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Capsaicin-loaded nanolipoidal carriers for topical application: design characterization and in vitro/in vivo evaluation

机译:用于局部应用的载有辣椒素的纳米脂质载体:设计表征和体外/体内评估

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摘要

Capsaicin has been used in clinical applications for the treatment of pain disorders and inflammatory diseases. Given the strong pungency and high oil/water partition coefficient of capsaicin, capsaicin-loaded nanolipoidal carriers (NLCs) were designed to increase permeation and achieve the analgesic, anti-inflammatory effect with lower skin irritation. Capsaicin-loaded NLCs were prepared and later optimized by the Box–Behnken design. The physicochemical characterizations, morphology, and encapsulation of the capsaicin-loaded NLCs were subsequently confirmed. Capsaicin-loaded NLCs and capsaicin-loaded NLCs gel exhibited sustained release and no cytotoxicity properties. Also, they could significantly enhance the penetration amount, permeation flux, and skin retention amounts of capsaicin due to the application of NLCs. To study the topical permeation mechanism of capsaicin, 3,3′-dioctadecyloxacarbocyanine perchlorate (Dio) was used as a fluorescent dye. Dio-loaded NLCs and Dio-loaded NLCs gel could effectively deliver Dio up to a skin depth of 260 and 210 μm, respectively, primarily through the appendage route on the basis of version skin sections compared with Dio solution, which only delivered Dio up to 150 μm. In vivo therapeutic experiments demonstrated that capsaicin-loaded NLCs and capsaicin-loaded NLCs gel could improve the pain threshold in a dose-dependent manner and inhibit inflammation, primarily by reducing the prostaglandin E2 levels in the tissue compared with capsaicin cream and capsaicin solution. Meanwhile, skin irritation was reduced, indicating that application of NLCs could decrease the irritation caused by capsaicin. Overall, NLCs may be a potential carrier for topical delivery of capsaicin for useful pain and inflammation therapy.
机译:辣椒素已经在临床应用中用于治疗疼痛疾病和炎性疾病。鉴于辣椒素具有很强的刺激性和较高的油/水分配系数,因此设计了载有辣椒素的纳米脂质载体(NLC),可增加渗透性并实现镇痛,抗炎作用,并降低皮肤刺激性。制备了装有辣椒素的NLC,后来通过Box–Behnken设计进行了优化。随后证实了辣椒素负载的NLC的理化特性,形态和包封。载有辣椒素的NLC和载有辣椒素的NLC凝胶显示持续释放且无细胞毒性。而且,由于使用了NLC,它们可以显着提高辣椒素的渗透量,渗透通量和皮肤保留量。为了研究辣椒素的局部渗透机理,将3,3'-二十八烷基氧杂碳菁高氯酸盐(Dio)用作荧光染料。载有Dio的NLC和载有Dio的NLC凝胶可以有效地分别将Dio输送至260和210μm的皮肤深度,主要是通过根据附肢皮肤切片的附肢途径与Dio solution相比,后者仅可输送Dio 150微米体内治疗实验表明,与辣椒素乳膏和辣椒素溶液相比,主要通过降低组织中前列腺素E2的含量,装载辣椒素的NLC和装载辣椒素的NLC凝胶可以剂量依赖的方式改善疼痛阈值并抑制炎症。同时,减少了皮肤刺激,表明使用NLCs可以减少辣椒素引起的刺激。总体而言,NLCs可能是辣椒素局部给药的潜在载体,可用于有用的疼痛和炎症治疗。

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