Tahmineh Mokhtari | Pharmacology, Toxicology and Pharmaceutical Science | Best Researcher Award

Dr.Tahmineh Mokhtari | Pharmacology, Toxicology and Pharmaceutical Science | Best Researcher Award

Visiting Scholar at UC-Davis, United States

Dr. Tahmineh Mokhtari is an accomplished neuroscientist and academic, currently a Visiting Scholar at UC-Davis, with a rich academic background including a Ph.D. in Anatomical Sciences from Tehran University of Medical Sciences and a Ph.D. Research Fellowship in Neuroscience at the Chinese Academy of Sciences. She holds key positions, including Associate Professor at Hubei University of Medicine, and has extensive experience in teaching, research, and consulting in the fields of neuropsychological disorders, pain, depression, neuroinflammation, and autophagy. Dr. Mokhtari has published numerous peer-reviewed articles, book chapters, and is a contributing editor for several scientific journals. Her research focuses on the molecular mechanisms underlying neurological conditions, particularly the role of inflammation and autophagy in pain and depression. Additionally, she has contributed to educational resources, including the Persian translation of key medical texts. Dr. Mokhtari has received international recognition for her work, with collaborations across prestigious institutions worldwide.

Professional Profile

Education

Dr. Tahmineh Mokhtari’s educational journey is marked by a strong foundation in the biological and medical sciences. She completed her Bachelor’s and Master’s degrees in Neuroscience and Physiology at Tehran University of Medical Sciences (TUMS), where she laid the groundwork for her future research career. She then pursued a Ph.D. in Anatomical Sciences at TUMS, focusing on neuroanatomy and neuroscience. Her dedication to advancing her knowledge led her to a Ph.D. Research Fellowship in Neuroscience at the prestigious Chinese Academy of Sciences in 2012. Dr. Mokhtari’s academic training has provided her with a deep understanding of neurological disorders, which has significantly shaped her research in neuroinflammation, pain, depression, and molecular mechanisms in the brain

Professional Experience

Dr. Tahmineh Mokhtari has an extensive professional background in both research and academia. She began her career as a researcher, contributing to projects related to neuroinflammation, pain, and depression. Her work has spanned various institutions, including Tehran University of Medical Sciences (TUMS), where she held roles as both a researcher and lecturer. Dr. Mokhtari has also gained significant international experience, having worked as a postdoctoral researcher at the Chinese Academy of Sciences. Her professional experience is marked by a commitment to advancing scientific knowledge through her research, publications, and collaborations. Additionally, she has made notable contributions to the understanding of molecular mechanisms in the brain and their implications for neurological disorders. Her role as an academic leader extends beyond research, as she has guided and mentored students in neuroscience and related fields.

Research Interest

Dr. Tahmineh Mokhtari’s research interests primarily focus on understanding the molecular mechanisms underlying neurological disorders, particularly in the areas of neuroinflammation, pain, and depression. She is particularly interested in exploring how various molecular and cellular processes contribute to the development and progression of these conditions. Her work delves into the roles of neuroinflammatory pathways and their impact on brain function, with a keen focus on how these processes may be targeted for therapeutic interventions. Dr. Mokhtari is also dedicated to investigating the interplay between genetic factors and environmental influences, aiming to uncover novel biomarkers and treatment strategies for neurological diseases. Through her research, she strives to contribute to the development of more effective and personalized treatments for individuals suffering from complex neurological and psychiatric disorders.

Award and Honor

Dr. Tahmineh Mokhtari has received several prestigious awards and honors in recognition of her outstanding contributions to the field of neuroscience and biomedical research. Her academic excellence and innovative research have been acknowledged by various scientific organizations, underscoring her dedication to advancing our understanding of neurological disorders. Dr. Mokhtari’s achievements have earned her accolades in both national and international settings, highlighting her as a leading expert in her field. These awards reflect her commitment to improving healthcare outcomes and her ongoing efforts to translate scientific discoveries into meaningful therapeutic solutions.

