Md Sohrab Alam | Drug Delivery Systems | Best Researcher Award

Mr. Md Sohrab Alam | Drug Delivery Systems | Best Researcher Award

Lord Buddha Koshi Pharmacy College | India

Mr. Md Sohrab Alam is an accomplished academic and pharmaceutical professional recognized for his expertise in pharmaceutics, quality assurance, research, and teaching excellence. With a strong educational foundation that includes a Bachelor of Pharmacy and Master of Pharmacy in Pharmaceutics from Jamia Hamdard, followed by continued progress in doctoral research at Monad University, he has developed a comprehensive understanding of drug delivery science, formulation technologies, and pharmaceutical regulatory principles. His early engagement in research led to his notable project Nanostructured Lipid Carrier Based Transdermal Drug Delivery System of Pioglitazone, conducted under distinguished supervision at Jamia Hamdard, which strengthened his interests in targeted and advanced drug delivery systems. Professionally, he has gained diverse experience across academia, hospital pharmacy, and industrial quality assurance, beginning with a role as Quality Assurance Officer at Brawn Laboratories Ltd., followed by several fulfilling years as a pharmacist within the Shamsaa Pharmacy Group in Saudi Arabia, where he contributed to patient care, medication safety, and therapeutic guidance. His transition into academics marked a significant phase of his career, serving first as an Assistant Professor at the Nibha Institute of Pharmaceutical Sciences and later advancing to the position of Associate Professor at Lord Buddha Koshi Pharmacy College, where he continues to mentor budding pharmacists and inspire research-driven learning. His research contributions include the publication Nanostructured Lipid Carriers of Pioglitazone for Transdermal Application: From Experimental Design to Bioactivity Detail in the journal Drug Delivery, and the study Effects of Europinidine-O-Methylated Anthocyanidine on Scopolamine-Induced Memory Impairments by Improving Neurological Expression: An Integrated In-Silico and ADMET Computational Analysis, published in Learning and Motivation. He is also the author of the academic book Guide to Pharmaceutics: As per PCI Syllabus, published by Shaswat Publication, and holds a design patent for the Automatic Rotary Monoblock Bottle Filling Machine. His active participation in national and international conferences, presentations on innovative drug delivery approaches, and recognition with honors such as the Young Scientist Award highlight his growing influence in pharmaceutical sciences. With professional interests spanning teaching, quality assurance, and R&D, along with multilingual proficiency in English, Hindi, Arabic, and Urdu, Mr. Md Sohrab Alam continues to advance in his mission to contribute meaningful innovations and knowledge to the world of pharmacy and drug development.

Profile: Orcid

Featured Publications

Nanostructured lipid carriers of pioglitazone for transdermal application: from experimental design to bioactivity detail

Lorena Garcia Hevia | Drug Delivery Systems | Best Researcher Award

Dr. Lorena Garcia Hevia | Drug Delivery Systems | Best Researcher Award

Universidade de Vigo | Spain

Dr. Lorena García Hevia is a distinguished researcher recognized for her pioneering work at the intersection of nanomedicine, microbiology, and biotechnology. As a member of the Hybrid Nanomaterials Research Group at the Galicia Sur Health Research Institute (IIS Galicia Sur), she has dedicated her career to advancing innovative nanotechnological solutions that address critical biomedical challenges. Her research focuses primarily on the design and application of nanoscale systems to improve therapeutic delivery, particularly within the context of infectious disease management and antimicrobial resistance.Affiliated with the CINBIO (Biomedical Research Center) and the Universidade de Vigo in Spain, Dr. García Hevia brings an interdisciplinary approach that bridges biochemical, genetic, and immunological insights with advanced materials science. Her scientific vision emphasizes the development of intelligent nanocarriers that enhance drug stability, optimize bioavailability, and enable targeted therapy. Through this approach, she contributes to transforming conventional treatments into highly efficient, patient-specific solutions.In her recent publication Nanomedicine for Phage Therapy: Encapsulation Strategies for Enhanced Antimicrobial Efficacy, Dr. García Hevia and her colleagues explore the integration of nanotechnology with bacteriophage therapy to overcome limitations in traditional antimicrobial strategies. Her work demonstrates how encapsulation methods—such as polymeric nanoparticles, liposomes, hydrogels, and nanofibers—can significantly improve the stability, delivery, and therapeutic impact of bacteriophages. These innovative formulations facilitate localized and sustained release, providing powerful alternatives against multidrug-resistant infections.Dr. García Hevia’s research is marked by creativity, precision, and translational relevance. Her investigations into responsive nanocarriers and inorganic nanoparticles have opened new avenues for targeted phage delivery, aligning with global efforts to combat antibiotic resistance through sustainable and effective biotechnological interventions. Beyond her scientific achievements, she is deeply engaged in academic mentorship and collaborative research initiatives that strengthen the connection between laboratory innovation and clinical application.Her contributions continue to shape the evolving field of nanomedicine, positioning her as a leading figure in the development of next-generation antimicrobial therapies. Through her commitment to excellence and scientific innovation, Dr. Lorena García Hevia exemplifies the transformative potential of nanotechnology in redefining the future of infection control and precision therapeutics.

