Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate
Medically, bacterial ureases are important virulent factors and are used for treatment of peptic ulcers and urinary tones. Reported urease inhibitors are associated with various side effects including antibiotic resistance as a major one. Still there is an urgent need to synthesize new urease inhibi...
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doaj-e9849735b3284d69b3d422d168904c972020-11-25T01:40:12ZengElsevierProgress in Natural Science: Materials International1002-00712019-04-01292129137Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylateSyeda Sohaila Naz0Muhammad Raza Shah1Nazar Ul Islam2Syed Sartaj Alam3Nanosciences and Technology Department, National Centre for Physics, Quaid-i-Azam University Campus, Islamabad 44000, Pakistan; Corresponding author.ICCBS, H.E.J. Research Institute of Chemistry, University of Karachi, Karachi 75270, PakistanInstitute of Chemical Sciences, University of Peshawar, Peshawar 25120, Pakistan; Sarhad University of Science and Information Technology, Peshawar 2500, PakistanDepartment of Plant Pathology, The University of Agriculture, Peshawar, PakistanMedically, bacterial ureases are important virulent factors and are used for treatment of peptic ulcers and urinary tones. Reported urease inhibitors are associated with various side effects including antibiotic resistance as a major one. Still there is an urgent need to synthesize new urease inhibitors. In this context we have synthesized new urease inhibitor i.e. AgL that is composed of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate (L). The conjugation of L to silver was confirmed through FTIR, UV–vis and TEM analysis. Bare silver nanomaterials (Ag) were also prepared. The stability of AgL nanostructures was determined against various parameters (temperature, high salt concentration, pH) and found to be stable. The in vitro antimicrobial (antibacterial, antifungal), enzyme inhibition (xanthine oxidase, urease, carbonic anhydrase, α-chymotrypsin, cholinesterase) and antioxidant activities of AgL were investigated and compared with Ag, L and standard drugs. In comparison to other bioactivities, AgL shows statistically enhanced selective enzyme inhibition activity against urease enzyme. Urease inhibition activity of AgL was significantly greater than standard drug (thiourea), L and Ag. On a per weight basis, AgL required about 11–18 times less amount of L for inhibition of urease enzyme. Keywords: β-Resorcylic acid, N-Substituted methyl 5-acetamido-β-resorcylate, Silver nanomaterials, Enhanced urease inhibition activityhttp://www.sciencedirect.com/science/article/pii/S1002007118305537 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Syeda Sohaila Naz Muhammad Raza Shah Nazar Ul Islam Syed Sartaj Alam |
spellingShingle |
Syeda Sohaila Naz Muhammad Raza Shah Nazar Ul Islam Syed Sartaj Alam Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate Progress in Natural Science: Materials International |
author_facet |
Syeda Sohaila Naz Muhammad Raza Shah Nazar Ul Islam Syed Sartaj Alam |
author_sort |
Syeda Sohaila Naz |
title |
Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate |
title_short |
Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate |
title_full |
Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate |
title_fullStr |
Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate |
title_full_unstemmed |
Enhanced urease inhibition activity of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate |
title_sort |
enhanced urease inhibition activity of ag nanomaterials capped with n-substituted methyl 5-acetamido-β-resorcylate |
publisher |
Elsevier |
series |
Progress in Natural Science: Materials International |
issn |
1002-0071 |
publishDate |
2019-04-01 |
description |
Medically, bacterial ureases are important virulent factors and are used for treatment of peptic ulcers and urinary tones. Reported urease inhibitors are associated with various side effects including antibiotic resistance as a major one. Still there is an urgent need to synthesize new urease inhibitors. In this context we have synthesized new urease inhibitor i.e. AgL that is composed of Ag nanomaterials capped with N-substituted methyl 5-acetamido-β-resorcylate (L). The conjugation of L to silver was confirmed through FTIR, UV–vis and TEM analysis. Bare silver nanomaterials (Ag) were also prepared. The stability of AgL nanostructures was determined against various parameters (temperature, high salt concentration, pH) and found to be stable. The in vitro antimicrobial (antibacterial, antifungal), enzyme inhibition (xanthine oxidase, urease, carbonic anhydrase, α-chymotrypsin, cholinesterase) and antioxidant activities of AgL were investigated and compared with Ag, L and standard drugs. In comparison to other bioactivities, AgL shows statistically enhanced selective enzyme inhibition activity against urease enzyme. Urease inhibition activity of AgL was significantly greater than standard drug (thiourea), L and Ag. On a per weight basis, AgL required about 11–18 times less amount of L for inhibition of urease enzyme. Keywords: β-Resorcylic acid, N-Substituted methyl 5-acetamido-β-resorcylate, Silver nanomaterials, Enhanced urease inhibition activity |
url |
http://www.sciencedirect.com/science/article/pii/S1002007118305537 |
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