Mr. Zeeshan khan – Plant Biotechnology – Best Researcher Award

Mr. Zeeshan khan - Plant Biotechnology - Best Researcher Award

National University of Sciences and Technology Islamabad - Pakistan

Author Profile

ORCID 

🌱 Early academic pursuits

Zeeshan khan embarked on his academic journey with a strong foundation in biotechnology, earning a bs in biotechnology from the international islamic university (iiui), islamabad, pakistan, in 2018. his undergraduate thesis focused on the in-vitro propagation and conservation of the medicinal plant stevia rebaudiana, showcasing his early interest in combining scientific innovation with sustainable practices. zeeshan further honed his expertise by pursuing an ms in plant biotechnology at the national university of sciences and technology (nust), where he conducted epidemiological studies of begomoviruses in the south asian region, graduating in 2020. currently, he is advancing his academic pursuits as a phd candidate in applied biosciences at nust, focusing on investigating the role of eco-friendly microbes in combating microplastic stress in agro-ecosystems.

🔬 Professional endeavors

Zeeshan’s career has been marked by his dedication to research and innovation. he began his professional journey as a research associate at the national agricultural research centre (narc), islamabad, from june 2017 to august 2018. here, he gained valuable experience in agricultural biotechnology and plant sciences. later, in 2021, he joined razbio.co.uk as a research associate at the department of plant biotechnology, atta-ur-rahman school of applied biosciences (asab), nust. these roles allowed him to contribute to cutting-edge research while refining his expertise in plant biotechnology and microbial applications.

🧬 Contributions and research focus

Zeeshan’s research contributions focus on addressing environmental and agricultural challenges through innovative scientific approaches. during his phd, he has been exploring the role of eco-friendly microbes in mitigating microplastic stress in agro-ecosystems, a critical issue in sustainable agriculture. his prior research has included the epidemiological studies of Plant Biotechnology begomoviruses, providing insights into plant viral diseases in south asia, and developing in-vitro propagation techniques for medicinal plants. equipped with skills in microbiology, molecular biology, and bioinformatics, zeeshan’s work bridges the gap between biotechnology and environmental sustainability.

🏆 Accolades and recognition

Zeeshan’s dedication to excellence has earned him recognition as a promising researcher. his active contributions to the field are highlighted by his scholarly publications and his participation Plant Biotechnology in innovative research projects. he maintains an active google scholar profile, reflecting his impact in the academic community. his achievements also include working on high-impact research projects at prestigious institutions like nust and narc, underscoring his capabilities as a researcher.

🌍 Impact and influence

Zeeshan’s research holds significant implications for global sustainability and agriculture. by addressing the pressing issue of microplastic pollution in agro-ecosystems, his work provides Plant Biotechnology valuable solutions for improving soil health and crop productivity. his efforts in studying plant viruses and conservation techniques also contribute to enhancing food security and biodiversity conservation. zeeshan’s interdisciplinary expertise and innovative approaches have made a lasting impact in the fields of plant biotechnology and applied biosciences.

✨ Legacy and future contributions

Zeeshan khan is poised to leave a lasting legacy in environmental biotechnology and sustainable agriculture. as a skilled researcher, he envisions contributing to groundbreaking advancements in eco-friendly agricultural practices and microbial biotechnology. his commitment to addressing global challenges such as microplastic pollution and plant health reflects his determination to shape a sustainable future. zeeshan’s ongoing research and future endeavors are set to inspire the next generation of scientists in his field.

Notable Publications

  • Title: Mycorrhizosphere bacteria alleviated arsenic toxicity by regulating organic acids, glyoxalase defense system, and metal transporters in soybean plants
    Authors: Zeeshan Khan, Shahrukh Khan, Mansour I. Almansour, Muhammad Asad, Mohammad Javed Ansari, Hamad Khan, Ijaz Ahmad
    Journal: South African Journal of Botany
  • Title: Mitigation of microplastic toxicity in soybean by synthetic bacterial community and arbuscular mycorrhizal fungi interaction: Altering carbohydrate metabolism, hormonal transduction, and genes associated with lipid and protein metabolism
    Authors: Muhammad Asad, Zeeshan Khan, Tariq Shah, Muhammad Abdullah Shah, Ayesha Imran, Salman Rasool, Jabar Zaman Khan Khattak, Shah Rukh Khan, Ajaz Ahmad, Parvaiz Ahmad
    Journal: Plant Stress
  • Title: Nanoplastics negatively affect nitrogen assimilation and metabolism in soybean roots more than in nodules
    Authors: Tariq Shah, Zeeshan Khan, Zainullah Bacha, Zahwa Zaffar, Fazal Munsif, Ajaz Ahmad, Parvaiz Ahmad
    Journal: Scientia Horticulturae
  • Title: Agro-biofortification of maize with selenium for higher grain selenium contents and productivity
    Authors: Tariq Shah, Tahani Awad Alahmadi, Mohammad Javed Ansari, Zeeshan Khan, Hamad Khan
    Journal: South African Journal of Botany
  • Title: Mycorrhizosphere bacteria inhibit greenhouse gas emissions from microplastics contaminated soil by regulating soil enzyme activities and microbial community structure
    Authors: Zeeshan Khan, Tariq Shah, Ghulam Haider, Fazal Adnan, Zeshan Sheikh, Mohamed A. El-Sheikh, Muhammad Faraz Bhatti, Parvaiz Ahmad
    Journal: Journal of Environmental Management

