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1 is that ERs play a pivotal role in mediating lithogenic actions of estrogen and to dissect the potent
2 xpression of ERalpha but not ERbeta, and the lithogenic actions of estrogen can be blocked completely
6 ent evidence that emitted CO(2) derives from lithogenic and biogenic sources within the catchment and
7 In most cholesterol gallstone-prone humans, lithogenic bile carries large quantities of hepatic chol
9 ution between mixed micelles and vesicles in lithogenic bile, both ultracentrifugation and gel chroma
11 uth Atlantic Ocean to demonstrate that it is lithogenic colloid production that fuels sedimentary iro
12 2 weeks on either a standard mouse chow or a lithogenic diet (containing 1% cholesterol, 0.5% cholic
14 wildtype (WT) mice a cholesterol/cholic acid lithogenic diet (LD) for up to 56 days and documented bi
15 d in C57L/J mice whether the components of a lithogenic diet (LD; 1.0% cholesterol, 0.5% cholic acid
16 e gallstone-susceptible C57L mice were fed a lithogenic diet and concomitantly administered with ezet
17 and CGD-sensitive C57L mice were placed on a lithogenic diet and then analyzed for CGD at the biochem
18 before (day 0, on chow) and at 4 weeks on a lithogenic diet containing 1% cholesterol and 0.5% choli
19 paticus and Helicobacter rodentium and fed a lithogenic diet developed cholesterol gallstones at 80%
20 Naturally resistant (Nramp1(+/+)) mice fed a lithogenic diet developed cholesterol gallstones that su
26 cter spp or left uninfected and fed either a lithogenic diet or standard mouse chow for 8 and 18 week
27 CG5(-/-)/G8(-/-), and ABCG8 (-/-) mice fed a lithogenic diet or varying amounts of cholesterol, treat
28 Analysis of mice on either the chow or the lithogenic diet revealed that CCK-1R(-/-) animals had la
34 ompared with Apob(48/48) and wild-type mice, lithogenic diet-fed Apob(100/100) mice displayed signifi
37 or liver X receptor (LXR) sensitized mice to lithogenic diet-induced gallbladder cholesterol crystall
42 acid pool size in PXR-/- mice that received lithogenic diets was associated with reduced expression
46 epresent fundamental links between long-term lithogenic element cycling (= weathering) and rapid turn
48 pe Stage (MIS) 3 of the last glacial period, lithogenic fluxes were twice that of colder MIS2 and MIS
49 American sources dominating up to 88% of the lithogenic fraction (mainly Patagonia, which provided up
50 -Pb isotope ratios of the continent-derived (lithogenic) fraction in deep-sea core TN057-6 from the s
51 various heterogeneously distributed pools of lithogenic, free organic, occluded, adsorbed, and precip
53 cean productivity in a warming climate where lithogenic iron inputs from deserts, glaciers, and river
54 cean sediment porewaters and account for the lithogenic isotope signature of dissolved Fe (d(56)Fe =
59 the appearance of cholesterol crystals from lithogenic model bile, an effect that was both time and
60 gia (Southern Ocean) ingest large amounts of lithogenic particles and contain 3-fold higher iron conc
62 ly thought to continental erosion (providing lithogenic particles to the ocean), particle transport w
63 opic abundances of silicon from biogenic and lithogenic particulate matter and from dissolved silicon
64 sion: The current study has revealed a novel lithogenic role of LXR as well as a functional interplay
65 augmenting formation of deoxycholate, a pro-lithogenic secondary bile salt, and increasing the fract
66 table littoral benthic diatom assemblage and lithogenic sediments with 'interglacial' characteristics
68 genes involved in renal tubular handling of lithogenic substrates and of inhibitors of crystallizati
69 genes involved in renal tubular handling of lithogenic substrates, such as calcium, oxalate, and pho
71 om glacial ice melt with solute sources from lithogenic weathering and a minor seawater component.
72 tope model experiments demonstrate that only lithogenic weathering in both oxic and nitrogenous zones