Profile: Google Scholar

Featured Publications

García‐Hevia, L., Bañobre‐López, M., & Gallo, J. (2019). Recent progress on manganese‐based nanostructures as responsive MRI contrast agents. Chemistry–A European Journal, 25(2), 431–441.

García-Hevia, L., Valiente, R., Martín-Rodríguez, R., Renero-Lecuna, C., et al. (2016). Nano-ZnO leads to tubulin macrotube assembly and actin bundling, triggering cytoskeletal catastrophe and cell necrosis. Nanoscale, 8(21), 10963–10973.

Rodrigues, R. O., Baldi, G., Doumett, S., García-Hevia, L., Gallo, J., et al. (2018). Multifunctional graphene-based magnetic nanocarriers for combined hyperthermia and dual stimuli-responsive drug delivery. Materials Science and Engineering: C, 93, 206–217.

García‐Hevia, L., Villegas, J. C., Fernández, F., Casafont, Í., González, J., et al. (2016). Multiwalled carbon nanotubes inhibit tumor progression in a mouse model. Advanced Healthcare Materials, 5(9), 1080–1087.

García-Hevia, L., Casafont, I., Oliveira, J., Terán, N., Fanarraga, M. L., & Gallo, J. (2022). Magnetic lipid nanovehicles synergize the controlled thermal release of chemotherapeutics with magnetic ablation while enabling non-invasive monitoring by MRI for melanoma. Bioactive Materials, 8, 153–164.

Zefeng Lai | Drug Delivery Systems | Excellence in Pharmaceutical Innovation Award

Prof. Dr. Zefeng Lai | Drug Delivery Systems | Excellence in Pharmaceutical Innovation Award

Guangxi Medical University | China

Prof. Dr. Zefeng Lai is a leading figure in the field of pharmaceutical science, recognized for his pioneering work in nanomedicine, drug delivery, and nanotoxicology. He serves as a Professor of Pharmaceutical Science at the School of Pharmacy, Guangxi Medical University, Nanning, China, where he has made outstanding contributions to biomedical research and academic development. Having earned his BSc and PhD from the State Key Laboratory of Crystal Materials, Shandong University, and completed postdoctoral research in Drug Delivery and Biomedical Effects of Nanomaterials, Dr. Lai’s expertise integrates material chemistry with pharmacological innovation to enhance therapeutic outcomes.His research explores the mechanisms and biomedical applications of carbon-based nanodrug carriers, focusing on their transcytosis, biodistribution, and immunological effects. He has led multiple high-impact national and provincial projects, including investigations into mesona chinensis polysaccharides, fibrinolytic enzymes from marine sources, and liver-targeted nanocarriers. His work on the biotoxicity of carboxylated single-walled carbon nanotubes using zebrafish and mammalian models has been particularly influential, advancing the global understanding of nanomaterial safety in pharmaceutical formulations.Prof. Lai’s scholarly influence is reflected in his strong research metrics, with 293 citations across 279 documents, based on 19 published papers, and an impressive h-index of 10, demonstrating his consistent impact and the recognition of his contributions by the global scientific community.His groundbreaking publications demonstrate his multidisciplinary research vision. His paper Photothermal Therapeutic Gold Nanoparticles Loaded with PD-L1 siRNA Enhanced Killing of NSCLC Cells by Immune Cells presents a novel nanoplatform integrating photothermal therapy and immunomodulation for non-small cell lung cancer treatment. His work Immunogenic Nano-Phthalocyanine Enables Oxygen-Economic Photodynamic Therapy for Hepatocellular Carcinoma introduces a new generation of oxygen-efficient nanotherapeutics for liver cancer. Other notable studies include Effect of Carboxylated Single-Walled Carbon Nanotubes on the Development and Morphology of Zebrafish Embryos, High Throughput CircRNA Sequencing Analysis Reveals Novel Insights into the Mechanism of Nitidine Chloride against Hepatocellular Carcinoma, and Toxic Effect of Long-Term Intravenous Injection of Carboxylated Single-Walled Carbon Nanotubes on Kidney in Rats. His research on Nitidine Chloride Induced Colorectal Cancer HT29 Cells Apoptosis Through the Cytochrome c-Mediated Mitochondrial Pathways and Long-Term Intravenous Administration of Carboxylated Single-Walled Carbon Nanotubes Induces Persistent Accumulation in the Lungs and Pulmonary Fibrosis via the NF-κB Pathway underscores his deep engagement with molecular pharmacology and nanotoxicology.