Ms. Mojdeh Rajabi – Tissue engineering – Best Researcher Award

Ms. Mojdeh Rajabi - Tissue engineering - Best Researcher Award

Amirkabir University of Technology - Iran

Author Profile

SCOPUS

Early academic pursuits 🎓

Mojdeh Rajabi's academic journey began with a strong foundation in materials science engineering, where she earned her B.Sc. from the University of Science & Technology in Tehran, Iran, in 1993. Her keen interest in mechanical engineering and innovation led her to pursue an M.Sc. in Mechanical Engineering at the University of Saskatchewan, Canada, which she completed in 1996. Building on this diverse academic background, she is currently a Ph.D. candidate in Biomedical Engineering at Amirkabir University of Technology (Tehran Polytechnic), focusing on tissue engineering.

Professional endeavors đź’Ľ

Throughout her career, Mojdeh has gained substantial experience in both academia and industry. She held leadership roles in various companies, including serving as the Manager of Quality Monitoring and Productivity at Alborz Apadana Steel from 2019 to 2023. She was also a Senior Project Manager at Materials Innovation & Process Engineering Consultants (MIPEC) between 2013 and 2019, where she worked on complex materials engineering projects. Additionally, Mojdeh's engineering expertise was honed at automotive giants such as Supplying Automotive Parts Corporation (SAPCO) and Zamyad Automotive Corporation, where she contributed to development, procurement, and design engineering.

Contributions and research focus 🔬

Mojdeh’s research is primarily focused on tissue engineering and biomedical applications, where she integrates her mechanical and materials science expertise. As a Ph.D. candidate, she is responsible for the Tissue Engineering Laboratory at Amirkabir University of Technology, where she conducts cutting-edge research in the development of biomaterials and regenerative medicine. Her work aims to bridge the gap between mechanical engineering and biology to advance medical Tissue engineering technologies that can improve the quality of life. Additionally, she co-authored the book "Neurocognitive mechanisms of attention," which explores computational models and their relevance in disease states.

Academic contributions 📚

In academia, Mojdeh has consistently contributed to the education of future engineers and researchers. She has taught B.Sc. courses in mechanical and biomedical engineering at Shahab Danesh University and the University of Applied Science & Technology in Tehran. Her teaching roles, coupled with her expertise in tissue Tissue engineering engineering, have enabled her to mentor students and foster the development of new talent in the biomedical field. Additionally, her work as a freelance editor of technical papers from 2018 to 2024 has further solidified her role in advancing academic excellence.

Accolades and recognition 🏅

Mojdeh Rajabi's academic and industrial work has garnered her recognition in both the engineering and biomedical communities. Her contributions to research and Tissue engineering development, particularly in the field of tissue engineering, have been published in reputable journals and books, with one of her most notable works being a co-authored publication in Academic Press on neurocognitive mechanisms of attention. Her extensive experience in both teaching and industry has made her a respected figure in her field, often sought for her expertise in quality monitoring, product development, and biomedical research.

Impact and influence 🌍

Mojdeh's work in tissue engineering and mechanical engineering continues to influence both research and industry. Her innovative approach to integrating mechanical engineering principles with biomedical applications has led to advancements in the development of new materials and medical devices. Additionally, her role in academia allows her to pass on her knowledge to the next generation of engineers, ensuring that her impact will be felt for years to come. Through her contributions to both industry and education, Mojdeh has become a key player in advancing biomedical and engineering technologies.

Legacy and future contributions đź”®

Looking ahead, Mojdeh Rajabi’s legacy is defined by her commitment to interdisciplinary research and education in the fields of engineering and biomedical sciences. Her ongoing Ph.D. research in tissue engineering promises to offer new insights into the development of materials that can be used in regenerative medicine, with the potential to revolutionize treatments for a variety of medical conditions. Mojdeh’s future contributions will undoubtedly continue to drive innovation, bridging the gap between mechanical engineering and the life sciences to create meaningful solutions for healthcare challenges.

