Pedro-Antonio Regidor | Bio Materials | Best Researcher Award

Best Researcher Award

Pedro-Antonio Regidor
Exeltis Healthcare

Pedro-Antonio Regidor
Affiliation Exeltis Healthcare
Country Germany
Scopus ID 57212377610
Documents 72
Citations 1,197
h-index 22
Subject Area Bio Materials
Event Global Mechanics Awards
ORCID 0000-0002-9551-2847

Pedro-Antonio Regidor is a researcher affiliated with Exeltis Healthcare in Germany whose scholarly profile is associated with the field of Bio Materials. Available bibliographic profile information records 72 documents, 1,197 citations, and an h-index of 22 under Scopus Author ID 57212377610. These indicators provide a quantitative overview of the researcher’s indexed scholarly output and citation impact and should be interpreted in the context of publication field, career stage, collaboration patterns, and database coverage. [1]

Abstract

This academic recognition profile presents the available bibliometric and professional information associated with Pedro-Antonio Regidor of Exeltis Healthcare, Germany. The researcher is identified in Scopus by Author ID 57212377610 and in ORCID by identifier 0000-0002-9551-2847. The indexed profile reports 72 documents, 1,197 citations, and an h-index of 22. [1] The profile is associated with Bio Materials, a multidisciplinary research area encompassing the development, characterization, application, and evaluation of materials relevant to biological and biomedical contexts. The information provides a structured basis for academic recognition associated with the World Neuroscientists Awards.

Keywords

Pedro-Antonio Regidor, Best Researcher Award, Exeltis Healthcare, Germany, Bio Materials, biomedical materials, research profile, Scopus, ORCID, citation analysis, h-index, scholarly publications, research impact, World Neuroscientists Awards.

Introduction

Academic research recognition commonly considers several dimensions of scholarly activity, including publication output, citation performance, research visibility, subject-area contribution, and evidence of sustained engagement with a research field. Bibliographic databases such as Scopus provide structured records that can be used to examine publication and citation indicators, while ORCID provides a persistent digital identifier intended to distinguish researchers and connect their scholarly contributions. [1]

Within this framework, the profile of Pedro-Antonio Regidor presents a measurable body of indexed scholarly activity. The reported combination of 72 documents, 1,197 citations, and an h-index of 22 indicates a substantial level of bibliographic and citation presence within the indexed research record. Such indicators are descriptive rather than definitive and are most appropriately considered alongside the nature and quality of individual publications, collaboration networks, research relevance, and disciplinary norms.

Research Profile

Pedro-Antonio Regidor is listed with an institutional affiliation to Exeltis Healthcare in Germany. His bibliographic identity is represented by Scopus Author ID 57212377610 and ORCID identifier 0000-0002-9551-2847. [1] The subject-area designation supplied for this recognition profile is Bio Materials.

Research Contributions

The supplied research profile places the researcher within Bio Materials, an area that connects materials science with biological and biomedical applications. Research in this broad domain may involve the design and characterization of materials, assessment of material–biological interactions, and translation of material properties into applications relevant to healthcare and life sciences.

The available bibliometric indicators demonstrate that the researcher’s work has generated a measurable scholarly record in indexed literature. However, numerical indicators alone do not establish the scientific significance of individual contributions. A complete assessment should examine publication venues, methodological rigor, reproducibility, collaboration, research originality, and the relevance of findings to the wider scientific community.

Publications

The supplied Scopus profile records 72 documents associated with the researcher. [1] These records form the bibliographic basis for evaluating publication activity and citation performance. Because individual publication titles, journal information, publication years, and DOI metadata were not supplied in the source data for this article, no specific publication-level claims are made here.

For publication verification, readers should consult the researcher’s indexed author profile and persistent ORCID record. Where individual publications are evaluated, DOI identifiers should be used as persistent links to the corresponding scholarly records.

Research Impact

The reported citation count of 1,197 and h-index of 22 provide quantitative indicators of the visibility of the researcher’s indexed scholarly output. [1] An h-index of 22 means that, within the relevant indexed record and according to the stated profile, at least 22 publications have each received at least 22 citations. Citation metrics should nevertheless be interpreted cautiously because citation practices vary substantially among disciplines and publication types.

The combination of publication volume and citation activity may be considered one component of an academic recognition assessment. A broader evaluation can incorporate research quality, scientific contribution, innovation, collaboration, practical relevance, and the sustained influence of published work.

