Alpha-glucosidase and carbonic anhydrase inhibition studies of Pd(II)-hydrazide complexes
Author | Qurrat-ul-Ain |
Author | Ashiq, Uzma |
Author | Jamal, Rifat Ara |
Author | Saleem, Muhammad |
Author | Mahroof-Tahir, Mohammad |
Available date | 2017-06-05T07:03:20Z |
Publication Date | 2017-05 |
Publication Name | Arabian Journal of Chemistry |
Identifier | http://dx.doi.org/10.1016/j.arabjc.2015.02.024 |
Citation | Qurrat-ul-Ain, Uzma Ashiq, Rifat Ara Jamal, Muhammad Saleem, Mohammad Mahroof-Tahir, Alpha-glucosidase and carbonic anhydrase inhibition studies of Pd(II)-hydrazide complexes, Arabian Journal of Chemistry, Volume 10, Issue 4, May 2017, Pages 488-499 |
ISSN | 18785352 |
Abstract | This study focused on the synthesis and characterization of hydrazide ligands and their respective Pd(II) complexes and used high throughput screening to determine their α-glucosidase and carbonic anhydrase II enzyme inhibition activities. The physical, analytical (elemental analyses for C, H, N and Pd) and spectral (FT-IR, 1H NMR, 13C NMR, EI-mass) techniques utilized during characterization revealed the formation of square planar, neutral and 1:2 Pd(II)-hydrazide complexes with the general formula [PdL2Cl2]. In these Pd(II) complexes, the hydrazide ligands are monodentate; the terminal nitrogen is the donor atom. The uncoordinated hydrazide ligands were inactive against both α-glucosidase and carbonic anhydrase II enzymes; however, the respective Pd(II)-hydrazide complexes were approximately 300 times more potent α-glucosidase inhibitors than the standard compound, 1-deoxynojirimycin (DNJ). Some of the Pd(II) complexes also demonstrated potential carbonic anhydrase (CA) inhibition properties comparable to the standard compound, acetazolamide (ACZ). |
Sponsor | Higher Education Commission of Pakistan for financial support (‘The National Research Grants Program for Universities’, grant No.1862/R&D/10) and MMT acknowledges the support from Fulbright Scholar Award from The J. William Fulbright Foreign Scholarship Board. Open Access funded by King Saud University. |
Language | en |
Publisher | Elsevier |
Subject | Carbonic anhydrase Enzyme Hydrazide Pd(II) complexes α-Glucosidase |
Type | Article |
Pagination | 488-499 |
Issue Number | 4 |
Volume Number | 10 |
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