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Using In Vitro Live-cell Imaging to Explore Chemotherapeutics Delivered by Lipid-based Nanoparticles
Published on: November 1, 2017
Injectable thermosensitive hydrogel co-loading with ATRi and doxorubicin for the treatment of triple-negative breast
Lan Wei1, Jiaru Zhu1, Qi Wang1
1School of Pharmacy, Medicinal Basic Research Innovation Center of Chronic Kidney Disease, Ministry of Education, Shanxi Provincial Key Laboratory of Drug Synthesis and Novel Pharmaceutical Preparation Technology, Shanxi Medical University Taiyuan 030001 Shanxi Province China.
Abstract:
Chemotherapy has been the first-line treatment option for cancer. However, acquired chemo-resistance led by DNA damage repair (DDR) of cancer cells and serious side-effects of chemotherapeutic agents are huge hurdles to effectively suppress metastatic tumors. Herein, we developed an injectable thermosensitive hydrogel for localized co-delivery of ATRi-BAY-1895344 (BAY) and doxorubicin (DOX), serving as a localized drug depot to minimize systemic toxicity while ensuring sustained tumor-specific drug release exceeding 4 days. The in vitro cumulative drug release rate of DOX and BAY reached up to 73.9% and 63.3% under pH 6.5 conditions. This study pioneers the synergistic combination of a DNA-damaging agent and Ataxia telangiectasia and RAD3-related (ATR) kinase inhibitor ATRi to disrupt the DDR pathway. The ATRi-mediated inhibition of ATR kinase effectively disrupts the replication stress response by impairing the repair of DOX-induced DNA lesions. This dual mechanism significantly enhances tumor cell vulnerability to chemotherapy, ultimately achieving an 8-fold increase in chemosensitivity compared to monotherapy regimens. In triple-negative breast cancer models, the hydrogel-based DOX + BAY@Gel formulation achieved a tumor inhibition rate of 79.4%, significantly surpassing the 58% observed with free DOX monotherapy. This dual-action strategy overcomes chemo-resistance by disabling DDR compensatory mechanisms and prolongs tumor suppression through controlled drug release. The hydrogel platform represents a functional innovation in localized combination therapy, integrating stimuli-responsive drug delivery with DDR pathway disruption for synergistic efficacy.
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