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1 IBAT addresses this need by facilitating the production
4 roperitoneal and epididymal white tissue and IBAT, but skeletal muscle 2-DG uptake under the same con
5 CRFR2 revealed significantly elevated basal IBAT thermogenesis and prolonged adrenergic responsivity
6 pinephrine content of the interscapular BAT (IBAT) and the number of sympathetic ganglion cells proje
7 d receive SS inflow from, interscapular BAT (IBAT) in these separate studies suggesting SNS-SS feedba
12 tor-gamma-coactivator1-alpha (PGC-1alpha) in IBAT and increased UCP1protein expression; however, pero
13 Expression of GLUT4 was more abundant in IBAT and retroperitoneal fat from glucose- and fructose-
14 se or fructose, leading to SNS activation in IBAT and retroperitoneal fat and enhanced GLUT4 expressi
15 essential role in mediating the increase in IBAT thermogenesis induced by activation of central mela
17 roup of rats, the neural circuit involved in IBAT control, including the location of sympathetic preg
20 summary, complex II-energized respiration in IBAT mitochondria is tempered by complex I-derived OAA i
22 by contrast, decreased [(3)H]NE turnover in IBAT, but increased it in epididymal, though not retrope
24 NH2; 0.024nmol) both significantly increased IBAT temperature (T(IBAT)) and pretreatment with the MC4
32 published clinical and pre-clinical data on IBAT inhibitors and offer providers guidance on their pr
33 y c-Fos immunoreactivity (IR), we prelabeled IBAT DRG innervating neurons by injecting the retrograde
36 locked the MC4-R agonist-induced increased T(IBAT) in conscious, freely-moving Siberian hamsters.
37 icle-treated hamsters initially maintained T(IBAT), but the ability of the former waned after 2 h bei
41 nability of MSG-treated animals to sustain T(IBAT) in the cold is not due to any obvious MSG-induced
42 significantly increased IBAT temperature (T(IBAT)) and pretreatment with the MC4R antagonist, HS024
44 g membrane transporter function by targeting IBAT/ASBT and NTCP, there is an array of potentially add
45 ear magnetic resonance (NMR) and showed that IBAT produces a stable and sustainable RM over time.
47 nover in interscapular brown adipose tissue (IBAT) and retroperitoneal fat increased in response to g
48 evels in interscapular brown adipose tissue (IBAT) from F344 x BN rats ages 3, 12, 18, 24, and 30 mon
49 ivity of interscapular brown adipose tissue (IBAT) in response to physiologic stimuli, such as cold e
50 ation in interscapular brown adipose tissue (IBAT) mitochondria, wherein DeltaPsi is intrinsically lo
51 lyses of interscapular brown adipose tissue (IBAT) thermogenesis by thermal signature analysis and th
52 n affect interscapular brown adipose tissue (IBAT) thermogenesis via its sympathetic nervous system (
57 s of central sympathetic outflow circuits to IBAT, but appears to be extrinsic to the tissue neverthe
58 th components of the CNS outflow circuits to IBAT, with the latter implicated in BAT thermogenesis th
59 ons of MC4-R mRNA and SNS outflow neurons to IBAT that has not been previously reported to be involve
60 co-localization with SNS outflow neurons to IBAT, the subzona incerta (subZI) to test whether IBAT t
63 d-evoked increases in sympathetic outflow to IBAT, the present study compared central nervous system
64 a on the sympathetic nerve activity (SNA) to IBAT evoked by lateral ventricular injection of the mela
68 ibitor of human ileal bile acid transporter (IBAT), in patients with primary biliary cholangitis with
69 he terminal ileum and proximal renal tubule (IBAT/ASBT inhibitors) and basolateral (sinusoidal) BA up
72 was detected in COS cells cotransfected with IBAT and a chimeric molecule having the carboxyl-termina
73 acid efflux in COS cells cotransfected with IBAT and CEA, efflux of [3H]taurocholate was detected in