Development of a robust method to derive human trophoblast stem cells from late-gestation placentas and its application to preeclampsia
成果类型:
Article
署名作者:
Oike, Akira; Kobayashi, Eri H.; Yamamoto, Yasuhiro; Hamada, Hirotaka; Takahashi, Sota; Shimizu, Takanori; Kitamura, Akane; Sekiya, Asato; Kobayashi, Norio; Shibata, Shun; Endo, Shun; Sato, Tetsuya; Kubota, Naoto; Kikutake, Chie; Suyama, Mikita; Arima, Takahiro; Okae, Hiroaki
署名单位:
Kumamoto University; Tohoku University; Tohoku University; Tohoku University; University of Michigan System; University of Michigan; Saitama Medical University; Kyushu University; University of California System; University of California Riverside; University of California System; University of California Riverside; Tohoku University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2537884123
发表日期:
2026-06-16
页码:
e2537884123
关键词:
human placenta
trophoblast stem cells
pregnancy complications
preeclampsia
EARLY-ONSET PREECLAMPSIA
senescence
expression
protein
C19MC
roles
tumor
SALL4
摘要:
Trophoblasts are multifunctional cells in the placenta and essential for normal pregnancy. Although trophoblast dysfunction can cause pregnancy complications, the underlying mechanisms remain unclear, and effective treatments are limited, partly because of the scarcity of appropriate experimental models. We previously reported the derivation of human trophoblast stem cells (hTSCs) from 1st-trimester placentas and blastocysts, providing a powerful tool to investigate human trophoblast development and function. However, the difficulty in deriving hTSCs from late-gestation placentas has limited their application to pregnancy complication research. Here we report a robust technique to derive hTSCs from term placentas based on the transient expression of a p53 dominant negative mutant, SALL4, and shRNAs against cyclin-dependent kinase inhibitors. Using this technique, we derived and characterized hTSCs from placentas obtained from patients with early-onset preeclampsia (PE). PE-derived hTSCs exhibit impaired trophoblast invasion and reduced placental growth factor secretion, consistent with trophoblast abnormalities reported in PE. Therefore, this study provides a technological basis for investigating pregnancy complications associated with trophoblast dysfunction.
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