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Novel PH Sensitive Nanocarrier Agents Based on Citric Acid Dendrimers Containing Conjugated β-Cyclodextrins

机译:基于包含共轭β-环糊精的柠檬酸树枝状化合物的新型PH敏感纳米载体剂

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>Introduction: In this work, the use of β-cyclodextrine (β-CD)-modified dendrimers as a nanocapsule with a biocompatible shell have studied. β-CD-modifieddendrimers have designed and synthesized to enhance the loading capacity of the final dendrimers with encapsulation properties. >Methods: To achieve β-CD-modified dendrimers, first citric acid dendrimers were synthesized and then the end functional groups of dendrimers were grafted to β-CD through ester linkages. The molecular structures of resulted dendrimers were verified using common spectroscopic methods such as 1H NMR, FT-IR and the diameters of obtained nanocarriers were evaluated with using dynamic light scattering (DLS) experiments. The isolated dendrimers were utilized as the drug delivery agents and the encapsulation and the controlled release of guest drug molecule Naltrexone (NLX) was investigated in different pH’s using UV spectroscopy method. >Results: It was established that the loading capacity of dendrimers depend on several factors such as their generation and the structure and number of conjugated modifier end groups. >Conclusion: Increasing in the number of branches and the size of interior voids and number of conjugated β-CDs cause to enhance the loading capacity.
机译:>简介:在这项工作中,研究了使用β-环糊精(β-CD)修饰的树状聚合物作为具有生物相容性壳的纳米胶囊的方法。 β-CD-修饰的树枝状大分子已被设计和合成以增强具有封装特性的最终树枝状大分子的负载能力。 >方法:为获得β-CD修饰的树枝状聚合物,首先合成柠檬酸树枝状聚合物,然后通过酯键将树枝状聚合物的末端官能团接枝到β-CD上。使用常见的光谱学方法(例如1H NMR,FT-IR)验证得到的树枝状聚合物的分子结构,并使用动态光散射(DLS)实验评估获得的纳米载体的直径。分离出的树枝状大分子用作药物传递剂,并利用紫外光谱法研究了在不同pH值下客体药物分子纳曲酮(NLX)的包封和控制释放。 >结果:已确定树状大分子的负载能力取决于几个因素,例如它们的生成以及共轭改性端基的结构和数量。 >结论:分支数量的增加和内部空隙的大小以及共轭β-CD的数量增加,从而增加了承载能力。

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