Notable Publications 

  • Title: Sustained release of heparin from PLLA micropartricles for tissue engineering applications
    Authors: Rajabi, M., Shabani, I., Ahmadi Tafti, S.H., Shabani, A.
    Journal: Polymer Testing, 2024, Volume 140, Article 108628
  • Title: Neurocognitive Mechanisms of Attention: Computational Models, Physiology, and Disease States
    Authors: Baghdadi, G., Towhidkhah, F., Rajabi, M.
    Book: Neurocognitive Mechanisms of Attention: Computational Models, Physiology, and Disease States, 2021, pp. 1–427

Dr. Vikas Shukla – Nanomedicine and Immunology – Best Researcher Award

Dr. Vikas Shukla - Nanomedicine and Immunology - Best Researcher Award

AIIMS, New Delhi - India 

Author Profile

GOOGLE SCHOLAR 

Early academic pursuits 📚

Vikas Shukla's academic journey began with a deep-rooted passion for nanobiotechnology and immunology. He dedicated himself to gaining a solid foundation in the life sciences, eventually leading him to pursue advanced studies in these cutting-edge fields. His education, characterized by rigorous training, provided the tools necessary for his future contributions to scientific research. Over the years, vikas built an impressive knowledge base in bacterial culture, cell culture, and immunoassays, which would serve as the backbone of his research career.

Professional endeavors 🏢

currently serving as a research scientist-II at the all india institute of medical sciences (aiims) in new delhi, india, vikas brings over 8 years of extensive experience to the forefront. His role at aiims, within the department of plastic, reconstructive & burns surgery, involves not only laboratory-based research but also project management. This balance between hands-on science and overseeing project timelines ensures that he contributes effectively to the scientific and clinical goals of his department.

Contributions and research focus 🔬

Vikas's research primarily revolves around nanobiotechnology and immunology, with a keen focus on innovative solutions in medical science. He has demonstrated exceptional expertise in bacterial culture, cell culture, immunoassays, and small animal handling. His work seeks to bridge the gap between complex scientific Nanomedicine and Immunology theories and their real-world applications, particularly in healthcare. Vikas’s research outputs have helped advance understanding in both fundamental immunological responses and the application of nanotechnology in therapeutic treatments.

Accolades and recognition 🏅

throughout his career, vikas has received commendations for his meticulous work and contributions to the field. His ability to keep projects both on time and on Nanomedicine and Immunology budget while maintaining high scientific standards has not gone unnoticed. He is widely recognized among his peers and colleagues for his diligence, precision, and ability to translate complex scientific concepts into more accessible knowledge. His exceptional communication skills have further bolstered his reputation as a skilled researcher and project manager.

Impact and influence 🌍

Vikas’s research holds significant implications for the fields of immunology and nanobiotechnology, particularly within clinical settings. His work on developing innovative medical treatments and enhancing immunological responses has the potential to save lives and improve patient outcomes. His influence extends beyond the laboratory, as his project management skills ensure that critical research is completed efficiently, benefiting both the scientific community and society as a whole.

Legacy and future contributions đź”®

looking ahead, Vikas Shukla’s legacy will likely be defined by his contributions to advancing the use of nanotechnology in medicine. His ongoing work at aiims and within the broader scientific community will continue to impact the development of new therapeutic approaches and enhance our understanding of immune Nanomedicine and Immunology responses. His commitment to pushing the boundaries of science while managing complex projects ensures that his influence will be felt for years to come.

Notable Publications 

Smart Drug-Delivery Systems in the Treatment of Rheumatoid Arthritis: Current, Future Perspectives  2021

Dynamic light scattering (DLS) particle size analysis for biomedical nanotechnology  2023

Downmodulation of lysophosphatidic acid by Berberine loaded folate-conjugated glycol chitosan nanoparticles  2022

Therapeutic use of mesenchymal stem cells against SARS-Cov-2: present and future prospects  2022

Phytomedicine Meets Nanotechnology: A Cellular Approach to Rheumatoid Arthritis Treatment 2024

Dr. Elisabeth Lettau – Synthetic Microbiology – Best Scholar Award

Dr. Elisabeth Lettau - Synthetic Microbiology - Best Scholar Award

RWTH Aachen University - Germany

Author profile 

SCOPUS

Early academic pursuits 🎓

Elisabeth Lettau embarked on her academic journey at the university potsdam, where she earned a bachelor’s degree in life sciences. her undergraduate thesis focused on the role of the microtubule system in the assembly of vacuolar h+-atpase, showcasing her early interest in cellular mechanisms. she then pursued a master’s degree in molecular life science at humboldt-universität zu berlin, where she investigated the proton uptake mechanism of the light-activated pump CsR. this foundational work set the stage for her future research in molecular biology and protein engineering.

