Bindiya Barsola | Biomaterials | Innovative Research Award

Innovative Research Award

Bindiya Barsola
Affiliation Arni University
Country India
Scopus ID 57810558400
Documents 13
Citations 131
h-index 6
Subject Area Biomaterials
Event International Material Scientist Awards

Bindiya Barsola is a researcher affiliated with Arni University, India, whose supplied research profile is associated with the subject area of biomaterials. The available Scopus information identifies 13 documents, 131 citations, and an h-index of 6. These bibliometric indicators provide a quantitative overview of the research output and scholarly visibility represented in the supplied profile. The Innovative Research Award recognition profile places Barsola’s research record within the broader context of materials science and biomaterials research.[1]

Abstract

This academic recognition profile presents the research record of Bindiya Barsola, affiliated with Arni University, India, in the field of biomaterials. According to the supplied Scopus profile information, Barsola has 13 indexed documents, 131 citations, and an h-index of 6 These indicators suggest an established body of indexed scholarly output with measurable citation visibility. [1]

Keywords

Biomaterials; Materials Science; Innovative Research; Arni University; Scopus; Bibliometrics; Research Impact; Citation Analysis; Academic Recognition; International Material Scientist Awards; Biomaterials Research; Scientific Innovation; Materials Engineering; Research Productivity; Academic Achievement; Scientific Recognition. [2]

Introduction

Biomaterials research encompasses the investigation, design, characterization, and application of materials intended to interact with biological systems. The field intersects materials science, biology, and related disciplines, and contributes to the development of materials for biomedical and technological applications.Within this interdisciplinary environment and h-index are commonly used to describe aspects of scholarly output and citation visibility. [1]

Research Profile

Bindiya Barsola is a researcher affiliated with Arni University, India, whose supplied academic profile identifies biomaterials as the principal subject area. Her research profile is situated within the broader field of materials science, with biomaterials representing an interdisciplinary area connecting materials engineering, biological sciences, and biomedical applications. [3]

Research Contributions

The supplied subject classification places Barsola’s research within biomaterials, a field concerned with the relationship between material properties and biological environments. Research in this area may involve material synthesis, surface modification, characterization, biocompatibility, mechanical performance, degradation, and application-oriented evaluation.[4]

Publications

The supplied Scopus record reports 13 documents associated with Bindiya Barsola. Because individual publication titles, journals, publication years,Β  this profile does not attribute specific papers or research findings to the researcher without additional bibliographic verification.For a complete publication analysis, individual records can be evaluated according to publication venue,Β  collaboration patterns, and persistent identifiers.[1]

Research Impact

The supplied profile reports 131 citations across 13 Scopus documents, corresponding to an average of approximately 10.1 citations per indexed document when calculated from the provided aggregate figures. This value is descriptive rather than a measure of research quality, because citation patterns vary substantially among disciplines, under the supplied Scopus record, at least six indexed publications have received at least six citations each. [2]

Award Suitability

Based on the information provided, the profile demonstrates several characteristics relevant to an academic recognition assessment: a defined research area, an identifiable institutional affiliation, indexed scholarly documents, citation activity, and a measurable h-index. However, a complete award assessment should also consider the originality of research and the specific eligibility and evaluation criteria of the award.[3]

Conclusion

In the context of the Innovative Research Award under the International Material Scientist Awards, the supplied profile demonstrates relevance to materials science through its biomaterials focus and provides measurable bibliometric evidence of scholarly activity. A definitive assessment of research excellence, however, should incorporate publication-level evidence and the formal criteria established by the awarding organization.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Bindiya Barsola, Author ID 57810558400. Scopus.
    https://www.scopus.com/pages/authors/57810558400
  2. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  3. Jha, A., Barsola, B., Pathania, D., Sonu, Raizada, P., Thakur, P., Singh, P., Rustagi, S., Khosla, A., & Chaudhary, V. (2024). Nano-biogenic heavy metals adsorptive remediation for enhanced soil health and sustainable agricultural production. Environmental Research, 252, 118926.
    https://doi.org/10.1016/j.envres.2024.118926
  4. Barsola, B., & Kumari, P. (2022). Green synthesis of nano-propolis and nanoparticles (Se and Ag) from ethanolic extract of propolis, their biochemical characterization: A review. Green Processing and Synthesis, 11(1), 659–673.
    https://doi.org/10.1515/gps-2022-0059