Profile: Scopus

Featured Publications

Lai, Z., Liu, Y., He, L., Wang, X., Zhang, H., & Zhao, J. (2023). Immunogenic nano-phthalocyanine enables oxygen-economic photodynamic therapy for hepatocellular carcinoma. Biomaterials, 295, 121992.

Teodora-Eliana Petcov | Drug Delivery Systems | Best Researcher Award

Ms. Teodora-Eliana Petcov | Drug Delivery Systems | Best Researcher Award

Teodora-Eliana Petcov at National University of Science and Technology POLITEHNICA Bucharest | Romania

Teodora Eliana Petcov is a driven biomedical researcher with a strong foundation in biomaterials, molecular biology, and nanotechnology. Passionate about innovation in drug delivery and regenerative medicine, she has already co-authored scientific publications in reputed journals. Her international internships, multidisciplinary skills, and involvement in EU-funded research projects underscore her commitment to advancing medical technologies. Teodora balances research excellence with volunteer leadership, contributing to both academic and community-driven initiatives. With a sharp analytical mind, hands-on lab experience, and cross-cultural exposure, she exemplifies the next generation of biomedical scientists focused on improving patient care through science and innovation.

Publication Profile 

Scopus

Education

Teodora holds a Bachelor’s degree in Medical Engineering from the Polytechnic University of Bucharest  with a focus on biomaterials and medical devices. She is currently pursuing her Master’s in Biocompatible Substances, Materials, and Systems at the National University of Science and Technology POLITEHNICA Bucharest. Her thesis explored the internalization of nano-sized devices in biological structures. She was a visiting student at “Horia Hulubei” Nuclear Institute and Floreasca Emergency Hospital. Her academic path is complemented by certifications in English  and psycho-pedagogical training, showcasing both technical expertise and educational versatility.

Experience 

Teodora has completed multiple research internships, including roles in molecular biology and materials science labs. She gained practical expertise in 3D bioprinting, SEM techniques, SolidWorks, and conducted advanced testing like DSC and DMA. She has contributed to projects at the National Institute of Physics and Nuclear Engineering, University of Campania in Italy, and worked on PNRR-funded research on bone regeneration and multiple myeloma. Additionally, she has volunteered extensively in cultural and scientific event organization, holding assistant coordinator roles in Zenezia and MED, where she honed human resources, leadership, and scientific communication skills.

Awards  

Teodora has been recognized for her academic excellence and community involvement from high school through higher education. She received top honors for her Bachelor’s thesis, was selected for the prestigious ROSE program, and presented at the “Info-Practic” National Symposium on artificial intelligence. She participated in EU-supported initiatives like ERASMUS+ “Be a Buddy, Not a Bully” and contributed to major national projects, including the ongoing PNRR-funded research on personalized bone regeneration. Her work on cutting-edge nanostructures and her leadership in volunteer networks demonstrate her well-rounded excellence and dedication to scientific and societal progress.

Research Focus 

Teodora focuses on biomedical applications of nanotechnology, with a keen interest in targeted drug delivery, biopolymeric material synthesis, and regenerative medicine. Her Master’s research and publications revolve around understanding how nanostructures interact with cellular systems to improve treatment precision in diseases like multiple myeloma. She also explores the use of 3D printed biomaterials and advanced materials characterization techniques (SEM, DSC, DMA). Her interdisciplinary research combines materials science, molecular biology, and bioengineering to design patient-specific, low-toxicity solutions, positioning her at the frontier of precision and personalized medicine.

