterials
CiteScore
10.30
自引率
3.40%
发文量
413
期刊介绍: ACS Biomaterials Science & Engineering is the leading journal in the field of biomaterials, serving as an international forum for publishing cutting-edge research and innovative ideas on a broad range of topics: Applications and Health – implantable tissues and devices, prosthesis, health risks, toxicology Bio-interactions and Bio-compatibility – material-biology interactions, chemical/morphological/structural communication, mechanobiology, signaling and biological responses, immuno-engineering, calcification, coatings, corrosion and degradation of biomaterials and devices, biophysical regulation of cell functions Characterization, Synthesis, and Modification – new biomaterials, bioinspired and biomimetic approaches to biomaterials, exploiting structural hierarchy and architectural control, combinatorial strategies for biomaterials discovery, genetic biomaterials design, synthetic biology, new composite systems, bionics, polymer synthesis Controlled Release and Delivery Systems – biomaterial-based drug and gene delivery, bio-responsive delivery of regulatory molecules, pharmaceutical engineering Healthcare Advances – clinical translation, regulatory issues, patient safety, emerging trends Imaging and Diagnostics – imaging agents and probes, theranostics, biosensors, monitoring Manufacturing and Technology – 3D printing, inks, organ-on-a-chip, bioreactor/perfusion systems, microdevices, BioMEMS, optics and electronics interfaces with biomaterials, systems integration Modeling and Informatics Tools – scaling methods to guide biomaterial design, predictive algorithms for structure-function, biomechanics, integrating bioinformatics with biomaterials discovery, metabolomics in the context of biomaterials Tissue Engineering and Regenerative Medicine – basic and applied studies, cell therapies, scaffolds, vascularization, bioartificial organs, transplantation and functionality, cellular agriculture
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