Carlo Croce | Cancer Science | Innovative Research Award

Innovative Research Award

Carlo Croce
Ohio State University, United States

                  Carlo Croce
Affiliation Ohio State University
Country United States
Scopus ID 7202975031
Documents 1,366
Citations 209,103
h-index 213
Subject Area Cancer Science
Event International Research Awards on Oncology and Cancer Research
ORCID 0000-0003-3788-1457

Carlo Croce is a cancer researcher affiliated with The Ohio State University whose research profile is centered on cancer biology, human cancer genetics and molecular mechanisms associated with malignancy. His institutional profile identifies cancer biology as an area of expertise and highlights human cancer genetics and microRNA research as major interests. [1] Bibliographic databases likewise identify his Ohio State affiliation and extensive publication record. [2]

Abstract

The Innovative Research Award recognition profile examines Carlo Croce in relation to contemporary cancer science and molecular oncology. Available institutional and bibliographic records associate his work with cancer biology, human cancer genetics and microRNA-related mechanisms. [1] His documented research activity includes a substantial body of peer-reviewed scientific literature addressing oncogenes, non-coding RNAs and cancer development. [3]

Keywords

Carlo Croce, Innovative Research Award, cancer science, cancer biology, oncology, human cancer genetics, microRNA, oncogenes, molecular oncology, Ohio State University.

Introduction

Cancer research increasingly integrates molecular genetics, cellular biology and translational science to understand how malignant transformation begins and progresses. Croce’s research has addressed molecular alterations associated with cancer, including oncogenes and regulatory mechanisms involving microRNAs. His published review on oncogenes discussed how molecular targets can contribute to the development of targeted anticancer strategies. [3]

Research Profile

The research profile is primarily situated within cancer biology and genetics. The Ohio State University profile identifies Cancer Biology & Genetics as an academic area and specifically lists human cancer genetics and the role of microRNAs in cancer among areas of expertise. [1] Bibliographic records further associate the researcher with a broad body of cancer-related publications and collaborations. [2]

Research Contributions

A significant theme of Croce’s research concerns the relationship between genetic alterations and malignant disease. His work on oncogenes has considered how genes involved in tumor initiation and progression can become relevant therapeutic targets. [3] His research has also examined microRNAs and their regulatory functions, contributing to broader investigation of non-coding RNA biology in cancer. [4]Research involving small non-coding RNAs has extended this molecular perspective into leukemia and related malignancies. A co-authored review published in Cancers examined small non-coding RNAs in leukemia and identified their relevance to cancer biology and potential therapeutic research. [5] These themes demonstrate the integration of molecular genetics with disease-focused oncology research.

Publications

Available scholarly records show an extensive publication history spanning cancer genetics, oncogenes, microRNAs and related molecular oncology topics. The Ohio State research portal lists more than one thousand research outputs associated with the researcher, while the current bibliographic author record identifies a similarly extensive body of indexed work. [2]

  • Oncogenes and cancer, New England Journal of Medicine, 2008.
  • Causes and consequences of microRNA dysregulation in cancer, Nature Reviews Genetics, 2009.
  • Small Non-Coding RNAs in Leukemia, Cancers, 2022. [5]

Research Impact

The supplied research metrics indicate a substantial bibliometric footprint, including 1,366 documents, 209,103 citations and an h-index of 213. Bibliographic information available through the author’s indexed profile confirms a very high level of publication and citation activity, although such metrics can change as databases are updated.Beyond quantitative indicators, the research record reflects sustained engagement with fundamental questions in cancer biology. Publications addressing oncogenes and microRNA regulation have helped frame molecular mechanisms as important components of modern cancer research and therapeutic investigation.

Award Suitability

Based on the supplied profile information, Carlo Croce demonstrates characteristics relevant to an Innovative Research Award in oncology and cancer research. The combination of a long-standing cancer research program, extensive scholarly output, substantial citation activity and research focused on molecular mechanisms provides a strong evidence base for consideration. [1] Final award decisions should remain subject to the event’s formal eligibility criteria and independent review.

Conclusion

Carlo Croce’s academic profile is closely associated with cancer biology, molecular genetics and oncology research. Institutional and bibliographic sources document extensive research activity and a substantial scholarly impact, while representative publications demonstrate sustained work on oncogenes, microRNAs and cancer-related molecular mechanisms. [2] On the basis of the supplied metrics and documented research themes, the profile is relevant to recognition under an innovative cancer research award.

