Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Antenatal steroids elicited neurodegenerative-associated transcriptional changes in the hippocampus of preterm fetal sheep independent of lung maturation
by
Ramasamy, Adaikalavan
, Wei, Qin
, Choolani, Mahesh
, Agnihotri, Biswas
, Takahashi, Yuki
, Saito, Yuya
, Mattar, Citra
, Xiawen, Liu
, Kemp, Matthew W.
, Oguz, Gokce
, Evans, Mark I.
, Usuda, Haruo
, Jobe, Alan H.
, Ikeda, Hideyuki
, Takahashi, Tsukasa
, Kumagai, Yusaku
, Saito, Masatoshi
, Fee, Erin L.
, Amin, Zubair
, Illanes, Sebastián E.
, Carter, Sean W. D.
in
Acetic acid
/ Alzheimer's disease
/ Animals
/ Arachidonic acid
/ Betamethasone - administration & dosage
/ Biological effects
/ Biomedicine
/ Brain damage
/ Brain injury
/ Children
/ Degeneration
/ Dexamethasone
/ Dexamethasone - pharmacology
/ Diseases
/ Dosage
/ Dosage and administration
/ Exposure
/ Female
/ Fetus
/ Fetus - drug effects
/ Fetuses
/ Gas exchange
/ Genetic aspects
/ Health aspects
/ Hippocampus
/ Hippocampus (Brain)
/ Hippocampus - drug effects
/ Hippocampus - metabolism
/ Intervals
/ Ketamine
/ Lamb
/ Lung - drug effects
/ Lung - metabolism
/ Lung diseases
/ Lungs
/ Maturation
/ Medicine
/ Medicine & Public Health
/ Necropsy
/ Nervous system
/ Neurodegenerative diseases
/ Neurodevelopmental disorders
/ Ostomy
/ Pharmacokinetics
/ Physiological aspects
/ Plasma
/ Pregnancy
/ Premature labor
/ Prenatal exposure
/ Preterm
/ Respiratory diseases
/ Respiratory function
/ Sheep
/ Statistical analysis
/ Steroid hormones
/ Steroids
/ Steroids (Drugs)
/ Transcriptomes
/ Transcriptomics
/ Ventilation
/ Ventilators
/ Veterinary drugs
2024
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Antenatal steroids elicited neurodegenerative-associated transcriptional changes in the hippocampus of preterm fetal sheep independent of lung maturation
by
Ramasamy, Adaikalavan
, Wei, Qin
, Choolani, Mahesh
, Agnihotri, Biswas
, Takahashi, Yuki
, Saito, Yuya
, Mattar, Citra
, Xiawen, Liu
, Kemp, Matthew W.
, Oguz, Gokce
, Evans, Mark I.
, Usuda, Haruo
, Jobe, Alan H.
, Ikeda, Hideyuki
, Takahashi, Tsukasa
, Kumagai, Yusaku
, Saito, Masatoshi
, Fee, Erin L.
, Amin, Zubair
, Illanes, Sebastián E.
, Carter, Sean W. D.
in
Acetic acid
/ Alzheimer's disease
/ Animals
/ Arachidonic acid
/ Betamethasone - administration & dosage
/ Biological effects
/ Biomedicine
/ Brain damage
/ Brain injury
/ Children
/ Degeneration
/ Dexamethasone
/ Dexamethasone - pharmacology
/ Diseases
/ Dosage
/ Dosage and administration
/ Exposure
/ Female
/ Fetus
/ Fetus - drug effects
/ Fetuses
/ Gas exchange
/ Genetic aspects
/ Health aspects
/ Hippocampus
/ Hippocampus (Brain)
/ Hippocampus - drug effects
/ Hippocampus - metabolism
/ Intervals
/ Ketamine
/ Lamb
/ Lung - drug effects
/ Lung - metabolism
/ Lung diseases
/ Lungs
/ Maturation
/ Medicine
/ Medicine & Public Health
/ Necropsy
/ Nervous system
/ Neurodegenerative diseases
/ Neurodevelopmental disorders
/ Ostomy
/ Pharmacokinetics
/ Physiological aspects
/ Plasma
/ Pregnancy
/ Premature labor
/ Prenatal exposure
/ Preterm
/ Respiratory diseases
/ Respiratory function
/ Sheep
/ Statistical analysis
/ Steroid hormones
/ Steroids
/ Steroids (Drugs)
/ Transcriptomes
/ Transcriptomics
/ Ventilation
/ Ventilators
/ Veterinary drugs
2024
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Antenatal steroids elicited neurodegenerative-associated transcriptional changes in the hippocampus of preterm fetal sheep independent of lung maturation
by
Ramasamy, Adaikalavan
, Wei, Qin
, Choolani, Mahesh
, Agnihotri, Biswas
, Takahashi, Yuki
, Saito, Yuya
, Mattar, Citra
, Xiawen, Liu
, Kemp, Matthew W.