Dr. Min-Kyu Park | Biomaterials | Research Excellence Award

Dr. Min-Kyu Park | Biomaterials | Research Excellence Award

Kyungpook National University | Republic of Korea

Dr. Min-Kyu Park is a Research Professor at Kyungpook National University recognized for his significant contributions to biomaterials, microbial biotechnology, and genomic research. His work focuses on exploring the functional roles of microorganisms and developing innovative bio-based technologies that support sustainable agriculture, environmental management, and biomedical applications. Through the integration of next-generation sequencing, microbiome analysis, and bioinformatics, he investigates microbial diversity and metabolic pathways to identify beneficial microorganisms with industrial and agricultural potential. Dr. Park has actively led and collaborated on numerous national and international research initiatives, advancing the understanding of plant growth–promoting bacteria, enzyme-producing microbial strains, and environmentally friendly biological solutions. His research has resulted in a strong portfolio of peer-reviewed publications and several patented microbial technologies that have been successfully translated into commercial products such as biofertilizers, feed additives, and biological pest-control agents. By bridging fundamental microbiological science with biomaterials development and biotechnology innovation, he contributes to sustainable resource management and next-generation biological product development. His interdisciplinary research continues to support advances in microbial engineering, environmental sustainability, and applied biomaterial technologies.

Citation Metrics (Scopus)

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Citations
139

Documents
18

h-index
6

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Β Β  Β Β View Google Scholar Profile

Featured Publications

Prof. Dr. Hwa-Jin Park | Biomaterials | Research Excellence Award

Prof. Dr. Hwa-Jin Park | Biomaterials | Research Excellence Award

Inje University | Republic of Korea

Prof. Dr. Hwa-Jin Park is a distinguished Professor Emeritus at Inje University, Korea, widely recognized for his significant contributions to biomaterials, platelet biology, and thrombosis research. His academic work focuses on the molecular mechanisms regulating platelet activation and thrombotic disease, particularly TXAβ‚‚-dependent signaling pathways, phosphorylation-mediated regulation, and integrin Ξ±IIbβ₃ activation. Through integrated biochemical, cellular, and functional research approaches, he has advanced the understanding of bioactive natural compounds such as cordycepin and ginseng-derived saponins, demonstrating their potential as antiplatelet and circulation-enhancing agents. His research bridges fundamental biomedical science with translational applications aimed at improving prevention and treatment strategies for cardiovascular and thrombotic disorders. He has led major research initiatives and served as Director of the Biohealth Materials Research Center at Inje University while also contributing internationally as an invited professor at Kyoto University. With an extensive portfolio of peer-reviewed scientific publications, strong citation impact, and several patented innovations related to antiplatelet compounds and biomedical applications, Professor Park has played a pivotal role in advancing biomaterials and molecular biomedical research. His work continues to influence therapeutic development, functional biomaterials research, and the broader field of cardiovascular health science.

Citation Metrics (Scopus)

2500
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1000
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0

Citations
1918

Documents
29

h-index
27

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View Scopus Profile

Featured Publications

Dr Xiong-Xin Lei | Biomaterials | Best Researcher Award

Dr Xiong-Xin Lei | Biomaterials | Best Researcher Award

Dr Xiong-Xin Lei, First People’s Hospital of Foshan, China

Dr. Xiong-Xin Lei, a distinguished postdoctoral researcher at the First People’s Hospital of Foshan, holds a Ph.D. in Medicine from Sichuan University. With expertise in functional hydrogels, his groundbreaking research focuses on innovative applications in endoscopic treatments, hemostasis, and wound repair. Over the last five years, Dr. Lei has authored eight high-impact papers in prestigious journals like Bioactive Materials and Advanced Science. His dedication to innovation is evident in his seven granted patents, making significant strides in biomaterials and regenerative medicine. Dr. Lei’s work exemplifies excellence in bridging science and clinical applications

