Centre for Biomaterials, Cellular and Molecular Theranostics (CBCMT), Vellore Institute of Technology (VIT), Vellore 632014, Tamil Nadu, India.
School of Biosciences & Technology (SBST), Vellore Institute of Technology (VIT), Vellore 632014, Tamil Nadu, India.
J Mater Chem B. 2024 Nov 13;12(44):11278-11301. doi: 10.1039/d4tb01525h.
Most natural and synthetic polymers are promising materials for biomedical applications because of their biocompatibility, abundant availability, and biodegradability. Their properties can be tailored according to the intended application by fabricating composites with other polymers or ceramics. The incorporation of ceramic nanoparticles such as bioactive glass (BG) and hydroxyapatite aids in the improvement of mechanical and biological characteristics and alters the degradation kinetics of polymers. BG can be used in the form of nanoparticles, nanofibers, scaffolds, pastes, hydrogels, or coatings and is significantly employed in different applications. This biomaterial is highly preferred because of its excellent biocompatibility, bone-stimulating activity, and favourable mechanical and degradation characteristics. Different compositions of nano BG are incorporated into the polymer system and studied for positive results such as enhanced bioactivity, better cell adherence, and proliferation rate. This review summarizes the fabrication and the progress of natural/synthetic polymer-nano BG systems for biomedical applications such as drug delivery, wound healing, and tissue engineering. The challenges and the future perspectives of the composite system are also addressed.
大多数天然和合成聚合物因其生物相容性、丰富的可用性和可生物降解性而成为有前途的生物医学应用材料。通过与其他聚合物或陶瓷制造复合材料,可以根据预期的应用来调整它们的性能。掺入陶瓷纳米粒子,如生物活性玻璃 (BG) 和羟基磷灰石,可以改善机械和生物特性,并改变聚合物的降解动力学。BG 可以纳米粒子、纳米纤维、支架、糊剂、水凝胶或涂层的形式使用,并且在不同的应用中得到了广泛应用。这种生物材料因其优异的生物相容性、骨刺激活性以及良好的机械和降解特性而备受青睐。不同组成的纳米 BG 被掺入聚合物体系中,并进行研究,以获得增强的生物活性、更好的细胞黏附和增殖率等积极结果。本文综述了用于药物输送、伤口愈合和组织工程等生物医学应用的天然/合成聚合物-纳米 BG 系统的制备和进展。还讨论了复合体系面临的挑战和未来展望。