Publications

For publication metrics please visit Google Scholar, PubMed, Web of Science, and/or ORCID.

Publications list

  1. Sun F, Ali NN, Londoño-Vásquez D, Simintiras CA, Qiao H, Ortega MS, Agca Y, Takahashi M, Rivera RM, Kelleher AM, Sutovsky P, Patterson AL, Balboula AZ. Increased DNA damage in full-grown oocytes is correlated with diminished autophagy activation.
    Nature Communications (November 2024); 19: 9463
    Research Article | Affiliated with LSU.
  2. Liu Q, Li C, Li Y, Wang L, Zhang X, Deng B, Gao P, Shiri M, Alkaifi F, Zhao J, Stephens JM, Simintiras CA, Francis J, Sun J & Fu X.
    Progenitor cell isolation from mouse epididymal adipose tissue and sequencing library construction.
    STAR Protocols (November 2023); 4(4):102703

    Protocol | Affiliated with LSU.​

  3. Wang L, Gao P, Li C, Liu Q, Li Y, Zhang X, Yao Z, Sun J, Simintiras CA, Welborn M, McMillin K, Oprescu S, Kuang S & Fu X.
    A single-cell atlas of bovine skeletal muscle tissue reveals mechanisms underlying differences in intramuscular fat and connective tissue accumulation between Wagyu and Brahman cattle.
    Journal of Cachexia, Sarcopenia, and Muscle (June 2023); 14(5):2152-2167
    Research Article | Affiliated with LSU
  4. Liu Q, Li C, Deng B, Gao P, Wang L, Li Y, Shiri M, Alkaifi F, Zhao J, Stephens JM, Simintiras CA, Francis J, Sun J & Fu X.
    Tcf21 marks visceral adipose progenitor cells and functions as a rate-limiting factor during visceral adipose tissue development
    Cell Reports (March 2023); 42(3):12166
    Research Article | Affiliated with LSU
  5. Alrabiah NA, Simintiras CA, Evans ACO, Lonergan P & Fair T.
    Biochemical alterations in follicular fluid in the bovine peri-ovulatory follicle in association with final oocyte maturation
    Reproduction and Fertility (January 2023); 4(1):e220090
    Research Article | Affiliated with LSU
  6. Geisert RD, Johns DN, Pfeiffer CA, Sullivan RM, Lucas CG, Simintiras CA, Redel BK, Wells KD, Spencer TE & Prather RS.
    Gene editing provides a tool to investigate genes involved in reproduction of pigs
    Molecular Reproduction and Development
    (June 2022); 1– 10
    Review Article | Arising from postdoctoral training
  7. Simintiras CA, Drum JN, Liu H, Ortega MS & Spencer TE
    Uterine lumen fluid is metabolically semi-autonomous
    Communications Biology (March 2022); (5):191
    Research Article | Arising from postdoctoral training
  8. Simintiras CA, Sánchez JM, McDonald M, O’Callaghan E, Aburima A & Lonergan P
    Conceptus metabolomic profiling reveals stage-specific phenotypes leading up to pregnancy recognition in cattle
    Biology of Reproduction (May 2021); 104(5):1022-1033
    Research Article | Arising from postdoctoral training
  9. Simintiras CA, Dhakal P, Ranjit C, Fitzgerald HC, Balboula AZ & Spencer TE
    Capture and metabolomic analysis of the human epithelial organoid secretome
    Proceedings of the National Academy of Sciences (March 2021); 118(15):e2026804118
    Research Article | Arising from postdoctoral training
  10. Rodríguez-Alonso B, Maillo V, Acuña OS, López-Úbeda R, Torrecillas A, Simintiras CA, Sturmey RG, Avilés M, Lonergan P & Rizos D
    Pregnancy and oviduct anatomy influence the protein, amino acid, and carbohydrate composition of bovine oviduct fluid
    International Journal of Molecular Science (February 2020); 21(5): 1681
    Research Article | Arising from Ph.D. studies
  11. Sanchez JM, Simintiras CA & Lonergan P
    Aspects of embryo-maternal communication in establishment of pregnancy in cattle
    Animal Reproduction (August 2019); 16(3):376-385
    Review Article | Arising from postdoctoral training
  12. Simintiras CA, Sánchez JM, McDonald M & Lonergan P
    The biochemistry surrounding bovine conceptus elongation
    Biology of Reproduction (June 2019); 101(2):328-337
    Research Article | Arising from postdoctoral training
  13. Simintiras CA, Sánchez JM, McDonald M & Lonergan P
    The influence of progesterone on bovine uterine fluid energy, nucleotide, vitamin, cofactor, peptide, and xenobiotic composition during the conceptus elongation-initiation window
    Scientific Reports (May 2019); 9:7716
    Research Article | Arising from postdoctoral training

