Assist. Prof. Dr sumaira Javaid, Dr. Panjwani Center for Molecular Medicine and Drug Research, Pakistan
Sumaira Javaid is an esteemed scientist specializing in bio-organic chemistry, molecular, and structural biology. With over eight years of post-Ph.D. experience, she has built an impactful career in academia and research. Dr. Javaid completed her Ph.D. at the H.E.J. Research Institute of Chemistry, University of Karachi, where she focused on chemical compounds with potential anti-angiogenic, antioxidant, and myelin repair properties. She furthered her studies as a post-doctoral fellow at the Institut de Pharmacologie et de Biologie Structurale (IPBS) in France. Dr. Javaid has published 17 research papers, with a combined impact factor of 77 and an h-index of 10. Her contributions to the scientific community have garnered 358 citations. As an assistant professor at the University of Karachi, she continues to guide students and conduct groundbreaking research. Her work is recognized through prestigious awards, including post-doctoral fellowships and scholarships.
Summary of Suitability for the Research for Best Researcher Award
Dr. Sumaira Javaid is a strong candidate for the Research for Best Researcher Award. Her international exposure, innovative research, significant scholarly contributions, and mentorship abilities highlight her suitability for this award. Her work addresses critical issues in structural biology and enzyme inhibition, contributing to advancements in health and disease management, making her a well-rounded and deserving candidate.
Education
Sumaira Javaidβs academic journey is marked by excellence in biochemistry and chemistry. She earned her Ph.D. in Chemistry from the H.E.J. Research Institute of Chemistry at the University of Karachi in 2016. Her dissertation titled βScreening of Chemical Compounds (Secondary Metabolites and Heterocyclic Synthetic Compounds) for Their Anti-Angiogenic, Anti-Oxidant, and CNS Myelin Repair Activitiesβ demonstrated her expertise in bio-organic chemistry. Sumaira also holds an M.Sc. in Biochemistry from the University of Karachi, where she secured second position in her department. Her masterβs thesis explored the behavioral effects of starvation and restricted feeding in rats. Additionally, she completed her B.Sc. (Hons) with majors in Biochemistry, Chemistry, and Microbiology from the same institution. Sumairaβs passion for research led her to pursue a post-doctoral fellowship at the Institut de Pharmacologie et de Biologie Structurale in Toulouse, France, focusing on advanced biopharmacology and structural biology from 2017 to 2018.
Sumaira Javaid has been recognized for her outstanding contributions to research with several prestigious awards. She was awarded a Post-Doctoral Fellowship in France (2017-2018) under the Faculty Development Program, providing her the opportunity to further her studies at the Institut de Pharmacologie et de Biologie Structurale (IPBS). In 2012, she received the H.E.C. & French Embassy Split PhD and Post-Doctoral Fellowship Program award, which supported her advanced research in France and Pakistan. Throughout her academic career, Sumaira has also been acknowledged for her academic merit, having received a Merit-cum-Need Scholarship in 2005 during her undergraduate studies. Her work has been consistently recognized for its scientific impact, and she continues to be a leading figure in molecular and structural biology research. These accolades are a testament to her dedication, excellence, and influence in the field of bio-organic chemistry.
Research Focus
Sumaira Javaidβs research focuses on bio-organic chemistry and molecular biology, with particular expertise in enzyme inhibition, biopharmaceuticals, and structural biology. Her Ph.D. research centered on exploring the anti-angiogenic, antioxidant, and myelin repair properties of secondary metabolites and synthetic compounds. She has a strong background in biomolecular NMR spectroscopy, protein purification, and enzyme inhibition assays. Sumairaβs research seeks to understand complex biochemical pathways, especially in the context of cancer treatment, neurodegenerative diseases, and infectious diseases. Her recent work has included biophysical methods to identify enzyme inhibitors that have potential therapeutic applications, particularly in treating neurological diseases and microbial infections. She has also contributed significantly to cell culturing techniques, immunohistochemistry, and immunocytochemistry. Sumairaβs collaborative projects with international institutions have expanded her research into structural biology and pharmacology, enhancing her contributions to drug discovery and molecular medicine.
