Chemicals with Transgenerational Effects on Disease or Function
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entries
No.
Chemical Name
GO Biological Process
Effect
Specific BP
GO
Species
Description
PMID
391
octanoate
embryo development
increase
blastocyst hatching
GO:0001835
Mus musculus
Octanoate supplementationin in embryo culture media allowed a successful rate of blastocyst hatching.
23226596
392
octanoic acid
embryo development
decrease
embryo development
GO:0009790
Mus musculus
Octanoic acid, a standard additive to human protein supplements used in IVF, can have long-term negative effects on embryonic and fetal development.
26342329
393
octanoic acid
embryo development
decrease
blastocyst development
GO:0001824
Mus musculus
Octanoic acid reduces blastocyst development in a mouse embryo assay at concentrations that are clinically relevant
Variability in protein quality used for embryo culture: embryotoxicity of the stabilizer octanoic acid. Fertil Steril. 2013;100:544
394
oleic acid
embryo development
decrease
embryo development
GO:0009790
Mus musculus
?PA exerts a negative effect on mouse two-cell progression to the blastocyst stage, whereas oleic acid co-treatment reverses that negative effect.
35038315
395
oleic acid
embryo development
increase
blastocyst formation
GO:0001825
Mus musculus
Exogenous oleic and palmitic acids promoted blastocyst formation and hatching when added to 8-cell embryos.
32542540
396
organic pollutants
embryo development
relate
DNA methylation involved in embryo development
GO:0043045
Homo sapiens
DNA methylation changes in the placenta were significantly associated with maternal plasma Persistent organic pollutants (POPs) concentration.
32653021
397
Ornithine
embryo development
related
embryo development
GO:0009790
Mus musculus
Metabolite dynamics during mouse embryo development (Zygote, 2-cell, 4-cell, 8-cell, Morula, Blastocyst) (Metabolomics data: ultra-high-performance liquid chromatography coupled with hybrid quadrupole time-of-flight mass spectrometry (UHPLC
36167681
398
Oxaloacetate
embryo development
related
embryo development
GO:0009790
Mus musculus
Metabolite dynamics during mouse embryo development (Zygote, 2-cell, 4-cell, 8-cell, Morula, Blastocyst) (Metabolomics data: ultra-high-performance liquid chromatography coupled with hybrid quadrupole time-of-flight mass spectrometry (UHPLC
36167681
399
Oxytocin
embryo development
increase
growth involved in heart morphogenesis
GO:0003241
Mus musculus
Oxytocin induces differentiation of P19 embryonic stem cells to cardiomyocytes
15023550
400
Palmitic acid
embryo development
related
embryo development
GO:0009790
Mus musculus
Metabolite dynamics during mouse embryo development (Zygote, 2-cell, 4-cell, 8-cell, Morula, Blastocyst) (Metabolomics data: ultra-high-performance liquid chromatography coupled with hybrid quadrupole time-of-flight mass spectrometry (UHPLC
36167681
401
palmitic acids
embryo development
decrease
embryo development
GO:0009790
Mus musculus
Palmitic acid and PUFAs including linoleic acid inhibited the embryo development. The inhibitory effect of PUFAs was attenuated by adding antioxidants into the media, while the inhibitory effect of palmitic acid was not.
7633171
402
palmitic acids
embryo development
decrease
embryo development
GO:0009790
Mus musculus
the number of inner cell mass (ICM) cells in mouse blastocysts was reduced, apoptosis of trophoblast stem cells increased, and proliferation decreased following addition of palmitate.
21653893
403
palmitic acids
embryo development
decrease
embryo development
GO:0009790
Mus musculus
fetuses developing from palmitic acid-treated blastocysts were growth restricted but the offspring eventually outgrew the offspring from control blastocysts
21653893
404
palmitic acids
embryo development
decrease
embryo development
GO:0009790
Mus musculus
palmitic acids exerts a negative effect on mouse two-cell progression to the blastocyst stage, whereas OA co-treatment reverses that negative effect.
35038315
405
palmitic acids
embryo development
increase
blastocyst hatching
GO:0001835
Mus musculus
Exogenous oleic and palmitic acids promoted blastocyst formation and hatching when added to 8-cell embryos.
32542540
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