The neural crest gives rise to numerous derivatives including adrenergic and cholinergic neurons, supportive cells of the nervous system, and melanocytes. In tissue culture, neural crest cells explanted from both cranial and trunk regions were found to differentiate into adrenergic neuroblasts or into pigmented cells when grown in medium containing 10% chick embryo extract. When the embryo extract concentration was lowered to 2%, no catecholamine-containing cells (as assayed by formaldehyde-induced fluorescence) were detected, although pigment cells were observed. These results suggest the presence of a factor(s) in embryo extract that promotes or supports adrenergic differentiation. To examine the possible tissue sources of this factor(s), neural tube, notochord, or somite cells were used to condition medium containing 2% embryo extract. When neural crest cells were grown in medium conditioned by neural tube cells, adrenergic neuroblasts were observed in all cultures. However, somite- and notochord conditioned medium did not support adrenergic differentiation. In addition, medium supplemented with extracts derived from central nervous system components did support adrenergic expression, whereas medium supplemented with embryo extract from which the neural tissue was removed did not. Direct contact with neural tube cell ghost membranes was unable to substitute for high embryo extract concentrations or for neural tube-conditioned medium. These results suggest that the neural tube makes a diffusible factor(s) that will support adrenergic differentiation of neural crest cells.
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http://dx.doi.org/10.1523/JNEUROSCI.05-12-03302.1985 | DOI Listing |
Nutrients
January 2025
Department of Maternal-Fetal Biology, National Research Institute for Child Health and Development, Tokyo 157-8535, Japan.
Background/objectives: The DNA methylation of neonatal cord blood can be used to accurately estimate gestational age. This is known as epigenetic gestational age. The greater the difference between epigenetic and chronological gestational age, the greater the association with an inappropriate perinatal fetal environment and development.
View Article and Find Full Text PDFAnn Clin Lab Sci
November 2024
Department of Pathology, Dongguan Maternal and Child Health Care Hospital, Dongguan, Guangdong, China.
Objective: To investigate the effects of the exosomal miR-494 targeting phospholipinositol 3-kinase (PI3K)/protein kinase B (AKT)/rapamycin target protein (mTOR) pathway on proliferation, migration, and invasion of trophoblast cells.
Methods: Decidual macrophages were randomly divided into control group, mimic NC group, miR-494 mimic group, inhibitor NC group, and miR-494 inhibitor group. Each group was transfected with corresponding miR-494 mimic NC, miR-494 mimic, and inhibitor NC and miR-494 inhibitor, while the cells of control group were only replaced with fresh medium.
BMC Vet Res
January 2025
Materials Synthesis Laboratory, Carbon Tech Industrial Group, Carbon Tech, Tehran, Iran.
Background: Strongyle nematodes pose a major challenge in veterinary parasitology, causing significant economic losses in livestock due to resistance to conventional treatments. Current anthelmintics, like Ivermectin, often encounter resistance issues. This study aims to address these gaps by synthesizing Carbon Quantum Dots (CQDs) and Copper-Doped CQDs (Cu@CQDs) using glucose extract, and evaluating their nematicidal properties against strongyles in vitro.
View Article and Find Full Text PDFInt J Gynaecol Obstet
January 2025
Scientific Centre of Obstetrics, Gynecology and Perinatology, Almaty, Republic of Kazakhstan.
Objective: Despite numerous studies on the causes of recurrent pregnancy loss (RPL), nearly half of cases remain unidentified, which determines the research relevance. This study aims to investigate microchromosomal variations in the fetal genome associated with the development of idiopathic RPL.
Methods: The research was supported by the Centre for Molecular Medicine and the Research Institute of Obstetrics, Gynecology and Perinatology and conducted over a period of 2 years.
ACS Omega
January 2025
School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto 14440-903, Brazil.
The demand for food production has been growing exponentially due to the increase in the global population. Innovative approaches to enhance agricultural productivity have been explored, including the new applications of nanoparticles in agriculture. The nanoparticle application in agriculture can generate environmental and human health risks since nanoparticles can contaminate the soil and inevitably reach groundwater, potentially causing toxicity in aquatic organisms.
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