Publication Top Notes
Title: Unexpected central role of the androgen receptor in the spontaneous regeneration of myelin
Cited by: 122
Title: Zwitterionic pyrimidinium adducts as antioxidants with therapeutic potential as nitric oxide scavenger
Cited by: 60
Title: Synthesis, molecular docking and xanthine oxidase inhibitory activity of 5-aryl-1H-tetrazoles
Cited by: 35
Title: Synthesis and urease inhibitory activities of benzophenone semicarbazones/thiosemicarbazones
Cited by: 27
Title: 2-Arylquinazolin-4(3H)-ones: A novel class of thymidine phosphorylase inhibitors
Dr. Soheila Kookalani, Cambridge University, United Kingdom
Soheila Kookalani is a distinguished Research Associate at the University of Cambridge, specializing in Civil and Structural Engineering. She has a profound expertise in steel reuse, the circular economy, life-cycle assessment, and the integration of digital twin technologies in construction. Her research focuses on leveraging artificial intelligence and machine learning to optimize structural designs, promoting sustainability in construction. Soheila holds a Ph.D. in Civil and Structural Engineering from Shanghai Jiao Tong University, where she pioneered research on GFRP elastic gridshells. With a commitment to environmental responsibility, she continuously explores innovative ways to integrate sustainable practices into building designs, aiming to revolutionize construction methodologies. She has numerous publications in leading journals, demonstrating her contribution to both academia and the industry. Her work emphasizes sustainable engineering practices that align with modern technological advancements, particularly in the realm of structural optimization and reuse strategies.
Summary of Suitability for the Research for Best Researcher Award
Soheila Kookalaniβs innovative approach to structural engineering, coupled with her strong commitment to sustainability and integration of advanced technologies, positions her as a highly suitable candidate for the Research for Best Researcher Award. Her work has significant implications for the future of sustainable construction, making her a valuable asset to both academia and industry.
Education
Soheila Kookalani pursued her academic journey with a solid foundation in architectural and civil engineering. She earned her Bachelor of Science in Architectural Engineering from Azad University in Iran, where her thesis explored hybrid architecture in cinematic arts. She then advanced her studies with a Master of Science in Civil and Structural Engineering from Hohai University, China, focusing on the seismic performance of hybrid structures in high-rise buildings. Her academic journey culminated with a Ph.D. from Shanghai Jiao Tong University, China, where she focused on the structural optimization of GFRP elastic gridshells using machine learning techniques. Her doctoral research contributed to advancing knowledge in structural design and building sustainability. Throughout her studies, Soheila has consistently integrated innovative technologies, such as artificial intelligence and machine learning, into her research, making her an authority in the field of structural design and optimization for sustainable construction.
Experience
Soheila Kookalani has accumulated extensive experience in civil and structural engineering, with a primary focus on sustainable design practices. She currently serves as a Research Associate at the University of Cambridge, where she is engaged in a groundbreaking project on the reuse of structural steel in construction. Her experience spans across diverse areas, including the circular economy, life-cycle assessment, building information modeling (BIM), and digital twin technology. From 2018 to 2022, she conducted research on GFRP elastic gridshells as part of her Ph.D. at Shanghai Jiao Tong University. Prior to this, Soheila gained practical experience working on seismic performance evaluation of hybrid structures during her Masterβs at Hohai University. Her expertise also extends to the application of artificial intelligence in optimizing structural designs, demonstrating her capacity to bridge the gap between theoretical research and practical application in sustainable construction.
Awards and Honors
Throughout her academic and professional career, Soheila Kookalani has been recognized for her outstanding contributions to civil and structural engineering. She has received several prestigious awards and honors, including recognition from leading engineering conferences and academic institutions. Her work on the integration of AI and machine learning in structural design has garnered international attention, earning her accolades for innovation in sustainable construction. Soheila has also been honored for her research on GFRP elastic gridshells, receiving commendations for excellence in structural optimization and sustainable design. Her role as a published author in top-tier engineering journals has further solidified her reputation as a leading researcher in the field. Additionally, Soheilaβs contributions to the reuse of structural steel and her involvement in cutting-edge projects at the University of Cambridge have earned her numerous industry awards, highlighting her commitment to environmental responsibility and sustainable engineering practices.
Research Focus
Soheila Kookalaniβs research is centered on the intersection of civil engineering, sustainability, and advanced technology. Her primary focus is on steel reuse, promoting a circular economy in construction through the reuse of structural components. She is also deeply involved in life-cycle assessments, aiming to reduce the environmental impact of construction projects. Her research integrates building information modeling (BIM) and digital twin technology to enhance the design, monitoring, and optimization of construction projects. Soheila is particularly interested in applying artificial intelligence (AI) and machine learning to optimize structural designs, especially in the context of GFRP elastic gridshells. Her work on generative AI in structural engineering seeks to streamline design processes and improve sustainability. By combining these advanced technologies, her research contributes to developing more efficient, eco-friendly building practices that align with global sustainability goals.
Publication Top Notes
BIM-based augmented reality for facility maintenance management
Cited by: 24
Structural analysis of GFRP elastic gridshell structures by particle swarm optimization and least square support vector machine algorithms
Cited by: 18
Shape optimization of GFRP elastic gridshells by the weighted Lagrange Ξ΅-twin support vector machine and multi-objective particle swarm optimization algorithm considering β¦
Cited by: 14
An analytic approach to predict the shape and internal forces of barrel vault elastic gridshells during lifting construction
Cited by: 14
Effect of Fluid Viscous Damper parameters on the seismic performance