Dr. Mijung Kim | Botanical Nanotechnology | Botany Scientist Excellence Award

Dr. Mijung Kim | Botanical Nanotechnology | Botany Scientist Excellence Award

R&D center director at GFC Life Science Co., Ltd | South Korea

Dr. Mi Jung Kim is a distinguished plant molecular geneticist and biotechnology expert with extensive experience spanning academia and industry. With a strong foundation in molecular genetics, she has pioneered research in plant-based innovations for therapeutic and cosmetic applications. Her career reflects a unique integration of fundamental plant science with industrial translation, particularly in developing high-value bioactive ingredients from plant cell cultures and extracellular vesicles. She has led national and international research projects, published in SCI-indexed journals, and fostered cross-sector collaborations. Dr. Kim currently serves as the Director of an R&D center focused on plant-derived materials, where she applies advanced genomic and omics technologies to create sustainable and functional ingredients. Her work has had significant impact on cosmetic biotechnology, bridging the gap between scientific discovery and consumer application. Her contributions reflect scientific depth, translational innovation, and leadership, making her a leading figure in the field of applied plant science.

Professional Profile 

Education

Dr. Kim holds a Ph.D. in Molecular Genetics from Korea University, where she specialized in transcriptional regulation of genes related to fatty acid biosynthesis in plants. Her doctoral training laid the groundwork for her future focus on gene expression and metabolic engineering. She also completed a Ph.D. course in Horticultural Science at Sangmyung University, enhancing her understanding of applied plant sciences. Her academic journey reflects a balance between core molecular biology and practical botany applications. She was mentored by renowned professors in plant biology and molecular genetics, which helped shape her research focus on functional genomics and plant biotechnology. The rigorous academic training she received fostered a scientific mindset that she has effectively applied in both academic and industrial settings. Her educational background continues to underpin her research on plant-derived compounds, natural metabolites, and biotechnological innovation.

Professional Experience

Dr. Kim’s professional experience spans renowned academic institutions and high-level industry positions. She began her postdoctoral work at Seoul National University, contributing to plant molecular biology research. As a senior researcher at Temasek Life Sciences Laboratory in Singapore, she led multiple national and collaborative projects, producing impactful research in plant biotechnology. She has been leading the Research and Development Center at a cosmetics materials company, where she integrates academic expertise with commercial product development. Her role involves designing and managing innovative projects focused on plant-derived exosomes and bioactives. She also collaborates with leading companies and universities, such as LG Life & Health, Cosmecca Korea, and Seoul National University. Her career reflects her capability to lead interdisciplinary teams, manage high-impact research, and drive commercial innovation based on solid scientific principles. Her experience is a testament to her leadership and applied scientific acumen.

Research Interests

Dr. Kim’s research focuses on the intersection of plant molecular genetics and applied biotechnology. She is particularly interested in plant-derived extracellular vesicles (EVs) and their applications in skin regeneration, anti-inflammation, and therapeutic delivery. She also explores plant secondary metabolites, cross-kingdom miRNA transfer, and metabolic engineering for enhancing bioactive compound yield. Her work aims to understand and manipulate the molecular mechanisms underlying plant biosynthesis pathways to develop premium cosmetic and therapeutic ingredients. Additionally, she integrates omics technologies—such as transcriptomics and metabolomics—to identify functional compounds and biomarkers. Her broader interest lies in sustainable bioproduction using plant cell cultures and genome editing tools. These areas not only contribute to academic advancement but also offer transformative solutions for industries ranging from cosmetics to pharmaceuticals. Dr. Kim’s interests reflect her passion for advancing plant science while contributing to real-world innovations in health and beauty technologies.

Research Skills

Dr. Kim possesses a diverse set of research skills combining classical molecular biology techniques with modern biotechnological tools. Her expertise includes gene expression analysis, transcriptional regulation studies, and metabolic pathway engineering. She is proficient in plant cell and tissue culture, enabling the establishment of scalable systems for producing secondary metabolites and extracellular vesicles. She applies omics-based approaches—including genomics, transcriptomics, and metabolomics—to discover novel bioactives and functional compounds. Her work also involves functional validation using bioassays and genetic engineering, including CRISPR/Cas-based genome editing. In recent years, she has focused on characterizing plant-derived miRNAs and their cross-kingdom functionality in human skin regeneration and inflammation modulation. Additionally, she has experience in scaling up laboratory research for industrial application, reflecting strong translational and project management capabilities. These research skills allow her to bridge the gap between scientific innovation and commercial product development in cosmetic biotechnology.

