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一种用于治疗缺血性胫骨骨修复的复合去铁胺/黑磷纳米片/明胶水凝胶支架。

A Composite Deferoxamine/Black Phosphorus Nanosheet/Gelatin Hydrogel Scaffold for Ischemic Tibial Bone Repair.

机构信息

The Affiliated Hospital of Ningbo University Medical School, Ningbo, 315000, People's Republic of China.

Ningbo No.6 Hospital, Ningbo, 315000, People's Republic of China.

出版信息

Int J Nanomedicine. 2022 Mar 11;17:1015-1030. doi: 10.2147/IJN.S351814. eCollection 2022.

Abstract

INTRODUCTION

Bone delay union is mostly caused by lack of blood supply. Although autografts, allografts and artificial bone have been widely used to treat bone delay union, the bone regeneration fails in the ischemic site accompanied by the bone donor site complications and disease transmission. Recently, there is a growing recognition of the importance of hydrogel scaffolds which are regarded as an eligible engineer tissue for bone repair. However, hydrogel is still limited in improving neovascularization.

METHODS

In this work, black phosphorus nanosheet and deferoxamine (BPN-DFO) were loaded in the gelatin hydrogel to overcome the high risk of bone delay union and systemically investigated the regeneration capability of BPN-DFO hydrogel in vitro and vivo.

RESULTS

The resulting BPN-DFO hydrogel scaffold showed superior swollen, degradation and release rate, as well as satisfied biocompatibility. BPN-DFO hydrogel shown the significant up-expression of mRNA related to bone regeneration and cell proliferation. In vivo, the proposed BPN-DFO hydrogel significantly improved osteogenesis and neovascularization in the ischemic tibial bone site of SD rats with acute femoral artery occlusion. Both macroscopic and histological evaluation of new regenerated bone showed newly formed blood vessel and collagen using BPN-DFO hydrogel. The immunohistochemistry and RT-PCR revealed that the bone regeneration could be improved via BMP/Runx2 pathway.

CONCLUSION

The BPN-DFO hydrogel possesses potential tissue engineer material for ischemic bone defect treatment. However, furthermore studies are needed to testify the safety and efficacy of BPN-DFO hydrogel.

摘要

简介

骨延迟愈合主要是由于血液供应不足引起的。虽然自体骨、同种异体骨和人工骨已广泛用于治疗骨延迟愈合,但在伴有供骨部位并发症和疾病传播的缺血部位,骨再生失败。最近,人们越来越认识到水凝胶支架的重要性,水凝胶支架被认为是一种合适的工程组织用于骨修复。然而,水凝胶在改善新血管生成方面仍然有限。

方法

在这项工作中,黑磷纳米片和去铁胺(BPN-DFO)被装载在明胶水凝胶中,以克服骨延迟愈合的高风险,并在体外和体内系统地研究了 BPN-DFO 水凝胶的再生能力。

结果

所得的 BPN-DFO 水凝胶支架表现出优异的溶胀、降解和释放率,以及令人满意的生物相容性。BPN-DFO 水凝胶显示出与骨再生和细胞增殖相关的 mRNA 的显著上调。在体内,所提出的 BPN-DFO 水凝胶显著改善了急性股动脉闭塞的 SD 大鼠缺血性胫骨骨部位的成骨和新血管形成。使用 BPN-DFO 水凝胶的新再生骨的宏观和组织学评估均显示出新形成的血管和胶原。免疫组织化学和 RT-PCR 表明,BMP/Runx2 途径可改善骨再生。

结论

BPN-DFO 水凝胶具有治疗缺血性骨缺损的潜在组织工程材料。然而,还需要进一步的研究来验证 BPN-DFO 水凝胶的安全性和有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e43/8923703/099a206fbb6a/IJN-17-1015-g0001.jpg

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