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Dive into the research topics where Nor Hadiani Ismail is active.

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Featured researches published by Nor Hadiani Ismail.


Pharmaceutical Biology | 2000

Antiviral, Cyototoxic And Antimicrobial Activities Of Anthraquinones Isolated From The Roots Of Morinda Elliptica

Abdul Manaf Ali; Nor Hadiani Ismail; Muhammad Mukram Mohamed Mackeen; Latifah Saiful Yazan; Suhaila Mohamed; A. S. H. Ho; Nordin H. Lajis

2-Formyl-1-hydroxyanthraquinone, along with ten other known anthraquinones (1-hydroxy-2-methylanthraquinone, nordamnacanthal, damnacanthal, lucidin-?-methyl ether, rubiadin, rubiadin-1-methyl ether, soranjidiol, morindone, morindone-5-methyl ether and alizarin-1-methyl ether), isolated from the roots of Morinda elliptica , were assayed for anti-HIV, cytotoxic and antimicrobial activites. Only damnacanthal showed moderate activity against HIV. It was cytotoxic towards the MCF-7 (breast carcinoma) and CEM-SS (T-lymphoblastic leukaemia) cell line. Nordamnacanthal was very cytotoxic against the CEM-SS cell lines. Other anthraquinones that showed strong cytotoxicity towards the cell lines tested were lucidin-?-methyl ether (CEM-SS and MCF-7) and rubiadin (CEM-SS). Three anthraquinones viz., nordamnacanthal, damnacanthal and morindone, were found to have strong antimicrobial activity.


European Journal of Medicinal Chemistry | 2015

Synthesis of novel inhibitors of α-glucosidase based on the benzothiazole skeleton containing benzohydrazide moiety and their molecular docking studies

Muhammad Taha; Nor Hadiani Ismail; Salima Lalani; Muhammad Qaiser Fatmi; Atia-tul-Wahab; Salman Siddiqui; Khalid Mohammed Khan; Syahrul Imran; Muhammad Iqbal Choudhary

In an effort to design and synthesize a new class of α-glucosidase inhibitor, we synthesized benzothiazole hybrid having benzohydrazide moiety (5). Compound 5 was reacted with various substituted aryl aldehyde to generate a small library of compounds 6-35. Synthesis of compounds was confirmed by the spectral information. These compounds were screened for their α-glucosidase activity. They showed a varying degree of α-glucosidase inhibition with IC50 values ranging between 5.31 and 53.34 μM. Compounds 6, 7, 9-16, 19, 21-30, 32-35 showed superior activity as compared to standard acarbose (IC50 = 906 ± 6.3 μM). This has identified a new class of α-glucosidase inhibitors. The predicted physico-chemical properties indicated the drug appropriateness for most of these compounds, as they obey Lipinskis rule of five (RO5). A hybrid B3LYP density functional theory (DFT) was employed for energy, minimization of 3D structures for all synthetic compounds using 6-311 + G(d,p) basis sets followed by molecular docking to explore their interactions with human intestinal C- and N-terminal domains of α-glucosidase. All compounds bind to the prospective allosteric site of the C- terminal domain, and consequently, may be considered as mixed inhibitors. It was hypothesized that both the dipole moment and H-bond interactions govern the biological activation of these compounds.


Phytochemistry | 1997

Anthraquinones from Morinda elliptica

Nor Hadiani Ismail; Abdul Manaf Ali; Norio Aimi; Mariko Kitajima; Hiromitsu Takayama; Nordin H. Lajis

Phytochemical studies on roots of Morinda elliptica have resulted in the isolation of a new anthraquinone, 2-formyl-1-hydroxyanthraquinone, and 10 known anthraquinones. The structures of the anthraquinones were established based on spectral studies.


