Dr. Rahim Dehghan|Pharmaceutical Biotechnology| Best Researcher Award

Dr. Rahim Dehghan|Pharmaceutical Biotechnology |Best Researcher Award|

Dr. Rahim Dehghan at mus alparslan university, Turkeys

PROFILE  

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Early Academic Pursuits 🎓

Rahim Dehghan embarked on his academic journey in the field of polymer engineering at Shiraz University, where he earned his bachelor’s degree in 2011. Driven by a deep curiosity and passion for polymer science, he pursued a master’s degree in polymer engineering at Yazd University, completing it in 2015. His master’s thesis was a significant exploration of blood-compatible membranes, a topic that laid the foundation for his future research endeavors. This period of academic training provided him with a robust understanding of polymer materials and their applications in biomedical engineering, particularly in the development of membranes for medical use.

Professional Endeavors and Research Focus 🧪

Dehghan’s professional career has been marked by a series of research positions and projects that have focused on the development and enhancement of synthetic membranes for biomedical applications. In 2016, he commenced his Ph.D. at the prestigious Iran Polymer and Petrochemical Institute, a leading center for polymer education in Iran. His doctoral research was centered on developing membranes for the separation of low-density lipoprotein (LDL), commonly known as bad cholesterol, from blood plasma. This work was groundbreaking, as it addressed critical challenges in blood purification technologies, aiming to improve the efficiency and efficacy of these processes.

During his Ph.D. studies, Dehghan worked on several key aspects of membrane engineering, including pore size optimization, morphology control, and enhancing membrane permeability. His innovative approach to membrane structural engineering was aimed at achieving high-performance membranes capable of selective separation of LDL from blood plasma, while ensuring high plasma permeability. His research contributions during this period culminated in a Ph.D. degree, awarded in 2022 with an excellent grade, reflecting the significance and quality of his work.

Contributions and Research Focus 🌍

Dehghan’s research has had a profound impact on the field of membrane science, particularly in the development of membranes for biomedical applications. His work on LDL separation has opened new avenues for research in blood purification technologies, with potential applications in treating cardiovascular diseases and other conditions where blood purification is critical. He has also contributed to the field of microfiltration membranes for plasmapheresis, a process used to separate plasma from blood cells. His recent work has successfully developed a microfiltration membrane capable of simultaneously separating LDL and blood cells from whole blood, a significant advancement in this area.

In addition to his academic research, Dehghan has played a crucial role in the industrial application of his findings. As a researcher at the Iranian Polymer and Petrochemical Institute and a senior researcher at D.G.DENA Co., he has applied his expertise to the development of biomedical devices, including hydrogels and gels for wound care. His work in these roles has involved the application of advanced polymer science to address real-world challenges in medical device manufacturing.

Accolades and Recognition 🏆

Throughout his academic and professional career, Dehghan has received numerous accolades that highlight his contributions to the field of polymer engineering. One of his early achievements was acquiring the 8th rank in the national Ph.D. entrance exam in Iran in 2016, a highly competitive examination with over 400 participants. This accomplishment not only earned him a prestigious scientific award but also set the stage for his successful academic career.

His research has been widely recognized and published in several leading international journals, including the Journal of Membrane Science and Separation and Purification Technology. These publications have not only disseminated his findings to the broader scientific community but have also established him as a leading researcher in the field of polymer-based membrane technologies.

Impact and Influence 🌟

Dehghan’s work has had a significant impact on both the academic and industrial sectors. His research on membrane technologies has provided new insights into the design and development of high-performance membranes for medical applications. These contributions are particularly important in the context of blood purification technologies, where efficient and selective separation processes are critical for patient outcomes.

In the industrial sphere, his work as a consultant and researcher has directly influenced the development of new medical devices, particularly in the area of wound care. His expertise in polymer science has been instrumental in advancing the capabilities of these devices, ensuring they meet the stringent requirements of biomedical applications.

Legacy and Future Contributions 🌠

Looking ahead, Rahim Dehghan’s contributions to the field of polymer engineering and membrane science are poised to leave a lasting legacy. His work has already set new standards for the development of synthetic membranes, particularly in the biomedical field. As he continues to explore new research opportunities, particularly in the field of blood purification membranes such as hemodialysis and hemodiafiltration, his impact on the field is expected to grow.

🎓Publication 

Dextran sulfate bulk and surface-modified microfiltration membrane for simultaneous blood plasma harvesting and low-density lipoprotein removal during plasmapheresis

  • Authors   :Dehghan, R., Barzin, J., Carbonell, R.G., Ghaderi Jafarbeigloo, H., Kordkatooli, Z.
  • Journal    :Journal of Membrane Science
  • Year         :2024

Evaluation of solubility parameters and relative energy difference (RED) on the preparation of polysulfone/polyethylene glycol membrane: A study on the casting solution and coagulation bath

Membrane patterning through horizontally aligned microchannels developed by sulfated chopped carbon fiber for facile permeability of blood plasma components in low-density lipoprotein apheresis

High cut-off membrane: evaluation of pore collapse and the synergistic effect of low and high molecular weight polyvinylpyrrolidone

Low density lipoprotein (LDL) apheresis from blood plasma via anti-biofouling tuned membrane incorporated with graphene oxide-modified carrageenan

