Search Results - "Hovey, R. C"

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  1. 1

    Neoplastic transformation of porcine mammary epithelial cells in vitro and tumor formation in vivo by Rowson-Hodel, A R, Manjarin, R, Trott, J F, Cardiff, R D, Borowsky, A D, Hovey, R C

    Published in BMC cancer (31-07-2015)
    “…The mammary glands of pigs share many functional and morphological similarities with the breasts of humans, raising the potential of their utility for research…”
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  2. 2

    TRIENNIAL LACTATION SYMPOSIUM: Prolactin: The multifaceted potentiator of mammary growth and function by Trott, J. F, Schennink, A, Petrie, W. K, Manjarin, R, VanKlompenberg, M. K, Hovey, R. C

    Published in Journal of animal science (01-05-2012)
    “…At face value there are clear and established roles for prolactin (PRL) in the regulation of mammary gland growth, lactogenesis, and galactopoiesis. These…”
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  3. 3

    Technical note: A vacuum-assisted approach for biopsying the mammary glands of various species by VanKlompenberg, M K, McMicking, H F, Hovey, R C

    Published in Journal of dairy science (01-01-2012)
    “…Biopsy of the mammary glands is a technique used in both research and clinical diagnosis. A vacuum-assisted approach that enables the collection of tissue from…”
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  4. 4

    Progesterone induces side-branching of the ductal epithelium in the mammary glands of peripubertal mice by Atwood, CS, Hovey, RC, Glover, JP, Chepko, G, Ginsburg, E, Robison, WG, Vonderhaar, BK

    Published in Journal of endocrinology (01-10-2000)
    “…Development of the functional secretory epithelium in the mammary gland of the female mouse requires the elongation of the anlage through the mammary fat pad…”
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  5. 5

    Alternative splicing to exon 11 of human prolactin receptor gene results in multiple isoforms including a secreted prolactin-binding protein by Trott, JF, Hovey, RC, Koduri, S, Vonderhaar, BK

    Published in Journal of molecular endocrinology (01-02-2003)
    “…Endocrine and autocrine prolactin (PRL) exerts effects on normal breast and breast cancer cells, and high serum PRL is a poor prognostic factor for colorectal…”
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  6. 6

    Progesterone enhances branching morphogenesis in the mouse mammary gland by increased expression of Msx2 by SATOH, K, HOVEY, R. C, MALEWSKI, T, WARRI, A, GOLDHAR, A. S, GINSBURG, E, SAITO, K, LYDON, J. P, VONDERHAAR, B. K

    Published in Oncogene (29-11-2007)
    “…Branching morphogenesis within the peripubertal mouse mammary gland is directed by progesterone (P). A role for the homeobox-containing transcription factor,…”
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  7. 7

    Modeling variability of the lactation curves of cows in automated milking systems by Masía, F M, Lyons, N A, Piccardi, M, Balzarini, M, Hovey, R C, Garcia, S C

    Published in Journal of dairy science (01-09-2020)
    “…Historically, cow selection criteria were developed for conventional milking systems that have regular milking intervals (MI). However, in automatic milking…”
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  8. 8

    Developmental and Hormonal Signals Dramatically Alter the Localization and Abundance of Insulin Receptor Substrate Proteins in the Mammary Gland by Lee, A. V, Zhang, P, Ivanova, M, Bonnette, S, Oesterreich, S, Rosen, J. M, Grimm, S, Hovey, R. C, Vonderhaar, B. K, Kahn, C. R, Torres, D, George, J, Mohsin, S, Allred, D. C, Hadsell, D. L

    Published in Endocrinology (Philadelphia) (01-06-2003)
    “…Insulin receptor substrates (IRS) are central integrators of hormone, cytokine, and growth factor signaling. IRS proteins can be phosphorylated by a number of…”
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  9. 9

    Using domperidone to induce and sustain hyperprolactinemia in late-pregnant gilts by Farmer, C., Mathews, A.T., Hovey, R.C.

    Published in Domestic animal endocrinology (01-01-2019)
    “…Prolactin controls mammary development as well as the lactogenic and galactopoietic processes in sows and increasing prolactin during gestation can augment…”
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  10. 10

    Regulation of mammary gland growth and morphogenesis by the mammary fat pad: a species comparison by Hovey, R C, McFadden, T B, Akers, R M

    “…The growth and morphogenesis of mammary parenchyma varies substantially between species and is regulated by an array of systemic and local factors. Central to…”
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  11. 11

    Effects of sustained hyperprolactinemia in late gestation on mammary development of gilts by Caron, A., Palin, M.F., Hovey, R.C., Cohen, J., Laforest, J.P., Farmer, C.

