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有机纳米材料与生物材料的自组装:形成功能性纳米结构及先进应用的自下而上方法。

Self-assembly of Organic Nanomaterials and Biomaterials: The Bottom-Up Approach for Functional Nanostructures Formation and Advanced Applications.

作者信息

Lombardo Domenico, Calandra Pietro, Pasqua Luigi, Magazù Salvatore

机构信息

Consiglio Nazionale delle Ricerche, Istituto per i Processi Chimico-Fisici, 98158 Messina, Italy.

Consiglio Nazionale delle Ricerche, Istituto Studio Materiali Nanostrutturati, 00015 Roma, Italy.

出版信息

Materials (Basel). 2020 Feb 26;13(5):1048. doi: 10.3390/ma13051048.

Abstract

In this paper, we survey recent advances in the self-assembly processes of novel functional platforms for nanomaterials and biomaterials applications. We provide an organized overview, by analyzing the main factors that influence the formation of organic nanostructured systems, while putting into evidence the main challenges, limitations and emerging approaches in the various fields of nanotechology and biotechnology. We outline how the building blocks properties, the mutual and cooperative interactions, as well as the initial spatial configuration (and environment conditions) play a fundamental role in the construction of efficient nanostructured materials with desired functional properties. The insertion of functional endgroups (such as polymers, peptides or DNA) within the nanostructured units has enormously increased the complexity of morphologies and functions that can be designed in the fabrication of bio-inspired materials capable of mimicking biological activity. However, unwanted or uncontrollable effects originating from unexpected thermodynamic perturbations or complex cooperative interactions interfere at the molecular level with the designed assembly process. Correction and harmonization of unwanted processes is one of the major challenges of the next decades and requires a deeper knowledge and understanding of the key factors that drive the formation of nanomaterials. Self-assembly of nanomaterials still remains a central topic of current research located at the interface between material science and engineering, biotechnology and nanomedicine, and it will continue to stimulate the renewed interest of biologist, physicists and materials engineers by combining the principles of molecular self-assembly with the concept of supramolecular chemistry.

摘要

在本文中,我们综述了用于纳米材料和生物材料应用的新型功能平台自组装过程的最新进展。我们通过分析影响有机纳米结构系统形成的主要因素,提供了一个有条理的概述,同时揭示了纳米技术和生物技术各个领域中的主要挑战、限制和新兴方法。我们概述了构建单元的性质、相互作用与协同作用,以及初始空间构型(和环境条件)如何在构建具有所需功能特性的高效纳米结构材料中发挥根本作用。在纳米结构单元中插入功能性端基(如聚合物、肽或DNA)极大地增加了在制造能够模拟生物活性的仿生材料时可设计的形态和功能的复杂性。然而,源自意外热力学扰动或复杂协同相互作用的不良或不可控效应在分子水平上干扰了设计的组装过程。纠正和协调不良过程是未来几十年的主要挑战之一,需要对驱动纳米材料形成的关键因素有更深入的了解。纳米材料的自组装仍然是当前位于材料科学与工程、生物技术与纳米医学交叉领域的研究核心课题,通过将分子自组装原理与超分子化学概念相结合,它将继续激发生物学家、物理学家和材料工程师的新兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12ba/7084717/f11801a74707/materials-13-01048-g001.jpg

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