, Oguz, Gokce
, Evans, Mark I.
, Usuda, Haruo
, Jobe, Alan H.
, Ikeda, Hideyuki
, Takahashi, Tsukasa
, Kumagai, Yusaku
, Saito, Masatoshi
, Fee, Erin L.
, Amin, Zubair
, Illanes, Sebastián E.
, Carter, Sean W. D.
in
Acetic acid
/ Alzheimer's disease
/ Animals
/ Arachidonic acid
/ Betamethasone - administration & dosage
/ Biological effects
/ Biomedicine
/ Brain damage
/ Brain injury
/ Children
/ Degeneration
/ Dexamethasone
/ Dexamethasone - pharmacology
/ Diseases
/ Dosage
/ Dosage and administration
/ Exposure
/ Female
/ Fetus
/ Fetus - drug effects
/ Fetuses
/ Gas exchange
/ Genetic aspects
/ Health aspects
/ Hippocampus
/ Hippocampus (Brain)
/ Hippocampus - drug effects
/ Hippocampus - metabolism
/ Intervals
/ Ketamine
/ Lamb
/ Lung - drug effects
/ Lung - metabolism
/ Lung diseases
/ Lungs
/ Maturation
/ Medicine
/ Medicine & Public Health
/ Necropsy
/ Nervous system
/ Neurodegenerative diseases
/ Neurodevelopmental disorders
/ Ostomy
/ Pharmacokinetics
/ Physiological aspects
/ Plasma
/ Pregnancy
/ Premature labor
/ Prenatal exposure
/ Preterm
/ Respiratory diseases
/ Respiratory function
/ Sheep
/ Statistical analysis
/ Steroid hormones
/ Steroids
/ Steroids (Drugs)
/ Transcriptomes
/ Transcriptomics
/ Ventilation
/ Ventilators
/ Veterinary drugs
2024
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Antenatal steroids elicited neurodegenerative-associated transcriptional changes in the hippocampus of preterm fetal sheep independent of lung maturation
Journal Article
Antenatal steroids elicited neurodegenerative-associated transcriptional changes in the hippocampus of preterm fetal sheep independent of lung maturation
2024
Request Book From Autostore
and Choose the Collection Method
Overview
Background
Antenatal steroid therapy for fetal lung maturation is routinely administered to women at risk of preterm delivery. There is strong evidence to demonstrate benefit from antenatal steroids in terms of survival and respiratory disease, notably in infants delivered at or below 32 weeks’ gestation. However, dosing remains unoptimized and lung benefits are highly variable. Current treatment regimens generate high-concentration, pulsatile fetal steroid exposures now associated with increased risk of childhood neurodevelopmental diseases. We hypothesized that damage-associated changes in the fetal hippocampal transcriptome would be independent of preterm lung function.
Methods
Date-mated ewes carrying a single fetus at 122 ± 2dGA (term = 150dGA) were randomized into 4 groups: (i) Saline Control Group, 4×2ml maternal saline intramuscular(IM) injections at 12hr intervals (
n
= 11); or (ii) Dex High Group, 2×12mg maternal IM dexamethasone phosphate injections at 12hr intervals followed by 2×2ml IM saline injections at 12hr intervals (
n
= 12; representing a clinical regimen used in Singapore); or (iii) Dex Low Group, 4×1.5mg maternal IM dexamethasone phosphate injections 12hr intervals (
n
= 12); or (iv) Beta-Acetate Group, 1×0.125mg/kg maternal IM betamethasone acetate injection followed by 3×2ml IM sterile normal saline injections 12hr intervals (
n
= 8). Lambs were surgically delivered 48hr after first maternal injection at 122–125dGA, ventilated for 30min to establish lung function, and euthanised for necropsy and tissue collection.
Results
Preterm lambs from the Dex Low and Beta-Acetate Groups had statistically and biologically significant lung function improvements (measured by gas exchange, lung compliance). Compared to the Saline Control Group, hippocampal transcriptomic data identified 879 differentially significant expressed genes (at least 1.5-fold change and FDR < 5%) in the steroid-treated groups. Pulsatile dexamethasone-only exposed groups (Dex High and Dex Low) had three common positively enriched differentially expressed pathways related in part to neurodegeneration (“Prion Disease”, “Alzheimer’s Disease”, “Arachidonic Acid metabolism”). Adverse changes were independent of respiratory function during ventilation.
Conclusions
Our data suggests that exposure to antenatal steroid therapy is an independent cause of damage- associated transcriptomic changes in the brain of preterm, fetal sheep. These data highlight an urgent need for careful reconsideration and balancing of how antenatal steroids are used, both for patient selection and dosing regimens.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
This website uses cookies to ensure you get the best experience on our website.