Zeynep Altintas

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Full Professor and Chair of Bioinspired Materials and Biosensor Technologies

Kiel University
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Germany

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Dr. Zeynep Altintas is an Associate Professor at Kiel University in Germany. Her research focuses on dietary sources, health benefits, innovative sensor technologies, and bioselective membranes, as evidenced by her recent publications on vitamin B 12 , breast cancer diagnostics, and water purification methods. She is also exploring ultrasound-assisted extraction techniques and the development of functional food products.

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Zeynep Altintas

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Kiel University

Postdoctoral Research Scientist in Computational Materials Design, Molecular Modeling and Machine Learning at Kiel University

📢 Kiel University in Germany is advertising a postdoctoral research scientist position in Computational Materials Design, Molecular Modeling, and Machine Learning within the Chair for Bioinspired Materials and Biosensor Technologies . The project sits at the intersection of materials science , chemistry , computer science , and related interdisciplinary areas. Research topics include molecular mechanics (MM) , molecular dynamics (MD) , QM/DFT , molecular modeling , biomolecular recognition , AI/ML-assisted molecular and materials design , high-performance computing , and computational workflow development. The work also includes computational-guided design of bioinspired materials , synthetic receptors , and molecularly imprinted polymers , with close collaboration with experimental researchers. Applicants should have a PhD in computational chemistry, computational biology, bioinformatics, computational materials science, or a closely related field. The post is aimed at a motivated researcher interested in combining molecular simulations with AI/machine learning for next-generation materials and molecular systems. The position is based at Kiel University, Germany . It is initially offered for 3 years with the possibility of extension, and the salary level is TV-L E13 . Deadline: 31 October 2026. Interested candidates should consult the attached position announcement for the full application procedure and submit their application according to the instructions provided there.

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Articles (8)

Recent Advances in Dietary Sources, Health Benefits, Emerging Encapsulation Methods, Food Fortification, and New Sensor-Based Monitoring of Vitamin B12: A Critical Review

In this overview, the latest achievements in dietary origins, absorption mechanism, bioavailability assay, health advantages, cutting-edge encapsulation techniques, fortification approaches, and innovative highly sensitive sensor-based detection methods of vitamin B12 (VB12) were addressed. The cobalt-centered vitamin B is mainly found in animal products, posing challenges for strict vegetarians and vegans. Its bioavailability is highly influenced by intrinsic factor, absorption in the ileum, and liver reabsorption. VB12 mainly contributes to blood cell synthesis, cognitive function, and cardiovascular health, and potentially reduces anemia and optic neuropathy. Microencapsulation techniques improve the stability and controlled release of VB12. Co-microencapsulation of VB12 with other vitamins and bioactive compounds enhances bioavailability and controlled release, providing versatile initiatives for improving bio-functionality. Nanotechnology, including nanovesicles, nanoemulsions, and nanoparticles can enhance the delivery, stability, and bioavailability of VB12 in diverse applications, ranging from antimicrobial agents to skincare and oral insulin delivery. Staple food fortification with encapsulated and free VB12 emerges as a prominent strategy to combat deficiency and promote nutritional value. Biosensing technologies, such as electrochemical and optical biosensors, offer rapid, portable, and sensitive VB12 assessment. Carbon dot-based fluorescent nanosensors, nanocluster-based fluorescent probes, and electrochemical sensors show promise for precise detection, especially in pharmaceutical and biomedical applications.

Year:

2023

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Ibrahim Abdulhalim

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