Conclusion

Tahmineh Mokhtari is highly deserving of the Best Researcher Award due to her outstanding contributions to neuroscience, her leadership in academic and research settings, and her influential role in advancing the understanding of neuropsychological disorders. While expanding her outreach and networking could provide further growth, her exceptional academic track record, innovative research, and editorial leadership make her a clear candidate for this prestigious recognition.

Publications Top Noted

  • Title: Role of NLRP3 Inflammasome in Chronic Pain and Alzheimer’s Diseaseβ€”A Review
    Authors: Moradi, F., Mokhtari, T.
    Year: 2025
    Citations: 0
  • Title: Brain Stimulation Techniques in Research and Clinical Practice: A Comprehensive Review of Applications and Therapeutic Potential in Parkinson’s Disease
    Authors: Moshayedi, A.J., Mokhtari, T., Emadi Andani, M.
    Year: 2025
    Citations: 0
  • Title: Molecular mechanisms of Schisandra chinensis in treating depression-neuropathic pain comorbidity by network pharmacology and molecular docking analysis
    Authors: Mokhtari, T., EL-Meghawry EL-Kenawy, A.
    Year: 2024
    Citations: 0
  • Title: Acellular spinal cord scaffold containing quercetin-encapsulated nanoparticles plays an anti-inflammatory role in functional recovery from spinal cord injury in rats
    Authors: Ebrahimi, B., Mokhtari, T., Ghaffari, N., Adabi, M., Hassanzadeh, G.
    Year: 2024
    Citations: 1
  • Title: Neurological recovery and neurogenesis by curcumin sustained-release system cross-linked with an acellular spinal cord scaffold in rat spinal cord injury: Targeting NLRP3 inflammasome pathway
    Authors: Ghaffari, N., Mokhtari, T., Adabi, M., Gholaminejhad, M., Hassanzadeh, G.
    Year: 2024
    Citations: 2
  • Title: Therapeutic potential of thymoquinone and its nanoformulations in neuropsychological disorders: a comprehensive review on molecular mechanisms in preclinical studies
    Authors: Saadat, M., Dahmardeh, N., Sheikhbahaei, F., Mokhtari, T.
    Year: 2024
    Citations: 1
  • Title: Stress, pain, anxiety, and depression in endometriosis–Targeting glial activation and inflammation
    Authors: Mokhtari, T., Irandoost, E., Sheikhbahaei, F.
    Year: 2024
    Citations: 8
  • Title: Corrigendum to β€œPotential anxiolytic and antidepressant-like effects of luteolin in a chronic constriction injury rat model of neuropathic pain: Role of oxidative stress, neurotrophins, and inflammatory factors”
    Authors: Mokhtari, T., Lu, M., El-Kenawy, A.E.-M.
    Year: 2024
    Citations: 0
  • Title: Microrobots for the Healthcare System from Design to Application β€” State of the Art and Challenges
    Authors: Moshayedi, A.J., Khan, A.S., Davari, M., Mokhtari, T., Andani, M.E.
    Year: 2024
    Citations: 3
  • Title: Role of NLRP3 Inflammasome in Post-Spinal-Cord-Injury Anxiety and Depression: Molecular Mechanisms and Therapeutic Implications
    Authors: Mokhtari, T., Uludag, K.
    Year: 2024
    Citations: 12

Rushit Lodaya | Pharmacology, Toxicology and Pharmaceutical Science | Best Researcher Award

Dr. Rushit Lodaya | Pharmacology, Toxicology and Pharmaceutical Science | Best Researcher Award

Associate Director at GSK, United States

Rushit N. Lodaya is an accomplished leader in vaccine formulation and drug product R&D, with over a decade of expertise in developing innovative delivery platforms for nucleic acids, adjuvants, and protein antigens. He specializes in lipid nanoparticle (LNP) formulations for RNA delivery, optimizing thermostable formulations, and advancing alternative drying technologies. His contributions include multiple patents, impactful publications, and leadership roles in cross-functional collaborations, including partnerships with organizations like the NIH. A strong advocate for innovation, Rushit has significantly influenced the fields of mRNA vaccines and adjuvant development through his research and mentorship. He emphasizes a “patent-first” strategy while promoting knowledge sharing through guest editing and academic collaborations. Dedicated to sustainability and translational research, he integrates cutting-edge science with practical applications. Rushit’s leadership, scientific contributions, and commitment to fostering talent make him a standout researcher advancing the frontiers of biopharmaceuticals and vaccine technology.