Bioorganic & Medicinal Chemistry Letters | 2013

Synthesis of 2-methoxybenzoylhydrazone and evaluation of their antileishmanial activity

Muhammad Taha; Mohd Syukri Baharudin; Nor Hadiani Ismail; Khalid Mohammed Khan; Faridahanim Mohd Jaafar; Samreen; Salman Siddiqui; M. Iqbal Choudhary

Compounds 1-25 showed varying degree of antileishmanial activities with IC50 values ranging between 1.95 and 88.56 μM. Compounds 2, 10, and 11 (IC50=3.29±0.07 μM, 1.95±0.04 μM, and 2.49±0.03 μM, respectively) were found to be more active than standard pentamidine (IC50=5.09±0.04 μM). Compounds 7 (IC50=7.64±0.1 μM), 8 (IC50=13.17±0.46 μM), 18 (IC50=13.15±0.02 μM), and 24 (IC50=15.65±0.41 μM) exhibited good activities. Compounds 1, 3, 4, 5, 9, 12, 15, 18, and 19 were found to be moderately active. Compounds 13, 14, 16, 17, 20-25 showed weak activities with IC50 values ranging between 57 and 88 μM.


European Journal of Medicinal Chemistry | 2014

Synthesis of novel derivatives of 4-methylbenzimidazole and evaluation of their biological activities

Muhammad Taha; Nor Hadiani Ismail; Waqas Jamil; Hesham Rashwan; Syed Muhammad Kashif; Amyra Amat Sain; Mohd Ilham Adenan; El Hassane Anouar; Muhammad Ali; Fazal Rahim; Khalid Mohammed Khan

4-Methylbenzimidazole 1-28 novel derivatives were synthesized and evaluated for their antiglycation and antioxidant activities. Compounds 1-7 and 11 showed excellent activities ranged 140-280 μM, better than standard drug rutin (294.46 ± 1.50 μM). Compound 1-28 were also evaluated for DPPH activities. Compounds 1-8 showed excellent activities, ranging 12-29 μM, better than standard drug n-propylgallate (IC50 = 30.30 ± 0.40 μM). For superoxide anion scavenging activity, compounds 1-7 showed better activity than standard n-propylgallate (IC50 = 106.34 ± 1.6 μM), ranged 82-104 μM. These compounds were found to be nontoxic to THP-1 cells.


Fitoterapia | 2011

Malaysianol A, a new trimer resveratrol oligomer from the stem bark of Dryobalanops aromatica

A. Wibowo; Norizan Ahmat; A.S. Hamzah; A.S. Sufian; Nor Hadiani Ismail; Rohaya Ahmad; Faridahanim Mohd Jaafar; Hiromitsu Takayama

A new resveratrol trimer, malaysianol A (1), five known resveratrol oligomers: laevifonol (2), ampelopsin E (3), α-viniferin (4), ε-viniferin (5), diptoindonesin A (6), and bergenin (7) have been isolated from the acetone extract of the stem bark of Dryobalanops aromatica by combination of vacuum and radial chromatography techniques. Their structures were established on the basis of their spectroscopic evidence and comparison with the published data. The cytotoxic activity of the compounds was tested against several cell lines in which compound 4 was found to inhibit strongly the growth of HL-60 cell line.


Bioorganic & Medicinal Chemistry Letters | 2015

Synthesis of novel derivatives of oxindole, their urease inhibition and molecular docking studies

Muhammad Taha; Nor Hadiani Ismail; Ajmal Khan; Syed Adnan Ali Shah; Ammarah Anwar; Sobia Ahsan Halim; M. Qaiser Fatmi; Syahrul Imran; Fazal Rahim; Khalid Mohammed Khan

We synthesized a series of novel 5-24 derivatives of oxindole. The synthesis started from 5-chlorooxindole, which was condensed with methyl 4-carboxybezoate and result in the formation of benzolyester derivatives of oxindole which was then treated with hydrazine hydrate. The oxindole benzoylhydrazide was treated with aryl acetophenones and aldehydes to get target compounds 5-24. The synthesized compounds were evaluated for urease inhibition; the compound 5 (IC50 = 13.00 ± 0.35 μM) and 11 (IC50 = 19.20 ± 0.50 μM) showed potent activity as compared to the standard drug thiourea (IC50 = 21.00 ± 0.01 μM). Other compounds showed moderate to weak activity. All synthetic compounds were characterized by different spectroscopic techniques including (1)H NMR, (13)C NMR, IR and EI MS. The molecular interactions of the active compounds within the binding site of urease enzyme were studied through molecular docking simulations.