Publication Profile

Scopus

Academic BackgroundπŸŽ“

Dr. Xiong-Xin Lei has a strong academic background in medicine and biomedical engineering. πŸŽ“ He is currently a Post-Doctoral Fellow at the First People’s Hospital of Foshan, China, since August 2022. πŸ₯ Dr. Lei earned his Doctor of Medicine degree from Sichuan University (2019–2022), specializing in microbiology and biochemical pharmacy. πŸ”¬ He also holds a Master of Medicine degree (2015–2017) and a Bachelor of Engineering degree (2011–2015) from Beijing University of Chinese Medicine, focusing on biopharmaceuticals and biomedical engineering, respectively. πŸ’Š His expertise combines advanced medicine and engineering techniques for innovative healthcare solutions. 🌟

Research Focus Area 🌱🧬

Dr. Xiong-Xin Lei specializes in the development, design, and application of functional hydrogels for biomedical purposes. 🧬 His research focuses on innovative solutions for endoscopic treatments of the digestive tract, hemostasis, and wound repair. 🩺 Over the past five years, he has made significant contributions, publishing 8 research papers in prestigious journals such as Bioactive Materials, Advanced Science, and Chemical Engineering Journal. πŸ“š Additionally, Dr. Lei holds 7 granted invention patents, reflecting his innovative approach to medical applications of hydrogels. πŸ’‘ His work bridges materials science and regenerative medicine for advanced healthcare solutions. 🌟

Notable Achievements

Dr. Xiong-Xin Lei has achieved remarkable success in his research career over the past five years. 🌟 He has authored eight high-impact research papers published in prestigious journals such as Bioactive Materials, Advanced Science, and Chemical Engineering Journal. πŸ“š His groundbreaking studies have made significant contributions to the fields of regenerative medicine and smart materials, particularly in developing innovative hydrogels for medical applications. 🧬 Dr. Lei’s work highlights his dedication to advancing healthcare solutions through cutting-edge research, earning him recognition as a leader in his field. 🩺✨

Publication Top NotesπŸŒŸπŸ“ŠπŸ“š

Multi-crosslinking hydrogels with robust bio-adhesion and pro-coagulant activity for first-aid hemostasis and infected wound healing

A Self-Assembly Pro-Coagulant Powder Capable of Rapid Gelling Transformation and Wet Adhesion for the Efficient Control of Non-Compressible Hemorrhage

Application of metabolomics in urolithiasis: the discovery and usage of succinate

Multifunctional two-component in-situ hydrogel for esophageal submucosal dissection for mucosa uplift, postoperative wound closure and rapid healing

Click-crosslinked in-situ hydrogel improves the therapeutic effect in wound infections through antibacterial, antioxidant and anti-inflammatory activities

Scarless Healing of Injured Vocal Folds Using an Injectable Hyaluronic Acid-Waterborne Polyurethane Hybrid Hydrogel to Tune Inflammation and Collagen Deposition

Promotion of right ventricular outflow tract reconstruction using a novel cardiac patch incorporated with hypoxia-pretreated urine-derived stem cells

 

 

Sailee Chowdhury | Biomaterials | Best Researcher Award

Sailee Chowdhury | Biomaterials | Best Researcher Award

Prof Sailee Chowdhury, BCDA College of Pharmacy & Technology, India

Prof. Sailee Chowdhury is a distinguished academic and researcher in pharmaceutical technology with 17+ years of teaching experience πŸ“šβœ¨. She holds a Ph.D. in Pharmaceutical Technology and has over 11 years of postdoctoral research experience. Her work spans flavonoids, nanoparticles, tissue engineering, and sustainable practices in drug discovery πŸŒΏπŸ”¬. Prof. Chowdhury has published extensively in reputed journals and authored several book chapters, showcasing her commitment to knowledge dissemination πŸ“–. As Head of the Department, she leads with excellence in education and administration πŸ«πŸŽ“. Her active role in conferences and institutional committees reflects her influence and dedication to research ethics and innovation πŸŒπŸ’‘.