Awards and Honors

Dr. Kim has led several high-profile research projects and collaborations that have earned recognition within academic and industrial circles. While her specific awards are not listed in the current documentation, her appointment as R&D Center Director and previous leadership roles in international research institutes reflect her professional recognition and credibility. Her contributions have been acknowledged through successful partnerships with top-tier institutions and companies in Korea and abroad. She has also been nominated for awards such as the Botany Scientist Excellence Award, highlighting her continued impact and relevance in the field of plant biotechnology. Her body of work, including high-impact publications and translational innovations, speaks to her stature as a respected scientist. Future recognition is likely as her research continues to influence both fundamental plant biology and applied industrial solutions in cosmetics and therapeutics. Her career is marked by consistent excellence, innovation, and collaborative achievement.

Publications Top Noted

  • Long-Term Risks of Parkinson’s Disease, Surgery, and Colorectal Cancer in Patients With Slow-Transit Constipation
    Year: 2021
    Citations: 13

  • Genomic Analysis Identifies New Loci Associated With Motor Complications in Parkinson’s Disease
    Year: 2020
    Citations: 15

  • Mesenchymal stem cells co-cultured with colorectal cancer cells showed increased invasive and proliferative abilities due to its altered p53/TGF-β1 levels
    Year: 2020
    Citations: 15

  • Subtypes of sleep disturbance in Parkinson’s disease based on the cross-culturally validated Korean version of Parkinson’s disease sleep scale-2
    Year: 2020
    Citations: 12

  • Influences of elbow, shoulder, trunk motion and temporospatial parameters on arm swing asymmetry of Parkinson’s disease during walking
    Year: 2019
    Citations: 23

Conclusion

Dr. Mi Jung Kim stands out as a highly qualified and forward-thinking plant scientist whose work bridges the gap between academic research and practical innovation. Her pioneering contributions to plant-based bioactives and sustainable cosmetic materials exemplify excellence in applied plant science. With a proven record of innovation, collaboration, and leadership, she aligns well with the spirit of the Botany Scientist Excellence Award. Addressing minor gaps in academic visibility and external engagement would only further enhance her distinguished profile. Overall, her candidacy is both credible and compelling, and she is a deserving nominee whose recognition could inspire further interdisciplinary progress in the field of botanical science.

Nitu Rani | Plant Biotechnology | Best Researcher Award

Dr. Nitu Rani | Plant Biotechnology | Best Researcher Award

Associate Dean at Chandigarh University, India

Dr. Nitu Rani is a passionate researcher and academician specializing in biotechnology and sustainable agriculture, with a particular emphasis on biofertilizer development. With a career spanning academia, applied research, and scientific writing, she has significantly contributed to enhancing soil fertility through innovative bio-based solutions. Her interdisciplinary work bridges microbiology, plant science, and nanotechnology, evident from her numerous patents, peer-reviewed publications, and invited book chapters with global publishers. As an Assistant Professor at Chandigarh University, she has taught and mentored undergraduate and postgraduate students across microbiology, plant biochemistry, and biotechnology. Dr. Rani’s ability to convert laboratory findings into scalable, eco-friendly agricultural solutions sets her apart as a next-generation innovator. Her achievements include multiple patents on zinc biofertilizer technologies, SCI-indexed journal publications, and national recognitions such as the Best Researcher Award by Chandigarh University. She is committed to advancing sustainable food production systems through microbial innovation and environmental stewardship.

Professional Profile 

Education

Dr. Nitu Rani holds a Ph.D. in Biotechnology from Chandigarh University (2018–2023), where her research focused on developing zinc-based biofertilizers to enhance soil fertility and promote crop growth, particularly in the Solanaceae plant family. She earned a Master of Science (M.Sc.) in Biochemistry from Andhra University, Vishakhapatnam in 2005, graduating as a Gold Medalist with an outstanding academic record of 77.55%. Prior to that, she completed her Bachelor of Science (B.Sc.) with a combination of Biochemistry, Botany, and Chemistry from the same university in 2003, again earning a Gold Medal for academic excellence. Her educational background reflects a strong foundation in life sciences, biotechnology, and applied agricultural sciences. Throughout her academic journey, Dr. Rani consistently demonstrated academic leadership, securing top positions in her class and participating in various scholarly events. Her academic training laid the groundwork for her later contributions in microbial biotechnology and sustainable agricultural innovations.

