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1-(3-chloro-phenyl)-2-methyl-5-phenyl-pyrrole is a complex organic compound with the molecular formula C18H15ClN. It features a pyrrole ring, which is a five-membered aromatic ring containing one nitrogen atom, and is substituted with a 3-chlorophenyl group at the 1-position, a methyl group at the 2-position, and a phenyl group at the 5-position. This chemical is known for its potential applications in the synthesis of pharmaceuticals and other organic compounds due to its unique structure and reactivity. The presence of the chlorine atom allows for further functionalization, making it a valuable intermediate in organic synthesis.

26165-77-5

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26165-77-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 26165-77-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,6,1,6 and 5 respectively; the second part has 2 digits, 7 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 26165-77:
(7*2)+(6*6)+(5*1)+(4*6)+(3*5)+(2*7)+(1*7)=115
115 % 10 = 5
So 26165-77-5 is a valid CAS Registry Number.

26165-77-5Downstream Products

26165-77-5Relevant academic research and scientific papers

Synthesis and biological evaluation of 2-(2-methyl-1H-pyrrol-3-yl)-2-oxo-N-(pyridine-3-yl) acetamide derivatives: in vitro α-glucosidase inhibition, and kinetic and molecular docking study

Tafesse, Tadesse Bekele,Moghadam, Ebrahim Saeedian,Bule, Mohammed Hussen,Abadian, Neda,Abdollahi, Mohammad,Faramarzi, Mohammad Ali,Amini, Mohsen

, p. 1583 - 1596 (2020)

One of the therapeutic approaches in the management of type 2 diabetes is delaying the glucose absorption through α-glucosidase enzyme inhibition, which can reduce the occurrence of postprandial hyperglycemia. Based on this thought, a series of novel chloro-substituted 2-(2-methyl-1-phenyl-1H-pyrrol-3-yl)-2-oxo-N-(pyridin-3-yl) acetamide derivatives 5a–i were synthesized and their α-glucosidase inhibitory activities were evaluated. All the synthesized compounds have shown moderate to excellent in vitro α-glucosidase inhibitory activity with IC50 values in the range of 111–673?μM) as compared to acarbose, the standard drug (750 ± 9?μM). Compound 5e (111 ± 12?μM), among the series, was the most potent inhibitor of α-glucosidase in a competitive mode of action based on the kinetic study. The molecular docking study of compounds 5e and 5a revealed that they have a lower free binding energy (? 4.27?kcal/mol and ? 3.17?kcal/mol, respectively) than acarbose (? 2.47?kcal/mol), which indicates that the target compound binds more easily to the enzyme than acarbose does. The outcomes from the molecular docking studies supported the results obtained from the in vitro assay. In conclusion, the overall results of our study reveal that the synthesized compounds could be a potential candidate in the search for novel α-glucosidase inhibitors to manage postprandial hyperglycemia incidence.

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