Matches in SemOpenAlex for { <https://semopenalex.org/work/W2890956752> ?p ?o ?g. }
- W2890956752 endingPage "31" @default.
- W2890956752 startingPage "24" @default.
- W2890956752 abstract "Autism spectrum disorder (ASD) is a highly heterogeneous neurodevelopmental disorder characterized by impaired social interactions, restrictive interests, and repetitive stereotypic behaviors. Among the various mechanisms underlying the pathogenesis of ASD, dysfunctions of dopaminergic signaling and mitochondria have been hypothesized to explain the core symptoms of children with ASD. However, only a few studies focusing on the pathological association between dopaminergic neurons (DN) and mitochondria in ASD have been performed using patient-derived stem cells and in vitro differentiated neurons. Stem cells from human exfoliated deciduous teeth (SHED) are neural crest-derived mesenchymal stem cells present in the dental pulp of exfoliated deciduous teeth; these cells can differentiate into dopaminergic neurons (DN) in vitro. This study aimed to investigate the pathological association between development of DN and mitochondria in ASD by using SHED as a disease- or patient-specific cellular model. The SHED obtained from three children with ASD and three typically developing children were differentiated into DN, and the neurobiology of these cells was examined. The DN derived from children with ASD showed impaired neurite outgrowth and branching, associated with decreased mitochondrial membrane potential, ATP production, number of mitochondria within the neurites, amount of mitochondria per cell area and intracellular calcium level. In addition, impaired neurite outgrowth and branching of ASD-derived DN were not improved by brain-derived neurotrophic factor (BDNF), suggesting impairment of the BDNF signaling pathway in ASD. These results imply that intracerebral dopamine production may have decreased in these children. The earliest age at which deciduous teeth spontaneously exfoliate in humans, and SHED can be noninvasively collected, is approximately 6 years. Our results suggest that in vitro analysis of SHED-derived DN obtained from children with ASD provides neurobiological information that may be useful in determining treatment strategies in the early stages of ASD." @default.
- W2890956752 created "2018-09-27" @default.
- W2890956752 creator A5002951014 @default.
- W2890956752 creator A5003879012 @default.
- W2890956752 creator A5007332542 @default.
- W2890956752 creator A5021746832 @default.
- W2890956752 creator A5035208722 @default.
- W2890956752 creator A5035241895 @default.
- W2890956752 creator A5043041975 @default.
- W2890956752 creator A5044958701 @default.
- W2890956752 creator A5046162726 @default.
- W2890956752 creator A5046829600 @default.
- W2890956752 creator A5058963825 @default.
- W2890956752 creator A5075338712 @default.
- W2890956752 date "2018-12-01" @default.
- W2890956752 modified "2023-10-16" @default.
- W2890956752 title "Impaired neurite development associated with mitochondrial dysfunction in dopaminergic neurons differentiated from exfoliated deciduous tooth-derived pulp stem cells of children with autism spectrum disorder" @default.
- W2890956752 cites W1973558071 @default.
- W2890956752 cites W1981862471 @default.
- W2890956752 cites W1993671911 @default.
- W2890956752 cites W2005149292 @default.
- W2890956752 cites W2027377352 @default.
- W2890956752 cites W2035613497 @default.
- W2890956752 cites W2037207505 @default.
- W2890956752 cites W2055572268 @default.
- W2890956752 cites W2059362512 @default.
- W2890956752 cites W2064566763 @default.
- W2890956752 cites W2065680191 @default.
- W2890956752 cites W2068602040 @default.
- W2890956752 cites W2085018135 @default.
- W2890956752 cites W2107947404 @default.
- W2890956752 cites W2108008524 @default.
- W2890956752 cites W2115437022 @default.
- W2890956752 cites W2116864112 @default.
- W2890956752 cites W2130157722 @default.
- W2890956752 cites W2139780621 @default.
- W2890956752 cites W2149090315 @default.
- W2890956752 cites W2151423922 @default.
- W2890956752 cites W2155492595 @default.
- W2890956752 cites W2316811866 @default.
- W2890956752 cites W2342501741 @default.
- W2890956752 cites W2344270848 @default.
- W2890956752 cites W2543908235 @default.
- W2890956752 cites W2601002904 @default.
- W2890956752 cites W2618850053 @default.
- W2890956752 cites W2735547998 @default.
- W2890956752 cites W2739669908 @default.
- W2890956752 cites W2745968167 @default.
- W2890956752 cites W2770408890 @default.
- W2890956752 cites W4211110504 @default.
- W2890956752 doi "https://doi.org/10.1016/j.bbrep.2018.09.004" @default.
- W2890956752 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6153399" @default.
- W2890956752 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30258988" @default.
- W2890956752 hasPublicationYear "2018" @default.
- W2890956752 type Work @default.
- W2890956752 sameAs 2890956752 @default.
- W2890956752 citedByCount "18" @default.
- W2890956752 countsByYear W28909567522020 @default.
- W2890956752 countsByYear W28909567522021 @default.
- W2890956752 countsByYear W28909567522022 @default.
- W2890956752 countsByYear W28909567522023 @default.
- W2890956752 crossrefType "journal-article" @default.
- W2890956752 hasAuthorship W2890956752A5002951014 @default.
- W2890956752 hasAuthorship W2890956752A5003879012 @default.
- W2890956752 hasAuthorship W2890956752A5007332542 @default.
- W2890956752 hasAuthorship W2890956752A5021746832 @default.
- W2890956752 hasAuthorship W2890956752A5035208722 @default.
- W2890956752 hasAuthorship W2890956752A5035241895 @default.
- W2890956752 hasAuthorship W2890956752A5043041975 @default.
- W2890956752 hasAuthorship W2890956752A5044958701 @default.
- W2890956752 hasAuthorship W2890956752A5046162726 @default.
- W2890956752 hasAuthorship W2890956752A5046829600 @default.
- W2890956752 hasAuthorship W2890956752A5058963825 @default.
- W2890956752 hasAuthorship W2890956752A5075338712 @default.
- W2890956752 hasBestOaLocation W28909567521 @default.
- W2890956752 hasConcept C113246987 @default.
- W2890956752 hasConcept C118552586 @default.
- W2890956752 hasConcept C136834591 @default.
- W2890956752 hasConcept C137183658 @default.
- W2890956752 hasConcept C15744967 @default.
- W2890956752 hasConcept C160539049 @default.
- W2890956752 hasConcept C169760540 @default.
- W2890956752 hasConcept C170493617 @default.
- W2890956752 hasConcept C202751555 @default.
- W2890956752 hasConcept C205778803 @default.
- W2890956752 hasConcept C2777400515 @default.
- W2890956752 hasConcept C28328180 @default.
- W2890956752 hasConcept C513476851 @default.
- W2890956752 hasConcept C54355233 @default.
- W2890956752 hasConcept C86803240 @default.
- W2890956752 hasConcept C95444343 @default.
- W2890956752 hasConceptScore W2890956752C113246987 @default.
- W2890956752 hasConceptScore W2890956752C118552586 @default.
- W2890956752 hasConceptScore W2890956752C136834591 @default.
- W2890956752 hasConceptScore W2890956752C137183658 @default.
- W2890956752 hasConceptScore W2890956752C15744967 @default.
- W2890956752 hasConceptScore W2890956752C160539049 @default.
- W2890956752 hasConceptScore W2890956752C169760540 @default.