Scientific Illustrations Portfolio

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Feel free to use my scientific illustartions for any academic purpose! Enjoy! πŸ’™

Metabolic Disorders, Autonomic Immune Dysfunction, and Ferroptosis
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FIG 01 Sept 2025

Metabolic Disorders, Autonomic Immune Dysfunction, and Ferroptosis

Integrative molecular signaling map illustrating how chronic nutrient overload, visceral white adipose tissue (vWAT) inflammation, and autonomic nerve impairment interact to drive iron-dependent ferroptosis across metabolic organs.

Ferroptosis Metabolic Disorders Illustrations
SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases
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FIG 02 Mar 2026

SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases

Schematic overview illustrating how SLC7A11 regulates redox homeostasis and neuronal survival, with its dysregulation driving ferroptosis or disulfidptosis in neurodegenerative diseases.

SLC7A11 Ferroptosis Disulfidptosis
Betanin-Mediated Modulation of miRNA Signaling and Neuroinflammation in Inflammatory Pain
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FIG 03 July 2025

Betanin-Mediated Modulation of miRNA Signaling and Neuroinflammation in Inflammatory Pain

Proposed molecular mechanism illustrating how betanin may attenuate inflammatory pain through modulation of miR-107/GLT-1 and miR-145/Akt signaling, with downstream effects on glutamate accumulation, oxidative stress, and inflammatory cytokines.

Betanin Pain miRNA
SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases
Preview
FIG 02 Mar 2026

SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases

Schematic overview illustrating how SLC7A11 regulates redox homeostasis and neuronal survival, with its dysregulation driving ferroptosis or disulfidptosis in neurodegenerative diseases.

SLC7A11 Ferroptosis Disulfidptosis
SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases
Preview
FIG 02 Mar 2026

SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases

Schematic overview illustrating how SLC7A11 regulates redox homeostasis and neuronal survival, with its dysregulation driving ferroptosis or disulfidptosis in neurodegenerative diseases.

SLC7A11 Ferroptosis Disulfidptosis
SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases
Preview
FIG 02 Mar 2026

SLC7A11 Redox Homeostasis, Ferroptosis, and Disulfidptosis in Neurodegenerative Diseases

Schematic overview illustrating how SLC7A11 regulates redox homeostasis and neuronal survival, with its dysregulation driving ferroptosis or disulfidptosis in neurodegenerative diseases.

SLC7A11 Ferroptosis Disulfidptosis
Ahmed Massoud
Authors
Teaching Assistant | Researcher | Bio-Scientific Designer
Ahmed Massoud is a molecular biology graduate, ranked first in his major, and currently a full-time Teaching Assistant at the Faculty of Science, Alamein International University. He is also an ASRT MSc Research Scholar under the Scientists for Next Generation (SNG) Program. Alongside his academic background, he has a strong passion for bio-scientific illustration and visual science communication, aiming to simplify complex biological concepts through clear, accurate, and publication-ready figures.