Gentile P, Carmagnola I, Nardo T, Chiono V
School of Clinical Dentistry, University of Sheffield, 19 Claremont Crescent, Sheffield S10 2TA, UK.
Nanotechnology. 2015 Oct 23;26(42):422001. doi: 10.1088/0957-4484/26/42/422001. Epub 2015 Sep 30.
In the past two decades, the design and manufacture of nanostructured materials has been of tremendous interest to the scientific community for their application in the biomedical field. Among the available techniques, layer-by-layer (LBL) assembly has attracted considerable attention as a convenient method to fabricate functional coatings. Nowadays, more than 1000 scientific papers are published every year, tens of patents have been deposited and some commercial products based on LBL technology have become commercially available. LBL presents several advantages, such as (1): a precise control of the coating properties; (2) environmentally friendly, mild conditions and low-cost manufacturing; (3) versatility for coating all available surfaces; (4) obtainment of homogeneous film with controlled thickness; and (5) incorporation and controlled release of biomolecules/drugs. This paper critically reviews the scientific challenge of the last 10 years--functionalizing biomaterials by LBL to obtain appropriate properties for biomedical applications, in particular in tissue engineering (TE). The analysis of the state-of-the-art highlights the current techniques and the innovative materials for scaffold and medical device preparation that are opening the way for the preparation of LBL-functionalized substrates capable of modifying their surface properties for modulating cell interaction to improve substitution, repair or enhancement of tissue function.
在过去二十年中,纳米结构材料的设计与制造因其在生物医学领域的应用而备受科学界关注。在现有技术中,层层(LBL)组装作为一种制备功能涂层的便捷方法已引起了相当大的关注。如今,每年发表的科学论文超过1000篇,已提交了数十项专利,并且一些基于LBL技术的商业产品已上市。LBL具有几个优点,例如:(1)对涂层性能的精确控制;(2)环境友好、条件温和且制造成本低;(3)可用于涂覆所有可用表面的通用性;(4)获得具有可控厚度的均匀薄膜;以及(5)生物分子/药物的掺入和控释。本文批判性地回顾了过去十年的科学挑战——通过LBL对生物材料进行功能化以获得适用于生物医学应用的适当性能,特别是在组织工程(TE)方面。对当前技术水平的分析突出了用于支架和医疗器械制备的现有技术和创新材料,这些技术和材料为制备能够改变其表面性质以调节细胞相互作用从而改善组织功能的替代、修复或增强的LBL功能化基质开辟了道路。