Journal of Computer-aided Molecular Design | 2013

Antioxidant properties of phenolic Schiff bases: Structure-activity relationship and mechanism of action

El Hassane Anouar; Salwa Raweh; Imene Bayach; Muhammad Taha; Mohd Syukri Baharudin; Florent Di Meo; Mizaton Hazizul Hasan; Aishah Adam; Nor Hadiani Ismail; Jean Frédéric F. Weber; Patrick Trouillas

AbstractPhenolic Schiff bases are known for their diverse biological activities and ability to scavenge free radicals. To elucidate (1) the structure–antioxidant activity relationship of a series of thirty synthetic derivatives of 2-methoxybezohydrazide phenolic Schiff bases and (2) to determine the major mechanism involved in free radical scavenging, we used density functional theory calculations (B3P86/6-31+(d,p)) within polarizable continuum model. The results showed the importance of the bond dissociation enthalpies (BDEs) related to the first and second (BDEd) hydrogen atom transfer (intrinsic parameters) for rationalizing the antioxidant activity. In addition to the number of OH groups, the presence of a bromine substituent plays an interesting role in modulating the antioxidant activity. Theoretical thermodynamic and kinetic studies demonstrated that the free radical scavenging by these Schiff bases mainly proceeds through proton-coupled electron transfer rather than sequential proton loss electron transfer, the latter mechanism being only feasible at relatively high pH.


Bioorganic & Medicinal Chemistry | 2015

Novel 2,5-disubtituted-1,3,4-oxadiazoles with benzimidazole backbone: A new class of β-glucuronidase inhibitors and in silico studies

Nik Khairunissa Nik Abdullah Zawawi; Muhammad Taha; Norizan Ahmat; Abdul Wadood; Nor Hadiani Ismail; Fazal Rahim; Muhammad Ali; Norishah Abdullah; Khalid Mohammed Khan

A library of novel 2,5-disubtituted-1,3,4-oxadiazoles with benzimidazole backbone (3a-3r) was synthesized and evaluated for their potential as β-glucuronidase inhibitors. Several compounds such as 3a-3d, 3e-3j, 3l-3o, 3q and 3r showed excellent inhibitory potentials much better than the standard (IC50=48.4±1.25μM: d-saccharic acid 1,4-lactone). All the synthesized compounds were characterized satisfactorily by using different spectroscopic methods. We further evaluated the interaction of the active compounds and the enzyme active site with the help of docking studies.


Bioorganic & Medicinal Chemistry | 2010

4-Phenylcoumarins from Mesua elegans with acetylcholinesterase inhibitory activity

Khalijah Awang; Gomathi Chan; Marc Litaudon; Nor Hadiani Ismail; Marie-Thérèse Martin; Françoise Guéritte

A significant acetylcholinesterase (AChE) inhibitory activity was observed for the hexane extract from the bark of Mesua elegans (Clusiaceae). Thus, the hexane extract was subjected to chemical investigation, which led to the isolation of nine 4-phenylcoumarins, in which three are new; mesuagenin A (1), mesuagenin C (3), mesuagenin D (4) and one new natural product; mesuagenin B (2). The structures of the isolated compounds were characterized by spectroscopic data interpretation, especially 1D and 2D NMR. Four compounds showed significant AChE inhibitory activity, with mesuagenin B (2) being the most potent (IC(50)=0.7μM).

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Muhammad Taha

Universiti Teknologi MARA

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Syahrul Imran

Universiti Teknologi MARA

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Abdul Wadood

Abdul Wali Khan University Mardan

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Muhammad Ali

Quaid-i-Azam University

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Norizan Ahmat

Universiti Teknologi MARA

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Rohaya Ahmad

Universiti Teknologi MARA

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