Publication Profile

Scopus

Orcid

Educational Background πŸŽ“

Prof. Sailee Chowdhury is a highly qualified academic with a Ph.D. in Pharmaceutical Technology from MAKAUT, Kolkata, awarded in 2013 πŸŽ“πŸ”¬. She holds an M.Pharm in Pharmaceutical Chemistry with First Class honors (SGPA 9) from Biju Pattnaik University of Technology (2006) πŸ§ͺπŸ“˜ and qualified GATE in 2004 🎯. Her academic journey began with a B.Pharm degree (Honors) scoring 80.3% from Burdwan University in 2004, followed by stellar performances in Higher Secondary (68%, WBCHSE, 2000) and Madhyamik (87%, WBBSE, 1998) πŸ“šπŸŒŸ. Prof. Chowdhury’s consistent academic excellence forms the foundation of her illustrious career in pharmaceutical education and research πŸŒπŸ“–.

Professional Experience and Contributions πŸ’Ό

Prof. Sailee Chowdhury brings over 17 years of teaching experience at BCDA College of Pharmacy & Technology, Kolkata πŸŽ“πŸ“˜, where she has progressed through roles from Lecturer to Professor and currently serves as Head of the Department of Pharmaceutical Chemistry (since April 2022) πŸ§ͺπŸ”¬. Post-Ph.D., she has over 11 years of academic and research experience 🌟. She actively contributes to UG and PG education, administrative roles, NBA accreditation, and institutional committees πŸ“ŠπŸ“œ. A recognized academic leader, she has organized national and international seminars, served as a reviewer for reputed journals and books, and contributed extensively to pharmaceutical education πŸŒπŸ’‘.

Participation in Conference Seminar & Workshops 🌐

Prof. Sailee Chowdhury has actively participated in numerous national and international conferences, seminars, and workshops, serving in roles such as Joint Convenor, Evaluator, Co-chairperson, Chairperson, Panelist, and Advisory Member πŸŽ€πŸ“š. Highlights include the 72nd Indian Pharmaceutical Congress in Nagpur, the International Conference on Drug Discovery at Brainware University πŸŒπŸ’Š, and multiple events organized by institutions like Jadavpur University and Amity University πŸ§ͺπŸ“–. She has chaired scientific sessions on medicinal plants and sustainable pharmaceutical practices, fostering academia-industry partnerships, and evaluating cutting-edge research, reflecting her commitment to advancing pharmaceutical education and research πŸŒ±πŸ”¬.

Research Focus Area 🌱🧬

Prof. Sailee Chowdhury’s research spans pharmaceutical sciences, biomaterials, and sustainable innovation πŸŒΏπŸ”¬. Her work includes the role of flavonoids and phenolics in gut microbiota modulation and combating metabolic diseases and biotic stress πŸ©ΊπŸƒ. She advances enzymology in drug discovery πŸ’ŠπŸ§ͺ, sustainable practices in the pharmaceutical industry πŸŒβš—οΈ, and plant-protein-based future foods 🌱🍽️. Her expertise extends to cutting-edge biomaterials, exploring nanoparticles for gene expression and osteoconductivity 🦴🧬, alginate biocomposites for drug delivery 🦠, and silk fibroin scaffolds for tissue engineering πŸ§΅πŸ—οΈ. This multidisciplinary focus aims to enhance healthcare, sustainability, and innovation, positioning her as a leader in pharmaceutical research. πŸŒŸπŸ“˜

Publication Top NotesπŸ“„βœ¨

Flavonoids and their metabolites: Impact on gut microbiota in connection with chronic metabolic diseases

Phenolics as Shielding Counterparts from Plants to Combat Biotic Stress Mediated by Microbes and Nematodes

Enzymology in drug discovery

Sustainable Practices in the Pharmaceutical Industry: Development and Adoption

Applications of Modified Plant Protein-Based Future Foods

Nanoparticles for triggering gene expression and osteoconductivity

Biocomposites of Alginates in Drug Delivery

Silk Fibroin–Based Biomaterial Scaffold in Tissue Engineering: Present Persuasive Perspective

Conclusion

Prof. Sailee Chowdhury demonstrates a holistic profile of academic excellence, significant research contributions, and impactful teaching and leadership roles. These attributes strongly position her as a suitable nominee for the Best Researcher Award. Her focus on innovative and sustainable pharmaceutical practices adds further value to her candidacy.