EventsThe 1st International Electronic Conference on Antibiotics
Published
with-doi10.3390/ECA2021-09370 (registering DOI)
This submission belongs to the session B. Antimicrobial Discovery, Development, Stewardship and Susceptibility Testing of the event The 1st International Electronic Conference on Antibiotics
Published date
28 Feb, 2021
Citation
Sávio Benvindo Ferreira, Igor de Sousa Oliveira, Hélida Maravilha Dantas e Sousa Almeida, Action potential of aminonitriles in active sites of carbonic anhydrase isoforms, in Proceedings of The 1st International Electronic Conference on Antibiotics, 8 May–17 May 2021, MDPI: Basel, Switzerland, doi: 10.3390/ECA2021-09370
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Action potential of aminonitriles in active sites of carbonic anhydrase isoforms

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1. Teacher Training Center (CFP) - Federal University of Campina Grande - Cajazeiras - Paraíba - Brazil.
2. Teacher Training Center (CFP) - Federal University of Campina Grande - Cajazeiras - Paraíba - Brazil
3. Teacher Training Center (CFP) - Federal University of Campina Grande - Cajazeiras - Paraíba - Brazil., Brazil
Abstract

Heterocyclic compounds have gained notoriety in the pharmaceutical universe after studies in numbers. Such compounds make the spectrum of action and development of countless drugs more flexible, and may become a viable alternative for, mainly, or antimicrobial development. In this perspective, the aminonitriles that lead the subgroup of notoriety in this advance are inserted, since, through their characteristic characteristics, an example of stability and resistance to hydrolysis, offers a forceful interaction with pathogens. Also, this relationship is closely related to enzymatic interactions of metabolic functioning, mainly not that it concerns the functioning of carbonic anhydrase and its isoforms. Given this, it is inferred to optimize and understand the bibliographic data already available to expand the field of compound actions, thereby characterizing the recognition of its possibilities for applicability in various pathologies.

Keywords
Aminonitrile
Carbonic anhydrase
Active site.
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