Diya Sanjeev | Phosphoproteomics | Research Innovation Award

Ms. Diya Sanjeev - Phosphoproteomics - Research Innovation Award 🏆 

Centre for Integrative Omics Data Science CIODS - India

Professional Profiles

Early Academic Pursuits

She embarked on her academic journey with a Bachelor of Science in Zoology from Mahatma Gandhi University, Kerala, followed by a Master of Science in Bioinformatics. These foundational studies laid the groundwork for her future endeavors in the realm of life sciences and data analysis.

Professional Endeavors

As a Data Scientist at the Centre for Integrative Omics Data Science, Yenepoya University, she has been instrumental in scientific curation and analysis of global phospho-proteomics and signaling pathways. Her role involves delving into mass spectrometric data to uncover intricate lnRNA- miRNA mRNA interactions, contributing significantly to understanding post-translational modifications and protein phosphorylation dynamics.

Contributions and Research Focus in Phosphoproteomics

Her contributions extend beyond mere data analysis; she has actively assessed the accuracy of data sources and developed streamlined processes for data handling. Her expertise in setting up SQL databases on cloud servers and utilizing Python for data mapping and retrieval showcases her commitment to enhancing efficiency in data management. Through her projects, such as deciphering receptor-mediated signaling pathways and constructing network maps of crucial signaling molecules, she has illuminated the complex landscape of cellular communication and protein phosphorylation.

Phosphoproteomics is a cutting-edge discipline within proteomics that investigates protein phosphorylation, a pivotal post-translational modification crucial for cellular signaling and regulation. Leveraging advanced techniques such as mass spectrometry, it identifies and quantifies phosphorylation sites across the proteome, unveiling dynamic cellular processes and signaling pathways. By comprehensively mapping phosphorylation events, Phosphoproteomics sheds light on protein function regulation and intercellular communication. This field holds immense promise for elucidating disease mechanisms and discovering novel therapeutic targets, driving advancements in biomedicine and personalized medicine.

Accolades and Recognition

Her dedication and proficiency have not gone unnoticed, as evidenced by her receipt of the "Best Researcher Award" in Phosphoproteomics. This accolade underscores her exceptional abilities and contributions to the field, solidifying her position as a trailblazer in data-driven life sciences research. Phosphoproteomics is an interdisciplinary field at the forefront of molecular biology, focusing on the study of protein phosphorylation—a fundamental mechanism governing cellular signaling and function.

Phosphoproteomics is a burgeoning field within proteomics that focuses on the comprehensive study of protein phosphorylation, a critical post-translational modification essential for cellular signaling and regulation. Through advanced techniques such as mass spectrometry, phosphoproteomics aims to identify and quantify phosphorylation sites across the proteome, shedding light on dynamic cellular processes and signaling pathways. By elucidating the roles of protein phosphorylation in various biological processes, phosphoproteomics contributes to our understanding of disease mechanisms and holds promise for the discovery of novel therapeutic targets.

Impact and Influence

Her work has made a profound impact on the scientific community, with publications in esteemed journals like Computers in Biology and Medicine and the Journal of Cell Communication and Signaling. Her research on global phosphoproteomics and the characterization of phosphorylation sites has provided invaluable insights into cellular signaling networks and post-translational modifications, paving the way for further discoveries in disease mechanisms and therapeutic targets.

Legacy and Future Contributions

As she continues her journey in data science and life sciences research, Her legacy is marked by her pioneering efforts in Phosphoproteomics. Her dedication to continuous learning, coupled with her commitment to excellence, ensures that her future contributions will be nothing short of transformative. With a focus on unraveling the intricacies of protein phosphorylation and post-translational modifications, she is poised to leave an indelible mark on the field, shaping the future of biomedical research and therapeutics.

Notable Publications

Kaushik Dehingia | Mathematical Biology | Research Innovation Award

Dr. Kaushik Dehingia - Mathematical Biology - Research Innovation Award 🏆

Sonari College - India

Professional Profiles

Early Academic Pursuits

His academic journey began with a strong foundation in science during his high school and higher secondary education at Moran Higher Secondary School and Gyan Vigyan Academy, respectively. His outstanding academic performance continued as he secured the 1st rank in BSc Mathematics at J.B. College under Dibrugarh University in 2016, setting the stage for his future accomplishments.