Professional endeavors 🏢

Elisabeth’s professional career has been marked by significant roles in prestigious institutions. she started as a student assistant at the leibnitz-research institute for molecular pharmacology, where she managed animal facilities. she later worked at the university library of the humboldt-universität zu berlin before transitioning to research. at technishe universität berlin and rwth aachen university, she has made notable contributions as a junior research associate and senior research associate in protein engineering. her work in these roles has been focused on gas-converting enzymes, including hydrogenases and methane monooxygenases, under the guidance of the lautebach and lenz groups.

Contributions and research focus 🔬

Elisabeth lettau's research primarily centers on the protein engineering of gas-converting enzymes. her work aims to convert greenhouse gases into valuable chemicals, addressing environmental challenges. she has contributed to the development of engineered hydrogenases and Synthetic Microbiology methane monooxygenases, which are crucial for biotechnological applications. her doctoral studies at rwth aachen university are expected to further advance this field, with a focus on enhancing the efficiency and functionality of these enzymes.

Accolades and recognition 🏅

Elisabeth has earned recognition for her scientific achievements, including a magna cum laude grade for her doctoral studies in molecular Synthetic Microbiology biology and protein engineering. her participation in prestigious summer schools, such as the european timb3 project on the chemistry of metals in biological systems and scientific writing courses, highlights her commitment to professional development and her expertise in biochemistry and molecular biology.

Impact and influence 🌍

Elisabeth’s work has significant implications for both scientific research and environmental sustainability. her innovative approaches in protein Synthetic Microbiology engineering are paving the way for new methods to address greenhouse gas emissions. her research contributes to the broader field of synthetic microbiology, offering solutions to pressing environmental issues through advanced biocatalysts.

Legacy and future contributions đź”®

Elisabeth lettau’s legacy will be marked by her contributions to the field of protein engineering and her efforts to mitigate environmental impact through biotechnological advancements. looking ahead, she is poised to continue making influential contributions to molecular biology and biochemistry, with ongoing research expected to drive further innovation in gas-converting enzyme technology and its applications. her future work promises to impact both scientific understanding and practical solutions for global environmental challenges.

Notable Publications 

Dr. Atakan tevlek – biosensor – Best Researcher Award

Dr. Atakan tevlek - biosensor - Best Researcher Award

Atilim University - Turkey

Author Profile

ORCID

Early academic pursuits 🎓

Atakan tevlek embarked on his academic journey at hacettepe university, where he earned his bachelor’s degree in biology from the institute of science in 2012. his passion for biomedical engineering led him to continue at the same university, pursuing an integrated phd in bioengineering at the institute of science and engineering. this academic foundation set the stage for his future contributions to bioengineering and tissue engineering.

Professional endeavors 🏢

from 2019 to 2023, atakan served as an experienced researcher at middle east technical university (metu) in the mems center in ankara, turkey. during this period, he expanded his expertise in micro-nano fabrication technologies and advanced biomaterials. prior to this role, he worked intensively on his phd research, which involved innovative approaches in tissue engineering and bio-mems applications. his professional career has been marked by a commitment to advancing research in bioengineering and related fields.

Contributions and research focus 🔍

atakan’s research primarily revolves around 3d cell culture techniques and the development of cell spheroids for bio-mems applications. his work on decellularized tissues and hydrogels has significantly advanced tissue engineering and lab-on-a-chip technologies. he has also made biosensor notable contributions to micro-nano fabrication and surface patterning strategies for implant materials. his research integrates the synthesis and characterization of polymeric and composite biomaterials, aiming to enhance tissue engineering applications.

Accolades and recognition 🏅

atakan has received recognition for his impactful research, as evidenced by his citation metrics. his work has been cited extensively across biosensor various databases, including google scholar, scopus, and web of science, each reflecting his significant contributions to the field. his h-index of 10 indicates his work's influence and relevance in the research community, showcasing his successful integration of advanced technologies in bioengineering.

Impact and influence 🌍

through his research, atakan has made substantial contributions to the fields of bioengineering and tissue engineering. his innovative biosensor approaches to 3d cell culture, decellularized tissues, and bio-mems applications have enhanced our understanding and capabilities in these areas. his work impacts both academic research and practical applications in medical technologies, influencing how we approach tissue engineering and organ-on-chip systems.

Legacy and future contributions đź”®

atakan tevlek's legacy lies in his pioneering work in bioengineering and tissue engineering. his future research is poised to further explore and expand the applications of biomaterials and cell culture technologies. with ongoing advancements in his field, atakan’s contributions will continue to influence the development of cutting-edge medical and biotechnological solutions, ensuring a lasting impact on both academia and industry.

Notable PublicationsÂ