脂质体
药物输送
药品
车辆段
体内
化学
药理学
毒品携带者
膜
麻醉剂
医学
麻醉
生物化学
有机化学
生物
考古
生物技术
历史
作者
Yang Li,Ruijin Shao,Claire A. Ostertag‐Hill,Matthew Torre,Ran Yan,Daniel S. Kohane
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-10-03
卷期号:23 (20): 9250-9256
被引量:1
标识
DOI:10.1021/acs.nanolett.3c02137
摘要
Inadequate drug loading and control of payload leakage limit the duration of the effect of liposomal drug carriers and may cause toxicity. Here, we report a liposome system as a depot for sustained drug delivery whose design is inspired by the low permeability of Archaeal membranes to protons and solutes. Incorporating methyl-branched phospholipids into lipid bilayers decreased payload diffusion across liposomal membranes, thereby enhancing the drug load capacity by 10-16% and reducing the release of small molecules in the first 24 h by 40-48%. The in vivo impact of this approach was demonstrated by injection at the sciatic nerve. Methyl-branched liposomes encapsulating the anesthetic tetrodotoxin (TTX) achieved markedly prolonged local anesthesia lasting up to 70 h, in comparison to the 16 h achieved with liposomes containing conventional lipids. The present work demonstrates the usefulness of methyl-branched liposomes to enhance liposomal depot systems for sustained drug delivery.
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