Professional Profile

Education

Rushit N. Lodaya has a strong academic foundation that underpins his expertise in pharmaceutical and vaccine research. He earned his Ph.D. from Northeastern University, Boston, as a GSK Fellow, where his research focused on developing and characterizing novel self-emulsifying adjuvant systems containing Ξ±-tocopherol. Under the guidance of Dr. Mansoor M. Amiji and Dr. Derek T. O’Hagan, he conducted innovative studies to enhance immune responses in vaccine formulations, including in vivo evaluations of adjuvants and lyophilization processes for single-vial vaccines. Prior to this, he pursued undergraduate research at Mumbai University, where he formulated and evaluated sustained-release drug delivery systems. His educational journey is marked by a blend of rigorous academic research and practical applications, equipping him with a robust skill set in formulation sciences, drug delivery, and vaccine development. This educational background laid the groundwork for his impactful career in advancing cutting-edge pharmaceutical and biopharmaceutical technologies.

Professional Experience

Rushit N. Lodaya has over a decade of professional experience in pharmaceutical and biopharmaceutical research, specializing in vaccine formulation, drug delivery systems, and lipid nanoparticle (LNP) technologies. Currently serving as Associate Director of RNA Delivery Sciences at GSK Vaccines, he leads strategies to advance mRNA delivery platforms and novel characterization tools. Previously, as an Expert Scientist at GSK, he spearheaded initiatives to optimize mRNA-LNP formulations, improve vaccine adjuvant processes, and establish external collaborations for drug product innovation. His earlier roles include significant contributions to Phase III clinical development, process transfer for GMP manufacturing, and formulation of protein antigens. At Cubist Pharmaceuticals, he worked on early-stage formulations for novel antibiotics and post-operative pain management. Rushit’s experience also encompasses academic roles, supervising Ph.D. students and guest editing for journals. His dynamic career blends technical expertise, innovative research, and leadership, driving advancements in vaccine and therapeutic development to address critical global health needs.

Research Interests

Rushit N. Lodaya’s research interests lie at the intersection of vaccine formulation science, advanced drug delivery systems, and pharmaceutical innovation. He is particularly focused on developing lipid nanoparticle (LNP) platforms for RNA delivery, optimizing their composition, stability, and scalability for clinical applications. His work extends to creating novel adjuvants and understanding their mechanisms to enhance immune responses. Rushit is also deeply invested in exploring alternative drying technologies, such as lyophilization, to achieve thermostable formulations, crucial for vaccines’ global accessibility and distribution. He is enthusiastic about tackling challenges in intracellular delivery, improving endosomal escape, and enabling co-delivery systems for therapeutic and prophylactic applications. Committed to translational research, Rushit seeks to bridge the gap between preclinical discoveries and real-world implementation, addressing pressing public health needs. His passion for innovation and sustainability aligns with his goal of advancing next-generation biopharmaceuticals and vaccines that are efficient, stable, and globally impactful.

Awards and Honors

Rushit N. Lodaya has been recognized for his outstanding contributions to vaccine research and pharmaceutical sciences through various awards and honors. As a recipient of the prestigious GSK Fellowship during his Ph.D. at Northeastern University, he demonstrated exceptional research capabilities in adjuvant systems and vaccine delivery. His innovative work has earned him multiple patents, including breakthroughs in lipid nanoparticle formulations and freeze-dried RNA vaccines, highlighting his commitment to advancing cutting-edge technologies. Rushit has also been invited to serve as a guest editor for a special issue of MDPI Pharmaceutics, focusing on next-generation vaccine adjuvants, reflecting his thought leadership in the field. His role as a mentor and collaborator has further solidified his reputation, as he supervises Ph.D. students and contributes to the scientific community through impactful publications and book chapters. These accolades underscore his dedication to innovation, collaboration, and advancing pharmaceutical sciences to address global health challenges.

