Charlotte Jeanneau | Drug Delivery | Best Researcher Award

Best Researcher Award

Charlotte Jeanneau
Université de Tours

Charlotte Jeanneau
Affiliation Université de Tours
Country France
Scopus ID 6701451744
Documents 56
Citations 3,238
h-index 27
Subject Area Drug Delivery
Event Applied Scientist Awards

Charlotte Jeanneau is a researcher affiliated with Université de Tours whose documented research profile is associated with the field of Drug Delivery. The supplied bibliometric record identifies 56 documents, 3,238 citations, and an h-index of 27 under Scopus Author ID 6701451744. These indicators provide a quantitative view of indexed research activity and citation impact, while the scope and significance of individual contributions require consideration of the underlying publications and their scientific context.[1]

Abstract

This article presents an academic recognition profile for Charlotte Jeanneau, affiliated with Université de Tours and associated with the research area of Drug Delivery. The supplied Scopus information records 56 documents, 3,238 citations, and an h-index of 27. Such bibliometric measures are commonly used to describe aspects of scholarly productivity and citation visibility, although they should be interpreted alongside publication quality, research relevance, methodological contribution, collaboration, and broader scientific influence.[1] Drug delivery research encompasses the development and evaluation of approaches intended to transport therapeutic agents to appropriate biological sites while addressing issues such as stability, bioavailability, targeting, controlled release, and safety.[2]

Keywords

Drug Delivery; Pharmaceutical Sciences; Therapeutic Delivery Systems; Drug Delivery Technologies; Nanomedicine; Research Impact; Biomedical Research

Introduction

Drug delivery is an interdisciplinary research area connecting pharmaceutical science, chemistry, materials science, biology, medicine, and engineering. Modern drug delivery systems seek to improve how therapeutic compounds are administered, distributed, released, and made available at their intended biological targets. Research in this field includes conventional formulation approaches as well as advanced carriers, controlled-release systems, nanostructured platforms, and targeted delivery strategies.[2][4]

Research Profile

The supplied academic information identifies Charlotte Jeanneau with Université de Tours and the subject area of Drug Delivery. The Scopus identifier associated with the profile is 6701451744. According to the supplied bibliometric record, the profile contains 56 indexed documents, 3,238 citations, and an h-index of 27.[1][2]

Research Contributions

The research area associated with this profile, Drug Delivery, addresses the scientific challenge of delivering therapeutic substances with appropriate spatial and temporal control. Important research directions in the discipline include improving drug solubility and stability, regulating release kinetics, developing carrier systems, enhancing biological availability, and reducing unintended exposure. Contemporary approaches also examine how physicochemical properties of delivery materials influence biological interactions and therapeutic performance.[5][3] Lipid nanoparticles represent another important delivery technology, particularly in the development of nucleic-acid-based therapeutics and related biomedical applications.[4]

Publications

The supplied Scopus record reports 56 documents for the researcher profile identified by Author ID 6701451744.[1] A complete publication-level assessment would require examination of the individual indexed records, including article titles, journals, publication years, author contributions, citation distributions, and subject classifications. Because those individual publication records were not supplied as part of the input data, this profile does not attribute specific publications to Charlotte Jeanneau beyond the provided aggregate Scopus information.[4]

Research Impact

The supplied bibliometric indicators report 3,238 citations and an h-index of 27 across 56 documents in the identified Scopus profile.[1] Citation counts can provide evidence of how frequently indexed publications have been cited within the scholarly literature, while the h-index combines publication and citation information into a single measure. These metrics are database-dependent and may vary with indexing coverage, author disambiguation, citation updates, and the date on which the profile is examined.

Award Suitability

The Best Researcher Award profile is based on the supplied affiliation, research subject area, and Scopus bibliometric record. The reported combination of 56 documents, 3,238 citations, and an h-index of 27 provides quantitative information that can form part of an academic recognition assessment.[1] A complete award evaluation may additionally consider the originality and significance of research contributions, publication quality, scholarly leadership, collaboration, research continuity, and evidence of broader scientific or societal relevance.

Conclusion

Charlotte Jeanneau, affiliated with Université de Tours, is presented in this academic recognition profile as a researcher associated with Drug Delivery. The supplied Scopus information records 56 documents, 3,238 citations, and an h-index of 27 under Author ID 6701451744.[1] Drug Delivery is a multidisciplinary field concerned with developing scientifically controlled approaches for transporting therapeutic agents and improving their delivery characteristics.[2]

References

  1. Elsevier. (n.d.). Scopus author details: Charlotte Jeanneau, Author ID 6701451744. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6701451744
  2. T Giraud, C Jeanneau, I About. (2026). Anti-inflammatory potential of a New Calcium Silicate based Endodontic Sealer.
    https://www.sciencedirect.com/science/article/pii/S0099239926003596
  3. C Le Fournis, T Giraud, S Roumani, C Jeanneau, I About. (2026). Macrophage‐Pulp Fibroblast Interactions Modulate Initial Dental Pulp Regeneration In Vitro.
    https://onlinelibrary.wiley.com/doi/abs/10.1111/iej.70103
  4. A Cotten, C Jeanneau, P Decherchi, I About. (2024). Complement C5a Implication in Axonal Growth After Injury.
    https://www.mdpi.com/2073-4409/13/20/1729
  5. C Jeanneau, JH Catherine, T Giraud, R Lan, I About. (2024). The Added Value of a Collagenated Thermosensitive Bone Substitute as a Scaffold for Bone Regeneration.
    https://www.mdpi.com/1996-1944/17/3/625