首页> 外文期刊>Indian Journal of Experimental Biology >PEG-induced fusion of phosphatidylcholine-liposomes with protoplasts and post-fusion evaluation of plating efficiency and enrichment in plasmamembrane phosphatidylcholine of protoplasts in Datura innoxia Mill
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PEG-induced fusion of phosphatidylcholine-liposomes with protoplasts and post-fusion evaluation of plating efficiency and enrichment in plasmamembrane phosphatidylcholine of protoplasts in Datura innoxia Mill

机译:PEG诱导的曼陀罗无毒工厂原生质体中磷脂酰胆碱脂质体与原生质体的融合以及融合后的电镀效率和质膜中磷脂酰胆碱的富集评估

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Liposomes entrapping fluorescein diacetate were fused with protoplasts of Datura innoxia Mill by employing polyethylene glycol (PEG) as the fusogen. Factors that influence liposome-protoplast fusion were optimized as a function of PEG-concentration and incubation duration, liposome composition and surface charge and liposome:protoplast ratio. Phosphatidylcholine-liposomes were found ideal for the objectives of the study. Fusion index based on per cent fluorescing protoplasts varied among the protoplast types. PEG-incubation duration in the fusion assay and growth ability of protoplasts to form microcalli subsequent to liposome-protoplast fusion was determined based on protoplast plating-efficiency. Plating efficiency of post-fusion protoplasts increased due to incorporation of liposome-phosphatidylcholine in the plasmamembrane of protoplasts. Results are discussed in relation to the application of liposome-protoplast fusion system in selective modification of plasmamembrane phospholipids of protoplasts.
机译:通过使用聚乙二醇(PEG)作为融合剂,将包裹荧光素二乙酸酯的脂质体与曼陀罗无毒工厂的原生质体融合。根据PEG浓度和孵育时间,脂质体组成和表面电荷以及脂质体:原生质体比率优化了影响脂质体-原生质体融合的因素。发现磷脂酰胆碱-脂质体对于该研究目的是理想的。基于荧光原生质体百分比的融合指数在原生质体类型之间变化。基于原生质体铺板效率,确定融合测定中的PEG-孵育持续时间和脂质体-原生质体融合后原生质体形成微愈伤组织的生长能力。融合后原生质体的电镀效率由于在原生质体的质膜中掺入脂质体-磷脂酰胆碱而增加。讨论了有关脂质体-原生质体融合系统在原生质体血浆膜磷脂选择性修饰中的应用的结果。

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