Award Suitability

The available profile information provides a reasonable bibliometric basis for consideration in a researcher recognition context. The documented publication record, citation count, and h-index establish measurable indicators of scholarly activity and visibility. [1]

For the World Neuroscientists Awards, final award eligibility or selection should be determined according to the official criteria, nomination requirements, and evaluation procedures established by the award organizers. The information presented on this page should therefore be understood as an academic profile and recognition summary rather than as an independent determination of award status.

Conclusion

Pedro-Antonio Regidor’s supplied academic profile reflects an established indexed research record associated with Exeltis Healthcare in Germany and the subject area of Bio Materials. The reported 72 documents, 1,197 citations, and h-index of 22 provide quantitative evidence of scholarly activity and citation visibility within the indexed literature. [1] Together with persistent Scopus and ORCID identifiers, these records provide a structured basis for academic profile verification and consideration within a professional research recognition framework.

References

  1. Elsevier. (n.d.). Scopus author details: PEDRO-ANTONIO REGIDOR, Author ID 57212377610. Scopus.
    https://www.scopus.com/pages/authors/57212377610
  2. ORCID. (n.d.). PEDRO-ANTONIO REGIDOR — ORCID record.
    https://orcid.org/0000-0002-9551-2847
  3. World Neuroscientists Awards. (n.d.). Official award information.
    https:/neuroscientists.net/

Hassan Maleki | Bio materials | Best Researcher Award

Assist. Prof. Dr. Hassan Maleki | Bio Materials | Best Researcher Award

Medical Nanotechnology at Kermanshah University of Medical Sciences | Iran

Dr. Hassan Maleki is a distinguished researcher and faculty member at the Department of Medical Nanotechnology, School of Pharmacy, Kermanshah University of Medical Sciences. His academic journey in nanomedicine began with a Bachelor’s and Master’s in Operating Room and Medical Nanotechnology from Tehran University of Medical Sciences, followed by a Ph.D. in Medical Nanotechnology from the same institution. Dr. Maleki’s scientific contributions span across nanomedicine, biomaterials, regenerative medicine, and targeted drug delivery, reflected through his extensive publication record in high-impact journals. His works include studies such as Preparation of Imatinib Base Loaded Human Serum Albumin for Application in the Treatment of Glioblastoma, Methotrexate-Loaded PLGA Nanoparticles: Preparation, Characterization and Cytotoxicity on Human Glioblastoma Cells, Paclitaxel and Etoposide Co-Loaded mPEG-PLGA Nanoparticles: Artificial Neural Network Investigation, Effect of Paclitaxel/Etoposide Co-Loaded Polymeric Nanoparticles on Tumor Size and Survival Rate in Glioblastoma, Encapsulation of Ginger Extract in Nanoemulsions: Preparation, Characterization and in vivo Evaluation in Rheumatoid Arthritis, Nanofiber-Based Systems Against Skin Cancers: Therapeutic and Protective Approaches, Achillea Wilhelmsii–Incorporated Chitosan@Eudragit Nanoparticles for Enhanced Ulcerative Colitis Treatment, Nanotechnology-Mediated Precision Drug Delivery Strategies for Breast Cancer Treatment, Biofabricated Hydrogel Composite of Tragacanth Gum and Chitosan Loaded with Copper Oxide Nanoparticles for Enhanced Cutaneous Wound Regeneration, Evaluating the Anti-Neuropathic Effects of Naringin-Loaded Chitosan Nanocarriers in a Murine Model, and Development of 5-Fluorouracil/Etoposide Co-Loaded Electrospun Nanofibrous Scaffold for Localized Anti-Melanoma Therapy. His research leadership extends to supervising numerous graduate theses on nanofibrous dressings, hydrogels, nanoemulsions, and liposomal systems for cancer, diabetes, neurodegeneration, and wound healing. Recognized for ranking first nationwide in multiple nanotechnology competitions and exams, Dr. Maleki continues to advance interdisciplinary frontiers of nanotechnology-enabled drug delivery, biomaterial engineering, and cancer nanotherapeutics, earning recognition as one of the leading voices in translational medical nanotechnology research.

Profile: Scopus | Orcid | Google Scholar

Featured Publications:

Khoshnevisan, K., Maleki, H., Samadian, H., Shahsavari, S., Sarrafzadeh, M. H., Larijani, B., & Khorramizadeh, M. R. (2018). Cellulose acetate electrospun nanofibers for drug delivery systems: Applications and recent advances. Carbohydrate Polymers, 198, 131–141.

