Department of Veterinary Surgery and Radiology, College of Veterinary Sciences and Animal Husbandry, R.K. Nagar, Tripura (W), India.
Bioceramics and Coating Division, CSIR-Central Glass and Ceramic Research Institute, Kolkata, India.
Mater Sci Eng C Mater Biol Appl. 2020 Jan;106:110180. doi: 10.1016/j.msec.2019.110180. Epub 2019 Sep 10.
Impact of bone diseases and injury is increasing at an enormous rate during the past decades due to increase in road traffic accidents and other injuries. Bioactive glasses have excellent biocompatibility and osteoconductivity that makes it suitable for bone regeneration. Researches and studies conducted on several bioactive glasses gives an insight on the need of multi-disciplinary approaches involving various scientific fields to attain its full potential. Of late, a next generation bioactive glass called as mesoporous bioactive glass (MBG) has been developed with higher specific surface area and control over mesoporous structure that presents a new material for bone regeneration. A brief discussion and overview on the potential use of MBG as a suitable material for bone tissue regeneration and biomolecule delivery is included. Additionally, possible control of the structural and functional property based on composition and fabrication techniques are also covered. According to recent researches, MBG-implant interaction with bone forming cells for cellular growth and differentiation as well as its effect on delivery of growth factor, both in vitro and in vivo, are optimistic; yet, the complete efficacy of this material is still to be explored. Hence, in this article we will review the current development and its applications for bone tissue engineering (TE).
在过去几十年中,由于道路交通和其他事故的增加,骨病和损伤的影响正在以巨大的速度增加。生物活性玻璃具有极好的生物相容性和骨诱导性,使其适合骨再生。对几种生物活性玻璃的研究和研究表明,需要多学科方法,涉及各个科学领域,以充分发挥其潜力。最近,已经开发出一种称为介孔生物活性玻璃(MBG)的下一代生物活性玻璃,具有更高的比表面积和对介孔结构的控制,为骨再生提供了一种新材料。本文简要讨论和概述了 MBG 作为骨组织再生和生物分子输送的合适材料的潜在用途。此外,还涵盖了基于组成和制造技术对结构和功能特性的可能控制。根据最近的研究,MBG 与成骨细胞的植入物相互作用,促进细胞生长和分化,以及在体外和体内输送生长因子的效果都很乐观;然而,这种材料的完全疗效仍有待探索。因此,在本文中,我们将回顾其在骨组织工程(TE)中的最新发展及其应用。