Dr. Sabereh Nouri | Biotechnology | Best Researcher Award

Dr. Sabereh Nouri | Biotechnology | Best Researcher Award

Dr. Sabereh Nouri, Biotechnology, University of Isfahan, Iran

Dr. Sabereh Nouri is a passionate and innovative scientist specializing in microbial biotechnology. She holds a Ph.D. from the University of Isfahan, Iran, and has contributed significantly to biomaterial synthesis using non-pathogenic microorganisms. Her research intersects microbiology, cell biology, and tissue engineering, aiming to create biocompatible solutions for medical applications. Sabereh has worked internationally, including at Marmara University in Türkiye under the prestigious Erasmus+ program. Known for her collaborative spirit and mentorship, she has supervised and trained multiple students. She is currently contributing her expertise to Emam Reza Medical Clinic and previously to Torabinejad Dental Research Institute. Dr. Nouri is committed to advancing global healthcare innovation through sustainable and scientific approaches.

Professional Profile :         

Google Scholar

Orcid

Scopus 

Summary of Suitability for Award:

Dr. Sabereh Nouri is a highly promising and dedicated early-career researcher in the field of microbial biotechnology, biomaterials, and tissue engineering. Her Ph.D. work, which focuses on the biological synthesis of nano-hydroxyapatite using probiotic bacteria and its immunomodulatory effects, stands out for its novelty, interdisciplinary scope, and translational relevance. She has international research exposure through the fully funded Erasmus+ program at Marmara University, Türkiye, where she contributed to cutting-edge studies on 3D-printed bone and cardiac scaffolds.With several technical certifications, a strong commitment to translational research, and demonstrated innovation in sustainable, microbe-derived materials, Dr. Nouri exemplifies the qualities expected of a recipient of a prestigious “Best Researcher Award.” Dr. Sabereh Nouri is highly suitable for the “Best Researcher Award.” Her consistent academic excellence, pioneering research in microbial nanomaterials for biomedical use, international collaborations, and mentorship contributions collectively reflect a researcher of exceptional promise and impact. Awarding her this honor would not only recognize her achievements but also encourage further groundbreaking work in the fields of biotechnology and tissue engineering.

🎓Education:

Dr. Sabereh Nouri holds a Ph.D. in Microbial Biotechnology from the University of Isfahan, Iran (2018–2024), where her thesis focused on the biological synthesis of nano-hydroxyapatite using probiotic bacteria and evaluating its effects on inflammatory responses. She was mentored by Prof. Giti Emtiazi and Dr. Rasoul Roghanian, with additional guidance from Dr. Rasoul Shafei and Prof. Oguzhan Gunduz. She also participated in the Erasmus+ program as a researcher at Marmara University’s Center for Nanotechnology & Biomaterials Research (2022–2023), where she gained international experience in tissue engineering. Prior to this, she earned her M.Sc. in Biotechnology from Bu-Ali Sina University (2014–2016), working on the identification of probiotic bacteria from non-dairy sources. Her academic journey began with a B.Sc. in Agricultural Engineering (Plant Protection) from Isfahan University of Technology (2009–2013), which laid the foundation for her interdisciplinary research in microbiology, cell biology, and biomaterials.

🏢Work Experience:

Dr. Sabereh Nouri has accumulated significant experience across research labs and academic institutions. From 2021 to present, she has served as a Research Assistant at Emam Reza Medical Clinic in Isfahan, managing diagnostic tests and laboratory operations. Concurrently, she worked as a Cell Culture Assistant Researcher at the Professor Torabinejad Dental Research Institute, focusing on mammalian cell cultures. Her international experience includes an Erasmus+ research stint at Marmara University in Türkiye (2022–2023), working on 3D-printed biomaterials. Between 2018 and 2021, she supervised labs at the University of Isfahan, mentoring graduate students and coordinating research projects. Earlier, she was a Research Assistant at Bu-Ali Sina University and Isfahan University of Medical Sciences, contributing to projects on plant endophytes, probiotics, and food microbiology. Her career reflects a strong commitment to interdisciplinary science, hands-on training, and collaborative research in microbiology, tissue engineering, and biotechnology.

🏅Awards: 

Dr. Sabereh Nouri has been recognized for her scientific excellence and commitment to research. In 2023, she received the Best Paper Award from the Academy of Romanian Scientists for her outstanding presentation on “3D Printing of Scaffolds for Bone Tissue Engineering Based on Bacterial Hydroxyapatite.” As part of the Erasmus+ program, she was fully funded by the European Union to conduct research at Marmara University, Türkiye, where she also completed the prestigious Biomaterials and Tissue Engineering Course under the CVL4OT initiative, a European collaborative project. In addition, she successfully completed multiple advanced training courses at Shiraz University Central Laboratory, including hands-on programs in Electrospinning, FT-IR, NIR, Flow Cytometry, XRD, SEM, and HSE. These accolades and certifications reflect her continuous professional development and recognition by both national and international scientific communities for her innovation and commitment to biomaterials and microbiological research.

