首页> 美国卫生研究院文献>BioImpacts : BI >Grafting-from synthesis and characterization of poly (2-ethyl-2-oxazoline)-b-poly (benzyl L-glutamate) micellar nanoparticles for potential biomedical applications
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Grafting-from synthesis and characterization of poly (2-ethyl-2-oxazoline)-b-poly (benzyl L-glutamate) micellar nanoparticles for potential biomedical applications

机译:聚(2-乙基-2-恶唑啉)-b-聚(苄基L-谷氨酸)胶束纳米粒子的嫁接合成和表征用于潜在的生物医学应用

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摘要

>Introduction: Recent advances in the field of poly (2-oxazolines) as bio-inspired synthetic pseudopeptides have proven their potential biomedical applications such as drug delivery and tissue engineering. >Methods: In order to fabricate a biodegradable micellar nanoparticle of poly (2-ethyl 2-oxazoline)-b-poly (benzyl L-glutamate) or pEOx-b-pBLG, "grafting-from" synthesis approach was used involving consecutive steps of cationic ring-opening polymerization of 2-ethyl-2-oxazoline, amine functionalization of pEOx using 1-Boc-piperazine and N-carboxyanhydride polymerization of γ-benzyl- L-glutamate. Following hydrolysis of the copolymer, the protecting γ-benzyl groups were removed yielding a double-hydrophilic block ionomer of pEOx-b-poly (L-glutamic acid). The polymers were characterized by FTIR, 1H-NMR, size exclusion chromatography and differential scanning calorimetry (DSC). Aqueous assembly of the polymers was investigated by pyrene assay, dynamic light scattering, and transmission electron microscopy. MTT cytotoxicity assay was also performed to determine the cytocompatibility in various tumor cell lines. >Results: The polymeric micelles presented a uni-modal size distribution with mean hydrodynamic diameter of 149.8 ± 10.6 nm and critical aggregation concentration of 60 µg/mL. The average molecular weight of pEOx increased from ~ 14 to 20 kDa for pEOx-b-poly (L-glutamic acid) as determined by light scattering (Debye plot), indicating a successful copolymerization. MTT assay showed little to no practical cytotoxicity at concentrations below 1 mg/mL. >Conclusion: Multi-step synthesis of pEOx-b-pBLG and subsequent alkaline hydrolysis were performed to obtain the block ionomer pEOx-b-poly (L-glutamic acid). Both pEOx-based copolymers can be considered for various potential applications such as loading and delivery of drugs, genes, and contrast agents either by chemical conjugation or physical loading.
机译:>简介:作为生物灵感的合成假肽,聚(2-恶唑啉)领域的最新进展证明了其潜在的生物医学应用,例如药物输送和组织工程。 >方法:为了制造可生物降解的聚(2-乙基2-恶唑啉)-b-聚(苄基L-谷氨酸)或pEOx-b-pBLG的胶束纳米颗粒,需要“接枝”合成所使用的方法包括2-乙基-2-恶唑啉的阳离子开环聚合,使用1-Boc-哌嗪的pEOx的胺官能化和γ-苄基-L-谷氨酸的N-羧基酸酐聚合的连续步骤。共聚物水解后,除去保护性的γ-苄基,得到pEOx-b-聚(L-谷氨酸)的双亲水嵌段离聚物。用FTIR, 1 H-NMR,尺寸排阻色谱和差示扫描量热法(DSC)对聚合物进行了表征。通过pyr测定,动态光散射和透射电子显微镜研究了聚合物的水组装。还进行了MTT细胞毒性测定以确定各种肿瘤细胞系中的细胞相容性。 >结果:聚合物胶束具有单峰尺寸分布,平均流体动力学直径为149.8±10.6 nm,临界聚集浓度为60 µg / mL。通过光散射(德拜图)测定,pEOx-b-聚(L-谷氨酸)的pEOx的平均分子量从〜14 kDa增加到20 kDa,表明共聚成功。当浓度低于1 mg / mL时,MTT分析显示几乎没有或没有实际的细胞毒性。 >结论:进行了pEOx-b-pBLG的多步合成和随后的碱水解,得到了嵌段离聚物pEOx-b-poly(L-谷氨酸)。两种基于pEOx的共聚物都可以考虑用于各种潜在应用,例如通过化学偶联或物理加载来加载和输送药物,基因和造影剂。

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