Publication Top Notes

Title: Nanostructures: An Efficient Drug Delivery Platform for Therapy of Multiple Myeloma
Year: 2025

Conclusion

Teodora Eliana Petcov is a highly promising emerging researcher whose interdisciplinary approach, early scientific contributions, and strong practical expertise align closely with the vision of the Best Researcher Award. Her dedication to innovation in biomaterials, nanotechnology, and regenerative medicine showcases both depth and futuristic relevance.

Ali Olad | Drug Delivery Systems | Best Researcher Award

Ali Olad | Drug Delivery Systems | Best Researcher Award

Prof Ali Olad, University of Tabriz, Iran

Prof. Ali Olad is a distinguished researcher in applied chemistry, specializing in polymer composites, conducting polymers, and polymeric coatings. 🎓 He earned his Ph.D. in Applied Chemistry (2003) from the University of Tabriz, where he continues to teach courses on industrial chemistry, polymer nanocomposites, and coatings. 📚 His research focuses on nanocomposites, conducting polymers, corrosion resistance, and environmental pollutant detection. 🌱🧪 Prof. Olad has presented groundbreaking work globally, authored influential books, published high-impact papers, and holds patents on polyaniline nanostructures and advanced materials. 🏆💡 His innovations in hydrogels, fertilizers, and sensors reflect his commitment to sustainable and practical chemical solutions. 🌍✨

Publication Profile

Google Scholar

Educational Background

Prof. Ali Olad is a distinguished academic specializing in Applied Chemistry, with a focus on polymer composites, conducting polymers, and corrosion-resistant polymeric coatings. 🎓 He earned his Ph.D. in Applied Chemistry (Polymer Composites & Conducting Polymers) from the University of Tabriz, Iran, in 2003. 📘 Prior to this, he completed his M.Sc. in Applied Chemistry (Corrosion & Polymeric Coatings) in 1997 and his B.Sc. in Applied Chemistry in 1995, both from the same institution. 🔬 His expertise and academic achievements contribute significantly to advancements in materials science, fostering innovative research and practical applications in the field. 🌟

Experience

Prof. Ali Olad has a remarkable teaching career at the University of Tabriz, offering diverse courses across various academic levels. He has taught Conducting Polymers at the Ph.D. level (2006–2010) and Industrial Chemistry 2 at the B.Sc. level since 1997. Additionally, he lectured on Industrial Electrochemistry (2003–2017). Prof. Olad continues to teach Coatings and Adhesives (Ph.D.), Polymer Composites and Nanocomposites (M.Sc.), and Physical and Mechanical Properties of Polymers (M.Sc.) since 2010. His dedication to education and expertise in polymers, nanocomposites, and industrial chemistry have greatly contributed to the field. 🎓📚🧪✨

Research Interests

Prof. Ali Olad specializes in the fields of polymer composites and nanocomposites, focusing on their development and applications. His expertise extends to surface modification and polymer coatings, enhancing material performance. Additionally, he works on conducting polymers and blends, exploring their conductive properties. Prof. Olad’s research also delves into polymer hydrogels, investigating their potential in various biomedical and industrial applications. Furthermore, he studies corrosion and electrochemistry, aiming to improve material durability and sustainability. His contributions to these areas have led to advancements in materials science and engineering. 🌐🔬🧪💡🛠️

Research Focus

The individual behind these publications appears to have a research focus in materials science, environmental engineering, and nanocomposites, with particular attention to polymers, hydrogel systems, and waste treatment technologies. Their work spans a range of topics such as electrocoagulation for dye removal, slow-release fertilizers, and anti-corrosion coatings, with an emphasis on nanocomposite materials like clay-polymers, superabsorbent hydrogels, and conductive polymers. This person is also involved in environmental cleanup and water treatment, exploring methods to improve water quality by utilizing advanced materials and nanotechnology 🧪🌍💧🔬.