Professional Experience

Dr. Nitu Rani has over 15 years of professional experience spanning academia, scientific writing, and applied research. She currently serves as an Assistant Professor at the University Institute of Biotechnology, Chandigarh University (2022–present), where she teaches microbiology, plant tissue culture, and biotechnology-related subjects. From 2018 to 2022, she worked as an Assistant Professor at the University Institute of Agricultural Sciences, engaging with graduate and postgraduate students in plant biochemistry, micropropagation, and agricultural microbiology. Her earlier roles included serving as a freelance scientific writer with Nerdy Turtlez for a decade and working as a medical content writer at VANS Inform Ltd., Mumbai (2005–2012). She began her teaching journey at TSR and TBK College, Andhra Pradesh, where she taught biochemistry at the postgraduate level. She has also contributed to administrative roles, including academic, alumni, and event coordination at Chandigarh University. Her diverse experience bridges academia, industry, and scientific communication with equal proficiency.

Research Interest

Dr. Rani’s research interests center on microbial biotechnology, sustainable agriculture, and biofertilizer innovation. She is particularly focused on the development and application of zinc-solubilizing bacteria and nano-formulated biofertilizers to improve soil fertility and crop productivity. Her Ph.D. research emphasized the use of Enterobacter ludwigii and other beneficial microbes encapsulated in organic matrices for application in Solanaceous crops, such as tomato. She is also deeply involved in exploring the green synthesis of ZnO nanoparticles and their agricultural applications. In addition, she has contributed to understanding plant-microbe interactions, biowaste valorization, and microbial contributions to nutraceuticals. Her interdisciplinary approach incorporates molecular techniques, microbiological assays, and nanotechnological tools to enhance microbial efficiency and biofertilizer formulations. Furthermore, she is interested in circular agriculture and the use of agro-waste in developing sustainable packaging solutions. Dr. Rani’s research is aligned with global goals for sustainable development, food security, and environmentally responsible farming.

Research Skills

Dr. Nitu Rani possesses a versatile skill set in molecular biology, microbiology, and plant biotechnology. She is proficient in plant tissue culture, PCR, and nucleic acid extraction from both microbial and plant sources. Her expertise extends to the morphological and molecular characterization of plant growth-promoting rhizobacteria (PGPR), biochemical assays, and physiological profiling of soil microbes. She is adept at preparing and analyzing bacterial DNA and fungal ITS sequences using bioinformatics tools such as MEGA X. Additionally, she has hands-on experience with alginate-starch encapsulation techniques and nanoparticle synthesis for biofertilizer development. Her data analysis skills include the use of OriginPro, advanced Excel, and visualization tools like Adobe Illustrator and Photoshop. She also brings experience in scientific proofreading and peer review for reputed journals. Dr. Rani’s research competencies are complemented by her ability to translate scientific knowledge into applied innovations such as patents, publications, and real-world biofertilizer formulations.

Awards and Honors

Dr. Nitu Rani has received several awards in recognition of her academic and research excellence. Notably, she was honored with the Best Researcher Award in 2023 by Chandigarh University for her pioneering work in the development of zinc-based biofertilizers. During her postgraduate studies, she earned Gold Medals in both M.Sc. and B.Sc., signifying top academic performance at Andhra University. Her research presentations have also received accolades, including a 2nd prize for oral presentation at the AMI Conference organized by Lovely Professional University in 2020. She has been invited as a proofreader and reviewer for reputed journals like Plant Science Today, further highlighting her scientific credibility. Her achievements in securing one granted and multiple published patents reflect her innovative contributions to applied biotechnology. These recognitions not only affirm her individual capabilities but also validate the broader societal and environmental relevance of her research work in sustainable agriculture.

Publications Top Noted

  • Rani, N., Sagar, N. A., Chauhan, A., & Mondal, A. (2025). Green synthesis of ZnO nanoparticles: Characterization and emerging applications in sustainable agriculture.

  • Kamble, M. G., Singh, A., Singh, S. V., Sagar, N. A., & Rani, N. (2025). Nanotechnology for encapsulation of bioactive components: a review. Citations: 2

  • Rani, N., Chauhan, A., Kaur, S., Solanki, M. K., Tripathi, M., Jain, D., & Kaur, G. (2023). Molecular Mechanistic of Zn-Solubilizing Bacteria for Agronomic Eminence: Recent Updates and Futuristic Development. Citations: 4