ArticleInternational journal of nanomedicine2022
Glucose-Functionalized Silver Nanoparticles as a Potential New Therapy Agent Targeting Hormone-Resistant Prostate Cancer cells.
Article in International journal of nanomedicine, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 18 papers.
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Who cites it
18 citing papers in PubMed, 34 citations in OpenAlex.
- Green synthesis of silver nanoparticles usingFrontiers in pharmacology · 2026Article
- Targeted anticancer effects of Juglone-ZnO nanoparticles via cell cycle arrest and caspase-mediated apoptosis in colon cancer cells.Scientific reports · 2025Article
- Nanoparticle-based drug delivery systems in urologic oncology: From targeted therapy to precision theranostics.Materials today. Bio · 2025Review
- In vitro antiproliferative effects of green synthesized silver nanoparticles from Brassica carinata microgreens on DU-145 prostate cancer cells and In vivo safety assessment.Journal, genetic engineering & biotechnology · 2025Article
- Article
- Tailoring innovative silver nanoparticles for modern medicine: The importance of size and shape control and functional modifications.Materials today. Bio · 2025Review
- Functionalized Nanomaterials in Cancer Treatment: A Review.International journal of molecular sciences · 2025Review
- Bibliometric analysis of glycolysis and prostate cancer research from 2004 to 2024.Discover oncology · 2025Article
- Targeted therapy and biomarker-guided applications of ecofriendly silver nanoparticles in precision oncology.Journal of pharmacy & pharmaceutical sciences : a publication of the Canadian Society for Pharmaceutical Sciences, Societe canadienne des sciences pharmaceutiques · 2025Review
- Ginsenoside Rh2 repressed the progression of prostate cancer through the mitochondrial damage induced by mitophagy and ferroptosis.Frontiers in oncology · 2025Article
- Evaluation the cytotoxic effect of FeHeliyon · 2024Article
- Silver Nanoparticles (AgNPs) Uptake by Caveolae-Dependent Endocytosis is Responsible for Their Selective Effect Towards Castration Resistant Prostate Cancer.International journal of nanomedicine · 2024Article
- Silver Nanoparticles (AgNPs) as Enhancers of Everolimus and Radiotherapy Sensitivity on Clear Cell Renal Cell Carcinoma.Antioxidants (Basel, Switzerland) · 2023Article
- The Effect of Sargassum Angustifolium-derived AgNPs on Apoptosis-associated Genes in Acute Lymphoblastic Leukemia Cells.Asian Pacific journal of cancer prevention : APJCP · 2023Article
- Functionalized Metal Nanoparticles in Cancer Therapy.Pharmaceutics · 2023Review
- Functionalized and Nonfunctionalized Nanosystems for Mitochondrial Drug Delivery with Metallic Nanoparticles.Molecules (Basel, Switzerland) · 2023Review
- Green Nanoformulations of Polyvinylpyrrolidone-Capped Metal Nanoparticles: A Study at the Hybrid Interface with Biomimetic Cell Membranes and In Vitro Cell Models.Nanomaterials (Basel, Switzerland) · 2023Article
- The Role of Silver Nanoparticles in the Diagnosis and Treatment of Cancer: Are There Any Perspectives for the Future?Life (Basel, Switzerland) · 2023Review
Corrections and comments
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Authors and funding
11 authors at 4 institutions in 3 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Purpose: Silver nanoparticles (AgNPs) have shown great potential as anticancer agents, namely in therapies' resistant forms of cancer. The progression of prostate cancer (PCa) to resistant forms of the disease (castration-resistant PCa, CRPC) is associated with poor prognosis and life quality, with current limited therapeutic options. CRPC is characterized by a high glucose consumption, which poses as an opportunity to direct AgNPs to these cancer cells. Thus, this study explores the effect of glucose functionalization of AgNPs in PCa and CRPC cell lines (LNCaP, Du-145 and PC-3). Methods: AgNPs were synthesized, further functionalized, and their physical and chemical composition was characterized both in water and in culture medium, through UV-visible spectrum, dynamic light scattering (DLS), transmission electron microscopy (TEM) and Fourier-transform infrared spectroscopy (FTIR). Their effect was assessed in the cell lines regarding AgNPs' entering pathway, cellular proliferation capacity, ROS production, mitochondrial membrane depolarization, cell cycle analysis and apoptosis evaluation. Results: AgNPs displayed an average size of 61nm and moderate monodispersity with a slight increase after functionalization, and a round shape. These characteristics remained stable when redispersed in culture medium. Both AgNPs and G-AgNPs were cytotoxic only to CRPC cells and not to hormone-sensitive ones and their effect was higher after functionalization showing the potential of glucose to favor AgNPs' uptake by cancer cells. Entering through endocytosis and being encapsulated in lysosomes, the NPs increased the ROS, inducing mitochondrial damage, and arresting cell cycle in S Phase, therefore blocking proliferation, and inducing apoptosis. Conclusion: The nanoparticles synthesized in the present study revealed good characteristics and stability for administration to cancer cells. Their uptake through endocytosis leads to promising cytotoxic effects towards CRPC cells, revealing the potential of G-AgNPs as a future therapeutic approach to improve the management of patients with PCa resistant to hormone therapy or metastatic disease.
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