Innovative Research Award
Université Paris Cité
| Reem El Mobla | |
|---|---|
| Affiliation | Université Paris Cité |
| Country | France |
| Documents | 8 |
| Subject Area | 3D Bioprinting |
| Event | Biotechnology Scientist Awards |
| ORCID | 0000-0003-2453-9935 |
Reem El Mobla is affiliated with Université Paris Cité, France, and is associated with research in 3D bioprinting. The Innovative Research Award recognizes research contributions that demonstrate scientific relevance, methodological development, and potential value to biotechnology and related biomedical applications. 3D bioprinting combines additive manufacturing principles with biological materials and cells to construct spatially organized biological structures, making it an important interdisciplinary research area. [2]
Abstract
This academic recognition profile presents Reem El Mobla of Université Paris Cité in connection with the Innovative Research Award at the Biotechnology Scientist Awards. The research profile is focused on 3D bioprinting, an interdisciplinary field that integrates biotechnology, materials science, engineering, and biomedical research. The researcher profile records eight documents and identifies 3D bioprinting as the principal subject area supplied for this recognition. 3D bioprinting has developed as a technology for fabricating complex biological structures through controlled deposition or positioning of biomaterials and biological components. [2] The field has applications in tissue engineering, regenerative medicine, drug development, disease modelling, and related areas of biomedical research. [3]
Keywords
3D Bioprinting; Biotechnology; Biofabrication; Tissue Engineering; Biomedical Engineering; Biomaterials; Regenerative Medicine; Additive Manufacturing; Cellular Engineering; Research Innovation; Université Paris Cité; Biotechnology Scientist Awards.
Introduction
Three-dimensional bioprinting is an emerging biofabrication approach in which biological materials, cells, biomolecules, or combinations of these components are spatially organized to produce structures with defined geometries. The development of bioprinting has created opportunities for researchers to investigate approaches to tissue construction and biological modelling while addressing challenges associated with conventional tissue-engineering methods. [1]
The scientific significance of 3D bioprinting arises from its multidisciplinary character. Research in this area may involve cell biology, biomaterials, bioengineering, computational design, manufacturing technologies, and biomedical sciences. The combination of these disciplines supports the development of increasingly controlled approaches to fabricating biological structures. [3]
Within this context, the Innovative Research Award provides a framework for recognizing research activity associated with methodological development and scientifically relevant innovation. The present profile identifies Reem El Mobla as a researcher affiliated with Université Paris Cité and records 3D bioprinting as the stated research subject.
Research Profile
The supplied research profile associates Reem El Mobla with Université Paris Cité in France and identifies 3D bioprinting as the subject area. The profile records eight documents. Citation and h-index values were not supplied in the source information and are therefore not assigned numerical values in this article. This approach preserves a distinction between documented profile information and metrics that require independent verification.
- Researcher: Reem El Mobla
- Institution: Université Paris Cité
- Country: France
- Documents: 8
- Primary Subject Area: 3D Bioprinting
- Research Context: Biotechnology and biomedical biofabrication
Research Contributions
Research associated with 3D bioprinting contributes to the broader development of biofabrication by examining methods for positioning biological materials and cells with spatial precision. The field is relevant to the construction of tissue-like architectures and experimental models, while also presenting technical challenges involving printability, cell viability, material properties, structural fidelity, and biological function. [1]
A research profile centered on 3D bioprinting can therefore be evaluated through multiple dimensions, including the scientific quality of the underlying methodology, reproducibility, integration of biological and engineering principles, and the potential usefulness of the resulting techniques for biomedical research. The interdisciplinary nature of the field makes collaboration between biotechnology and engineering disciplines particularly relevant. [4]
Publications
The supplied profile records 8 documents associated with the researcher. Individual publication titles, journal names, publication years, citation counts, and DOI identifiers were not provided in the input data. Accordingly, this article does not attribute specific publications to the researcher without source verification.
For contextual purposes, the scientific literature on 3D bioprinting includes studies addressing biofabrication technologies, biomaterials, tissue engineering, and strategies for creating organized cellular structures. Reviews of the field have emphasized the importance of printing processes, bioinks, cellular components, and post-printing maturation in determining biological outcomes. [2] [3]
A verified publication list should be obtained from authoritative researcher identifiers or bibliographic databases before specific works are attributed to the researcher.
Research Impact
The potential impact of 3D bioprinting research extends across biotechnology and biomedical research. Biofabrication methods can support experimental investigation of tissue architecture, cellular interactions, biomaterial performance, and disease-related biological processes. The technology has also been investigated as a component of regenerative medicine and tissue-engineering strategies. [3]
Research impact should be assessed using verifiable indicators such as peer-reviewed publications, citations, collaboration, methodological adoption, translational relevance, and documented contributions to the research community. In this profile, the supplied record confirms eight documents, while citation and h-index values remain unspecified.
Award Suitability
The research subject of 3D bioprinting is closely aligned with biotechnology, biofabrication, biomaterials, and biomedical engineering. The interdisciplinary nature of this field provides a relevant basis for consideration under an Innovative Research Award framework, particularly where research demonstrates a clear methodological contribution, scientific rigor, and relevance to emerging biotechnology applications.
- Subject relevance: 3D bioprinting is directly connected to contemporary biotechnology and biofabrication research.
- Interdisciplinary scope: The field integrates biological sciences with engineering, materials science, and manufacturing technologies.
- Innovation potential: Bioprinting research addresses technical approaches for constructing organized biological structures.
- Research record: The supplied profile identifies eight documents associated with the researcher.
- Institutional context: The researcher is affiliated with Université Paris Cité, France.
These factors establish a reasonable scholarly basis for consideration for an innovation-oriented biotechnology recognition. Final award assessment should remain subject to the applicable nomination requirements, supporting documentation, and independent evaluation criteria of the Biotechnology Scientist Awards.
Conclusion
Reem El Mobla, affiliated with Université Paris Cité in France, is presented in this profile in relation to the Innovative Research Award and the research area of 3D bioprinting. The supplied information records eight documents and identifies an ORCID profile for researcher identification. 3D bioprinting represents an interdisciplinary research field with relevance to biotechnology, biofabrication, biomaterials, tissue engineering, and biomedical research. [2] The available information provides a structured basis for academic recognition while leaving numerical citation and h-index metrics unspecified where they were not supplied.
External Links
- ORCID Profile:
https://orcid.org/0000-0003-2453-9935 - Award Website:
https://biotechnologyscientist.com/
References
1.Murphy, S. V., & Atala, A. (2014). 3D bioprinting of tissues and organs. Nature Biotechnology, 32, 773–785.
https://doi.org/10.1038/nbt.2958
2.ORCID. Reem El Mobla, ORCID record.https://orcid.org/0000-0003-2453-9935
3.Biotechnology Scientist Awards. Official award website.https://biotechnologyscientist.com/