Understanding and Improving Platinum Anticancer Drugs
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1.Polyamines sustain epithelial regeneration in aged intestines by modulating protein homeostasis.
- Minetti, Alberto;Omrani, Omid;Brenner, Christiane;Cansiz, Feyza;Imada, Shinya;Rosler, Jonas;Khawaled, Saleh;Allies, Gabriele;Meckelmann, Sven W;Gebert, Nadja;Heinze, Ivonne;Rahnis, Norman;Lu, Jing;Spengler, Katrin;Rasa, Mahdi;Cirri, Emilio;Heller, Regine;Yilmaz, Omer;Tasdogan, Alpaslan;Neri, Francesco;Ori, Alessandro
- 《Nature cell biology》
- 2025年
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Ageing dampens the regenerative potential of intestinal epithelium across species including humans, yet the underlying causes remain elusive. Here we characterized the temporal dynamics of regeneration following injury induced by 5-fluorouracil, a commonly used chemotherapeutic agent, using proteomic and metabolomic profiling of intestinal tissues together with functional assays. The comparison of regeneration dynamics in mice of different ages revealed the emergence of proteostasis stress and increased levels of polyamines following injury exclusively in old epithelia. We show that delayed regeneration is an intrinsic feature of aged epithelial cells that display reduced protein synthesis and the accumulation of ubiquitylated proteins. The inhibition of the polyamine pathway in vivo further delays regeneration in old mice, whereas its activation by dietary intervention or supplementation of polyamines is sufficient to enhance the regenerative capacity of aged intestines. Our findings highlight the promising epithelial targets for interventions aimed at tackling the decline in tissue repair mechanisms associated with ageing. © 2025. The Author(s).
...2.Leveraging platinum-protein interactions to overcome chemoresistance.
- 关键词:
- 0 / Antineoplastic Agents. 80168379AG / Doxorubicin. 49DFR088MY / Platinum. 0 / Organoplatinum Compounds
- Wang, Fang;Braverman, Jonathan;Eng, George;Leylek, Ozen;Petrone, Nicholas L;Honeycutt, Daniel S;Imada, Shinya;Pallares, Brian;Zhang, Daiyao;Mrosla, Jason M;Huang, Camellia S;Griadunova, Anna A;McCarthy, William K;Goldberg, Jacob M;Hemann, Michael T;Lippard, Stephen J;Yilmaz, Omer H
- 《Nature communications》
- 2025年
- 16卷
- 1期
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A common mechanism by which cancer cells acquire resistance to chemotherapeutics is through the overexpression of efflux pumps, enabling the removal of cytotoxic agents, such as anthracycline drugs. However, platinum anticancer agents that crosslink DNA and interact with proteins are poor efflux pump substrates. Here, we design dual warhead drug conjugates by tethering a platinum pharmacophore to the doxorubicin backbone. These drug conjugates retain the anticancer activity of anthracyclines and exhibit the ability to both circumvent drug efflux and delay the acquisition of drug resistance. In vivo experiments demonstrate that such drug conjugates extend survival in a preclinicalorganoid-based model of metastatic colon cancerin mice. Mechanistic studies indicate that these drug conjugates overcome resistance through covalent platinum-protein interactions, leading to significantly improved drug retention and alteration of subcellular drug distribution. This application of platinum offers many opportunities to confront issues related to chemoresistance and alternative pathways for augmenting conventional chemotherapeutics. © 2025. The Author(s).
...3.DIAGNOSTIC USES FOR DNA STRUCTURE SPECIFIC RECOGNITION PROTEIN
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4.ANTICANCER DRUG-CONTAINING PLANT VIRUS PARTICLES
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5.Highly Potent Monofunctional Platinum(II)Anticancer Agents,cDACP(acroplatin)and cDPnCP(phenanthroplatin)
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6. Kõuts-Klemm, Ragne; Jõesaar, Andres (2020). Meedia olukord ja arengusuunad: Infokanalite olulisus ja usaldusväärsus. Ude, Indrek; Vihalemm, Peeter; Lõhmus, Maarja (Toim.). Eesti Akadeemilise Ajakirjanduse Seltsi aastaraamat 2019. (104−106). Tartu: Eesti Akadeemiline Ajakirjanduse Selts.
7.Metabolism and Colorectal Cancer
- 关键词:
- colorectal cancer; metabolism; diet; microbiome;STEM-CELL FUNCTION; HIGH-FAT-DIET; VITAMIN-D; MOLECULAR-MECHANISMS;CALORIE RESTRICTION; UP-REGULATION; HUMAN COLON; LIFE-SPAN; OBESITY;RISK
Reprogrammed metabolism is a hallmark of colorectal cancer (CRC). CRC cells are geared toward rapid proliferation, requiring nutrients and the removal of cellular waste in nutrient-poor environments. Intestinal stem cells (ISCs), the primary cell of origin for CRCs, must adapt their metabolism along the adenoma-carcinoma sequence to the unique features of their complex microenvironment that include interactions with intestinal epithelial cells, immune cells, stromal cells, commensal microbes, and dietary components. Emerging evidence implicates modifiable risk factors related to the environment, such as diet, as important in CRC pathogenesis. Here, we focus on describing the metabolism of ISCs, diets that influence CRC initiation, CRC genetics and metabolism, and the tumor microenvironment. The mechanistic links between environmental factors, metabolic adaptations, and the tumor microenvironment in enhancing or supporting CRC tumorigenesis are becoming better understood. Thus, greater knowledge of CRC metabolism holds promise for improved prevention and treatment.
...8.Osmium(VI)Nitrido Complexes Bearing Aromatic Bi-dentates Ligands as Anticancer Agents
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9.PLATINUM-CONTAINING COMPOUNDS,AND RELATED COMPOSITIONS AND USES THEREOF
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- 授权日:2023-01-01T00:00:00.001}
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10.Coordination Complexes and Methods for Prepaing by Combinatorial Methods,Assaying and Using The Same
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- 授权日:2023-01-01T00:00:00.001}
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