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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Triple stimuli-responsive keratin nanoparticles as carriers for drug and potential nitric oxide release
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Triple stimuli-responsive keratin nanoparticles as carriers for drug and potential nitric oxide release

机译:三重刺激响应角蛋白纳米粒子作为药物和潜在一氧化氮释放的载体

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Development of pH/GSH/enzyme triple stimuli-responsive drug delivery system is promising for tumor therapy due to more acidic, higher glutathione (GSH) level, and overexpressed trypsin under tumor microenvironment. Herein, keratin/doxorubicin (DOX) complex nanoparticles (KDNPs) were for the first time prepared using a drug-induced ionic gelation technique without cross-linker, organic solvent and surfactant. The resultant KDNPs had high drug loading efficacy and performed considerably stable in aqueous solution. Drug delivery curves showed that KDNPs exhibited triple-responsive characters (pH, GSH, and enzyme). Under tumor microenvironments (acid and high GSH level), KDNPs performed surface charge conversion of negative-to-positive and enhanced permeation retention effect (EPR), which both benefited the drug accumulation. Furthermore, the overexpressed trypsin would cleave the peptide bonds within KDNPs and enhance the DOX release. KDNPs were demonstrated to be internalized by A549 cells through endocytosis by cellular uptake assay. Cytotoxicity assay indicated that KDNPs could inhibit the proliferation of tumor cells efficiently. In vivo cytotoxicity and hemolysis tests suggested that KDNPs exhibited excellent biocompatibility as well as good blood compatibility. In vivo antitumor efficacy demonstrated that KDNPs had a strong antitumor effect similar to that of free DOX, but with nearly no side effects. Intriguingly, KDNPs were able to catalyze endogenous NO donor in blood to release NO in tumor tissue, resulting in the prolonged blood circulation time and improved therapeutic activity of drug. In conclusion, keratin-based drug carriers are potential for cancer therapy in clinical medicine.
机译:pH / GSH /酶三重刺激药物输送系统的发展是由于肿瘤微环境下的酸性,更高的谷胱甘肽(GSH)水平和过表达胰蛋白酶引起的肿瘤治疗的令人兴趣。在此,角蛋白/多柔比星(DOX)复合纳米颗粒(KDNP)首次使用药物诱导的离子凝胶化技术制备而没有交联剂,有机溶剂和表面活性剂。得到的KDNPS具有高药物加载功效,并且在水溶液中进行了相当稳定的稳定性。药物递送曲线显示KDNP表现出三重响应性的特征(pH,GSH和酶)。在肿瘤微环境(酸和高GSH水平)下,KDNPS表现为阴性染色和增强渗透滞留效果(EPR)的表面电荷转化,这两者都受益于药物积累。此外,过表达胰蛋白酶将切割KDNPS内的肽键并增强DOX释放。通过细胞摄取测定证明KDNP通过A549细胞通过内吞作用内化。细胞毒性测定表明,KDNP可以有效地抑制肿瘤细胞的增殖。体内细胞毒性和溶血试验表明KDNPS表现出优异的生物相容性以及良好的血液相容性。体内抗肿瘤功效表明,KDNPS具有与自由DOX相似的强烈抗肿瘤效果,但几乎没有副作用。有趣的是,KDNP能够催化血液中的内源性没有供体释放在肿瘤组织中的缺血,导致血液循环时间延长和药物治疗活性。总之,基于角蛋白的药物载体是临床医学癌症治疗的潜力。

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