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载催产素的缓释水凝胶移植物可加速骨形成:一项实验大鼠研究。

Oxytocin-loaded sustained-release hydrogel graft provides accelerated bone formation: An experimental rat study.

机构信息

Department of Oral Implantology, Faculty of Dentistry, Istanbul University, Istanbul, Çapa, Turkey.

Department of Pharmaceutical Technology, Faculty of Pharmacy, Istanbul University, Istanbul, Turkey.

出版信息

J Orthop Res. 2020 Aug;38(8):1676-1687. doi: 10.1002/jor.24607. Epub 2020 Feb 6.

Abstract

Restoration of the lost bone volume is one of the most deliberate issues in dentistry. Sustained-release microspherical oxytocin hormone in a poloxamer hydrogel scaffold combined with a mixture of β-tricalcium phosphate and hydroxyapatite (CP) may serve as a suitable bone graft. The aim of this study was to design and test a novel thermosensitive hydrogel graft incorporating oxytocin-loaded poly(d, l-lactide-co-glycolide) (PLGA) sustained-release microspheres and CP. Thermosensitive poloxamer hydrogel containing CP (HCP graft) was prepared as a base and combined with hollow microspheres (HCPM) and oxytocin-loaded microspheres (HCPOM). Eighty Wistar rats were used for testing the grafts and a control group in 8-mm-diameter critical-sized calvarial defects (CSD); (n = 20). Bone healing at the 4th and 8th weeks was evaluated by histological, histomorphometric, and radiological (micro-computed tomography [µCT]) analyses. The results were analyzed by two-way analysis of variance (P < .05). Oxytocin-loaded PLGA microspheres prepared by the solvent displacement method yielded a high encapsulation efficiency of 89.5% and a slow drug release. Incorporation of the microspheres into the hydrogel graft slowed the release rate down and the release completed within 32 days. HCPOM revealed the highest new bone formation (26.45% ± 6.65% and 30.76% ± 4.37% at the 4th and 8th weeks, respectively; P < .0001) while HCPM and HCP groups revealed a bone formation of around 10% (P > .05). µCT findings of HCPOM group showed the highest mean bone mineral density values (42.21 ± 5.14 and 46.94 ± 3.30 g/cm for the 4th and 8th weeks, respectively; P < .0027). The proposed oxytocin-loaded sustained-release PLGA microspheres containing thermosensitive hydrogel graft (HCPOM) provide an accelerated bone regeneration in the rat calvaria.

摘要

恢复丢失的骨量是牙科领域最需要关注的问题之一。在泊洛沙姆水凝胶支架中持续释放的微球形催产素激素与β-磷酸三钙和羟基磷灰石(CP)的混合物可作为合适的骨移植物。本研究旨在设计和测试一种新型温敏水凝胶移植物,该移植物包含载有催产素的聚(D,L-丙交酯-共-乙交酯)(PLGA)控释微球和 CP。以含 CP 的温敏泊洛沙姆水凝胶(HCP 移植物)为基础,与空心微球(HCPM)和载有催产素的微球(HCPOM)结合。使用 80 只 Wistar 大鼠在 8 毫米直径的临界尺寸颅骨缺损(CSD)中对移植物和对照组进行测试(n=20)。第 4 和第 8 周时通过组织学、组织形态计量学和放射学(微计算机断层扫描 [µCT])分析评估骨愈合情况。通过双因素方差分析(P<0.05)对结果进行分析。通过溶剂置换法制备的载有催产素的 PLGA 微球具有 89.5%的高包封效率和缓慢的药物释放。将微球掺入水凝胶移植物中可降低释放速率,并且在 32 天内完成释放。HCPOM 显示出最高的新骨形成(第 4 周和第 8 周分别为 26.45%±6.65%和 30.76%±4.37%;P<0.0001),而 HCPM 和 HCP 组的骨形成约为 10%(P>0.05)。HCPOM 组的 µCT 结果显示出最高的平均骨密度值(第 4 周和第 8 周分别为 42.21±5.14 和 46.94±3.30 g/cm3;P<0.0027)。载有催产素的控释 PLGA 微球的温敏水凝胶移植物(HCPOM)可在大鼠颅骨中加速骨再生。

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