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Micro-RNAs in Human Placenta: Tiny Molecules, Immense Power
by
Xu, Qiang
, Xu, Shouying
, Li, Jiayong
, Jin, Meiyuan
, Tang, Chao
in
Binding sites
/ Biosynthesis
/ Endometrium
/ Enzymes
/ Fetus
/ Fetuses
/ Gene expression
/ Genes
/ Genetic aspects
/ Genetic transcription
/ gestational disorder
/ Growth
/ human pregnancy
/ Infants (Premature)
/ Liu, Timothy
/ Mediation
/ micro-RNA
/ MicroRNA
/ MicroRNAs
/ Placenta
/ Pregnancy
/ Proteins
/ Review
/ RNA polymerase
/ Seeds
/ Target recognition
/ trophoblast
2022
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Micro-RNAs in Human Placenta: Tiny Molecules, Immense Power
by
Xu, Qiang
, Xu, Shouying
, Li, Jiayong
, Jin, Meiyuan
, Tang, Chao
in
Binding sites
/ Biosynthesis
/ Endometrium
/ Enzymes
/ Fetus
/ Fetuses
/ Gene expression
/ Genes
/ Genetic aspects
/ Genetic transcription
/ gestational disorder
/ Growth
/ human pregnancy
/ Infants (Premature)
/ Liu, Timothy
/ Mediation
/ micro-RNA
/ MicroRNA
/ MicroRNAs
/ Placenta
/ Pregnancy
/ Proteins
/ Review
/ RNA polymerase
/ Seeds
/ Target recognition
/ trophoblast
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Micro-RNAs in Human Placenta: Tiny Molecules, Immense Power
by
Xu, Qiang
, Xu, Shouying
, Li, Jiayong
, Jin, Meiyuan
, Tang, Chao
in
Binding sites
/ Biosynthesis
/ Endometrium
/ Enzymes
/ Fetus
/ Fetuses
/ Gene expression
/ Genes
/ Genetic aspects
/ Genetic transcription
/ gestational disorder
/ Growth
/ human pregnancy
/ Infants (Premature)
/ Liu, Timothy
/ Mediation
/ micro-RNA
/ MicroRNA
/ MicroRNAs
/ Placenta
/ Pregnancy
/ Proteins
/ Review
/ RNA polymerase
/ Seeds
/ Target recognition
/ trophoblast
2022
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Micro-RNAs in Human Placenta: Tiny Molecules, Immense Power
Journal Article
Micro-RNAs in Human Placenta: Tiny Molecules, Immense Power
2022
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Overview
Micro-RNAs (miRNAs) are short non-coding single-stranded RNAs that modulate the expression of various target genes after transcription. The expression and distribution of kinds of miRNAs have been characterized in human placenta during different gestational stages. The identified miRNAs are recognized as key mediators in the regulation of placental development and in the maintenance of human pregnancy. Aberrant expression of miRNAs is associated with compromised pregnancies in humans, and dysregulation of those miRNAs contributes to the occurrence and development of related diseases during pregnancy, such as pre-eclampsia (PE), fetal growth restriction (FGR), gestational diabetes mellitus (GDM), recurrent miscarriage, preterm birth (PTB) and small-for-gestational-age (SGA). Thus, having a better understanding of the expression and functions of miRNAs in human placenta during pregnancy and thereby developing novel drugs targeting the miRNAs could be a potentially promising method in the prevention and treatment of relevant diseases in future. Here, we summarize the current knowledge of the expression pattern and function regulation of miRNAs in human placental development and related diseases.
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