Progress on Physical Field‐Regulated Micro/Nanomotors for Cardiovascular and Cerebrovascular Disease Treatment

医学 渗透(战争) 纳米技术 风险分析(工程) 困境 重症监护医学 材料科学 工程类 运筹学 哲学 认识论
作者
Qing You,Xinyue Shao,Jinping Wang,Xiaoyuan Chen
出处
期刊:Small methods [Wiley]
卷期号:7 (10) 被引量:4
标识
DOI:10.1002/smtd.202300426
摘要

Abstract Cardiovascular and cerebrovascular diseases (CCVDs) are two major vasculature‐related diseases that seriously affect public health worldwide, which can cause serious death and disability. Lack of targeting effect of the traditional CCVD treatment drugs may damage other tissues and organs, thus more specific methods are needed to solve this dilemma. Micro/nanomotors are new materials that can convert external energy into driving force for autonomous movement, which can not only enhance the penetration depth and retention rates, but also increase the contact areas with the lesion sites (such as thrombus and inflammation sites of blood vessels). Physical field‐regulated micro/nanomotors using the physical energy sources with deep tissue penetration and controllable performance, such as magnetic field, light, and ultrasound, etc. are considered as the emerging patient‐friendly and effective therapeutic tools to overcome the limitations of conventional CCVD treatments. Recent efforts have suggested that physical field‐regulated micro/nanomotors on CCVD treatments could simultaneously provide efficient therapeutic effect and intelligent control. In this review, various physical field‐driven micro/nanomotors are mainly introduced and their latest advances for CCVDs are highlighted. Last, the remaining challenges and future perspectives regarding the physical field‐regulated micro/nanomotors for CCVD treatments are discussed and outlined.
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