    Published in Domestic animal endocrinology (01-07-2020)
    “…The objective of this project was to determine the effects of sustained hyperprolactinemia for 7 or 20 d on mammary development in late-pregnant gilts. On day…”
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  12. 12

    TRIENNIAL LACTATION SYMPOSIUM/BOLFA: Dietary regulation of allometric ductal growth in the mammary glands by Berryhill, G E, Trott, J F, Derpinghaus, A L, Hovey, R C

    Published in Journal of animal science (01-12-2017)
    “…Although mammary gland growth and development in females is a lifelong process, it builds on isometric and allometric phases of mammary growth to establish a…”
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  13. 13

    Late gestational hyperprolactinemia accelerates mammary epithelial cell differentiation that leads to increased milk yield by Vanklompenberg, M K, Manjarin, R, Trott, J F, McMicking, H F, Hovey, R C

    Published in Journal of animal science (01-03-2013)
    “…The growth rate of piglets is limited by sow milk yield, which reflects the extent of epithelial growth and differentiation in the mammary glands (MG) during…”
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  14. 14

    Metoclopramide induces preparturient, low-level hyperprolactinemia to increase milk production in primiparous sows by Mathews, A.T., Banks, C.M., Trott, J.F., Sainz, R.D., Farmer, C., Pendergast, I.I., Hovey, R.C.

    Published in Domestic animal endocrinology (01-01-2021)
    “…Inadequate milk production by sows often limits the growth of piglets. A successful lactation requires prolactin (PRL)-induced differentiation of the alveolar…”
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  15. 15

    Regulation and localization of vascular endothelial growth factor within the mammary glands during the transition from late gestation to lactation by VanKlompenberg, M.K., Manjarín, R., Donovan, C.E., Trott, J.F., Hovey, R.C.

    Published in Domestic animal endocrinology (01-01-2016)
    “…The vascular network within the developing mammary gland (MG) grows in concert with the epithelium to prepare for lactation, although the mechanisms…”
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  16. 16

    Effect of time of cutting and maceration on nutrient flow, microbial protein synthesis, and digestibility in dual-flow continuous culture by Kokko, C, Soder, K J, Brito, A F, Hovey, R C, Berthiaume, R

    Published in Journal of animal science (01-04-2013)
    “…Maceration and evening-cutting are 2 forage management techniques that have independently improved forage quality and nutrient utilization in ruminants, but…”
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  17. 17

    Ovariectomy in young prepubertal dairy heifers causes complete suppression of mammary progesterone receptors by Velayudhan, B.T., Huderson, B.P., Ellis, S.E., Parsons, C.L., Hovey, R.C., Rowson, A.R., Akers, R.M.

    Published in Domestic animal endocrinology (01-04-2015)
    “…Mammary growth and development depends on ovarian steroids and particularly interaction of estrogen and progesterone with their intracellular receptors. The…”
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  18. 18

    Preparation of an epithelium-free mammary fat pad and subsequent mammogenesis in ewes by Hovey, R. C, Auldist, D. E, Mackenzie, D. D, McFadden, T. B

    Published in Journal of animal science (01-08-2000)
    “…The objective of this study was to develop a surgical procedure for the preparation of an epithelium-free mammary fat pad (cleared mammary fat pad; CFP) in…”
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  19. 19

    Effect of time of cutting and maceration on nutrient flow, microbial protein synthesis, and digestibility in dual-flow continuous culture1 by Kokko, C., Soder, K. J., Brito, A. F., Hovey, R. C., Berthiaume, R.

    Published in Journal of animal science (01-04-2013)
    “…Maceration and evening-cutting are 2 forage management techniques that have independently improved forage quality and nutrient utilization in ruminants, but…”
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    Journal Article
  20. 20

    Late gestational hyperprolactinemia accelerates mammary epithelial cell differentiation that leads to increased milk yield1 by VanKlompenberg, M. K., Manjarin, R., Trott, J. F., McMicking, H. F., Hovey, R. C.

    Published in Journal of animal science (01-03-2013)
    “…The growth rate of piglets is limited by sow milk yield, which reflects the extent of epithelial growth and differentiation in the mammary glands (MG) during…”
    Get full text
    Journal Article