Saman Hosseinkhani

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Saman Hosseinkhani
Name Saman Hosseinkhani
Affiliation عضو هیئت علمی سایر دانشگاه‌های کشور
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1 Mutation/metal deficiency in the "electrostatic loop" enhanced aggregation process in apo/holo SOD1 variants: implications for ALS diseases BMC chemistry
2 Implications of ALS-Associated Mutations on Biochemical and Biophysical Features of hSOD1 and Aggregation Formation Biochemical Genetics
3 Quenching effect of deferoxamine on free radical-mediated photon production in luminol and ortho-phenanthroline-dependent chemiluminescence Chinese Chemical Letters
4 Role of charged residues of the “electrostatic loop” of hSOD1 in promotion of aggregation: Implications for the mechanism of ALS-associated mutations under amyloidogenic conditions International Journal of Biological Macromolecules
5 Sensitive determination of urea in luciferin chemiluminescence system using an experimental design CHEMICAL PAPERS
6 A double point mutation of SOD1 targeting net charge promotes aggregation under destabilizing conditions: Correlation of charge distribution and ALS-provoking mutation BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS
7 Computational insight into in silico analysis and molecular dynamics simulation of the dimer interface residues of ALS‑linked hSOD1 forms in apo/holo states: a combined experimental and bioinformatic perspective 3 Biotech
8 A bioluminescent earthworm luciferase mimetic MIL-101(Cr)-MOF for enhanced luciferin chemiluminescence and H2O2 sensing Journal of Photochemistry and Photobiology A: Chemistry
9 Human DT-diaphorase expression in Escherichia coli: optimization, purification and structural stability Veterinary Research Forum
10 Development of In Silico Analysis and Molecular Dynamics Simulation on L67P and D76Y Mutants of the Human Superoxide Dismutase 1(hSOD1) Related to Amyotrophic Lateral Sclerosis Iranian Journal of Biotechnology
11 Biochemical and biophysical properties of the novel ALS‑linked hSOD1 mutants: an experimental study accompanied by in silico analysis Journal of the Iranian Chemical Society
12 Zinc binding loop mutations of hSOD1 promote amyloid fibrils under physiological conditions: Implications for initiation of amyotrophic lateral sclerosis BIOCHIMIE