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Updated: Jun 5, 2026

Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
SBA-15 nanostructures enable tumor-selective delivery of Ph4Sn with enhanced anticancer activity in melanoma models
David Edeler1, Dijana Bovan2, Tamara Krajnović2
1Institute of Chemistry, Martin Luther University Halle-Wittenberg, Kurt-Mothes-Straße 2, Halle, D-06120, Germany.
Abstract:
Alkylarylorganotin compounds, PhnHex4-nSn (n = 0-4), were prepared, characterized and immobilized into mesoporous nanostructured silica SBA-15. SBA-15 loaded with Ph4Sn (SBA-15|Ph4Sn) showed markedly enhanced antiproliferative activity against B16 and A375 melanoma cells with a >50-fold increase in potency in comparison to its organotin counterpart, demonstrating that SBA-15 significantly enhances the antitumor activity of Ph4Sn. Moreover, SBA-15 increased selectivity toward cancer cells, while free Ph4Sn affected the viability of peritoneal exudate cells (PECs) as well as primary cell line IMLEC. Both free and immobilized Ph4Sn suppressed the division rate of melanoma cells along with an activation of Bax and Bim mediated proapoptotic signaling pathway, supported by molecular docking studies, leading to caspase-dependent apoptosis. A significant reduction in tumor size in melanoma syngeneic model induced by s.c. inoculation of B16 cells in C57BL/6 mice revealed superior therapeutic performance of immobilized tetraphenyltin(IV) in comparison to the free compound with no observable systemic toxicity, in contrast to the severe side effects observed in animals treated with CP (cisplatin). Pharmacokinetic modeling further highlights the significant improvement in solubility, bioavailability, and tissue selectivity conferred by SBA-15 immobilization.
