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Sustained Local Delivery of Diclofenac from Three-Dimensional Ultrafine Fibrous Protein Scaffolds with Ultrahigh Drug Loading Capacity

机译:通过具有超高药物负载能力的三维超细纤维蛋白支架持续局部递送双氯芬酸

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摘要

The three-dimensional (3D) ultrafine fibrous scaffolds loaded with functional components can not only provide support to 3D tissue repair, but also deliver the components in-situ with small dosage and low fusion frequency. However, the conventional loading methods possess drawbacks such as low loading capacity or high burst release. In this research, an ultralow concentration phase separation (ULCPS) technique was developed to form 3D ultrafine gelatin fibers and, meanwhile, load an anti-inflammatory drug, diclofenac, with high capacities for the long-term delivery. The developed scaffolds could achieve a maximum drug loading capacity of 12 wt.% and a highest drug loading efficiency of 84% while maintaining their 3D ultrafine fibrous structure with high specific pore volumes from 227.9 to 237.19 cm3/mg. The initial release at the first hour could be reduced from 34.7% to 42.2%, and a sustained linear release profile was observed with a rate of about 1% per day in the following 30 days. The diclofenac loaded in and released from the ULCPS scaffolds could keep its therapeutic molecular structure. The cell viability has not been affected by the release of drug when the loading was less than 12 wt.%. The results proved the possibility to develop various 3D ultrafine fibrous scaffolds, which can supply functional components in-situ with a long-term.
机译:用功能性分量装载的三维(3D)超细纤维支架不能仅为3D组织修复提供支持,而且还可以用小剂量和低熔融频率提供原位的成分。然而,传统的装载方法具有诸如低负载能力或高突发释放的缺点。在该研究中,开发了超级浓缩相分离(ULCPS)技术以形成3D超细明胶纤维,同时,载有抗炎药Diclofenac,具有高容量的长期递送。发育的支架可以获得12重量%的最大药物负载能力。%和最高药物负载效率为84%,同时保持其3D超细纤维结构,从227.9至237.19cm 3 / mg保持高特异性孔隙体积。第一小时的初始释放可以从34.7%降低至42.2%,并且在接下来的30天内,每天每天的速率约为1%的持续线性释放曲线。从ULCPS支架中加入并释放的双氯芬酸可保持其治疗分子结构。当载荷小于12重量%时,细胞活力尚未受药物释放的影响。%。结果证明了开发各种3D超细纤维支架的可能性,可以长期提供原位的功能组分。

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