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852411-45-1

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852411-45-1 Usage

Chemical structure

Pyrrolidine derivative with a 2-nitrophenyl group and a methylsulfonyl substituent

Field of application

Medicinal chemistry

Biological activity

Exhibits potential as an anticancer agent

Nitroreduction potential

Presence of the nitrophenyl group suggests the possibility of undergoing nitroreduction reactions in biological systems

Cytotoxic intermediates

Nitroreduction may lead to the formation of potentially cytotoxic reactive intermediates

Methylsulfonyl group

May contribute to the compound's ability to interact with biological targets or exhibit specific pharmacokinetic properties

Further research

Needed to fully elucidate the pharmacological profile and potential therapeutic applications of 1-[4-(Methylsulfonyl)-2-nitrophenyl]pyrrolidine

Check Digit Verification of cas no

The CAS Registry Mumber 852411-45-1 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 8,5,2,4,1 and 1 respectively; the second part has 2 digits, 4 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 852411-45:
(8*8)+(7*5)+(6*2)+(5*4)+(4*1)+(3*1)+(2*4)+(1*5)=151
151 % 10 = 1
So 852411-45-1 is a valid CAS Registry Number.

852411-45-1Downstream Products

852411-45-1Relevant articles and documents

Optimisation of 2-(N-phenyl carboxamide) triazolopyrimidine antimalarials with moderate to slow acting erythrocytic stage activity

Bailey, Brodie L.,Nguyen, William,Ngo, Anna,Goodman, Christopher D.,Gancheva, Maria R.,Favuzza, Paola,Sanz, Laura M.,Gamo, Francisco-Javier,Lowes, Kym N.,McFadden, Geoffrey I.,Wilson, Danny W.,Laleu, Beno?t,Brand, Stephen,Jackson, Paul F.,Cowman, Alan F.,Sleebs, Brad E.

, (2021/08/30)

Malaria is a devastating parasitic disease caused by parasites from the genus Plasmodium. Therapeutic resistance has been reported against all clinically available antimalarials, threatening our ability to control the disease and therefore there is an ongoing need for the development of novel antimalarials. Towards this goal, we identified the 2-(N-phenyl carboxamide) triazolopyrimidine class from a high throughput screen of the Janssen Jumpstarter library against the asexual stages of the P. falciparum parasite. Here we describe the structure activity relationship of the identified class and the optimisation of asexual stage activity while maintaining selectivity against the human HepG2 cell line. The most potent analogues from this study were shown to exhibit equipotent activity against P. falciparum multidrug resistant strains and P. knowlesi asexual parasites. Asexual stage phenotyping studies determined the triazolopyrimidine class arrests parasites at the trophozoite stage, but it is likely these parasites are still metabolically active until the second asexual cycle, and thus have a moderate to slow onset of action. Non-NADPH dependent degradation of the central carboxamide and low aqueous solubility was observed in in vitro ADME profiling. A significant challenge remains to correct these liabilities for further advancement of the 2-(N-phenyl carboxamide) triazolopyrimidine scaffold as a potential moderate to slow acting partner in a curative or prophylactic antimalarial treatment.

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