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Hyaluronic Acid-Based Hybrid Hydrogel Microsphereswith Enhanced Structural Stability and High Injectability

机译:基于透明质酸的杂化水凝胶微球具有增强的结构稳定性和高可注射性

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摘要

For hydrogel injection applications, it is important to improve the strength and biostability of the hydrogel as well as its injectability to pass easily through the needle. Making gel microspheres is one approach to achieve these improvements. Granulization of a bulk hydrogel is a common procedure used to form microsized particles; however, the nonuniform size and shape cause an uneven force during injection, damaging the surrounding tissue and causing pain to the patients. In this study, injectable hyaluronic acid (HA)-based hybrid hydrogel microspheres were fabricated using a water-in-oil emulsion process. The injectability was significantly enhanced because of the relatively uniform size and spherical shape of the hydrogel formulates. In addition, the biostability and mechanical strength were also increased owing to the increased cross-linking density compared with that of conventionally fabricated gel microparticles. This tendency was further improved after in situ calcium phosphate precipitation. Our findings demonstrate the great potential of HA-based hydrogel microspheres for variousclinical demands requiring injectable biomaterials.
机译:对于水凝胶注射应用,重要的是提高水凝胶的强度和生物稳定性以及其易于通过针头的注射能力。制备凝胶微球是实现这些改进的一种方法。块状水凝胶的制粒是用于形成微细颗粒的常见程序;然而,不均匀的尺寸和形状会在注射过程中产生不均匀的力,从而损坏周围的组织并给患者带来痛苦。在这项研究中,使用油包水乳液工艺制备了可注射的透明质酸(HA)基杂化水凝胶微球。由于水凝胶制剂的相对均匀的尺寸和球形,可注射性显着增强。另外,由于与常规制备的凝胶微粒相比增加的交联密度,因此还提高了生物稳定性和机械强度。原位磷酸钙沉淀后,这种趋势得到了进一步改善。我们的研究结果证明了基于HA的水凝胶微球在各种应用中的巨大潜力需要可注射生物材料的临床需求。

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