Aoki Kaoru, Saito Naoto
Physical Therapy Division, School of Health Sciences, Shinshu University, Asahi 3-1-1, Matsumoto, Nagano 390-8621, Japan.
Institute for Biomedical Sciences, Interdisciplinary Cluster for Cutting Edge Research, Shinshu University, Asahi 3-1-1, Matsumoto, Nagano 390-8621, Japan.
Pharmaceutics. 2020 Jan 24;12(2):95. doi: 10.3390/pharmaceutics12020095.
Regenerative medicine has been widely researched for the treatment of bone defects. In the field of bone regenerative medicine, signaling molecules and the use of scaffolds are of particular importance as drug delivery systems (DDS) or carriers for cell differentiation, and various materials have been explored for their potential use. Although calcium phosphates such as hydroxyapatite and tricalcium phosphate are clinically used as synthetic scaffold material for bone regeneration, biodegradable materials have attracted much attention in recent years for their clinical application as scaffolds due their ability to facilitate rapid localized absorption and replacement with autologous bone. In this review, we introduce the types, features, and performance characteristics of biodegradable polymer scaffolds in their role as DDS for bone regeneration therapy.
再生医学在骨缺损治疗方面已得到广泛研究。在骨再生医学领域,信号分子以及支架作为药物递送系统(DDS)或细胞分化载体的应用尤为重要,人们已对各种材料的潜在用途进行了探索。尽管诸如羟基磷灰石和磷酸三钙等磷酸钙在临床上用作骨再生的合成支架材料,但近年来,可生物降解材料因其能够促进快速局部吸收并被自体骨替代的能力,作为支架的临床应用备受关注。在本综述中,我们介绍了可生物降解聚合物支架作为骨再生治疗DDS的类型、特点和性能特征。