Computational Biomaterials: Computational Simulations for Biomedicine

生物医学 纳米技术 计算机科学 计算模型 材料科学 生化工程 工程类 人工智能 生物信息学 生物
作者
Xinyue Dai,Yu Chen
出处
期刊:Advanced Materials [Wiley]
卷期号:35 (7) 被引量:30
标识
DOI:10.1002/adma.202204798
摘要

Abstract With the flourishing development of material simulation methods (quantum chemistry methods, molecular dynamics, Monte Carlo, phase field, etc.), extensive adoption of computing technologies (high‐throughput, artificial intelligence, machine learning, etc.), and the invention of high‐performance computing equipment, computational simulation tools have sparked the fundamental mechanism‐level explorations to predict the diverse physicochemical properties and biological effects of biomaterials and investigate their enormous application potential for disease prevention, diagnostics, and therapeutics. Herein, the term “computational biomaterials” is proposed and the computational methods currently used to explore the inherent properties of biomaterials, such as optical, magnetic, electronic, and acoustic properties, and the elucidation of corresponding biological behaviors/effects in the biomedical field are summarized/discussed. The theoretical calculation of the physiochemical properties/biological performance of biomaterials applied in disease diagnosis, drug delivery, disease therapeutics, and specific paradigms such as biomimetic biomaterials is discussed. Additionally, the biosafety evaluation applications of theoretical simulations of biomaterials are presented. Finally, the challenges and future prospects of such computational simulations for biomaterials development are clarified. It is anticipated that these simulations would offer various methodologies for facilitating the development and future clinical translations/utilization of versatile biomaterials.
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