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Plant-Derived Exosomes as Emerging Therapeutics in Prostate Cancer: A Multifunctional Nanobiotechnology Approach

dc.contributor.authorDincer, Zeynep Yaren
dc.contributor.authorZiksahna, Kaan
dc.contributor.authorOzkan, Melisa
dc.contributor.authorIhlamur, Murat
dc.date.accessioned2026-06-27T15:25:34Z
dc.date.issued2026
dc.description.abstractBackgroundPlant-derived extracellular vesicles (PDEVs) (often referred to in this review as 'plant-derived exosomes') have recently emerged as promising nanocarriers with intrinsic therapeutic potential. Their biocompatibility, scalability, and phytochemical cargo distinguish them from mammalian exosomes and synthetic nanocarriers. While PDEVs have been studied across various cancers, their applications in prostate cancer-a disease characterized by therapy resistance, inflammation, and metastatic progression-remain underexplored.ObjectiveThis review summarizes current knowledge on PDEVs with a specific focus on their anticancer potential in prostate cancer.MethodsLiterature from PubMed, Web of Science, and Scopus was critically reviewed, emphasizing studies on PDEVs in cancer models, with attention to prostate cancer-related evidence.ResultsPDEVs can induce apoptosis, suppress proliferation, modulate immune responses, and inhibit metastatic processes. Ginger, grape, green tea, garlic, apple, aloe vera, and pomegranate exosomes carry bioactive compounds such as polyphenols and flavonoids that exert antitumor effects. In prostate cancer, these mechanisms are particularly relevant for overcoming androgen receptor-driven proliferation, suppressing chronic inflammation, and preventing bone metastases. PDEVs also hold promise as delivery vehicles for prostate-targeted strategies, including PSMA-directed therapies and AR-silencing siRNAs.ConclusionsPDEVs represent a dual-function platform-providing intrinsic anticancer activity and serving as natural nanocarriers. Their novelty in prostate cancer lies in the ability to combine phytochemical activity with targeted drug delivery. Future directions include engineering PDEVs for prostate-specific delivery and testing them in robust preclinical and clinical models. Despite encouraging findings, the absence of prostate cancer-specific animal models and clinical trials remains a major translational barrier.en
dc.description.urihttps://doi.org/10.1007/s44411-025-00387-z
dc.identifier.doi10.1007/s44411-025-00387-z
dc.identifier.eissn1336-0345
dc.identifier.endpage78
dc.identifier.issn0006-9248
dc.identifier.issue1
dc.identifier.startpage61
dc.identifier.urihttps://hdl.handle.net/20.500.14981/70835
dc.identifier.volume127
dc.identifier.wos001599486700001
dc.language.isoeng
dc.publisherSPRINGERNATURE
dc.relation.ispartofBRATISLAVA MEDICAL JOURNAL
dc.rightsopenAccess
dc.subjectPlant-derived exosomes
dc.subjectProstate cancer
dc.subjectApoptosis
dc.subjectImmunomodulation
dc.subjectTargeted drug delivery
dc.subjectNANOVESICLES
dc.subjectDELIVERY
dc.subjectGINGER
dc.subjectCELLS
dc.subjectNANOPARTICLES
dc.subjectRESISTANCE
dc.subjectVESICLES
dc.subjectCOLITIS
dc.subjectDAMAGE
dc.subjectTEA
dc.subjectGeneral & Internal Medicine
dc.titlePlant-Derived Exosomes as Emerging Therapeutics in Prostate Cancer: A Multifunctional Nanobiotechnology Approach
dc.typeReview
dspace.entity.typePublication
local.import.sourceWOS

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