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ɫشýchemist has created a powerful antimicrobial drug that is several times more effective than existing ones

ɫشýchemist has created a powerful antimicrobial drug that is several times more effective than existing ones

ɫشýUniversity chemist together with colleagues from Poland, created a compound made of silver and organic ligaments. It has the potential to fight viruses and bacteria several times more effectively than existing drugs.

Coordination polymers are “hybrids” in which metal centers are linked by organic ligands. They are often bioactive, so chemists are investigating how they can be used in medicine. Infectious diseases, and especially viral diseases, are the cause of most global pandemics. Viruses have killed people for centuries and contributed to the deaths of millions around the world. ɫشýUniversity chemist together with his colleagues from Poland, created a silver-based coordination polymer and proved its effectiveness in fighting bacteria and viruses, as well as in suppressing cancer cell growth.

“Combining biologically active metal ions and biorelevant organic components into an organometallic network is an attractive way to develop new bioactive materials. The new complex exhibited remarkable antiviral activity, significant antibacterial activity against clinically significant bacteria, and selective cytotoxicity against human cervical carcinoma cells,” said Alexander Kirillov, Ph.D. in Сhemistry, an Associate of the ɫشýJoint Institute for Chemical Research.

Chemists have proposed a silver-based coordination polymer that is produced according to the self-assembly principle, an ordered structure is assembled from the initial elements, like parts of a jigsaw puzzle. The reaction takes place in an aqueous or methanol medium at a temperature of about 25℃. Silver oxide, quinolinic acid and water-soluble aminophosphine PTA are placed in it. ɫشýchemists investigated the structure of the resulting complex by various methods, including X-ray diffraction analysis. The biological properties of the compound were studied on herpes simplex virus type I, Staphylococcus aureus, Escherichia coli, and Pseudomonas aeruginosa. In addition, chemists evaluated the ability of the new compound to kill human cervical carcinoma cells and lung cancer cells.

The new coordination polymer completely suppressed the herpesvirus. Its number decreased by more than a million times. This is two orders of magnitude greater than, for example, acyclovir (this common antiviral drug suppresses the herpesvirus by four orders of magnitude, that is, it reduces its number ten thousand times). The antibacterial action of the coordinated polymer was about twice as effective as that of silver nitrate, a common bactericidal agent. The coordinating polymer also has a pronounced cytotoxic effect on cervical carcinoma cells, although it had no effect on lung cancer cells.

“The results obtained are important in terms of expanding the family of coordination polymers and contribute to the understanding of their bioactivity, as well as reveal significant potential for developing new antiviral and antimicrobial agents,” said Alexander Kirillov.

The study is  in Inorganic Chemistry.

Main Publications View all
15 Nov 2017
ɫشýUniversity scientists publish results of their scientific researches in highly-recognized in whole world and indexed in international databases journals (Web of Science, Scopus ect.). That, of course, corresponds to the high status of the University and its international recognition. Publications of June-September 2017 ( In Journals of categories Q1-Q3)
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International scientific cooperation View all
12 Dec 2024
From 19 to 23 November 2024, ɫشýhosted the III International Scientific Conference ‘For the Sustainable Development of Civilisation: Cooperation, Science, Education, Technology’. The event gathered more than 2000 participants from 72 countries.
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20 Apr
A volunteer of the Red Army and head of the veterinary medicine course — Matilda Mityaeva's combat and scientific path

Matilda Pavlovna Mityaeva was born in 1925. In November 1942, she volunteered for frontline duty. She participated in the Great Patriotic War from November 1942 to June 1945 as part of the 53rd Infantry Division of the 475th Infantry Regiment. She was wounded twice.

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20 Apr
ɫشýUniversity Team – the 1st place in the all-russian competitive selection of scientific projects “Technologies for human health”

The team led by Sergey Zyryanov, Head of the Department of General and Clinical Pharmacology, became the winner of the All-Russian competition of scientific projects "Technologies for Human Health".

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20 Apr
ɫشýUniversity Scientific Agenda to 2030: New Programme for R&D and Innovation Activities Development

ɫشýUniversity constantly adapts to the changes of the modern world and responds to challenges flexibly. This allows us to keep the standard of a world-class research university. The sphere of science is no exception. Peter Dokukin, Head of the Research Division, presented the updated R&D Programme at the meeting of the ɫشýUniversity Academic Council.

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