  14. Simintiras CA, Sánchez JM, McDonald M & Lonergan P
    Progesterone alters the bovine uterine fluid lipidome during the period of elongation
    Reproduction (January 2019); 157(4): 399-411
    Research Article | Arising from postdoctoral training
  15. Simintiras CA, Sánchez JM, McDonald M, Martins T, Binelli M & Lonergan P
    Biochemical characterisation of progesterone-induced alterations in bovine uterine fluid amino acid and carbohydrate composition during the conceptus elongation window
    Biology of Reproduction (November 2018); 100(3): 672-685
    Research Article | Arising from postdoctoral training
  16. Leane S, Herlihy M, Curran F, Kenneally J, Forde N, Simintiras CA, Sturmey RG, Lucy MC, Lonergan P & Butler ST
    The effect of exogenous glucose infusion on early embryonic development in lactating dairy cows
    Journal of Dairy Science (September 2018); 101(12):11285-11296
    Research Article | Arising from Ph.D. studies
  17. Fernandez-Fuertes B, Rodriguez-Alonso BA, Sanchez JM, Simintiras CA, Lonergan P & Rizos D
    Looking at the big picture: Understanding how the oviduct’s dialogue with gametes and the embryo shapes reproductive success
    Animal Reproduction (September 2018); 15(1):751-764
    Review Article | Arising from postdoctoral training
  18. Garcia-Herreros M, Simintiras CA & Lonergan P
    Temporally differential protein expression of glycolytic and glycogenic enzymes during in vitro pre-implantation bovine embryo development
    Reproduction, Fertility and Development (March 2018); 30(9):1245-1252
    Research Article (not open access) | Arising from postdoctoral training
  19. Forde N & Simintiras CA
    Embryo-uterine interactions during implantation: Potential sites of interference by environmental toxins
    In: McQueen CA, Comprehensive Toxicology 3rd Edition (January 2018) 4:390-413. Oxford: Elsevier Ltd. ISBN: 987-0-08-100601-6
    Book chapter (not open access) | Arising from postdoctoral training
  20. Bauersachs S, Simintiras CA, Sturmey RG, Krebs S, Bick J, Blum H, Wolf E, Lonergan P & Forde N
    Effect of metabolic status on conceptus-maternal interactions on Day 19 in dairy cattle: II. Effects on the endometrial transcriptome
    Biology of Reproduction (October 2017); 97(3):413-425
    Research Article | Arising from Ph.D. studies
  21. Forde N, Simintiras CA, Sturmey RG, Graf A, Wolf E, Blum H & Lonergan P
    Effect of lactation on conceptus-maternal interactions at the initiation of implantation in cattle: I. Effects on conceptus transcriptome
    Biology of Reproduction (September 2017); 97(6):798-809
    Research Article | Arising from Ph.D. studies
  22. Simintiras CA & Sturmey RG
    Genistein crosses the bioartificial oviduct and alters secretion composition
    Reproductive Toxicology (August 2017); 71:63-70
    Research Article | Arising from Ph.D. studies
  23. Simintiras CA & Forde N
    Understanding the uterine environment in early pregnancy in cattle: How have the ‘-omics’ enhanced our knowledge?
    Animal Reproduction (August 2017); 14(3):538-546
    Review Article | Arising from Ph.D. studies
  24. Simintiras CA, Fröhlich T, Sathyapalan T, Arnold G, Ulbrich S, Leese HJ & Sturmey RG.
    Modeling aspects of oviduct fluid formation in vitro
    Reproduction (January 2017); 153(1):23-33
    Research Article | Arising from Ph.D. studies
  25. Forde N, Maillo V, O’Agora P, Simintiras CA, Sturmey R, Ealy A, Spencer T, Gutierrez-Adan A, Rizos D & Lonergan P
    Sexually dimorphic gene expression in male and female bovine conceptuses at the initiation of implantation
    Biology of Reproduction (October 2016); 95(2):1-8
    Research Article | Arising from Ph.D. studies
  26. Forde N, Simintiras CA, Sturmey RG, Mamo S, Spencer TE, Bazer FW & Lonergan P
    Amino acids in the uterine luminal fluid reflect the temporal changes in transporter expression in the endometrium and conceptus during early pregnancy in cattle
    Plos One (June 2014); 9(6):e100010
    Research Article | Arising from Ph.D. studies