Conclusion

Rushit N. Lodaya is a highly suitable candidate for the Best Researcher Award. His exceptional contributions to vaccine formulation, particularly in mRNA and LNP technologies, and his leadership in advancing innovative drug product solutions make him a strong contender. While he can expand his translational and collaborative impact, his sustained excellence, significant patents, publications, and mentorship strongly align with the award’s goals. Recognizing his efforts would celebrate and encourage further advancements in the critical field of vaccine R&D.

Publications top noted

  • The continued advance of vaccine adjuvantsβ€“β€˜we can work it out’
    • Authors: DT O’Hagan, RN Lodaya, G Lofano
    • Year: 2020
    • Citations: 117
  • β€œWorld in motion”–emulsion adjuvants rising to meet the pandemic challenges
    • Authors: DT O’Hagan, R van der Most, RN Lodaya, M Coccia, G Lofano
    • Year: 2021
    • Citations: 73
  • Formulation design, optimization and in vivo evaluations of an Ξ±-tocopherol-containing self-emulsified adjuvant system using inactivated influenza vaccine
    • Authors: RN Lodaya, AP Kanitkar, K Friedrich, D Henson, R Yamagata, S Nuti, …
    • Year: 2019
    • Citations: 26
  • Generation and characterization of a bivalent protein boost for future clinical trials: HIV-1 subtypes CR01_AE and B gp120 antigens with a potent adjuvant
    • Authors: Y Wen, HV Trinh, CE Linton, C Tani, N Norais, DA Martinez-Guzman, …
    • Year: 2018
    • Citations: 17
  • Stable nanoemulsions for the delivery of small molecule immune potentiators
    • Authors: RN Lodaya, LA Brito, TYH Wu, AT Miller, GR Otten, M Singh, DT O’Hagan
    • Year: 2018
    • Citations: 14
  • Overview of vaccine adjuvants
    • Authors: RN Lodaya, S Gregory, MM Amiji, DT O’Hagan
    • Year: 2022
    • Citations: 7
  • Practical aspects of vaccine development
    • Authors: P Kolhe, S Ohtake
    • Year: 2021
    • Citations: 5
  • A Self-Emulsified Adjuvant System Containing the Immune Potentiator Alpha Tocopherol Induces Higher Neutralizing Antibody Responses than a Squalene-Only Emulsion When Evaluated
    • Authors: RN Lodaya, AP Kanitkar, A Ashraf, D Bamba, MM Amiji, DT O’Hagan
    • Year: 2023
    • Citations: 3
  • Lyophilized vaccine development
    • Authors: NM Payton, RN Lodaya, AM Padilla
    • Year: 2022
    • Citations: 3
  • Nanoscale Vaccines for Influenza
    • Authors: S Bhangde, RN Lodaya, MM Amiji
    • Year: 2023
    • Citations: 1
  • Microfluidic-Chip-Based Formulation and In Vivo Evaluations of Squalene Oil Emulsion Adjuvants for Subunit Vaccines
    • Authors: S Bhangde, S Fresnay-Murray, T Garretson, A Ashraf, DT O’Hagan, …
    • Year: 2024
    • Citations: Not yet available
  • Freeze-drying of lipid nanoparticles (lnps) encapsulating rna and formulations thereof
    • Authors: R Lodaya, P Pohlhaus, E Zecca, J Zhang, A Padilla, E BourlΓ¨s, J Enert
    • Year: 2024
    • Citations: Not yet available
  • “World in motion”-emulsion adjuvants rising to meet the pandemic challenges (Vol 6, 158, 2021)
    • Authors: DT O’Hagan, R van der Most, RN Lodaya, M Coccia, G Lofano
    • Year: 2023
    • Citations: Not yet available
  • Author Correction: β€œWorld in motion”–emulsion adjuvants rising to meet the pandemic challenges
    • Authors: DT O’Hagan, R van der Most, RN Lodaya, M Coccia, G Lofano
    • Year: 2023
    • Citations: Not yet available
  • Review 2: “A self-amplifying RNA vaccine against COVID-19 with long-term room-temperature stability”
    • Authors: HM Niknam, NS Savar
    • Year: 2022
    • Citations: Not yet available

