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温敏可降解 PLGA-PEG-PLGA 共聚物对触变自固化磷酸三钙骨水泥流变性、结构和力学性能的影响。

The Effect of the Thermosensitive Biodegradable PLGA⁻PEG⁻PLGA Copolymer on the Rheological, Structural and Mechanical Properties of Thixotropic Self-Hardening Tricalcium Phosphate Cement.

机构信息

CEITEC ⁻ Brno University of Technology, Purkynova 656/123, 612 00 Brno, Czech Republic.

Trauma Surgery Department, The University Hospital Brno, Jihlavska 340/20, 325 00 Brno, Czech Republic.

出版信息

Int J Mol Sci. 2019 Jan 17;20(2):391. doi: 10.3390/ijms20020391.

Abstract

The current limitations of calcium phosphate cements (CPCs) used in the field of bone regeneration consist of their brittleness, low injectability, disintegration in body fluids and low biodegradability. Moreover, no method is currently available to measure the setting time of CPCs in correlation with the evolution of the setting reaction. The study proposes that it is possible to improve and tune the properties of CPCs via the addition of a thermosensitive, biodegradable, thixotropic copolymer based on poly(lactic acid), poly(glycolic acid) and poly(ethylene glycol) (PLGA⁻PEG⁻PLGA) which undergoes gelation under physiological conditions. The setting times of alpha-tricalcium phosphate (α-TCP) mixed with aqueous solutions of PLGA⁻PEG⁻PLGA determined by means of time-sweep curves revealed a lag phase during the dissolution of the α-TCP particles. The magnitude of the storage modulus at lag phase depends on the liquid to powder ratio, the copolymer concentration and temperature. A sharp increase in the storage modulus was observed at the time of the precipitation of calcium deficient hydroxyapatite (CDHA) crystals, representing the loss of paste workability. The PLGA⁻PEG⁻PLGA copolymer demonstrates the desired pseudoplastic rheological behaviour with a small decrease in shear stress and the rapid recovery of the viscous state once the shear is removed, thus preventing CPC phase separation and providing good cohesion. Preliminary cytocompatibility tests performed on human mesenchymal stem cells proved the suitability of the novel copolymer/α-TCP for the purposes of mini-invasive surgery.

摘要

目前,骨再生领域中使用的磷酸钙骨水泥(CPCs)存在脆性、低可注射性、在体液中崩解和低生物降解性等局限性。此外,目前尚无方法可以测量 CPC 的凝固时间与凝固反应的演变相关联。该研究提出,可以通过添加一种热敏感、可生物降解、触变的共聚体来改善和调整 CPC 的性能,该共聚体基于聚(乳酸)、聚(乙醇酸)和聚(乙二醇)(PLGA-PEG-PLGA),在生理条件下发生凝胶化。通过时间扫描曲线测定的与 PLGA-PEG-PLGA 水溶液混合的α-磷酸三钙(α-TCP)的凝固时间显示,在α-TCP 颗粒溶解过程中存在滞后期。滞后期的储能模量大小取决于液粉比、共聚物浓度和温度。当缺钙羟基磷灰石(CDHA)晶体沉淀时,观察到储能模量的急剧增加,这代表着糊剂可加工性的丧失。PLGA-PEG-PLGA 共聚物表现出所需的假塑性流变行为,剪切应力略有下降,一旦去除剪切,粘性状态迅速恢复,从而防止 CPC 相分离并提供良好的内聚性。对人骨髓间充质干细胞进行的初步细胞相容性测试证明了新型共聚物/α-TCP 适用于微创手术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e02e/6359562/ee0da539a40c/ijms-20-00391-g001.jpg

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