TY - JOUR
T1 - Comprehensive Search for Genes Involved in Thalidomide Teratogenicity Using Early Differentiation Models of Human Induced Pluripotent Stem Cells
T2 - Potential Applications in Reproductive and Developmental Toxicity Testing
AU - Kato, Yu
AU - Inaba, Takeshi
AU - Shinke, Koudai
AU - Hiramatsu, Noriko
AU - Horie, Tetsuhiro
AU - Sakamoto, Takuya
AU - Hata, Yuko
AU - Sugihara, Eiji
AU - Takimoto, Tetsuya
AU - Nagai, Noriaki
AU - Ishigaki, Yasuhito
AU - Kojima, Hajime
AU - Nagano, Osamu
AU - Yamamoto, Naoki
AU - Saya, Hideyuki
N1 - Publisher Copyright:
© 2025 by the authors.
PY - 2025/2
Y1 - 2025/2
N2 - Developmental toxicity testing is essential to identify substances that may harm embryonic development. This study aimed to establish a protocol for evaluating developmental toxicity using human induced pluripotent stem cells (iPSCs) by analyzing cellular activity and gene expression changes. Two ICH S5(R3) positive substances, valproic acid (VPA), which is a substance previously detected as positive by other test methods, and thalidomide (Thalido), were examined during early trichoderm differentiation without fetal bovine serum. RNA-seq analysis identified seven candidate genes, including TP63, associated with altered expression following exposure to VPA or Thalido. These genes were implicated in pathways related to tissue development, cell growth, and molecular interactions. While the assay effectively detected VPA and Thalido, its limitations include testing only soluble substances and focusing on early differentiation stages. Nevertheless, the protocol demonstrates potential for the classification and evaluation of emerging modality drugs based on physical properties such as solubility, polarity, and pH. Integration with AI analysis may enhance its capacity to uncover genetic variations and evaluate previously uncharacterized substances. This study provides a foundation for alternative developmental toxicity testing methods, with further refinements in the culture method expected to improve accuracy and applicability in regulatory toxicology.
AB - Developmental toxicity testing is essential to identify substances that may harm embryonic development. This study aimed to establish a protocol for evaluating developmental toxicity using human induced pluripotent stem cells (iPSCs) by analyzing cellular activity and gene expression changes. Two ICH S5(R3) positive substances, valproic acid (VPA), which is a substance previously detected as positive by other test methods, and thalidomide (Thalido), were examined during early trichoderm differentiation without fetal bovine serum. RNA-seq analysis identified seven candidate genes, including TP63, associated with altered expression following exposure to VPA or Thalido. These genes were implicated in pathways related to tissue development, cell growth, and molecular interactions. While the assay effectively detected VPA and Thalido, its limitations include testing only soluble substances and focusing on early differentiation stages. Nevertheless, the protocol demonstrates potential for the classification and evaluation of emerging modality drugs based on physical properties such as solubility, polarity, and pH. Integration with AI analysis may enhance its capacity to uncover genetic variations and evaluate previously uncharacterized substances. This study provides a foundation for alternative developmental toxicity testing methods, with further refinements in the culture method expected to improve accuracy and applicability in regulatory toxicology.
KW - ICH S5(R3)
KW - RNA-seq analysis
KW - alternative testing methods
KW - candidate genes
KW - developmental toxicity
KW - iPSCs
KW - thalidomide
KW - valproic acid
UR - https://www.scopus.com/pages/publications/85217785451
UR - https://www.scopus.com/pages/publications/85217785451#tab=citedBy
U2 - 10.3390/cells14030215
DO - 10.3390/cells14030215
M3 - Article
C2 - 39937006
AN - SCOPUS:85217785451
SN - 2073-4409
VL - 14
JO - Cells
JF - Cells
IS - 3
M1 - 215
ER -