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Highly Efficient Synergistic Chemotherapy and Magnetic Resonance Imaging for Targeted Ovarian Cancer Therapy Using Hyaluronic Acid-Coated Coordination Polymer Nanoparticles. | LitMetric

AI Article Synopsis

  • Ovarian cancer is often diagnosed too late, with over 70% of cases at an advanced stage, leading to poor outcomes; MRI is the best preoperative assessment tool, while cisplatin-based chemotherapy is the standard treatment.
  • A new technique uses nanoparticles (HA@PFG NPs) made from a cisplatin prodrug (Pt-COOH), iron, and natural polyphenols (Gossypol) to enhance drug delivery and release at tumor sites, allowing for controlled drug release and effective treatment.
  • Experimental results show that HA@PFG NPs can reduce tumor activity in a patient-derived model and work through specific signaling pathways, suggesting a promising integrated approach of MRI and

Article Abstract

The diagnosis and treatment of ovarian cancer (OC) are still a grand challenge, more than 70% of patients are diagnosed at an advanced stage with a dismal prognosis. Magnetic resonance imaging (MRI) has shown superior results to other examinations in preoperative assessment, while cisplatin-based chemotherapy is the first-line treatment for OC. However, few previous studies have brought together the two rapidly expanding fields. Here a technique is presented using cisplatin prodrug (Pt-COOH), Fe, and natural polyphenols (Gossypol) to construct the nanoparticles (HA@PFG NPs) that have a stable structure, controllable drug release behavior, and high drug loading capacity. The acidic pH values in tumor sites facilitate the release of Fe, Pt-COOH, and Gossypol from HA@PFG NPs. Pt-COOH with GSH consumption and cisplatin-based chemotherapy plus Gossypol with pro-apoptotic effects displays a synergistic effect for killing tumor cells. Furthermore, the release of Fe at the tumor sites promotes ferroptosis and enables MRI imaging of OC. In the patient-derived tumor xenograft (PDX) model, HA@PFG NPs alleviate the tumor activity. RNA sequencing analysis reveals that HA@PFG NPs ameliorate OC symptoms mainly through IL-6 signal pathways. This work combines MRI imaging with cisplatin-based chemotherapy, which holds great promise for OC diagnosis and synergistic therapy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11538696PMC
http://dx.doi.org/10.1002/advs.202309464DOI Listing

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