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Dive into the research topics where Michiyo Ishida is active.

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Featured researches published by Michiyo Ishida.


Hypertension Research | 2015

Elevated vasoinhibin derived from prolactin and cathepsin D activities in sera of patients with preeclampsia.

Ryojun Nakajima; Michiyo Ishida; Chizuko Kamiya; Jun Yoshimatsu; Mika Suzuki; Asuka Hirota; Tomoaki Ikeda; Toshio Harigaya

Elevated vasoinhibin derived from prolactin and cathepsin D activities in sera of patients with preeclampsia


Journal of Molecular Endocrinology | 2014

Vasoinhibins, N-terminal mouse prolactin fragments, participate in mammary gland involution

Michiyo Ishida; Midori Maehara; Tsukasa Watanabe; Yu Yanagisawa; Yukiko Takata; Ryojun Nakajima; Mika Suzuki; Toshio Harigaya

Vasoinhibins are a family of peptides that act on endothelial cells to suppress angiogenesis and promote apoptosis-mediated vascular regression. Vasoinhibins include the N-terminal fragments from prolactin (PRL), GH, and placental lactogen. One of the vasoinhibins, the N-terminal PRL fragment of 16 kDa, is generated by the lysosomal representative protease cathepsin D (Cath D). Because the normal growth and involution of the mammary gland (MG) are profoundly affected by the expansion and regression of blood vessels and also because PRL stimulates the growth and differentiation of MG, we proposed that intact PRL produced during lactation contributes to MG angiogenesis and increased blood flow, whereas during involution, the N-terminal PRL fragment would have proapoptotic effects on mammary epithelial cells (MECs). Therefore, we investigated the production of the N-terminal PRL fragment and its direct effect on the MG. Mouse PRL (mPRL) was proteolytically cleaved by Cath D between amino acids 148 and 149. N-terminal PRL fragment and Cath D expression increased during MG involution. Furthermore, incubation of MG fragments and MCF7 with recombinant 16 kDa mPRL revealed a proapoptotic effect in MECs. Ectopic mPRL in MECs was cleaved to 16 kDa PRL by Cath D in the MG lysosomal fraction. The majority of PRL derived from pituitary gland was cleaved to 16 kDa PRL in culture medium. Therefore, N-terminal PRL fragment increases during the involution period, has a proapoptotic effect on MECs, and is mainly generated by secreted Cath D in the extracellular space of MG.


Journal of Reproduction and Development | 2004

Cathepsin Gene Expression in Mouse Placenta during the Latter Half of Pregnancy

Michiyo Ishida; Kota Ono; Sachiko Taguchi; Satoshi Ohashi; Jyun-ichiro Naito; Kotaro Horiguchi; Toshio Harigaya


Journal of Veterinary Medical Science | 1999

Linear SRY transcript in equine testis.

Telhisa Hasegawa; Michiyo Ishida; Toshio Harigaya; Fumio Sato; Nobushige Ishida; Harutaka Mukoyama


Journal of Reproduction and Development | 2010

Analysis of prolactin gene expression and cleaved prolactin variants in the mouse testis and spermatozoa.

Michiyo Ishida; Makoto Yoshida; Shinya Fukuta; Kenji Uemura; Mieko Iijima; Kotaro Horiguchi; Toshio Harigaya


Journal of Endocrinology | 2004

Prolactin gene expression in mouse spleen helper T cells

Kotaro Horiguchi; S Yagi; Kota Ono; Y Nishiura; M Tanaka; Michiyo Ishida; Toshio Harigaya


Journal of Reproduction and Development | 2007

Expression Profiling of Mouse Placental Lactogen II and Its Correlative Genes Using a cDNA Microarray Analysis in the Developmental Mouse Placenta

Michiyo Ishida; Satoshi Ohashi; Yusuke Kizaki; Jyun-ichiro Naito; Kotaro Horiguchi; Toshio Harigaya


Journal of Reproduction and Development | 2007

Estrogen Regulates the Serum Level of Phosphorylated Prolactin in Mice

Kotaro Horiguchi; Shinya Fukuta; Makoto Yoshida; Tatsuya Kosugi; Jun-ichiro Naito; Michiyo Ishida; Toshio Harigaya


Journal of Reproduction and Development | 2007

The Effect of Estrogen on Phosphorylation of Prolactin in the Mouse Pituitary Gland

Kotaro Horiguchi; Jun-ichiro Naito; Michiyo Ishida; Toshio Harigaya


Journal of Equine Science | 1998

Molecular Cloning, Nucleotide Sequence and Tissue Distribution of Equine Testicular 3.BETA.-Hydroxysteroid Dehydrogenase/.DELTA.5-.DELTA.4 Isomerase Messenger Ribonucleic Acid.

Teruhisa Hasegawa; Michiyo Ishida; Toshio Harigaya; Nobushige Ishida; Harutaka Mukoyama

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