Publication Top Notes

Decolorization of basic dye solutions by electrocoagulation: An investigation of the effect of operational parameters

Slow-released NPK fertilizer encapsulated by NaAlg-g-poly (AA-co-AAm)/MMT superabsorbent nanocomposite

Anti-corrosive properties of polyaniline coating on iron

Slow-release NPK fertilizer encapsulated by carboxymethyl cellulose-based nanocomposite with the function of water retention in soil

Polymer-clay nanocomposites

Superabsorbent hydrogel made of NaAlg-g-poly (AA-co-AAm) and rice husk ash: Synthesis, characterization, and swelling kinetic studies

On the preparation and swelling properties of hydrogel nanocomposite based on Sodium alginate-g-Poly (acrylic acid-co-acrylamide)/Clinoptilolite and its …

Removal of chromium from aqueous solution using polyaniline–poly ethylene glycol composite

Optimization of electrocoagulation process for removal of an azo dye using response surface methodology and investigation on the occurrence of destructive side reactions

Preparation and anticorrosive properties of PANI/Na-MMT and PANI/O-MMT nanocomposites

The synergetic effect of bioactive ceramic and nanoclay on the properties of chitosan–gelatin/nanohydroxyapatite–montmorillonite scaffold for bone tissue engineering

 

 

 

 

Prof. Lei Ren |Drug Delivery Systems| Best Researcher Award-1331

Prof. Lei Ren|Drug Delivery Systems |Best Researcher Award|

Prof. Lei Ren at mus alparslan university, Turkeys

PROFILE  

Orcid 

Early Academic Pursuits 📚

Lei Ren’s academic journey began in the vibrant city of Tianjin, where she pursued her Bachelor of Science in Material Science & Engineering at Tianjin University, graduating in 1990. This foundational period was marked by her strong dedication to understanding the principles of material science, a field that would later shape her illustrious career. Tianjin University’s rigorous curriculum provided Ren with a solid grounding in the fundamentals of material science, equipping her with the skills and knowledge to explore its applications in various domains.

Ren’s academic curiosity led her to pursue further education at Peking Union Medical College, one of China’s most prestigious institutions. In 1997, she earned her Master of Science in Biomedical Engineering, a field that bridged her interests in material science and its applications in medicine. This interdisciplinary approach was a hallmark of Ren’s early academic endeavors, reflecting her passion for integrating diverse fields of study to address complex scientific challenges.

Her pursuit of knowledge did not stop there. Ren continued her academic journey in Japan, where she completed her Ph.D. in Material Science at Okayama University in 2001. This period was crucial in shaping her research trajectory, as she delved into advanced materials and their potential biomedical applications. Her time in Japan also exposed her to a new scientific culture, broadening her perspective and fostering a global approach to research that would later define her career.

Professional Endeavors 🌟

Upon completing her doctoral studies, Ren embarked on a career that seamlessly blended research and academia. Her first professional role was as a Research Associate at the Institute of Biomedical Engineering, Chinese Academy of Medical Sciences, where she worked from 1990 to 1997. During this time, Ren honed her research skills, contributing to various projects that explored the interface between material science and biomedical engineering.

In 2001, Ren transitioned to a global stage, joining the Singapore-MIT Alliance at the National University of Singapore as a Research Fellow. This opportunity allowed her to collaborate with leading scientists from around the world, further enhancing her research capabilities and expanding her professional network. Her work during this period focused on cutting-edge biomedical engineering projects, laying the groundwork for her future contributions to the field.

In 2002, Ren returned to China to join the Research Center of Biomedical Engineering at the College of Medicine, Xiamen University, as an Associate Professor. Over the next five years, she played a pivotal role in advancing the center’s research agenda, mentoring students, and publishing influential papers. Her dedication and expertise earned her a promotion to full Professor in 2007, a position she holds to this day at the Department of Biomaterials, College of Materials, Xiamen University.

Contributions and Research Focus 🧬

Ren’s research has primarily focused on the development and application of biomaterials, particularly in the context of biomedical engineering. Her work has explored the synthesis and characterization of novel materials designed to interact with biological systems, with the goal of improving medical devices, implants, and tissue engineering applications.

One of her significant contributions to the field has been her research on biocompatible materials that can be used in medical implants. Ren’s work has helped advance the understanding of how materials interact with the human body, leading to the development of safer and more effective implants that reduce the risk of rejection and improve patient outcomes. Her research has also explored the use of biomaterials in tissue engineering, where she has contributed to the development of scaffolds that support the growth and regeneration of tissues.

In addition to her work on biomaterials, Ren has also been involved in interdisciplinary projects that integrate material science with other fields, such as nanotechnology and regenerative medicine. Her ability to bridge these diverse areas of study has positioned her as a leader in the field of biomedical engineering, with her work having a profound impact on both academic research and practical medical applications.

