首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Amphiphilically-modified gelatin nanoparticles: Self-assembly behavior, controlled biodegradability, and rapid cellular uptake for intracellular drug delivery
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Amphiphilically-modified gelatin nanoparticles: Self-assembly behavior, controlled biodegradability, and rapid cellular uptake for intracellular drug delivery

机译:两亲修饰的明胶纳米颗粒:自组装行为,可控制的生物降解性和细胞吸收后细胞的快速吸收

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摘要

An amphiphilic gelatin macromolecule capable of self-assembling to form micelle-like nanospheres for entrapping hydrophobic therapeutic molecules was successfully synthesized by grafting hydrophobic hexanoyl anhydrides to the amino groups of primitive gelatin. The substitution and grafting efficiency of the modified gelatin displayed a concentration-dependent manner toward the hexanoyl anhydride. The particle size and stability of the resulting self-assembled nanoparticles strongly depend on the degree of substitution of the gelatin. These gelatin nanoparticles exhibited an outstanding cytocompatibility and highly efficient drug encapsulation efficiency. The drug release profile of the anticancer agent (camptothecin) from the amphiphilic gelatin nanoparticles shows that the drug release mechanism is dominated by a combined effect of diffusion and degradation. Furthermore, a tunable sustained release and degradation behavior can be controlled by changing the degree of substitution of the gelatin. This new type of amphiphilic gelatin nanoparticles with controlled biodegradability and rapid cellular internalization may serve in the intracellular delivery of specific proteins or genes, permitting a novel design for intracellularly-based nanotherapy.
机译:通过将疏水性己酰酐接枝到原始明胶的氨基上,成功合成了能够自组装形成胶束状纳米球以捕获疏水性治疗分子的两亲明胶大分子。改性明胶的取代和接枝效率显示出对己酰酐的浓度依赖性。所得的自组装纳米颗粒的粒径和稳定性强烈取决于明胶的取代度。这些明胶纳米颗粒表现出杰出的细胞相容性和高效的药物包封效率。从两亲明胶纳米颗粒得到的抗癌药(喜树碱)的药物释放曲线表明,药物的释放机理主要由扩散和降解的联合作用决定。此外,可通过改变明胶的取代度来控制可调的持续释放和降解行为。这种新型的两亲明胶纳米颗粒具有可控制的生物降解能力和快速的细胞内在化作用,可用于特定蛋白质或基因在细胞内的传递,从而为基于细胞内的纳米治疗提供了新颖的设计。

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