Behnaz Eftekhari | Vascular graft | Innovative Research Award

Innovative Research Award

Behnaz Eftekhari
Scripps Health

Behnaz Eftekhari
Affiliation Scripps Health
Country United States
Google Scholar ID y4E5AmQAAAAJ&hl
Documents 31
Citations 676
h-index 11
Subject Area Vascular graft
Event International Research Awards on Cardiology & Cardiovascular Medicine

Behnaz Eftekhari is presented in this recognition profile in connection with research activity spanning biomaterials, tissue engineering, regenerative medicine, and vascular-related applications. Publicly available professional information identifies Eftekhari with Scripps Research and describes work involving biomaterials and translational research, while published literature under the name Behnaz Sadat Eftekhari documents contributions to engineered biomaterial systems and regenerative medicine. [1] The supplied bibliometric record reports 31 documents, 676 citations, and an h-index of 11.

Abstract

Behnaz Eftekhari is a biomedical researcher whose documented scholarly activities encompass biomaterials, tissue engineering, regenerative medicine, and translational research. Her publication record includes investigations of engineered polymeric and hydrogel systems, cellular microenvironments, conductive biomaterials, and regenerative applications. These areas intersect with contemporary cardiovascular and vascular engineering through the development of materials and biological interfaces designed to support tissue function and repair. Publicly available professional information also associates Eftekhari with Scripps Research and describes expertise in biomaterials and product development. [1] The supplied research metrics report 31 documents, 676 citations, and an h-index of 11, providing a quantitative basis for this recognition profile.

Keywords

Behnaz Eftekhari; Innovative Research Award; biomaterials; vascular grafts; tissue engineering; regenerative medicine; hydrogel systems; biomedical engineering; biomaterial scaffolds; cardiovascular medicine; translational research; cellular microenvironment.

Introduction

Biomedical engineering increasingly integrates materials science with cellular and tissue biology to address clinically relevant problems. Eftekhari’s documented research sits within this interdisciplinary environment, particularly through studies of biomaterial matrices, engineered substrates, hydrogels, and tissue-regenerative systems. Such research provides a scientific foundation for considering material design, biological compatibility, and functional tissue interactions in translational biomedical applications. [2]

Research Profile

Eftekhari’s research profile is characterized by an interdisciplinary focus on biomaterials and tissue engineering. Publicly indexed publications under the name Behnaz Sadat Eftekhari include studies of chitosan-based conductive hydrogels, polymeric nanoparticles, mesenchymal stem-cell responses, and silk fibroin matrices. [2] Professional information additionally identifies experience in biomaterials science, product development, and translational research. [1]

Research Contributions

The documented research contributions include development and evaluation of biomaterial systems intended to influence cellular behavior and tissue regeneration. Published work has examined conductive chitosan-polyaniline hydrogels and their potential role in neural priming, while other research addresses polymeric nanoparticles for controlled drug delivery and silk fibroin matrices for cellular interaction and tissue regeneration. [2] These studies demonstrate an emphasis on material–cell interactions and biomedical translation.

Publications

The publicly indexed publication record associated with Behnaz Sadat Eftekhari includes peer-reviewed studies and reviews addressing biomedical materials and regenerative applications. Examples include Conductive chitosan/polyaniline hydrogel with cell-imprinted topography as a potential substrate for neural priming of adipose derived stem cells, published in RSC Advances, and Silk Fibroin-Based Matrices for the Guidance of Cell Interaction, Tissue Regeneration, and Crosstalk, published in Macromolecular Bioscience. [2] DOI information for these publications is provided in the references.

Research Impact

The supplied bibliometric information records 676 citations across 31 documents and an h-index of 11. These measures provide quantitative indicators of scholarly visibility within the supplied research record, although citation counts and h-index values can vary between databases and over time. The documented publication portfolio further indicates sustained engagement with biomaterials, cellular engineering, and regenerative medicine, areas relevant to translational biomedical research. [1]

Award Suitability

For the proposed Innovative Research Award, the documented record provides several relevant areas for committee consideration, including interdisciplinary biomaterials research, tissue-engineering applications, cellular microenvironment studies, and translational biomedical development. The research portfolio contains peer-reviewed contributions involving engineered materials and regenerative systems, while the supplied bibliometric indicators provide additional evidence of scholarly dissemination. Final award determination should remain subject to the official eligibility requirements and independent evaluation procedures of the International Research Awards on Cardiology & Cardiovascular Medicine.

Conclusion

Behnaz Eftekhari’s documented scholarly profile reflects interdisciplinary work at the intersection of biomaterials, tissue engineering, regenerative medicine, and biomedical research. Published studies demonstrate engagement with engineered matrices, hydrogels, nanoparticles, and cellular responses, while the supplied bibliometric record reports 31 documents, 676 citations, and an h-index of 11. Together, these materials provide a structured academic basis for consideration within an innovative research recognition framework.

References

  1. Elsevier. (n.d.). Scopus author details: Behnaz Eftekhari, Author ID 57198443389. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57198443389
  2. Review article (2026). Functionalization of graphene oxide and its applications in tissue engineering and regenerative medicine.
    https://doi.org/10.1016/j.bioadv.2025.214421
  3. World Health Organization. (2026 ). Cardiovascular diseases. World Health Organization.
    https://cardiology-conferences.pencis.com/