Azadeh Asefnejad – Biomedical engineering – Best Researcher Award

Azadeh Asefnejad - Biomedical engineering - Best Researcher Award

Science and Research branch of Azad University - Iran

AUTHOR PROFILE

GOOGLE SCHOLAR

🎓 EDUCATIONAL ACHIEVEMENTS

Azadeh Asefnejad holds a Ph.D. in Biomedical Engineering with a focus on biomaterials from Islamic Azad University Science & Research Branch, Tehran. Her doctoral research centered on the fabrication of biodegradable polyurethane-calcium phosphate composite scaffolds, a pivotal contribution to advancing biomaterials for medical applications. With a Master’s degree in Biomedical Engineering and a Bachelor’s in Applied Chemistry, she has built a solid foundation in materials science and engineering.

🏆 ACADEMIC LEADER

Dr. Asefnejad has held significant roles at Islamic Azad University, including Director of the Biomaterials Engineering Department and the Biomaterials and Tissue Engineering Group. Her leadership has driven research and development in biomaterials, reflecting her expertise and dedication to advancing the field. As an Assistant Professor, she continues to influence the academic community with her innovative approaches to biomaterials and tissue engineering.

📚 RECOGNIZED RESEARCHER

In 2022, Dr. Asefnejad was honored as the top researcher in medical sciences at Azad University, a testament to her impactful contributions to the field. She has also been recognized with a Ph.D. scholarship for her outstanding performance in the national entrance exam, underscoring her academic excellence and dedication to advancing biomedical research.

🔬 KEYNOTE SPEAKER AND REVIEWER

Dr. Asefnejad has been an invited keynote speaker at numerous international conferences, sharing her insights and advancements in biomaterials. Additionally, she serves as a referee for over 30 national and international journals, contributing to the peer-review process and the dissemination of cutting-edge research.

🌟 EDITORIAL AND COUNCIL MEMBER

As a member of the editorial board for the Progress in Biomaterials journal and a contributor to the Biomedical Engineering Magazine and Nanomaterials Magazine, Dr. Asefnejad plays a crucial role in guiding research publication and fostering innovation in the field. Her involvement with the Iran Nanotechnology Initiative Council further highlights her commitment to advancing nanotechnology applications.

🧪 LABORATORY LEADER

Dr. Asefnejad led the Laboratory Biomaterials Engineering Department at Azad University from 2019 to 2021, overseeing critical research activities and laboratory operations. Her leadership in this role significantly advanced research capabilities and facilitated groundbreaking work in biomaterials engineering.

📝 SELECTED PUBLICATIONS

Her research has been published in esteemed journals, including Carbohydrate Polymers and the Journal of Nanostructures. Notable papers include investigations into laser thrombolysis, drug release kinetics, and the antibacterial properties of advanced biomaterials, reflecting her diverse research interests and contributions to the field.

NOTABLE PUBLICATION

Title: Manufacturing of biodegradable polyurethane scaffolds based on polycaprolactone using a phase separation method: physical properties and in vitro assay
Authors: A. Asefnejad, M.T. Khorasani, A. Behnamghader, B. Farsadzadeh, ...
Journal: International Journal of Nanomedicine
Year: 2011

Title: Wound healing with alginate/chitosan hydrogel containing hesperidin in rat model
Authors: Z. Bagher, A. Ehterami, M.H. Safdel, H. Khastar, H. Semiari, A. Asefnejad, ...
Journal: Journal of Drug Delivery Science and Technology
Year: 2020

Title: Potential of novel electrospun core-shell structured polyurethane/starch (hyaluronic acid) nanofibers for skin tissue engineering: In vitro and in vivo evaluation
Authors: M. Movahedi, A. Asefnejad, M. Rafienia, M.T. Khorasani
Journal: International Journal of Biological Macromolecules
Year: 2020

Title: The relationship between cellular adhesion and surface roughness in polystyrene modified by microwave plasma radiation
Authors: E. Biazar, M. Heidari, A. Asefnezhad, N. Montazeri
Journal: International Journal of Nanomedicine
Year: 2011

