Tumor- and mitochondria-targeted nanoparticles eradicate drug resistant lung cancer through mitochondrial pathway of apoptosis

Наночастицы, нацеленные на опухоль и митохондрии, элиминируют лекарственно-резистентный рак лёгкого посредством митохондриального пути апоптоза
He Wang, Fangke Zhang, Huaying Wen, Wenwen Shi, Qiudi Huang, Yugang Huang, Jiacui Xie, LI Pei-yin, Jianhai Chen, Linghao Qin, Yi Zhou
2020-01-09

mitochondria-targeted nanoparticlesmitochondrial pathway of apoptosismultidrug-resistant lung cancerpaclitaxel nanomicellestriphenylphosphine (TPP)
Chemotherapeutic drugs frequently encounter multidrug resistance. ATP from mitochondria helps overexpression of drug efflux pumps to induce multidrug resistance, so mitochondrial delivery as a means of "repurposing'' chemotherapeutic drugs currently used in the clinic appears to be a worthwhile strategy to pursue for the development of new anti-drug-resistant cancer agents. TPP-Pluronic F127-hyaluronic acid (HA) (TPH), with a mitochondria-targeting triphenylphosphine (TPP) head group, was first synthesized through ester bond formation. Paclitaxel (PTX)-loaded TPH (TPH/PTX) nanomicelles exhibited excellent physical properties and significantly inhibited A549/ADR cells. After TPH/PTX nanomicelles entered acidic lysosomes through macropinocytosis, the positively charged TP/PTX nanomicelles that resulted from degradation of HA by hyaluronidase (HAase) in acidic lysosomes were exposed and completed lysosomal escape at 12 h, finally localizing to mitochondria over a period of 24 h in A549/ADR cells. Subsequently, TPH/PTX caused mitochondrial outer membrane permeabilization (MOMP) by inhibiting antiapoptotic Bcl-2, leading to cytochrome C release and activation of caspase-3 and caspase-9. In an A549/ADR xenograft tumor model and a drug-resistant breast cancer-bearing mouse model with lung metastasis, TPH/PTX nanomicelles exhibited obvious tumor targeting and significant antitumor efficacy. This work presents the potential of a single, nontoxic nanoparticle (NP) platform for mitochondria-targeted delivery of therapeutics for diverse drug-resistant cancers.
1
A mitochondria-targeted TPP-Pluronic F127-hyaluronic acid nanoparticle, TPH, was synthesized through ester bond formation for drug-resistant cancer therapy.
2
HAase-mediated degradation in acidic lysosomes exposed positively charged, mitochondria-targeting nanomicelles, enabling lysosomal escape and mitochondrial localization within 24 hours.
3
Paclitaxel-loaded TPH nanomicelles significantly inhibited multidrug-resistant A549/ADR lung cancer cells and exhibited favorable physical properties.
4
TPH/PTX induced mitochondrial outer membrane permeabilization by suppressing antiapoptotic Bcl-2, thereby triggering cytochrome C release and caspase-3/caspase-9 activation.
5
TPH/PTX showed tumor targeting and significant antitumor efficacy in A549/ADR xenografts and a drug-resistant breast cancer model with lung metastasis.

TPH/PTX nanomicelles targeting mitochondria and tumors in drug-resistant cancer models

Mitochondrial delivery of paclitaxel and induction of mitochondrial apoptosis to overcome multidrug resistance and inhibit tumor growth

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2020-01-09
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He Wang
Fangke Zhang
Huaying Wen
Wenwen Shi
Qiudi Huang
Yugang Huang
Jiacui Xie
LI Pei-yin
Jianhai Chen
Linghao Qin
Yi Zhou
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