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首页> 外文期刊>Drug delivery and translational research >Intra-articular delivery of a nanocomplex comprising salmon calcitonin, hyaluronic acid, and chitosan using an equine model of joint inflammation
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Intra-articular delivery of a nanocomplex comprising salmon calcitonin, hyaluronic acid, and chitosan using an equine model of joint inflammation

机译:纳米键合的关节内递送包含鲑鱼降钙素,透明质酸和壳聚糖的含有三文鱼,使用关节炎症的标牌模型

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摘要

Polyelectrolyte nanoparticle constructs (NPs) comprising salmon calcitonin (sCT), chitosan (CS), and hyaluronic acid (HA) were previously established as having anti-inflammatory potential when injected via the intra-articular (i.a.) route to a mouse model. We attempted to translate the formulation to a large animal model, the lipopolysaccharide (LPS)-stimulated equine model of joint inflammation. The aim was to manufacture under aseptic conditions to produce sterile pyrogen-fire NPs, to confirm physicochemical characteristics, and to test toxicity and efficacy in a pilot study. NP dispersions were successfully formulated using pharmaceutical-grade source materials and were aseptically manufactured under GMP-simulated conditions in a grade A modular aseptic processing workstation. The NP formulation had no detectable pathogen or endotoxin contamination. NPs were then tested versus a lactated Ringer's solution control following single i.a. injections to the radiocarpal joints of two groups of four horses pre-treated with LPS, followed by arthrocentesis at set intervals over 1 week. There was no evidence of treatment-related toxicity over the period. While there were no differences between clinical read-outs of the NP and the control, two synovial fluidderived biomarkers associated with cartilage turnover revealed a beneficial effect of NPs. In conclusion, NPs comprising wellknown materials were manufactured for an equine i.a.-injectable pilot study and yielded no NP-attributable toxicity. Evidence of NP-associated benefit at the level of secondary endpoints was detected as a result of decreases in synovial fluid inflammatory biomarkers.
机译:包含含有鲑鱼降钙素(SCT),壳聚糖(Cs)和透明质酸(HA)的聚电解质纳米颗粒构建体(NPS)被确定为具有抗炎潜力,当通过内部的(I.)途径以小鼠模型注入抗炎潜力。我们试图将配方转化为大型动物模型,脂多糖(LPS)刺激的关节炎症的标准模型。目的是在无菌条件下制造,以产生无菌热原火NPS,以确认物理化学特征,并在试验研究中测试毒性和功效。使用药物级源材料成功配制NP分散体,并在GMP模拟条件下无菌地制造在级模块化无菌加工工作站。 NP制剂没有可检测的病原体或内毒素污染。然后测试NPS与单一I.A的乳铃液体控制器进行测试。注射到用LPS预处理的两组四匹马的radiocarpal关节,然后在1周内设定间隔下的节肢术。在此期间没有治疗相关毒性的证据。虽然NP的临床读出与对照没有差异,但是与软骨周转有关的两个滑膜流动的生物标志物揭示了NPS的有益效果。总之,制造包含良性材料的NPS用于标准I.A.-注射的试验研究,并产生NP可归因的毒性。由于滑膜流体炎性生物标志物的降低,检测到次级终点水平的NP相关益处的证据。

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