Alkaline Phosphatase-Responsive Composite Hydrogels Modulating Tumor Mechanical Properties for Cervical Cancer
Jiaqi Wang1,2, Jingnan Zhao1, Rui Liu1
1School of Pharmaceutical Sciences, Henan Key Laboratory of Nanomedicine for Targeting Diagnosis and Treatment, ChinaPingyuan Laboratory, State Key Laboratory of Antiviral Drugs, Zhengzhou University, No. 100 Science Ave, Zhengzhou450001, PR China.
Abstract:
Alkaline phosphatase (ALP) is aberrantly overexpressed in cervical tumor cells, particularly HeLa cells, rendering it a promising endogenous trigger for tumor therapeutic interventions. Herein, a thiol-functionalized ALP-responsive peptide (pY) was integrated with gold nanoparticles (Au NPs) via Au-S bonds to fabricate the composite hydrogel precursor (Au-pY). Upon catalysis by tumor-overexpressed ALP, Au-pY self-assembles into Au NP-embedded composite hydrogels (Au-Gel) both intracellularly and extracellularly. Au-Gel exhibits enhanced mechanical properties compared to pure peptide hydrogels. It acts as an extracellular physical barrier and upregulates Lamin A/C, a key protein associated with nuclear stiffness. This in turn disrupts actin cytoskeleton dynamics and suppresses the migration and invasion of HeLa cells, promoting cell apoptosis. Furthermore, Au-Gel-mediated photothermal therapy, triggered by near-infrared irradiation, potentiated the cytotoxicity against HeLa cells and facilitated cell apoptosis/necrosis. Further in vivo investigations demonstrated that Au-Gel effectively inhibits both cervical tumor growth and lung metastasis in a HeLa cell xenograft nude mouse model. Our findings underscore the promising application of Au-Gel in cervical cancer therapy, providing novel insights and strategies into multipronged approaches to combat cervical cancer.
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