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  • Синтез, строение и цитотоксические свойства комплексов платины(IV), содержащих аминоксильные и дихлорацетатные лиганды
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News
October 5, 2026
‘The Climate Transition Is Not Necessarily a Limitation for Business
Linara Khadimullina works in the field of low-carbon development. In an interview with the Young Scientists of HSE project, she spoke about why nature is not just a beautiful backdrop, her research on the role of sustainable corporate governance in reducing greenhouse gas emissions, and growing plants as a source of inspiration.
October 5, 2026
Africa, Youth, and Civic Dialogue: Public Diplomacy Discussed at HSE University
In late September, HSE University hosted a roundtable discussion titled Civil Society in African Countries and Youth Participation in Public Diplomacy. Representatives of non-governmental organisations from Ghana, Ethiopia, and Russia, along with students from HSE University’s Bachelor’s Programme in Public Administration, discussed how young people without official diplomatic status can influence relations between countries and how the nonprofit sector can remain sustainable amid declining grant funding.
October 1, 2026
HSE Researchers Show How Congenital Motor Disorders Affect Brain Development
Researchers from HSE University’s Institute for Cognitive Neuroscience have synthesised the findings of their previous studies on brain development in children with obstetric brachial plexus palsy and arthrogryposis. Their analysis shows that impaired motor function in early childhood not only limits children’s motor experience but also affects memory, categorical thinking, and information processing. The study has been published in Frontiers in Psychology.

 

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Синтез, строение и цитотоксические свойства комплексов платины(IV), содержащих аминоксильные и дихлорацетатные лиганды

Известия РАН. Серия химическая. 2023. Т. 72. № 7. С. 1680–1687.
Сень В. Д., Филатова Н. В., Шилов Г. В., Terentiev A.

New platinum(IV)-aminoxyl complexes (PAC) 2a,b have been synthesized, containing aminoxyl radical with antioxidant properties in one of equatorial position, and axial ligands are represented by dichloroacetate, capable of inhibiting energy production through glycolysis in tumor cells. Complexes 2a,b are characterized by moderate lipophilicity (lg Pow ~2) and differ in the redox properties of aminoxyls. Cytotoxic properties of complexes 2a,b were studied in tumor (HeLa, HepG2, MCF-7) and non-tumor Vero cells in comparison with cisplatin (CP), satraplatin (JM216), as well as with PAC 3a,b containing axial acetate ligands. The cytotoxicity of complexes 2a,b against tumor cells (IC50 19-171 mkM) was 2-11 fold higher than that of complexes 3a,b and comparable to that of CP and JM216 (IC50 10-187 mkM). For Vero non–tumor cells, the cytotoxicity of 2a,b (IC50 62-124 mkM) was significantly lower than that of CP and JM216 (IC50 17.6-33 mkM).

Research target: Chemistry Biology
Language: Russian
DOI
Text on another site
Keywords: цитотоксичностьCisplatinцисплатинmolecular structurecytotoxicityмолекулярная структураplatinum(IV) complexesaminoxyl radicalsnitroxyl radicalsdichloroacetateплатины(IV) комплексырадикалы аминоксильныерадикалы нитроксильныедихлорацетат
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