Prof. Fatma YURT|pharmaceuticals | Best Researcher Award

Prof. Fatma YURT |pharmaceuticals|Best Researcher Award|

Prof. Fatma YURT atEge University,Turkey

PROFILE  

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Early Academic Pursuits 🎓

Prof. Dr. Fatma Yurt’s journey into the scientific world began at Ege University, one of Turkey’s leading institutions. She completed her undergraduate studies at the Faculty of Science in the Department of Chemistry between 1982 and 1987. Her passion for science and dedication to learning set the stage for her illustrious career in nuclear sciences. Following her bachelor’s degree, she pursued a doctorate at Ege University in the Institute of Nuclear Sciences, specializing in Nuclear Sciences. From 1991 to 1998, she immersed herself in the study of nuclear applications, gaining a deep understanding of the field’s complexities and potential. This period of intense academic focus and research laid a solid foundation for her future contributions to nuclear medicine, radiopharmacy, and related fields.

Professional Endeavors 💼

Prof. Dr. Fatma Yurt’s professional career is marked by her steady rise through the academic ranks at Ege University. She began her career as a Research Assistant in the Nuclear Applications Department of the Institute of Nuclear Sciences, where she served from 1994 to 1997. This role allowed her to engage in cutting-edge research and contribute to the development of nuclear sciences in Turkey.

In 1999, she was promoted to Assistant Professor, and later in the same year, she achieved the rank of Associate Professor. Her commitment to education and research was evident as she continued to mentor students and lead research projects in nuclear applications. By 2007, she had earned the title of Professor, solidifying her position as a leading expert in her field.

Prof. Dr. Yurt’s expertise is not limited to academia; she has also held significant administrative roles. Since 2016, she has served as the Director of the Institute of Nuclear Sciences at Ege University. In this capacity, she has been instrumental in shaping the direction of nuclear research and education in Turkey, overseeing various projects and initiatives that have expanded the institute’s influence both nationally and internationally.

Contributions and Research Focus 🔬

Prof. Dr. Fatma Yurt’s research spans several critical areas within nuclear sciences, with a particular emphasis on nuclear medicine, radiopharmacy, and pharmacology. Her work in these fields has been pivotal in advancing the understanding and application of nuclear techniques in medicine, particularly in diagnosing and treating various diseases.

Her research contributions include the development of novel radiopharmaceuticals, which are essential for diagnosing and treating conditions such as cancer. Prof. Dr. Yurt’s expertise in nuclear chemistry and physical chemistry has enabled her to explore the intricate processes involved in the synthesis and application of these compounds. She has also contributed significantly to the field of health sciences, particularly in the areas of internal medicine and pharmaceutical technology.

With a Scopus publication count of 123 and a Unisis publication count of 296, Prof. Dr. Yurt’s research output is impressive. Her work has been cited over 1,447 times on Scopus, reflecting the impact and relevance of her research. Her H-Index, a measure of both the productivity and citation impact of her publications, stands at 21 on Scopus, further underscoring her influence in the field.

Accolades and Recognition 🏆

Throughout her career, Prof. Dr. Fatma Yurt has received numerous accolades and recognition for her contributions to nuclear sciences and medicine. Her research has been widely acknowledged by her peers, and she has been invited to present her findings at various national and international conferences. Her role as the Director of the Institute of Nuclear Sciences is a testament to her leadership abilities and her dedication to advancing the field of nuclear applications.

Prof. Dr. Yurt’s work has not only advanced scientific understanding but has also had a tangible impact on healthcare. Her contributions to radiopharmacy have been particularly significant, with her research playing a crucial role in the development of new diagnostic and therapeutic methods. Her dedication to her field is further demonstrated by her ongoing involvement in academic mentorship, helping to train the next generation of scientists in nuclear sciences.

Impact and Influence 🌍

Prof. Dr. Yurt’s influence extends beyond her research and academic roles. As a leader in nuclear sciences, she has been instrumental in promoting the importance of nuclear applications in medicine and other fields. Her work has helped to bridge the gap between basic research and practical applications, ensuring that the benefits of nuclear science are realized in clinical settings.

Her leadership at the Institute of Nuclear Sciences has also been pivotal in shaping the research agenda in Turkey, encouraging interdisciplinary collaboration and fostering a culture of innovation. Under her guidance, the institute has strengthened its position as a center of excellence in nuclear research, attracting students and researchers from around the world.

Legacy and Future Contributions 🌟

Prof. Dr. Fatma Yurt’s legacy is one of dedication, innovation, and leadership. Her contributions to nuclear medicine, radiopharmacy, and related fields have had a lasting impact on both the scientific community and the broader healthcare sector. As she continues her work, her influence will undoubtedly grow, inspiring new research and leading to further advancements in nuclear applications.

🎓Publication 

An in vitro evaluation of Hypericum perforatum loaded-chitosan nanoparticle/agarose film as a Wound dressing

Unveiling combat strategies against Candida spp. biofilm structures: Demonstration of photodynamic inactivation with innovative phthalocyanine derivatives

Platinum (II) Schiff Base Complexes and their Effects on the Inhibition of Amyloid β1–42 Aggregation

In Vitro Assessment of 177Lu-Labeled Trastuzumab-Targeted Mesoporous Carbon@Silica Nanostructure for the Treatment of HER2-Positive Breast Cancer

  • Authors   :Tunçel, A., Maschauer, S., Prante, O., Yurt, F.
  • Journal    :Pharmaceuticals
  • Year         :2024