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Umar Ndagi

Researcher at University of KwaZulu-Natal

Publications -  12
Citations -  739

Umar Ndagi is an academic researcher from University of KwaZulu-Natal. The author has contributed to research in topics: Medicine & Ligand (biochemistry). The author has an hindex of 6, co-authored 9 publications receiving 473 citations.

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Metal complexes in cancer therapy - an update from drug design perspective.

TL;DR: It is optimistic that the concept of selective targeting remains the hope of the future in developing therapeutics that would selectively target cancer cells and leave healthy cells unharmed in cancer therapy.
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The impact of Thr91 mutation on c-Src resistance to UM-164: molecular dynamics study revealed a new opportunity for drug design.

TL;DR: In conclusion, this report provides important insights that will assist in the further design of novel dual kinase inhibitors to minimise the chances of drug resistance in triple negative breast cancer.
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Antibiotic resistance: bioinformatics-based understanding as a functional strategy for drug design

TL;DR: Understanding the evolution of antibiotic resistance at the molecular level as a functional tool for bioinformatic-based drug design is an important step in the fight against antibiotic resistance.
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An analogue of a kinase inhibitor exhibits subjective characteristics that contribute to its inhibitory activities as a potential anti-cancer candidate: insights through computational biomolecular modelling of UM-164 binding with lyn protein

TL;DR: It was observed that the binding of UM-164 to lyn protein decreases the capacity of its loop to fluctuate, influences the ligand optimum orientation on the conformational space of lyn protein, and increases the hydrogen bond formation in the lyn-UM-164 system.
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DFT Study of the Structural and Electronic Properties of Selected Organogold(III) Compounds with Characteristic Anticancer Activity

TL;DR: In this paper, a quantum chemical study is presented to analyze the properties of some active organogold(III) complexes at the molecular level using different density functional theoretical methods and quality basis sets.