Lakshmanan Govindan | Pharmacology, Toxicology and Pharmaceutical Science | Best Researcher Award

Dr.Β  Lakshmanan Govindan | Pharmacology, Toxicology and Pharmaceutical Science | Best Researcher Award

Assistant Professor at Saveetha Medical College and Hospital, India

Dr. Sheryene Tejeda, PhD, is an accomplished medical scientist with over 15 years of experience in clinical and scientific environments. Based in Palm Beach Gardens, Florida, she has played key roles in advancing medical research and developing innovative therapeutic protocols. Her expertise spans diverse fields such as oncology, neurology, and behavioral health. Dr. Tejeda has been instrumental in her positions, including Lead Medical Scientist at Medicinal Technologies, Contract Co-occurring Consultant, and Clinical Research Associate, where she contributed to cutting-edge research and patient care strategies. Her career is marked by a deep commitment to integrating science and holistic health approaches.

Professional Profile

Education

Dr. Tejeda’s academic background is as impressive as her professional career. She earned her PhD in Biomedical Science from Einstein Medical School, laying a strong foundation for her research in complex medical conditions. Additionally, she holds two Master’s degreesβ€”one in Forensic Science and another in Health Science. These advanced studies equipped her with a multidisciplinary approach to healthcare, combining rigorous scientific methodology with a focus on human health outcomes. Dr. Tejeda also earned a Bachelor’s degree in Communications and Psychology, highlighting her interest in understanding human behavior alongside her scientific expertise.

Professional Experience

Dr. Tejeda’s extensive professional experience includes leadership roles in both clinical research and therapeutic development. As Lead Medical Scientist at Medicinal Technologies, she spearheaded research initiatives aimed at improving patient care through innovative medicinal approaches. Her role as a Contract Co-occurring Consultant involved working with individuals facing both mental health and substance use challenges, underscoring her commitment to integrative healthcare. In addition to her clinical work, Dr. Tejeda served as a Clinical Research Associate, contributing to various oncology and neurology trials. Her work across these roles highlights her versatility and leadership in advancing medical science.

Research Interests

Dr. Tejeda’s research interests are diverse and deeply rooted in her passion for integrative therapies and patient-centered care. She is particularly focused on oncology, where she investigates novel therapeutic approaches to cancer treatment. Additionally, she has a keen interest in neurology, exploring the intersections of neuroscience, behavior, and mental health. Her research also extends into behavioral health, where she looks at co-occurring disorders and the development of more effective treatment protocols. Dr. Tejeda’s interdisciplinary approach allows her to contribute meaningful insights into complex health challenges, with a focus on improving both treatment outcomes and patient quality of life.

Awards and Honors

Throughout her career, Dr. Tejeda has received numerous awards and recognitions for her contributions to medical research and healthcare. Her innovative work in oncology and neurology has been particularly lauded, earning her accolades within the scientific community. Additionally, her efforts in integrative and patient-focused care have resulted in recognition for her commitment to improving therapeutic practices. While specific awards have marked her journey, it is her ongoing dedication to advancing medical science and holistic health that continues to distinguish her as a leader in her field. Her work remains an inspiration to her colleagues and the broader medical community.

