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Presence Current · Arkansas
Last published 2026
Sources OpenAlex · ORCID
Refreshed 2026-08-08

Alex Lagasse

Researcher

Faculty Researcher

5 h-index 21 pubs 82 cited

  • Microscopy, Electron
  • Electrons
  • Microscopy
  • Animals
  • Female
  • Humans
  • Mice
  • Pituitary Gland
  • Melanoma
  • Histological Techniques
  • Somatotrophs
  • Male
  • Diet, High-Fat
  • Choroid
  • Pathology

Biography and Research Information

OverviewAI-generated summary

Alex Lagasse investigates molecular mechanisms regulating pituitary gland function, with a focus on the impact of diet and hormonal signaling on gene expression and cellular metabolism. Research has explored the effects of high-fat diets on anterior pituitary transcriptomics, particularly concerning oxidative stress and cell metabolism in female mice. Studies have also examined the role of RNA-binding proteins, such as Musashi, in controlling mRNA translation in gonadotropes during the mouse estrous cycle. Further work has investigated the influence of leptin receptor signaling on somatotrope transcriptome maturation and the effects of maternal undernutrition on offspring transcript changes, potentially influencing diet-induced weight gain resistance. Collaborations include extensive work with Angus M. MacNicol, Angela K. Odle, Gwen V. Childs, and Melanie C MacNicol at the University of Arkansas for Medical Sciences.

Metrics

  • h-index: 5
  • Publications: 21
  • Citations: 82

Selected Publications

  • ELAVL1 and ELAVL4 Are Required for Musashi-Dependent Translational Activation (2026)
    Biomolecules DOI OpenAlex
  • ELAVL1 and ELAVL4 are required for Musashi-dependent translational activation (2026)
    bioRxiv (Cold Spring Harbor Laboratory) DOI OpenAlex
  • Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations (2026)
    Biology of Reproduction 1 citation DOI OpenAlex
  • Secretogranin II–derived peptide secretoneurin differentially stimulates luteinizing hormone secretion by age and sex in ex vivo murine pituitaries (2026)
    Biology of Reproduction DOI OpenAlex
  • OR13-08 Secretoneurin Modulates Gonadotrope Function Cyclically to Regulate LH Secretion (2025)
    Journal of the Endocrine Society DOI OpenAlex
  • SAT-001 Impact of VCD-induced Menopause on Gonadotrope Transcriptomics Reveals Estrogen-dependent Genes in the GnRH Signaling Pathway (2025)
    Journal of the Endocrine Society DOI OpenAlex
  • High fat diet-induced loss of pituitary plasticity in aging female mice with ablated leptin signaling in somatotropes (2025)
    Frontiers in Endocrinology 1 citation DOI OpenAlex
  • Ablation of Leptin Receptor Signaling Alters Somatotrope Transcriptome Maturation in Female Mice (2025)
    Endocrinology 5 citations DOI OpenAlex
  • 8572 A 30% Maternal Caloric Restriction Alters Expression of Musashi Targets in the Neonatal and Adult Pituitary Proteomes of FVB Mice (2024)
    Journal of the Endocrine Society DOI OpenAlex
  • 8649 Ablation of Leptin Receptors in Somatotropes Impacts Transcriptomic Plasticity in the Pou1f1 Lineage of Female Pituitary Cells (2024)
    Journal of the Endocrine Society DOI OpenAlex
  • The Musashi RNA binding proteins direct the translational activation of key pituitary mRNAs (2024)
    Scientific Reports 8 citations DOI OpenAlex
  • Maternal undernutrition results in transcript changes in male offspring that may promote resistance to high fat diet induced weight gain (2024)
    Frontiers in Endocrinology 4 citations DOI OpenAlex
  • Anterior Pituitary Transcriptomics Following a High-Fat Diet: Impact of Oxidative Stress on Cell Metabolism (2023)
    Endocrinology 12 citations DOI OpenAlex
  • FRI289 It Takes A Village: Musashi And Its Associated Proteins In The Adenohypophysis (2023)
    Journal of the Endocrine Society DOI OpenAlex
  • FRI290 Proteomic Identification Of Secretoneurin-Stimulated Proteins In Purified Mouse Gonadotropes (2023)
    Journal of the Endocrine Society DOI OpenAlex

View all publications on OpenAlex →

Collaboration Network

34 Collaborators 9 Institutions 2 Countries

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