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利用光化学内化作用将 LDL 纳米颗粒货物递送到细胞质中。

Cytosolic delivery of LDL nanoparticle cargo using photochemical internalization.

机构信息

Ontario Cancer Institute and Campbell Family Cancer Research Institute, Toronto, ON, Canada.

出版信息

Photochem Photobiol Sci. 2011 May;10(5):810-6. doi: 10.1039/c0pp00350f. Epub 2011 Feb 23.


DOI:10.1039/c0pp00350f
PMID:21344108
Abstract

Following cellular delivery, most drugs must escape endosomes and lysosomes and reach the cytosol to be effective. This is particularly significant for nanoparticles, which can carry a large drug payload, but typically accumulate in endosomes and lysosomes. One attractive solution is to use light-triggered release, which can provide efficient endolysosomal membrane disruption and spatiotemporal control of cytosolic release. Here, we demonstrate the cytosolic release of cargo loaded into low density lipoprotein (LDL) nanoparticles using a photochemical internalization (PCI) approach. Three types of cargo-loaded LDL nanoparticles (CLLNPs) were generated by loading fluorescent dyes via (1) intercalation in the phospholipid monolayer exterior (surface loading), (2) conjugation to the amino acids of apoB-100 protein (protein loading) or (3) reconstitution into the hydrophobic core of LDL (core loading). Fluorescence imaging demonstrated the cellular uptake of CLLNPs was mediated by the LDL receptor and resulted in CLLNPs accumulation in endosomes. When cells were co-incubated with CLLNPs and AlPcS2a (a PCI agent), laser irradiation induced efficient cytosolic release of the surface-loaded and protein-labeled cargo, whereas the core-loaded hydrophobic dye could not readily be released. Thus, PCI is a useful cytosolic release method for CLLNPs, although the loading method must be considered.

摘要

细胞递送后,大多数药物必须逃离内体和溶酶体并到达细胞质才能发挥作用。对于可以携带大量药物有效载荷的纳米颗粒来说,这一点尤为重要,但它们通常会在内体和溶酶体中积累。一种有吸引力的解决方案是使用光触发释放,它可以提供有效的内体溶酶体膜破坏和细胞质释放的时空控制。在这里,我们展示了使用光化学内化 (PCI) 方法从载有货物的低密度脂蛋白 (LDL) 纳米颗粒中释放货物。通过以下三种方法将货物载入 LDL 纳米颗粒 (CLLNP):(1) 通过在磷脂单层外部(表面载入)插入荧光染料,(2) 通过与载脂蛋白 B-100 蛋白的氨基酸缀合(蛋白载入),或 (3) 重新构建到 LDL 的疏水性核心中(核心载入)。荧光成像表明,CLLNP 的细胞摄取是通过 LDL 受体介导的,导致 CLLNP 在内涵体中积累。当细胞与 CLLNP 和 AlPcS2a(一种 PCI 试剂)共同孵育时,激光照射诱导表面载入和蛋白标记的货物的有效细胞质释放,而核心载入的疏水性染料则不易释放。因此,尽管必须考虑装载方法,但 PCI 是一种用于 CLLNP 的有用的细胞质释放方法。

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