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Hussain Jirangon

Researcher at Universiti Putra Malaysia

Publications -  6
Citations -  178

Hussain Jirangon is an academic researcher from Universiti Putra Malaysia. The author has contributed to research in topics: Molybdate & Molybdenum blue. The author has an hindex of 6, co-authored 6 publications receiving 164 citations.

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Hexavalent Molybdenum Reduction to Molybdenum Blue by S. Marcescens Strain Dr. Y6

TL;DR: The isolate was tentatively identified as Serratia marcescens Strain Dr.Y6 based on carbon utilization profiles using Biolog GN plates and partial 16s rDNA molecular phylogeny.
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Kinetics of Molybdenum Reduction to Molybdenum Blue by Bacillus sp. Strain A.rzi

TL;DR: The isolation of a novel molybdate-reducing Gram positive bacterium tentatively identified as Bacillus sp.rzi from a metal-contaminated soil is reported, and the characteristics of this bacterium make it an ideal tool for bioremediation ofmolybdenum pollution.
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Comparison of Microtox and Xenoassay Light as a Near Real Time River Monitoring Assay for Heavy Metals

TL;DR: An isolate that exhibits a high luminescence activity in a broad range of temperatures was successfully isolated from the mackerel, Rastrelliger kanagurta, and is suitable for near real time river monitoring of toxicants especially in the tropics.
Journal Article

Evaluation of acetylcholinesterase source from fish, Tor tambroides for detection of carbamate.

TL;DR: Acetylcholinesterase from the brain tissue of local freshwater fish, Tor tambroides was isolated through affinity purification and Acetylthiocholine iodide (ATCi) was preferable synthetic substrate to purified AChE with highest maximal velocity and lowest biomolecular constant.
Journal Article

Purification and anticholinesterase sensitivity of cholinesterase extracted from liver tissue of Puntius javanicus.

TL;DR: The final purified ChE procedure displayed the highest sensitivity of detecting the anticholinesterase namely mercury, copper, malaoxon and carbofuran compared to the impure ChE and the results were further discussed in detail to the potential application of ChE from P. javanicus as a biomarker for those toxicants.