🔬Research Focus:

Dr. Sabereh Nouri’s research bridges microbiology, biotechnology, and biomaterials, with a special emphasis on biological synthesis of nanomaterials using non-pathogenic microorganisms. Her Ph.D. work involves developing nano-hydroxyapatite using probiotic bacteria and studying its anti-inflammatory effects, aiming to apply it in tissue engineering and regenerative medicine. She is especially interested in 3D bioprinting, the interaction of microbial biomaterials with mammalian cells, and immunomodulatory properties of engineered nanocomposites. During her Erasmus+ research tenure in Türkiye, she explored 3D-printed cardiac patches and bone scaffolds, combining advanced characterization methods and cell-based assays. Additionally, she has studied probiotics from non-dairy sources, endophytic microbes, and microbial interactions in food and medical samples. Her work is deeply interdisciplinary, merging cell biology, nanotechnology, and microbial biotechnology to innovate in biomedical material development. Dr. Nouri is passionate about translational research, with an eye on sustainable, microbe-based solutions for human health challenges.

Publication Top Notes:

1. Biosynthesis of Nano-Calcite and Nano-Hydroxyapatite by the Probiotic Bacteria of Bacillus subtilis and Bacillus coagulans

Citations: 6

2. Review on Biological Synthesis of Nano-Hydroxyapatite and Its Application in Nano-Medicine

Citations: 5

3. Biochemical and Molecular Identification of Probiotic Bacteria, Lactobacillus plantarum, Isolated from Apple Vinegar

Citations: 5

4. On-Demand Release of Fucoidan from 3D-Printed Cardiac Scaffolds Based on Chitosan/Silk Fibroin/Polyaniline

Citations: 3

5. Advanced 3D Printed Bone Scaffolds with Sodium Alginate/Tri-Calcium Phosphate/Probiotic Bacterial Hydroxyapatite: Enhanced Mechanical and Biocompatible Properties for Bone…

Citations: 3

6. Osteoblastic Differentiation of Stem Cells from Human Exfoliated Deciduous Teeth by Probiotic Hydroxyapatite

Citations: 2

7. Anticancer, Antioxidant and Antibacterial Activities of Extracts from Scrophularia striata and Elaeagnus angustifolia, Growing in Ilam and Kurdistan Provinces in Iran

Citations: 2

8. Microbial Synthesis of Nano-Selenium and Nano-Titanium Dioxide: Mechanisms of Selenite Respiration

Citations: 1

9. Isolation and Biochemical and Molecular Identification of Lactobacillus plantarum Bacteria from Rhizosphere of Lenjan Rice

Citations: 1

10. 3D-Printable Wound Patch Composed of Vitamin E-Enriched Polylactic Acid Scaffolds

 

Dr. Mehdi Sheikhi | biotechnology Award | Young Scientist Award

Dr. Mehdi Sheikhi | biotechnology Award | Young Scientist Award

Dr. Mehdi Sheikhi , University of Isfahan , Iran

Mehdi Sheikhi, a prominent polymer chemist, currently serves as a Postdoctoral Fellow at the University of Isfahan, specializing in advanced biomaterials for biomedical applications. His research primarily focuses on developing innovative hydrogel formulations for tissue engineering, particularly for non-infectious diabetic wound treatment. Mehdi completed his Ph.D. in Polymer Chemistry at the University of Isfahan, where he gained recognition for his pioneering work on 3D-printable and conductive granular hydrogels. Over the years, he has authored numerous publications in esteemed journals, contributing to areas like self-healing hydrogels, advanced wound dressings, and biocompatible polymer materials. His expertise in 3D printing and biopolymer design has led to various accolades, including the Isfahan Province Distinguished Student Award. Beyond academia, he has contributed to industrial projects, holding a research position at Kia Polymer Arvand Corporation. His professional interests revolve around designing bioactive polymer systems, aiming to enhance healthcare solutions through chemistry and materials science.

Professional Profile:

Google Scholar

Summary of Suitability for Award:

Mehdi Sheikhi’s work in polymer chemistry, particularly in the development of bioactive and multifunctional hydrogels, positions him as a strong candidate for the ” Young Scientist Award ” . His innovative research focuses on creating advanced materials for tissue engineering, including hydrogel systems designed for diabetic wound treatment, which is a significant contribution to healthcare and regenerative medicine. Mehdi’s expertise in 3D-printable, self-healing, and electrically conductive hydrogels demonstrates a profound understanding of the complex interplay between materials science and biomedical applications. His publications in esteemed journals and his recognitions, such as the Isfahan Province Distinguished Student Award and the Best Paper Award at an international polymer conference, highlight his dedication and impact on his field.