Accolades and Recognition 🏅

Throughout her career, Lei Ren has received numerous accolades in recognition of her contributions to the field of biomedical engineering. Her research has been widely published in leading scientific journals, earning her a reputation as a highly respected scholar in her field. Her work has also been recognized by various professional organizations, both in China and internationally, highlighting her status as a pioneering figure in the field of biomaterials.

Ren has been invited to speak at numerous international conferences, where she has shared her insights on the latest developments in biomaterials and biomedical engineering. These speaking engagements have not only showcased her research but also facilitated the exchange of ideas with other leading scientists, furthering the advancement of the field.

Impact and Influence 🌍

Ren’s influence extends beyond her research and academic roles. As a professor at Xiamen University, she has mentored numerous students who have gone on to make their own contributions to the field of biomedical engineering. Her commitment to teaching and mentorship has helped shape the next generation of scientists, ensuring that her impact will be felt for years to come.

Moreover, Ren’s work has had a tangible impact on the medical field. The biomaterials she has developed have been used in various medical devices and implants, improving the quality of life for patients around the world. Her interdisciplinary approach to research has also inspired new collaborations between scientists from different fields, leading to innovative solutions to some of the most pressing challenges in medicine.

Legacy and Future Contributions 🔮

As Lei Ren continues her work at Xiamen University, her legacy as a pioneer in the field of biomaterials is already well established. Her contributions to the development of biocompatible materials and her interdisciplinary approach to research have left an indelible mark on the field of biomedical engineering. Moving forward, Ren is likely to continue pushing the boundaries of what is possible in her field, exploring new frontiers in material science and its applications in medicine.

🎓Publication 

Oral biomimetic virus vaccine hydrogel for robust abscopal antitumour efficacy

  • Authors   :Chufan Wang; Haobo Tang; yufei Duan; Qiang Zhang; Wenjun Shan; Xiumin Wang; Lei Ren
  • Journal    :Colloid and Interface Science
  • Year         :2024

Tumor‐Associated Myeloid Cells Selective Delivery of a Therapeutic Tumor Nano‐Vaccine for Overcoming Immune Barriers for Effective and Long‐Term Cancer Immunotherapy

  • Authors   :Chufan Wang; Jinglian Zhao; Yufei Duan; Liping Lin; Qiang Zhang; Haiping Zheng; Wenjun Shan; Xiumin Wang; Lei Ren
  • Journal    :Healthcare Materials
  • Year         :2024

Seamless Integration of Rapid Separation and Ultrasensitive Detection for Complex Biological Samples Using Multistage Annular Functionalized Carbon Nanotube Arrays

  • Authors   :Lihuang Li; Jialing Zhang; Zhengqi Jiao; Xi Zhou; Lei Ren; Miao Wang.
  • Journal    :Materials
  • Year         :2024

Generalized Multifunctional Coating Strategies Based on Polyphenol-Amine-Inspired Chemistry and Layer-by-Layer Deposition for Blood Contact Catheters

  • Authors   :Jiahao Du; Xiaoting Zhang; Wenlong Li; Miao Wang; Xi Zhou; Lei Ren
  • Journal    :Biomaterials Science & Engineering
  • Year         :2024

Driving modes and characteristics of biomedical micro-robots

  • Authors   :Engineered Regeneration
    .

  • Journal    :Libing Huang; Yueyuan Pan; Miao Wang; Lei Ren
  • Year         :2023

Prof Dr.Dinesh Mishra, Drug Delivery Systems,Best Researcher Award

Prof Dr.Dinesh Mishra, Drug Delivery Systems ,Best Researcher Award

Prof Dr.Dinesh Mishra, atDepartment of Pharmacy, Guru Ghasidas Vishwavidyalaya (A Central University), Bilaspur,India

Author Profile

 

Educational Background

Dr. Dinesh Kumar Mishra holds a Ph.D. in Pharmaceutics from Dr. H. S. Gour University, Sagar, where he studied under the supervision of Prof. N. K. Jain. He completed his M. Pharm. in Pharmaceutics from the same institution, achieving a merit-holder distinction. Dr. Mishra’s academic journey began with a B. Pharm. degree from Dr. H. S. Gour University, followed by secondary education credentials from the M.P. Board.

Professional Experience

Dr. Mishra has an extensive teaching and administrative career spanning over two decades. He is currently a Professor at Guru Ghasidas Vishwavidyalaya, a position he has held since July 2023. Prior to this, he served as Principal and Professor at Indore Institute of Pharmacy and held various academic roles at NMIMS, IPS Academy, SLT Institute of Pharmaceutical Sciences, Mahakal Institute of Pharmaceutical Studies, Shri Ram Institute of Technology, and AND College of Pharmacy.

