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首页> 外文期刊>Bioconjugate Chemistry >Silk Sericin-Polylactide Protein-Polymer Conjugates as Biodegradable Amphiphilic Materials and Their Application in Drug Release Systems
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Silk Sericin-Polylactide Protein-Polymer Conjugates as Biodegradable Amphiphilic Materials and Their Application in Drug Release Systems

机译:丝霉素 - 聚乳糖蛋白 - 聚合物缀合物作为可生物降解的两亲物质及其在药物释放系统中的应用

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Silk sericin (SS) is a byproduct of silk production. In order to transform it into value-added products, sericin can be used as a biodegradable and pH-responsive building block in drug delivery materials. To this end, amphiphilic substances were synthesized via the conjugation of hydrophobic polylactide (PLA) to the hydrophilic sericin using a bis-aryl hydrazone linker. PLA was esterified with a terephthalaldehydic acid to obtain aromatic aldehyde terminated PLA (PLA-CHO). In addition, lysine groups of SS were modified with the linker succinimidyl-6-hydrazino-nicotinamide (S-HyNic). Then, both macromolecules were mixed to form the amphipilic protein-polymer conjugate in buffer-DMF solution. The formation of bis-aryl hydrazone linkages was confirmed and quantified by UV-vis spectroscopy. SS-PLA conjugates self-assembled in water into spherical multicompartment micelles with a diameter of around 100 nm. Doxorubicin (DOX) was selected as a model drug for studying the pH-dependent drug release from SS-PLA nanoparticles. The release rate of the encapsulated drug was slower than that of the free drug and dependent on pH, faster at pH 5.0, and it resulted in a larger cumulative amount of drug released than at physiological pH of 7.4. The SS-PLA conjugate of high PLA branches showed smaller particle size and lower loading capacity than the one with low PLA branches. Both SS-PLA conjugates had negligible cytotoxicity, whereas after loading with DOX, the SS-PLA micelles were highly toxic for the human liver carcinoma immortalized cell line HepG2. Therefore, the SS-based biodegradable amphiphilic material showed great potential as a drug carrier for cancer therapy.
机译:Silk Sericin(SS)是丝绸生产的副产品。为了将其转化为增值产物,丝氨酸可用作药物递送材料中的可生物降解和pH响应性构建块。为此,通过双芳芳基腙接头将疏水聚丙酯(PLA)缀合通过疏水聚丙酯(PLA)与亲水性丝裂蛋白合成两亲物质。用对苯二甲酸酯化的PLA酯化,得到芳香族醛封端的PLA(PLA-CHO)。此外,将SS的赖氨酸基团与接头琥珀酰亚胺酰-6-肼 - 烟酰胺(S杂志)进行修饰。然后,将两个大分子混合以在缓冲-DMF溶液中形成两亲蛋白 - 聚合物缀合物。通过UV-Vis光谱证实并定量了双芳基腙键的形成。 SS-PLA缀合物在水中自组装成球形多组胶束,其直径约为100nm。选择多柔比星(DOX)作为研究来自SS-PLA纳米颗粒的pH依赖性药物释放的模型药物。包封剂的释放速率比游离药物的释放速率较慢,并依赖于pH,pH5.0的速度更快,导致释放的累积量大于7.4的生理pH。高PLA分支的SS-PLA缀合物显示出比具有低PLA分支的粒径和较低的负载能力。 SS-PLA缀合物的含有可忽略不计的细胞毒性,而用DOX加载后,SS-PLA胶束对人肝癌永生化细胞系HepG2具有高毒性。因此,基于SS的可生物降解的两亲物质材料显示出巨大的癌症治疗药物载体的潜力。

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