🎓Education:

Mehdi Sheikhi holds a rich academic background in polymer chemistry, with a current postdoctoral position at the University of Isfahan. His ongoing research involves creating tissue-substitutive hydrogels aimed at treating non-infectious diabetic wounds. He earned his Ph.D. in Polymer Chemistry from the University of Isfahan in 2023, where he conducted pioneering research on 3D-printable, electrically conductive hydrogels for skin tissue engineering. His doctoral dissertation, rated “Excellent,” was supervised by Dr. Fatemeh Rafiemanzelat, with advisory input from Prof. Lorenzo Moroni and Dr. Mohsen Setayeshmehr. Mehdi completed his M.S. in Polymer Chemistry at the same university, focusing on unsaturated polyester resins to improve tissue compatibility. Prior to his graduate studies, he earned a B.S. in Pure Chemistry from Urmia University. With high academic performance and expertise in bioactive polymer synthesis, Mehdi’s educational journey has provided a strong foundation for his contributions to polymer science and biomaterials research.

🏢Work Experience:

Mehdi Sheikhi has a versatile background in research and development, particularly in polymer chemistry for biomedical applications. His current role as a Postdoctoral Fellow at the University of Isfahan centers on formulating hydrogels for tissue engineering. He has held research roles in various capacities, such as an R&D specialist at Kia Polymer Arvand Corporation, where he led the “Synthesis of Acid-Resistant Ion Exchange Membranes” project and contributed to PVC gel production. In academia, Mehdi has significant teaching experience, including roles as a polymer lab instructor and general chemistry lab instructor at the University of Isfahan. Additionally, he served as a teaching assistant for courses in organic and polymer chemistry, mentoring students and supporting laboratory classes. His professional experience underscores his strong laboratory skills, proficiency in 3D printing techniques, and commitment to innovation in polymeric materials, making substantial contributions to both research and industry.

🏅Awards:

Throughout his academic and research career, Mehdi Sheikhi has received numerous accolades, underscoring his contributions to polymer chemistry and biomedical materials. He earned the Isfahan Province Distinguished Student Award in 2022 for his outstanding achievements in polymer research. Mehdi was also honored with the Student Book of the Year Award in 2022, recognizing his contributions to academic literature. His excellence in chemistry was previously acknowledged through the University Excellence Award in 2018, and he received the Chemistry Faculty Excellence Award in 2017 for his notable contributions to polymer science. Additionally, Mehdi won the Best Paper Award at the International Seminar on Polymer Science and Technology in 2016, highlighting his early impact in polymer science. These accolades reflect Mehdi’s ongoing dedication to advancing polymer chemistry, particularly in biomedical applications, and his role as a distinguished researcher within his academic community.

🔬Research Focus:

Mehdi Sheikhi’s research interests lie in the realm of polymer chemistry, with a particular focus on designing bioactive and functional polymers for healthcare applications. His current postdoctoral work involves developing hydrogels for tissue engineering, specifically for use in treating non-infectious diabetic wounds. Mehdi’s expertise includes the synthesis and optimization of 3D-printable hydrogels with unique properties, such as self-healing and electrical conductivity, tailored for biomedical use. Additionally, he is dedicated to designing shape-memory polymers and novel polymeric platforms that support tissue compatibility and promote effective wound healing. His research further encompasses the development of bio-compatible, smart wound dressings and photo-curable polyester resins with enhanced tissue adherence and stability. Through a multidisciplinary approach, Mehdi’s work addresses critical challenges in regenerative medicine, aiming to provide innovative solutions that bridge polymer science with biomedical engineering for improved patient outcomes.

Publication Top Notes:

  1. “Development of an antibacterial and antioxidative nanofibrous membrane using curcumin-loaded halloysite nanotubes for smart wound healing: In vitro and in vivo studies”
    • Citations: 27
  2. “3D printing of jammed self-supporting microgels with alternative mechanism for shape fidelity, crosslinking and conductivity”
    • Citations: 21
  3. “Electrospun nylon 6/hyaluronic acid/chitosan bioactive nanofibrous composite as a potential antibacterial wound dressing”
    • Citations: 16
  4. “Control of eriocitrin release from pH-sensitive gelatin-based microgels to inhibit α-glucosidase: an experimental and computational study”
    • Citations: 16
  5. “Protein and polysaccharide-based asymmetric mat with tuned bilayer configuration for enhanced wound healing efficiency”
    • Citations: 15