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11 September 2013 Uterine Natural Killer Cells Severely Decrease in Number at Gestation Day 6 in Mice
Akiko Takashima, Fumio Ishikawa, Taku Kuwabara, Yuriko Tanaka, Toshihiko Kinoshita, Motohiro Ito, Terutaka Kakiuchi
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Abstract

Uterine natural killer (uNK) cells remarkably increase in number after implantation. NK cells or their precursors migrate from the blood stream and contribute to the increase. However, the contribution of uNK cells present in the virgin uterus has been unclear. To elucidate this issue, we examined uterine leukocyte subsets during pregnancy in BALB/c mice. The most dramatic change was the massive decrease in CD11b or Gr-1 cells at Gestation Day (gd) 6. Uterine NK cells at gd 0 were CD11b, and severely decreased at gd 6. The decrease was selective, and the proportion of other cells examined did not decrease. Uterine NK cells almost recovered at gd 12. These cells at gd 12 were more mature and/or activated in terms of expression of CD11b, CD27, CD127, or B220 than at gd 0. CXCL12 expression was observed on uterine cells at gd 0 or 6, but not at gd 12, whereas CXCR4 was detected on uNK cells at gds 0 and 12. A much higher expression of IL-15 in uterine cells or interferon-gamma expression in uNK cells was observed at gd 12 than at gd 0. IL-15 receptor alpha chain was detected on uNK cells at gd 12, but not at gd 0. Taken together, these findings were consistent with our interpretation that uNK cells present at gd 0 do not contribute to the increase of uNK cell number after implantation, and NK cells or their precursors migrate into the uterus, mature, and produce interferon-gamma to support pregnancy.

Akiko Takashima, Fumio Ishikawa, Taku Kuwabara, Yuriko Tanaka, Toshihiko Kinoshita, Motohiro Ito, and Terutaka Kakiuchi "Uterine Natural Killer Cells Severely Decrease in Number at Gestation Day 6 in Mice," Biology of Reproduction 89(4), (11 September 2013). https://doi.org/10.1095/biolreprod.113.109009
Received: 27 February 2013; Accepted: 1 August 2013; Published: 11 September 2013
KEYWORDS
guinea pigs
implantation
mice
natural killer cell
pregnancy
rodents (rats
uterus
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