Warsaw University of Technology, Faculty of Chemistry, 00-664 Warsaw, Noakowskiego 3, Poland.
Warsaw University of Technology, Faculty of Chemistry, 00-664 Warsaw, Noakowskiego 3, Poland.
Adv Drug Deliv Rev. 2022 Mar;182:114099. doi: 10.1016/j.addr.2021.114099. Epub 2022 Jan 3.
A broad family of two-dimensional (2D) materials - carbides, nitrides, and carbonitrides of early transition metals, called MXenes, became a newcomer in the flatland at the turn of 2010 and 2011 (over ten years ago). Their unique physicochemical properties made them attractive for many applications, highly boosting the development of various fields, including biotechnological. However, MXenes' functional features that impact their bioactivity and toxicity are still not fully well understood. This study discusses the essentials for MXenes's surface modifications toward their application in modern biotechnology and nanomedicine. We survey modification strategies in context of cytotoxicity, biocompatibility, and most prospective applications ready to implement in medical practice. We put the discussion on the material-structure-chemistry-property relationship into perspective and concentrate on overarching challenges regarding incorporating MXenes into nanostructured organic/inorganic bioactive architectures. It is another emerging group of materials that are interesting from the biomedical point of view as well. Finally, we present an influential outlook on the growing demand for future research in this field.
由早期过渡金属的碳化物、氮化物和碳氮化物组成的二维(2D)材料大家族 - MXenes - 在 2010 年和 2011 年之交(十多年前)成为平坦地形上的新成员。它们独特的物理化学性质使它们在许多应用中具有吸引力,极大地推动了包括生物技术在内的各个领域的发展。然而,MXenes 对其生物活性和毒性有影响的功能特性仍未得到充分理解。本研究讨论了 MXenes 表面改性的要点,以将其应用于现代生物技术和纳米医学。我们调查了在细胞毒性、生物相容性和最有前景的应用方面的改性策略,这些应用准备在医学实践中实施。我们将材料结构-化学-性质关系的讨论置于上下文中,并集中讨论将 MXenes 纳入纳米结构有机/无机生物活性结构中所面临的总体挑战。这也是从生物医学角度来看另一个有趣的新兴材料群体。最后,我们对该领域未来研究的需求增长提出了有影响力的展望。