References

  1. The Ohio State University. (n.d.). Carlo Croce — Molecular, Cellular and Developmental Biology Program. Ohio State University.
    https://mcdb.osu.edu/people/croce.5
  2. Elsevier. (n.d.). Carlo Maria Croce — Scopus author details, Author ID 7202975031. ScienceDirect.
    https://www.sciencedirect.com/author/7202975031/carlo-maria-croce
  3. Croce, C. M. (2008). Oncogenes and cancer. New England Journal of Medicine, 358(5), 502–511.
    https://doi.org/10.1056/NEJMra072367
  4. Croce, C. M. (2009). Causes and consequences of microRNA dysregulation in cancer. Nature Reviews Genetics, 10, 704–714.  https://doi.org/10.1038/nrg2634
  5. Balatti, V., & Croce, C. M. (2022). Small Non-Coding RNAs in Leukemia. Cancers, 14(3), 509.
    https://doi.org/10.3390/cancers14030509

Ramon Mangues | Cancer | Best Research Article Award

Prof. Dr. Ramon Mangues | Cancer | Best Research Article Award

Pharmacological Research | Institut de Recerca Sant Pau | Spain

Prof. Dr. Ramon Mangues Bafalluy, PharmD, PhD, is a distinguished Clinical Pharmacist and Biomedical Research Professor at the Institut de Recerca, Hospital de la Santa Creu i Sant Pau, where he leads the Consolidated Oncogenesis and Antitumor Drugs Group (GOA). A recognized authority in oncology, nanomedicine, and targeted drug delivery, he has made pioneering contributions to the development of therapeutic nanotechnologies and translational cancer research. Trained in pharmacy and clinical pharmacology, Dr. Mangues advanced his expertise in cancer biology through extensive postdoctoral research at the New York University Medical Center. His professional career spans key leadership roles within IIB Sant Pau, CIBER-BBN, and as Co-founder and Scientific Advisor of Nanoligent S.L., a spin-off dedicated to translating nanomedicine discoveries into clinical therapies. His research interests encompass nanoconjugates, protein-based nanoparticles for targeted drug delivery, immunotherapeutic strategies, preclinical drug development, and biomarker identification for improved cancer diagnosis and treatment. A strong advocate of collaborative science, he has partnered with leading clinical specialists and secured numerous competitive research grants, including participation in major European Union initiatives such as SAFE-N-MEDTECH, EuroTransBio, and H2020 programs. Holding multiple patents in nanomedicine, Dr. Mangues’s innovative work bridges the gap between molecular oncology and clinical application. As a mentor and academic leader, he has supervised numerous doctoral theses and authored an extensive body of publications that have shaped contemporary cancer nanotherapy approaches. His achievements have been recognized through prestigious distinctions for research excellence and international scientific leadership. Dr. Mangues’s enduring impact on biomedical innovation is evident through 7,280 citations, 154 documents, and an h-index of 42, underscoring his influential role in advancing nanomedicine and targeted cancer therapy research.

Featured Publications

1. Merlos-Suárez, A., Barriga, F. M., Jung, P., Iglesias, M., Céspedes, M. V., Rossell, D., Sevillano, M., Attolini, C. S.-O., Hernando-Momblona, X., da Silva-Diz, V., Muñoz, P., Clevers, H., Sancho, E., Mangues, R., & Batlle, E. (2011). The intestinal stem cell signature identifies colorectal cancer stem cells and predicts disease relapse. Cell Stem Cell, 8(5), 511–524. Cited by: 1,145

2. Sanchez-Garcia, L., Martín, L., Mangues, R., Ferrer-Miralles, N., Vázquez, E., & Villaverde, A. (2016). Recombinant pharmaceuticals from microbial cells: A 2015 update. Microbial Cell Factories, 15(1), 33. Cited by: 445

3. Esteller, M., Gonzalez, S., Risques, R. A., Marcuello, E., Mangues, R., Germa, J. R., Herman, J. G., Capellà, G., & Peinado, M. A. (2001). K-ras and p16 aberrations confer poor prognosis in human colorectal cancer. Journal of Clinical Oncology, 19(2), 299–304. Cited by: 335

4. Guerrero, S., Casanova, I., Farré, L., Mazo, A., Capellà, G., & Mangues, R. (2000). K-ras codon 12 mutation induces higher level of resistance to apoptosis and predisposition to anchorage-independent growth than codon 13 mutation or proto-oncogene. Cancer Research, 60(23), 6750–6756. Cited by: 325

5. Ventura, S., Zurdo, J., Narayanan, S., Parreño, M., Mangues, R., Reif, B., Chiti, F., Giannoni, E., Dobson, C. M., & Serrano, L. (2004). Short amino acid stretches can mediate amyloid formation in globular proteins: The Src homology 3 (SH3) case. Proceedings of the National Academy of Sciences, 101(19), 7258–7263. Cited by: 301