Title: Fabrication of shapeless scaffolds reinforced with baghdadite-magnetite nanoparticles using a 3D printer and freeze-drying technique
Authors: M. Karimi, A. Asefnejad, D. Aflaki, A. Surendar, H. Baharifar, ...
Journal: Journal of Materials Research and Technology
Year: 2021

Yasamin Haririan – Biomedical engineering – Best Researcher Award

Yasamin Haririan - Biomedical engineering - Best Researcher Award

Science and Research branch of Azad University - Iran

AUTHOR PROFILE

SCOPUS

🩹 INNOVATOR IN WOUND HEALING TECHNOLOGY

Yasamin Haririan is an expert in advanced wound healing technologies, with a particular focus on the development of bio-composite wound dressings. Her groundbreaking patent for a Carboxymethyl Chitosan-Gelatin-Mesoporous Silica Nanoparticles wound dressing, enriched with Myrtus communis L. extract, is a significant contribution to the medical field, providing enhanced healing properties for patients with severe wounds.

🧪 RESEARCH LEADER IN NANOMATERIALS AND BIOPOLYMERS

Yasamin's research delves deeply into the integration of nanomaterials in medical applications, particularly for wound healing. She has explored various nanotechnologies, including electro-spun wound dressings and nanoparticles-modified dressings, which offer improved mechanical and biological properties. Her studies in this field emphasize the use of innovative materials to enhance the healing process and improve patient outcomes.

📚 AUTHOR OF INFLUENTIAL SCIENTIFIC PUBLICATIONS

Yasamin has contributed extensively to scientific literature with a focus on wound healing and biomaterials. Her published works include studies on the structural properties of medical bandages and the application of nanomaterials for wound dressings. She has also authored reviews on the potential of nanomaterials in wound care, making her a key figure in advancing medical technologies.

🧬 EXPERT IN STEM CELL ENGINEERING AND BIOMATERIALS

In addition to her work on wound dressings, Yasamin has conducted significant research on stem cell engineering and biomaterials. She has investigated the differentiation of stem cells into various cell types, including cardiomyocytes and osteoblasts, contributing to advancements in tissue engineering and regenerative medicine. Her expertise in biocompatibility and biomaterial integration has broad implications for medical treatments and therapies.

📖 CONTRIBUTOR TO TEXTBOOKS AND SCHOLARLY WORKS

Yasamin has co-authored textbooks that serve as key references in the field of biomaterials, including the Farsi edition of "Polyurethanes in Medicine and Tissue Engineering." Her contributions to educational resources highlight her commitment to advancing the knowledge and application of biomaterials in medical science, shaping the next generation of researchers and professionals in the field.

🔬 PIONEER IN BIOCOMPOSITE MATERIALS FOR MEDICAL APPLICATIONS

Yasamin’s master thesis on the synthesis and investigation of Carboxymethyl Chitosan-Gelatin-Mesoporous Silica nanoparticles for wound healing has set new standards for biocomposite materials. Her innovative approach combines the use of natural extracts and nanoparticles to create wound dressings with superior healing capabilities, offering a new frontier in biomedical materials.

📑 ACTIVE RESEARCHER AND PATENT HOLDER

Yasamin’s dedication to her field is evidenced by her extensive research background and the patent she holds for an advanced wound healing dressing. Her work not only explores cutting-edge materials but also translates these findings into practical applications that benefit patients. Her continuous pursuit of innovation makes her a leader in biomedical engineering and nanotechnology.

NOTABLE PUBLICATION

Title: Carboxymethyl chitosan-gelatin-mesoporous silica nanoparticles containing Myrtus communis L. extract as a novel transparent film wound dressing
Authors: Haririan, Y., Asefnejad, A., Hamishehkar, H., Farahpour, M.R.
Journal: International Journal of Biological Macromolecules
Year: 2023