Analysis of information sources in references of the Wikipedia article "Choline" in English language version.
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Choline is a critical nutrient for development during gestation and early life, particularly for the formation and maturation of the nervous system. (...) gestational choline insufficiency is strongly associated with neural tube defects, notably mirroring the developmental pathologies observed in folate insufficiency. (...) additionally, been linked to non-neurological developmental abnormalities including cleft lip, hypospadias, heart abnormalities and congenital diaphragmatic hernia. (...) Choline intake was recently discovered to be a potential modifier of dementia risk in AD progression. (...) highlights the importance of the cholinergic neurotransmission in memory, learning, and, ultimately, in the development of AD pathology. (...) there is impressive plasticity in satisfying choline requirements at the organismal level as well. While a completely choline-free diet eventually results in NAFLD and muscle damage, diets that do not meet the NIH adequate intake are rarely associated with clinical symptoms in otherwise healthy adults, suggesting the human body is highly capable of adapting to reduced choline availability.
In this Opinion, the Panel considers dietary choline including choline compounds (e.g. glycerophosphocholine, phosphocholine, phosphatidylcholine, sphingomyelin).
{{cite book}}: CS1 maint: multiple names: authors list (link){{cite book}}: CS1 maint: multiple names: authors list (link){{cite book}}: CS1 maint: multiple names: authors list (link)Choline is a critical nutrient for development during gestation and early life, particularly for the formation and maturation of the nervous system. (...) gestational choline insufficiency is strongly associated with neural tube defects, notably mirroring the developmental pathologies observed in folate insufficiency. (...) additionally, been linked to non-neurological developmental abnormalities including cleft lip, hypospadias, heart abnormalities and congenital diaphragmatic hernia. (...) Choline intake was recently discovered to be a potential modifier of dementia risk in AD progression. (...) highlights the importance of the cholinergic neurotransmission in memory, learning, and, ultimately, in the development of AD pathology. (...) there is impressive plasticity in satisfying choline requirements at the organismal level as well. While a completely choline-free diet eventually results in NAFLD and muscle damage, diets that do not meet the NIH adequate intake are rarely associated with clinical symptoms in otherwise healthy adults, suggesting the human body is highly capable of adapting to reduced choline availability.
{{cite book}}: CS1 maint: multiple names: authors list (link)Choline is a critical nutrient for development during gestation and early life, particularly for the formation and maturation of the nervous system. (...) gestational choline insufficiency is strongly associated with neural tube defects, notably mirroring the developmental pathologies observed in folate insufficiency. (...) additionally, been linked to non-neurological developmental abnormalities including cleft lip, hypospadias, heart abnormalities and congenital diaphragmatic hernia. (...) Choline intake was recently discovered to be a potential modifier of dementia risk in AD progression. (...) highlights the importance of the cholinergic neurotransmission in memory, learning, and, ultimately, in the development of AD pathology. (...) there is impressive plasticity in satisfying choline requirements at the organismal level as well. While a completely choline-free diet eventually results in NAFLD and muscle damage, diets that do not meet the NIH adequate intake are rarely associated with clinical symptoms in otherwise healthy adults, suggesting the human body is highly capable of adapting to reduced choline availability.