Myriam Cuadrado Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Postdoctoral
postdoc
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Biography and Research Information
OverviewAI-generated summary
Myriam Cuadrado's research investigates molecular mechanisms underlying cancer development and progression, with a focus on signal transduction pathways and genetic mutations. Her work has explored the role of VAV1 proto-oncogene in T-cell lymphomagenesis and the impact of aryl hydrocarbon receptor loss on K-RasG12D-driven lung cancer. Cuadrado has also studied the nuclear function of Vav3 in B-cell lymphoblastic leukemogenesis and the role of APC/C cofactor Cdh1 in erythroid differentiation. Her research also extends to understanding protein expression patterns in multiple myeloma. Cuadrado has co-authored publications with researchers Sara Orlowski and Sami Dridi from the University of Arkansas at Fayetteville.
Metrics
- h-index: 14
- Publications: 52
- Citations: 1,084
Selected Publications
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Effect of heat stress on ileal epithelial barrier integrity in broilers divergently selected for high- and low-water efficiency (2025)
Collaboration Network
Top Collaborators
- Cancer‐associated mutations in <i>VAV1</i> trigger variegated signaling outputs and T‐cell lymphomagenesis
- Loss of Aryl Hydrocarbon Receptor Favors K-RasG12D-Driven Non-Small Cell Lung Cancer
- Nuclear Vav3 is required for polycomb repression complex-1 activity in B-cell lymphoblastic leukemogenesis
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Distinct Roles of Vav Family Members in Adaptive and Innate Immune Models of Arthritis
Showing 5 of 14 shared publications
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Expression profile of Bcl‐2 family proteins in newly diagnosed multiple myeloma patients
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- MYC alterations in multiple myeloma: Genetic insights and prognostic impact
- Exploring the role of cyclin <scp>D1</scp> in the pathogenesis of multiple myeloma beyond cell cycle regulation
Showing 5 of 9 shared publications
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Expression profile of Bcl‐2 family proteins in newly diagnosed multiple myeloma patients
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Exploring the role of cyclin <scp>D1</scp> in the pathogenesis of multiple myeloma beyond cell cycle regulation
- Poster: TCL-318 Evaluation of the Antitumor Activity of Amiloride in Peripheral T-Cell Lymphomas Using In-Vitro Models
Showing 5 of 8 shared publications
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Expression profile of Bcl‐2 family proteins in newly diagnosed multiple myeloma patients
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Exploring the role of cyclin <scp>D1</scp> in the pathogenesis of multiple myeloma beyond cell cycle regulation
- Poster: TCL-318 Evaluation of the Antitumor Activity of Amiloride in Peripheral T-Cell Lymphomas Using In-Vitro Models
Showing 5 of 8 shared publications
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Expression profile of Bcl‐2 family proteins in newly diagnosed multiple myeloma patients
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Exploring the role of cyclin <scp>D1</scp> in the pathogenesis of multiple myeloma beyond cell cycle regulation
- Poster: TCL-318 Evaluation of the Antitumor Activity of Amiloride in Peripheral T-Cell Lymphomas Using In-Vitro Models
Showing 5 of 8 shared publications
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Expression profile of Bcl‐2 family proteins in newly diagnosed multiple myeloma patients
- Quantification of cyclin D1 and D2 proteins in multiple myeloma identifies different expression patterns from those revealed by gene expression profiling
- Exploring the role of cyclin <scp>D1</scp> in the pathogenesis of multiple myeloma beyond cell cycle regulation
- Poster: TCL-318 Evaluation of the Antitumor Activity of Amiloride in Peripheral T-Cell Lymphomas Using In-Vitro Models
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
- Author response: Phenotypic impact of individual conserved neuronal microexons and their master regulators in zebrafish
Showing 5 of 8 shared publications
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