Samadian, H., Maleki, H., Allahyari, Z., & Jaymand, M. (2020). Natural polymers-based light-induced hydrogels: Promising biomaterials for biomedical applications. Coordination Chemistry Reviews, 420, 213432.

Khoshnevisan, K., Maleki, H., Samadian, H., Doostan, M., & Khorramizadeh, M. R. (2019). Antibacterial and antioxidant assessment of cellulose acetate/polycaprolactone nanofibrous mats impregnated with propolis. International Journal of Biological Macromolecules, 140, 1260–1268.

Samadian, H., Maleki, H., Fathollahi, A., Salehi, M., Gholizadeh, S., Derakhshankhah, H., & Jaymand, M. (2020). Naturally occurring biological macromolecules-based hydrogels: Potential biomaterials for peripheral nerve regeneration. International Journal of Biological Macromolecules, 154, 795–817.

Khoshnevisan, K., Maleki, H., Honarvarfard, E., Baharifar, H., Gholami, M., Faridbod, F., Larijani, B., & Khorramizadeh, M. R. (2019). Nanomaterial based electrochemical sensing of the biomarker serotonin: A comprehensive review. Microchimica Acta, 186(1), 49.

Dilek Sönmezer Açıkgöz | Tissue engineering | Best Researcher Award

Dr. Dilek Sönmezer Açıkgöz | Tissue engineering | Best Researcher Award

Phd at Çukurova University, Turkey

Dr. Dilek Sönmezer Açıkgöz is a Lecturer at Çukurova University’s Department of Biomedical Engineering, specializing in biomaterials, tissue engineering, and regenerative medicine. She holds a PhD from Erciyes University and has contributed to cutting-edge research on pericardial fluid applications in tissue engineering. Dr. Sönmezer has published extensively in SCI-indexed journals and presents regularly at international conferences.

Publication Profile

orcid

🎓 Education

PhD: Biomedical Engineering, Erciyes University (2012-2022)MSc: Biomedical Engineering, Erciyes University (2008-2011)BSc: Biology, Erciyes University (2004-2008)Internship: Eindhoven University of Technology (2010-2011)

💼 Experience

Lecturer: Çukurova University (2014-present)Research: Tissue engineering, pericardial fluid characterization, biomaterial developmentPatent Holder: Ultrasonic system for coronary bypass surgery

🏆 Awards & Honors

Patent: Ultrasonic vascular measurement system (2015)Key Publications: Bio-Medical Materials and Engineering, Biotechnology Applied BiochemistryRecognitions: Frequent presenter at international biomedical conferences

🔬 Research Focus

Biomedical Engineering: Biomaterials, tissue engineering, pericardial fluid studiesBioprinting: Developing biocompatible bioinks for 3D printingRegenerative Medicine: Exploring extracellular matrix applications for tissue regeneration

Publications 📖

Applications of a Biocompatible Alginate/Pericardial Fluid-Based Hydrogel for the Production of a Bioink in Tissue Engineering
Biotechnology and Applied Biochemistry | 2024-12-02
DOI: 10.1002/bab.2697
Contributors: Dilek Sönmezer Açıkgöz, Fatma Latifoğlu, Güler Toprak, Münevver Baran

Production of Hydrogel with Alginate and Pericardial Fluid for Use in Tissue Engineering Applications
Çukurova Üniversitesi Mühendislik Fakültesi Dergisi | 2023-12-28
DOI: 10.21605/cukurovaumfd.1410697
Contributors: Dilek Sönmezer, Fatma Latifoğlu

A Native Extracellular Matrix Material for Tissue Engineering Applications: Characterization of Pericardial Fluid
Journal of Biomedical Materials Research Part B: Applied Biomaterials | 2023-09
DOI: 10.1002/jbm.b.35260
Contributors: Dilek Sönmezer, Fatma Latifoğlu, Güler Toprak, Münevver Baran

 

Conclusion

Dr. Dilek Sönmezer Açıkgöz stands out as a highly qualified candidate for the Best Researcher Award, with substantial contributions to biomedical engineering, tissue engineering, and biomaterials. Her dedication to research, publications in top journals, and development of patented technology make her a strong contender. Strengthening international partnerships and focusing on high-impact translational research can further enhance her candidacy for future recognitions.