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421por Strehlow, Matthew C, Newberry, Jennifer A, Bills, Corey B, Min, Hyeyoun (Elise), Evensen, Ann E, Leeman, Lawrence, Pirrotta, Elizabeth A, Rao, G V Ramana, Mahadevan, S V“…SETTING: Five Indian states using a centralised EMS agency that transported 3.1 million pregnant women in 2014. PARTICIPANTS: This study enrolled a convenience sample of 1684 women in third trimester of pregnancy calling with a ‘pregnancy-related’ problem for free-of-charge ambulance transport. …”
Publicado 2016
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422“…To evaluate BCSFB-mediated p-TA transport, [(3)H]p-TA uptake by isolated rat choroid plexus and conditionally immortalized rat choroid plexus epithelial cells, TR-CSFB3 cells, was performed. …”
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423por Ghartey-Kwansah, George, Li, Zhongguang, Feng, Rui, Wang, Liyang, Zhou, Xin, Chen, Frederic Z., Xu, Meng Meng, Jones, Odell, Mu, Yulian, Chen, Shawn, Bryant, Joseph, Isaacs, Williams B., Ma, Jianjie, Xu, Xuehong“…The dFKBP59, CG4735/Shutdown, CG1847, and CG5482 have a Tetratricopeptide receptor domain at the C-terminus, which regulates transcription and protein transportation. (3) FKBP51 and FKBP52 (dFKBP59), along with Cyclophilin 40 and protein phosphatase 5, function as Hsp90 immunophilin co-chaperones within steroid receptor-Hsp90 heterocomplexes. …”
Publicado 2018
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424por Singh, Rahul, Sahu, Anurag, Singh, Kulwant, Prasad, Ravi Shankar, Pandey, Nityanand, Singh, Ramit Chandra“…Of 50 neurosurgical team members (neurosurgeons, nursing, and ground staff) interviewed, 90% of them had the fear of contacting the COVID-19 disease, fear of well-being of family and children, and difficulty in transport. Three out of 13 neurosurgeons (23.1%) agreed on change in practice based on what they learned from virtual teaching and webinars and only two of them (15.4%) accepted improvement of skills based on virtual learning. …”
Publicado 2021
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425“…Two specific NhhbZIP genes responding to severe dehydration and their corresponding network genes were mainly involved in macromolecule modification, cellular catabolic process, and transmembrane transport. Three specific NhhbZIP genes responding to rehydration and their co-expression gene networks were mainly involved in the regulation of the cell cycle process and defense response. …”
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426por Sitefane, Gilda G., Banerjee, Joya, Mohan, Diwakar, Lee, Connie S., Ricca, Jim, Betron, Myra L., Cuco, Rosa Marlene Manjate“…Multivariable logit regression models tested the association of institutional delivery with couples’ communication and four elements of BPCR both with and without male partners: 1) saving money, 2) arranging transport, 3) choosing a birth companion, and 4) choosing a delivery site; controlling for partners’ attendance in antenatal care and social and demographic determinants (education, wealth, urban/rural location, and province). …”
Publicado 2020
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427por Graham, Hamish R., Kamuntu, Yewande, Miller, Jasmine, Barrett, Anna, Kunihira, Blasio, Engol, Santa, Kabunga, Lorraine, Lam, Felix, Olaro, Charles, Ajilong, Harriet, Kitutu, Freddy Eric“…Barriers to referral included caregiver belief it was unnecessary (42/51, 82%), cost (8/51, 16%), and distance or lack of transport (3/51, 6%). Hypoxaemia is common among acutely unwell children under five years of age presenting to Ugandan primary care facilities. …”
Publicado 2022
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428por Guo, Yan, Cui, Yuqing, Li, Yangyang, Jin, Xiaoying, Wang, Dandan, Lei, Mengxia, Chen, Fengzhi, Liu, Yali, Xu, Jinwen, Yao, Guanyu, Zeng, Guangchun, Chen, Xuesong“…The specific mechanism of cytoplasmic YAP1‐mediated endosomal sorting complexes required for transport III (ESCRT‐III) assembly was studied by co‐immunoprecipitation, immunofluorescence staining, and WB analysis. …”
Publicado 2023
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429por Huang, Xiao, Anderle, Pascale, Hostettler, Lu, Baumann, Marc U., Surbek, Daniel V., Ontsouka, Edgar C., Albrecht, Christiane“…Among 46 initially targeted transporters, three significantly regulated genes were further investigated based on the severity and the disease specificity for IUGR and PE. …”
Publicado 2018
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430por Kalache, Alexandre“…Thus, the project is based on qualitative research asking older people themselves to identify the issues, concerns and recommendations for improving the environment in which they live around eight main domains: 1. outdoor spaces and buildings; 2. transportation; 3. housing; 4. social participation; 5. respect and social inclusion; 6. civic participation and employment; 7. communication and information; and 8. community support and health services. …”
Publicado 2009