Professional Endeavors

He has actively contributed to academia through various teaching roles. Starting as a Guest Faculty at Gauhati University in 2019, he further enhanced his teaching experience by working at the Gauhati University Institute of Science and Technology. Currently serving as an Assistant Professor at Sonari College since December 2021, Kaushik imparts knowledge in the field of mathematical biology.

Contributions and Research Focus in Mathematical Biology

His expertise lies in applied and computational mathematics, nonlinear dynamics, dynamical systems, fractional differential equations, and mathematical biology of diseases like cancer and HIV. His research, as showcased in his Ph.D. thesis titled "A Study on Some Mathematical Models Related to Cancer with Chemotherapy, Immunotherapy, and Radiotherapy," reflects a commitment to advancing understanding in critical areas of mathematical biology and optimal control.

Accolades and Recognition

His academic brilliance earned him several accolades, including being the University Rank Holder (1st rank) in BSc Mathematics at Dibrugarh University in 2016. He was honored with the Hari Prasad Saikia Memorial Prize Money Award for securing the highest marks in Mathematics in BSc in 2017. Furthermore, he successfully cleared SLET-NE in 2018 and CSIR-UGC-NET-JRF December 2019, achieving an impressive All India Rank of 159 in Mathematical Sciences.

Impact and Influence

His research in mathematical modeling, particularly in the context of cancer treatments, has the potential to influence medical advancements. His work in fractional differential equations and optimal control contributes to the understanding and optimization of disease treatment strategies.

Legacy and Future Contributions

His journey exemplifies a commitment to excellence in both academia and research. As an emerging academician and researcher, his legacy is likely to be defined by a dedication to advancing mathematical sciences. The combination of teaching experience and significant contributions to research positions Kaushik as a potential influencer in the field. Looking forward, he is expected to continue making substantial contributions, leaving a lasting impact on the mathematical community and shaping the future of applied and computational mathematics.

Citations

  • Citations               193
  • h-index                   8
  • i10-index                5

Notable Publications

 

Venkata Rajesh Yella | Computational Biology | Best Researcher Award

Koneru Lakshmaiah Education Foundation - India🏆

Professional Profiles:

Early Academic Pursuits :

His academic journey began with a focus on DNA structural analysis and its implications in gene expression during the early years of his research career. Exploring the intricacies of eukaryotic and prokaryotic DNA, he demonstrated a keen interest in understanding core promoter regions and DNA motifs, paving the way for significant contributions in deciphering the structural aspects of DNA and their functional roles.

Professional Endeavors :

His professional career evolved around interdisciplinary research, blending bioinformatics, computational biology, and molecular biology. His tenure at K L University since 2016 has been instrumental in fostering an environment conducive to cutting-edge research in genomics, structural biology, and computational genomics.

Contributions and Research Focus in Computational Biology:

His research has made substantial contributions to the understanding of DNA structural features influencing gene regulation, transcription factor binding, and the role of DNA motifs in gene expression. His work on G-quadruplexes, DNA flexibility, and the impact of DNA sequence environments on transcription factor affinity has significantly advanced the field's understanding of genome organization and gene responsiveness.

His expertise in employing deep learning and machine learning techniques to analyze biological data has been pivotal in unveiling hidden patterns within DNA sequences and regulatory regions across various organisms, establishing connections between structural elements and functional outcomes.

Accolades and Recognition :

His contributions have garnered substantial recognition, evident from his prolific publication record and high citation count. With an impressive H-index of 7 and a total of 18 citations for 15 publications within the specified timeframe, His work has been widely acknowledged and cited in prominent journals, reflecting its impact and significance within the scientific community.

Impact and Influence :

His studies have greatly influenced the fields of genomics, bioinformatics, and computational biology by providing critical insights into the structural determinants governing gene regulation. His research findings have laid a foundation for further investigations into DNA-protein interactions, regulatory mechanisms, and the development of predictive models for gene expression and transcriptional control.

Legacy and Future Contributions :

His legacy lies in his pioneering contributions to understanding DNA structure-function relationships and their implications in gene expression. His multidisciplinary approach integrating computational techniques with molecular biology has set a benchmark for future research in deciphering complex genomic landscapes.

Notable Publications :