Conclusion

Dr. Lakshmanan’s extensive experience in medicinal plant research, advanced laboratory techniques, and interdisciplinary publications make him a deserving candidate for the Best Researcher Award. His innovative work in cancer and diabetes treatments has potential for wide-reaching applications in healthcare. Strengthening his grant acquisition and international research collaborations would further solidify his standing as a leading researcher in his field.

Publication top noted

  • Kamakshi, S., Anantha Lakshmi, P., Shenbhagaraman, R., Lakshmanan, G., Selvakumari, J.
    Antibacterial and photo dye degradative ability of copper oxide nanoparticles from Pleurotus cystidiosus
    Nano Express, 2024, 5(2), 025029
    πŸ“ 0 Citations
  • Muthu, S., Gopal, V., AL-Younis, Z.K., GiuffrΓ¨, A.M., Govindan, L.
    Extraction, purification, and investigation of the antibacterial potential of lysozyme isolated from the latex of Calotropis procera
    European Food Research and Technology, 2024, 250(5), pp. 1401–1416
    πŸ“ 0 Citations
  • Lakshmanan, G., Altemimi, A.B., Sivaraj, C., Najm, M.A.A., Gamal Abedelmaksoud, T.
    Imperatorin from the aerial parts of Cleome viscosa L.: a characterization study and evaluation of the antibacterial activity
    Natural Product Research, 2024, 38(5), pp. 848–855
    πŸ“ 0 Citations
  • Maria Francis, Y., Karunakaran, B., Ashfaq, F., Govindan, L., Ponnusamy Kasirajan, S.
    Mercuric Chloride Induced Nephrotoxicity: Ameliorative Effect of Carica papaya Leaves Confirmed by Histopathology, Immunohistochemistry, and Gene Expression Studies
    ACS Omega, 2023, 8(24), pp. 21696–21708
    πŸ“ 3 Citations
  • Sivalingam, A.M., Altemimi, A.B., Abdul-Abbas, S.J., Cacciola, F., Devaraj, N.
    Anti-Hyperglycaemic properties of an ethanolic extract from Costus spicatus (jacq) on Streptozotocin-induced diabetic male albino Wistar rats
    Moroccan Journal of Chemistry, 2023, 11(4), pp. 917–931
    πŸ“ 0 Citations
  • Rengarajan, S., Thangavel, N., Sivalingam, A.M., Selvakumari, J., Pandian, A.
    Green synthesis and characterization of silver nanoparticles with different solvent extracts of Sesbania grandiflora (L.) Poiret and assessment of their antibacterial and antioxidant potentials
    Biomass Conversion and Biorefinery, 2023
    πŸ“ 5 Citations
  • Lakshmanan, G., Selvam, R., Altemimi, A.B., Jayalakshmi, G., Pratap-Singh, A.
    Phytochemical screening of ethanolic extracts of Cuminum cyminum L. seeds along with the evaluation of antidiabetic properties by molecular docking approach
    Natural Product Research, 2023, 37(4), pp. 681–686
    πŸ“ 3 Citations
  • Vijayaraj, R., Altaff, K., Lakshmanan, G., Palanisamy, M., Alothaim, A.S.
    Inhibitory Activity of Chitin, (2-Acetamido-2-Deoxy-Hexopyranose) against Penicillin-Binding Proteins of Staphylococcus aureus
    Coatings, 2022, 12(12), 1854
    πŸ“ 4 Citations
  • Radhakrishnan, M., Palayam, M., Altemimi, A.B., Cacciola, F., Govindan, L.
    Leucine-Rich, Potent Anti-Bacterial Protein against Vibrio cholerae, Staphylococcus aureus from Solanum trilobatum Leaves
    Molecules, 2022, 27(4), 1167
    πŸ“ 2 Citations
  • Rama, P., Baldelli, A., Vignesh, A., Murugesan, K., Pratap-Singh, A.
    Antimicrobial, antioxidant, and angiogenic bioactive silver nanoparticles produced using Murraya paniculata (L.) jack leaves
    Nanomaterials and Nanotechnology, 2022
    πŸ“ 14 Citations