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431por del Campo Gigena, Marcia, Soares de Lima, Juan Manuel, Brito, Gustavo, Manteca, Xavier, Hernández, Pilar, Montossi, Fabio“…According to our results, with pasture-based animals, without fasting on the farm and after a short time of transportation (3.5 h), a longer preslaughter resting time (15 vs. 3 h) is desirable from the animal welfare perspective. …”
Publicado 2021
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432por Yin-Huan, Wu, Ching-Ting, Yang, Chen-Chen, Chou, Man-Lin, Chang, Ming-Yu, Hsieh, Yeh-Tzu, Kuo“…To promote cycling to the station to transfer MRTs is tantamount to encouraging people to take more public transport. 3. Planning a city bicycle rental system: To provide a public rental system to expand the convenience, visibility and the community of users launched a new type of public transport - public bicycle rental system (YouBike). …”
Publicado 2019
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433“…Abbreviations: ACSL4, acyl-CoA synthetase long chain family member 4; AIFM1/AIF, apoptosis inducing factor mitochondria associated 1; AIFM2, apoptosis inducing factor mitochondria associated 2; ALDH, aldehyde dehydrogenase; ALOX, arachidonate lipoxygenase; AMPK, AMP-activated protein kinase; APAF1, apoptotic peptidase activating factor 1; ATF4, activating transcription factor 4; ATG, autophagy related; ATG13, autophagy related 13; ATG5, autophagy related 5; ATOX1, antioxidant 1 copper chaperone; ATP, adenosine triphosphate; ATP7A, ATPase copper transporting alpha; ATP7B, ATPase copper transporting beta; BAK1, BCL2 antagonist/killer 1; BAX, BCL2 associated X apoptosis regulator; BBC3/PUMA, BCL2 binding component 3; BCS, bathocuproinedisulfonic acid; BECN1, beclin 1; BID, BH3 interacting domain death agonist; BRCA1, BRCA1 DNA repair associated; BSO, buthionine sulphoximine; CASP1, caspase 1; CASP3, caspase 3; CASP4/CASP11, caspase 4; CASP5, caspase 5; CASP8, caspase 8; CASP9, caspase 9; CCS, copper chaperone for superoxide dismutase; CD274/PD-L1, CD274 molecule; CDH2, cadherin 2; CDKN1A/p21, cyclin dependent kinase inhibitor 1A; CDKN1B/p27, cyclin-dependent kinase inhibitor 1B; COMMD10, COMM domain containing 10; CoQ10, coenzyme Q 10; CoQ10H2, reduced coenzyme Q 10; COX11, cytochrome c oxidase copper chaperone COX11; COX17, cytochrome c oxidase copper chaperone COX17; CP, ceruloplasmin; CYCS, cytochrome c, somatic; DBH, dopamine beta-hydroxylase; DDIT3/CHOP, DNA damage inducible transcript 3; DLAT, dihydrolipoamide S-acetyltransferase; DTC, diethyldithiocarbamate; EIF2A, eukaryotic translation initiation factor 2A; EIF2AK3/PERK, eukaryotic translation initiation factor 2 alpha kinase 3; ER, endoplasmic reticulum; ESCRT-III, endosomal sorting complex required for transport-III; ETC, electron transport chain; FABP3, fatty acid binding protein 3; FABP7, fatty acid binding protein 7; FADD, Fas associated via death domain; FAS, Fas cell surface death receptor; FASL, Fas ligand; FDX1, ferredoxin 1; GNAQ/11, G protein subunit alpha q/11; GPX4, glutathione peroxidase 4; GSDMD, gasdermin D; GSH, glutathione; HDAC, histone deacetylase; HIF1, hypoxia inducible factor 1; HIF1A, hypoxia inducible factor 1 subunit alpha; HMGB1, high mobility group box 1; IL1B, interleukin 1 beta; IL17, interleukin 17; KRAS, KRAS proto-oncogene, GTPase; LOX, lysyl oxidase; LPCAT3, lysophosphatidylcholine acyltransferase 3; MAP1LC3, microtubule associated protein 1 light chain 3; MAP2K1, mitogen-activated protein kinase kinase 1; MAP2K2, mitogen-activated protein kinase kinase 2; MAPK, mitogen-activated protein kinases; MAPK14/p38, mitogen-activated protein kinase 14; MEMO1, mediator of cell motility 1; MT-CO1/COX1, mitochondrially encoded cytochrome c oxidase I; MT-CO2/COX2, mitochondrially encoded cytochrome c oxidase II; MTOR, mechanistic target of rapamycin kinase; MTs, metallothioneins; NAC, N-acetylcysteine; NFKB/NF-Κb, nuclear factor kappa B; NLRP3, NLR family pyrin domain containing 3; NPLOC4/NPL4, NPL4 homolog ubiquitin recognition factor; PDE3B, phosphodiesterase 3B; PDK1, phosphoinositide dependent protein kinase 1; PHD, prolyl-4-hydroxylase domain; PIK3C3/VPS34, phosphatidylinositol 3-kinase catalytic subunit type 3; PMAIP1/NOXA, phorbol-12-myristate-13-acetate-induced protein 1; POR, cytochrome P450 oxidoreductase; PUFA-PL, PUFA of phospholipids; PUFAs, polyunsaturated fatty acids; ROS, reactive oxygen species; SCO1, synthesis of cytochrome C oxidase 1; SCO2, synthesis of cytochrome C oxidase 2; SLC7A11, solute carrier family 7 member 11; SLC11A2/DMT1, solute carrier family 11 member 2; SLC31A1/CTR1, solute carrier family 31 member 1; SLC47A1, solute carrier family 47 member 1; SOD1, superoxide dismutase; SP1, Sp1 transcription factor; SQSTM1/p62, sequestosome 1; STEAP4, STEAP4 metalloreductase; TAX1BP1, Tax1 binding protein 1; TEPA, tetraethylenepentamine; TFEB, transcription factor EB; TM, tetrathiomolybdate; TP53/p53, tumor protein p53; TXNRD1, thioredoxin reductase 1; UCHL5, ubiquitin C-terminal hydrolase L5; ULK1, Unc-51 like autophagy activating kinase 1; ULK1, unc-51 like autophagy activating kinase 1; ULK2, unc-51 like autophagy activating kinase 2; USP14, ubiquitin specific peptidase 14; VEGF, vascular endothelial gro wth factor; XIAP, X-linked inhibitor of apoptosis…”
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