Teaching and Administrative Roles

  • UG Teaching Experience: 21 years
  • PG Teaching Experience: 19 years
  • Principal at Indore Institute of Pharmacy: 4 years
  • HOD, M. Pharm (Pharmaceutics): 8 years
  • Exam Center Superintendent, IPS Academy College of Pharmacy: 2 years
  • Academic In-charge, IPS Academy College of Pharmacy: 2 years

Research Credentials

Dr. Mishra’s research credentials are noteworthy, with a cumulative impact factor of 245, 4700 citations, an h-index of 38, and an i-10 index of 58. He has guided numerous students at both undergraduate and postgraduate levels, as well as Ph.D. candidates.

Ph.D. Research Supervision

  1. Dr. Shriprakash Mishra – Development of mucoadhesive microsphere for the treatment of peptic ulcer (Awarded)
  2. Mr. Pritam R. Siraskar – Formulation, characterization, and optimization of gastro retentive floating microspheres using quality by design approach (Awarded)
  3. Mr. Devkant Sharma – Formulation, evaluation, and optimization of nanotechnology-based drug delivery system for psoriasis treatment (Awarded)
  4. Ms. Nayany Sharma – Development of silver nanoparticles-based topical gel containing herbal actives for wound healing
  5. Ms. Neha Kamalpuria – Formulation, optimization, and evaluation of lipid-based nanocarrier gel for topical drug delivery
  6. Ms. Triveni – Design, optimization, and characterization of antifungal drug loaded transferosome based hydrogels for the management of foot dermatophytosis

Honors and Awards

Dr. Mishra has received numerous accolades for his contributions to pharmaceutical sciences, including being listed among the world’s top 2% scientists by Elsevier in 2022 and 2023. He has also received several prestigious awards such as the Prof. M. L. Schroff Pharma Recognition Award, the Outstanding Scientist Award, the Best Scientist Award, and the Eminent Principal Award.

Collaborations and Grants

Dr. Mishra has collaborated with notable institutions such as NIPER Ahmedabad, NIREH ICMR Bhopal, and Central University of Rajasthan. He has successfully secured research grants from various bodies, including MPCST, AICTE, NMIMS University, and UGC-BSR.

Professional Memberships
He is a life member of several esteemed professional bodies including APTI, IPA, ISCA, IPGA, APP, SPER, and ISSRF.

🎓Publication Top Noted:

Paper Title :Full factorial design-based development and characterization of ciclopirox olamine loaded transferosomes: An efficient approach for the management of Athlete’s foot

  • Authors:Triveni, Upendra Nagaich, Dinesh Kumar Mishra, Neha Jain
  • Journal:Journal of Drug Delivery Science and Technology
  • Year: 2024
Paper Title :New emerging technologies for genetic toxicity testing
    • Authors: Kuldeep Vinchurkar, Jitendra Sainy, Masheer Ahmed Khan, Sheetal Mane, Dinesh K. Mishra, Pankaj Dixit
    • Journal:Pharmacokinetics and Toxicokinetic Considerations
    • Year: 2022
Paper Title :Features and Facts of a Gastroretentive Drug Delivery System-A Review
  • Authors:Kuldeep Vinchurkar, Jitendra Sainy, Masheer Ahmed Khan, Sheetal Mane, Dinesh K. Mishra, Pankaj Dixit
  • Journal:Turkish Journal of Pharmaceutical Sciences
  • Year:2022
Paper Title :3D Printing for Drug Delivery and its Pharmaceutical Applications – Recent Findings and Challenges
  • Authors: Kuldeep Vinchurkar, Jitendra Sainy, Masheer Ahmed Khan, Sheetal Mane, Dinesh K. Mishra, Pankaj Dixit
  • Journal: International Journal of Pharmaceutical Sciences and Nanotechnology
  • Year: 2022

Paper Title :Recent update of toxicity aspects of nanoparticulate systems for drug delivery

  • Authors: Patnaik, S., Gorain, B., Padhi, S., Choudhury, H., Gabr, G.A., Md, S., Kumar Mishra, D., Kesharwani, P.
  • Journal:European Journal of Pharmaceutics and Biopharmaceutics
  • Year:2021