Al-Bishari Abdullrahman M, Al-Shaaobi Bilal A, Al-Bishari Aisha A, Al-Baadani Mohammed A, Yu Liang, Shen Jiating, Cai Lei, Shen Yiding, Deng Zhennan, Gao Peng
School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou, China.
College of Dentistry, University of Science & Technology, Sanaa, Yemen.
Front Bioeng Biotechnol. 2022 Aug 8;10:975431. doi: 10.3389/fbioe.2022.975431. eCollection 2022.
The accelerating bone healing process is still a major challenge in clinical orthopedics, especially in critical-sized bone defects. Recently, Nanofiber membranes are showing increasing attention in the biomedical field due to their good biocompatibility, mechanical stability, and the ability to work as a drug carrier to achieve localized and sustained drug delivery. Herein, a multifunction nanofiber membrane loaded with vitamin D (Vit D) and curcumin (Cur) was successfully fabricated using electrospinning technology. In addition, we innovatively modified Vit D with PEG to improve the hydrophilicity of PCL nanofibers. The vitro results of CCK-8, alkaline phosphatase (ALP) and mineralization demonstrated that the PCL/Vit D-Cur membrane had great potential for enhancing the proliferation/differentiation of osteoblasts. Moreover, the synergistic effect of Vit D-Cur loaded PCL nanofiber membrane showed a superior ability to improve the anti-inflammatory activity through M2 polarization. Furthermore, results confirmed that the defect treated with PCL/Vit D-Cur nanofiber membrane was filled with the newly formed bone after 1 month. These results indicate that the Vit D/Cur loaded membrane can be applied for potential bone regeneration therapy.
在临床骨科中,加速骨愈合过程仍然是一项重大挑战,尤其是在临界尺寸骨缺损方面。近年来,纳米纤维膜因其良好的生物相容性、机械稳定性以及作为药物载体实现局部和持续药物递送的能力,在生物医学领域受到越来越多的关注。在此,采用静电纺丝技术成功制备了负载维生素D(Vit D)和姜黄素(Cur)的多功能纳米纤维膜。此外,我们创新性地用聚乙二醇(PEG)修饰Vit D,以提高聚己内酯(PCL)纳米纤维的亲水性。CCK - 8、碱性磷酸酶(ALP)和矿化的体外实验结果表明,PCL/Vit D - Cur膜在促进成骨细胞增殖/分化方面具有巨大潜力。此外,负载Vit D - Cur的PCL纳米纤维膜的协同作用通过M2极化显示出卓越的抗炎活性改善能力。此外,结果证实,用PCL/Vit D - Cur纳米纤维膜治疗的缺损在1个月后被新形成的骨填充。这些结果表明,负载Vit D/Cur的膜可用于潜在的骨再生治疗。