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可生物降解的压电聚合物:材料与应用的最新进展。

Biodegradable Piezoelectric Polymers: Recent Advancements in Materials and Applications.

机构信息

Department of Biomedical Sciences and Engineering, Koç University, Rumelifeneri Yolu, Sarıyer, Istanbul, 34450, Turkey.

Department of Mechanical Engineering, Koç University, Rumelifeneri Yolu, Sarıyer, Istanbul, 34450, Turkey.

出版信息

Adv Healthc Mater. 2023 Sep;12(23):e2300318. doi: 10.1002/adhm.202300318. Epub 2023 Jun 9.

Abstract

Recent materials, microfabrication, and biotechnology improvements have introduced numerous exciting bioelectronic devices based on piezoelectric materials. There is an intriguing evolution from conventional unrecyclable materials to biodegradable, green, and biocompatible functional materials. As a fundamental electromechanical coupling material in numerous applications, novel piezoelectric materials with a feature of degradability and desired electrical and mechanical properties are being developed for future wearable and implantable bioelectronics. These bioelectronics can be easily integrated with biological systems for applications, including sensing physiological signals, diagnosing medical problems, opening the blood-brain barrier, and stimulating healing or tissue growth. Therefore, the generation of piezoelectricity from natural and synthetic bioresorbable polymers has drawn great attention in the research field. Herein, the significant and recent advancements in biodegradable piezoelectric materials, including natural and synthetic polymers, their principles, advanced applications, and challenges for medical uses, are reviewed thoroughly. The degradation methods of these piezoelectric materials through in vitro and in vivo studies are also investigated. These improvements in biodegradable piezoelectric materials and microsystems could enable new applications in the biomedical field. In the end, potential research opportunities regarding the practical applications are pointed out that might be significant for new materials research.

摘要

近年来,材料、微制造和生物技术的进步带来了许多基于压电材料的令人兴奋的生物电子设备。从传统的不可回收材料向可生物降解、绿色和生物相容的功能材料的有趣演变正在进行中。作为许多应用中的基本机电耦合材料,新型具有可降解性和所需电、机械性能的压电材料正在为未来的可穿戴和可植入生物电子学开发。这些生物电子学可以与生物系统轻松集成,用于包括感测生理信号、诊断医疗问题、打开血脑屏障以及刺激愈合或组织生长等应用。因此,从天然和合成生物可吸收聚合物中产生压电性在研究领域引起了极大的关注。本文全面综述了可生物降解压电材料(包括天然和合成聚合物)的重要和最新进展,包括其原理、先进应用以及在医疗用途方面的挑战。还研究了这些压电材料通过体外和体内研究的降解方法。这些可生物降解压电材料和微系统的改进可以为生物医学领域的新应用开辟道路。最后,指出了关于实际应用的潜在研究机会,这对于新材料研究可能具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8c6/11469082/97b04efe984e/ADHM-12-2300318-g015.jpg

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