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Vitamin B12 and omega-3 fatty acids together regulate lipid metabolism in Wistar rats.

Amrita Khaire, Richa Rathod, Anvita Kale, Sadhana Joshi
Other Prostaglandins, leukotrienes, and essential fatty acids 2015 40 उद्धरण
PubMed DOI
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Study Design

अध्ययन प्रकार
Other
जनसंख्या
pregnant women
अवधि
13.0 weeks
हस्तक्षेप
Vitamin B12 and omega-3 fatty acids together regulate lipid metabolism in Wistar rats. None
तुलनित्र
None
प्राथमिक परिणाम
None
प्रभाव की दिशा
Mixed
पूर्वाग्रह का जोखिम
Unclear

Abstract

Our recent study indicates that maternal vitamin B12 and omega-3 fatty acid status influence plasma and erythrocyte fatty acid profile in dams. The present study examines the effects of prenatal and postnatal vitamin B12 and omega-3 fatty acid status on lipid metabolism in the offspring. Pregnant dams were divided into five groups: Control; Vitamin B12 deficient (BD); Vitamin B12 supplemented (BS); Vitamin B12 deficient group supplemented with omega-3 fatty acids (BDO); Vitamin B12 supplemented group with omega-3 fatty acids (BSO). The offspring were continued on the same diets till 3 month of age. Vitamin B12 deficiency increased cholesterol levels (p<0.01) but reduced docosahexaenoic acid (DHA) (p<0.05), liver mRNA levels of acetyl CoA carboxylase-1 (ACC-1) (p<0.05) and carnitine palmitoyltransferase-1 (CPT-1) (p<0.01) in the offspring. Omega-3 fatty acid supplementation to this group normalized cholesterol but not mRNA levels of ACC-1 and CPT-1. Vitamin B12 supplementation normalized the levels cholesterol to that of control but increased plasma triglyceride (p<0.01) and reduced liver mRNA levels of adiponectin, ACC-1, and CPT-1 (p<0.01 for all). Supplementation of both vitamin B12 and omega-3 fatty acid normalized triglyceride and mRNA levels of all the above genes. Prenatal and postnatal vitamin B12 and omega-3 fatty acids together play a crucial role in regulating the genes involved in lipid metabolism in adult offspring.

संक्षेप में

Prenatal and postnatal vitamin B12 and omega-3 fatty acids together play a crucial role in regulating the genes involved in lipid metabolism in adult offspring.

Used In Evidence Reviews

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