AI Article Synopsis

  • Cisplatin is a key anticancer drug but causes kidney damage, prompting research for safer alternatives.
  • A new platinum complex, Pt(TSC)Cl, was developed and shown to have potent anti-cancer activity against various cell lines, particularly Caco-2, with lower toxicity compared to cisplatin.
  • The Pt(TSC)Cl complex induces high levels of apoptosis via the intrinsic pathway, suggesting it could be a promising candidate for colorectal cancer treatment with reduced nephrotoxicity.

Article Abstract

As a platinum-containing anticancer drug, cisplatin is the keystone for treating many malignancies. Nephrotoxicity is the main dose-limiting toxicity, and several hydration therapies and supplementary strategies are utilized to reduce cisplatin-induced kidney damage, so the discovery and development of effective and safe antitumor drugs are still on the path of human health. Herein, a new four-coordinated Pt complex [Pt(TSC)Cl] using N(4)-phenyl-2-formylpyridine thiosemicarbazone (HTSC) was synthesized and characterized by single-crystal X-ray diffraction, HNMR, FT-IR, LC/MS and CHN elemental analysis. The Pt(TSC)Cl complex revealed antiproliferative activity against A549, MCF-7 and Caco-2 cell lines with a low micromolar IC (200-1.75 µM). Specifically, the Pt(TSC)Cl complex displayed more selectivity in Caco-2 cells (IC = 2.3 µM) than cisplatin (IC = 107 µM) after 48 h of treatment. Moreover, compared with cisplatin, a known nephrotoxic drug, the Pt(TSC)Cl complex exhibited lower nephrotoxicity against Hek293 normal cells. We also found that the Pt(TSC)Cl complex can effectively prevent cancer cell propagation in sub-G1 and S phases and induce apoptosis (more than 90%). Real time PCR and western analysis demonstrated that the expression pattern of apoptotic genes and proteins is according to the intrinsic apoptosis pathway through the Bax/Bcl-2-Casp9-Casp3/Casp7 axis. Collectively, our findings indicated that the Pt(TSC)Cl complex triggers apoptosis in Caco-2 cell lines, while low nephrotoxicity was shown and may be considered a useful anticancer drug candidate for colorectal cancers for further optimization and growth.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9117324PMC
http://dx.doi.org/10.1038/s41598-022-11904-3DOI Listing

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Article Synopsis
  • Cisplatin is a key anticancer drug but causes kidney damage, prompting research for safer alternatives.
  • A new platinum complex, Pt(TSC)Cl, was developed and shown to have potent anti-cancer activity against various cell lines, particularly Caco-2, with lower toxicity compared to cisplatin.
  • The Pt(TSC)Cl complex induces high levels of apoptosis via the intrinsic pathway, suggesting it could be a promising candidate for colorectal cancer treatment with reduced nephrotoxicity.
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Building up Pt -Thiosemicarbazone-Lysine-sC18 Conjugates.

Chembiochem

February 2021

Universität zu Köln, Department für Chemie, Institut für Anorganische Chemie, Greinstraße 6, 50939, Köln, Germany.

Three chiral tridentate N^N^S coordinating pyridine-carbaldehyde (S)-N4-(α-methylbenzyl)thiosemicarbazones (HTSCmB) were synthesised along with lysine-modified derivatives. One of them was selected and covalently conjugated to the cell-penetrating peptide sC18 by solid-phase peptide synthesis. The HTSCmB model ligands, the HTSCLp derivatives and the peptide conjugate rapidly and quantitatively form very stable Pt chlorido complexes [Pt(TSC)Cl] when treated with K PtCl in solution.

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