PCL-PVAc-PEG在活性物递送和生物材料上的应用优势_abio生物试剂品牌网
图1. In vivo safety and efficacy study of U78-MG tumor-bearing mice treated with vehicle (PBS), Docetaxel (B), and Docetaxel-loaded micelles [4]
2. 细胞培养和组织工程:构建理想的支架材料
在细胞培养和组织工程研究中,PCL-PVAc-PEG(M43956,AbMole)材料同样表现出色。它可以被制成多孔支架,用于模拟天然组织的微环境,支持细胞的黏附、增殖和分化。PCL的可降解性和PVAc的特殊的力学性能为支架提供了稳定的支撑,而PEG的亲水性则有助于细胞的黏附和生长。例如,在骨组织工程研究中,PCL-PVAc-PEG支架能够促进骨细胞的生长和矿化。其多孔结构为细胞提供了充足的生长空间,同时材料的降解产物能够为细胞提供营养,促进新组织的形成。在软组织工程中,PCL-PVAc-PEG支架也能够有效支持细胞的生长和组织的再生,为相关研究提供了有力的工具。例如在培养基中加入PCL-PVAc-PEG可以增强人类造血干细胞在体外的扩增速率,并在加入某些抑制后,可实现不依赖细胞因子的造血干细胞培养[5]。
图2. Caprolactam-polymer-based 3a medium supports the efficient expansion of human HSCs ex vivo[5]
PCL-PVAc-PEG(聚乙烯己内酰胺-聚醋酸乙烯酯-聚乙二醇接枝共聚物(M43956,AbMole)的出现为生物材料和活性物递送研究带来了新的思路和工具。它通过融合PCL、PVAc和PEG的优良特性,为研究者提供了一个多功能的平台,能够满足从活性物递送到组织工程的多种应用需求。AbMole凭借其高品质的产品和专业的服务,正在成为众多科研人员的首选合作伙伴。AbMole是ChemBridge中国区官方指定合作伙伴。
参考文献
[1] ZHU C, GONG S, DING J, et al. Supersaturated polymeric micelles for oral silybin delivery: the role of the Soluplus-PVPVA complex [J]. Acta pharmaceutica Sinica B, 2019, 9(1): 107-17.
[2] XUE X, HU Y, WANG S, et al. Fabrication of physical and chemical crosslinked hydrogels for bone tissue engineering [J]. Bioactive materials, 2022, 12: 327-39.
[3] LIU P, ZHOU J Y, CHANG J H, et al. Soluplus-Mediated Diosgenin Amorphous Solid Dispersion with High Solubility and High Stability: Development, Characterization and Oral BioavAIlability [J]. Drug design, development and therapy, 2020, 14: 2959-75.
[4] GERMAN-CORTéS J, HERRERO R, TORROGLOSA N, et al. Preclinical evaluation of several polymeric micelles identifies Soluplus®-docetaxel as the most effective candidate in multiple glioblastoma models [J]. Journal of Controlled Release, 2025, 381: 113616.
[5] SAKURAI M, ISHITSUKA K, ITO R, et al. Chemically defined cytokine-free expansion of human haematopoietic stem cells [J]. Nature, 2023, 615(7950): 127-33 本站“ABIO生物试剂品牌网”图片文字来自互联网
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