首页> 外文期刊>Journal of biomedical nanotechnology >Curcumin-Loaded Lipid and Polymeric Nanocapsules Stabilized by Nonionic Surfactants: An In Vitro and In Vivo Antitumor Activity on B16-F10 Melanoma and Macrophage Uptake Comparative Study
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Curcumin-Loaded Lipid and Polymeric Nanocapsules Stabilized by Nonionic Surfactants: An In Vitro and In Vivo Antitumor Activity on B16-F10 Melanoma and Macrophage Uptake Comparative Study

机译:非离子表面活性剂稳定的姜黄素负载的脂质和聚合物纳米胶囊:对B16-F10黑色素瘤和巨噬细胞摄取的体外和体内抗肿瘤活性比较研究。

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Curcumin is a polyphenol obtained from the plant Curcuma longa (called turmeric) that displays several pharmacological activities, including anti-inflammatory, antioxidant, antimicrobial and anti-tumoral activity, but clinical use has been limited by its poor solubility in water and, consequently, minimal systemic bioavailability. We have therefore formulated the drug into nanocarrier systems in an attempt to improve its therapeutic properties. This study evaluates the effect of intraperitoneally administered nanocapsules containing curcumin on subcutaneous melanoma in mice inoculated with B16-F10 cells, and on the cytotoxicity activity against B16-F10 cells in vitro. Phagocytic uptake of formulations was also evaluated upon incubation with macrophage J774 cells by fluorescence microscopy. Lipid and polymeric nanocapsules were prepared by the phase inversion and nano-precipitation methods, respectively. The uptake of the lipid nanocapsules prepared using Solutol HS15 was significantly reduced in J774 cells. Curcumin, as free drug or as drug-loaded nanocap-sules, was administrated at a dose of 6 mg/kg twice a week for 21 days. Free drug and curcumin-loaded nanocapsules significantly reduced tumor volume (P < 0.05 vs. control), but no difference was found in the antitumor activity displayed by lipid and polymeric nanocapsules. This assumption was supported by the in vitro study, in which free curcumin as well as loaded into nanocapsulescaused significant reduction of cell viability in a concentration- and time-dependent manner.
机译:姜黄素是从姜黄植物(姜黄)中获得的一种多酚,具有多种药理活性,包括抗炎,抗氧化剂,抗微生物和抗肿瘤活性,但由于其在水中的溶解性差,因此临床应用受到限制。最小的全身生物利用度。因此,我们已经将药物配制成纳米载体系统,以改善其治疗性能。这项研究评估了腹膜内给予姜黄素的纳米胶囊对接种B16-F10细胞的小鼠皮下黑色素瘤的影响,以及对B16-F10细胞的体外细胞毒性活性。与巨噬细胞J774细胞孵育后,还通过荧光显微镜评估了吞噬制剂的摄取。脂质和聚合物纳米胶囊分别通过相转化和纳米沉淀法制备。在J774细胞中,使用Solutol HS15制备的脂质纳米胶囊的摄取显着降低。姜黄素作为游离药物或载有药物的纳米胶囊,每周两次以6 mg / kg的剂量给药,持续21天。游离药物和姜黄素负载的纳米胶囊显着降低了肿瘤体积(与对照组相比,P <0.05),但脂质和聚合物纳米胶囊的抗肿瘤活性没有发现差异。该假设得到了体外研究的支持,在体外研究中,游离姜黄素以及装入姜黄素胶囊均以浓度和时间依赖性方式导致细胞活力显着降低。

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