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1 of the rare earth elements (REE), cerium and lanthanum.
2 transient receptor potential channel blocker lanthanum.
3 ylphosphinic acid, and modulated by zinc and lanthanum.
4 or permeability to the electron-dense tracer lanthanum.
5 mannitol was inhibited by pretreatment with lanthanum.
6 and Iti78, expression was also inhibited by lanthanum.
7 s were apparently required for inhibition by lanthanum.
8 uding benzodiazepines, furosemide, zinc, and lanthanum.
9 ma2L GABAR currents were weakly inhibited by lanthanum.
10 AlMe(3) is a stronger inhibitor than THF for lanthanum.
11 anesulfonate, cresyl diphenyl phosphate, and lanthanum.
12 tially regulated proteins in the presence of lanthanum.
13 -specific conductance that can be blocked by lanthanum.
14 m or addition of the calcium channel blocker lanthanum (0.5 mM) inhibited the depolarization-evoked a
15 ATPase (two inhibitors, vanadate (30 mM) and lanthanum (10 mM), had no effect) or inhibition of the N
20 ibited when the oocytes were pretreated with lanthanum, a specific inhibitor of store-operated Ca(2+)
22 tion of alpha1beta3gamma2L GABAR currents by lanthanum, alpha6beta3delta GABAR currents were strongly
23 DEL) at the interface between the insulators lanthanum aluminate (LaAlO3) and strontium titanate (SrT
24 ective domain behaviour in pure-ferroelastic lanthanum aluminate (LaAlO[Formula: see text]) as a func
26 nteracting electron waveguides formed at the lanthanum aluminate-strontium titanate (LaAlO(3)/SrTiO(3
36 ed with DFT calculations on the closed-shell lanthanum and lutetium complexes that suggest only limit
37 nt inhibitors of hemichannels-carbenoxolone, lanthanum and mefloquine-had no significant effect on th
39 nthesis in a low-melting eutectic mixture of lanthanum and nickel has produced a family of complex in
40 retreatment with the calcium-channel blocker lanthanum and to a lesser extent, the calcium-chelator E
41 reatment on the GABAA receptor modulation by lanthanum and zinc which act as positive and negative al
42 alpha6 subtype-containing GABAR currents by lanthanum, and 3) the site for interaction with lanthanu
43 ropoxy]ethyl-1H-imidazole), flufenamic acid, lanthanum, and gadolinium, consistent with the involveme
44 al, sensitivity to diazepam, potentiation by lanthanum, and high affinity inhibition by furosemide.
47 The net paracellular interstitium-to-lumen lanthanum backflux was measured before and after direct
50 ble hydrophosphorylation of nitriles using a lanthanum-based N,N-dimethylbenzylamine complex (La(DMBA
51 e and B-site (=Ti, Zr) cation composition of lanthanum-based oxides (La(2)B(2)O(7)) on electronic-exc
54 Me(3))-Ph(3)Si-HY(30), which is the superior lanthanum-based precatalyst for benzene borylation with
56 al studies demonstrate that superhydrides of lanthanum can be synthesized with La atoms in an fcc lat
58 e they received, in random order, 3 doses of lanthanum carbonate (La(2)(CO(3))(3)), 1.5, 3.0, and 4.5
60 ), and low-phosphate (1000 mg/d plus 1000 mg lanthanum carbonate 3 times/d) diets for 5 d followed by
62 hosphate >1.00 mmol/L (3.10 mg/dl) to 500 mg lanthanum carbonate or matched placebo thrice daily for
63 -45 ml/min per 1.73 m(2) to calcium acetate, lanthanum carbonate, sevelamer carbonate, or placebo.
64 ) treatment gives a kinetic advantage to the lanthanum-catalyzed C-H borylation, leading to increased
65 establish important structure sensitivity in lanthanum-catalyzed chlorination and provide guiding pri
66 o examine the effects of graded exposures to lanthanum, cerium, and yttrium (LCY) mixtures at 1-, 100
67 have the general formula RM4X12 (where R is lanthanum, cerium, praseodymium, neodymium, or europium;
68 , niobium, light rare earth elements (LREEs; lanthanum, cerium, praseodymium, neodymium, promethium,
69 -alkaline earth electrodes, Pt5M, where M is lanthanum, cerium, samarium, gadolinium, terbium, dyspro
72 rylated guanosine nucleosides in the case of lanthanum chloride precipitation or inconsistent retenti
73 nated either by pre-treatment of plants with lanthanum chloride, or by reducing the duration of ozone
74 pecific substitution with the Mott insulator lanthanum cobaltite, its bandgap can be narrowed by as m
75 physiologically relevant pH the fluorescent lanthanum complex binds neutral sugars with apparent bin
76 des using a catalytic system consisting of a lanthanum complex with a sterically bulky ligand and a m
77 (0.5, 1 or 2 wt% in the final product), and lanthanum content (0.5 or 1 wt% in the final product).
79 um with GABAR isoforms was competitive, with lanthanum decreasing the EC50 value for GABA of alpha1be
80 e existence of previously undetected surface lanthanum defects, suggesting that surface-enhanced NMR
81 nelling occurred through an atomically thin, lanthanum delta-doped SrTiO3 layer, and the negative dif
82 lly derived myelin, the extracellular tracer lanthanum did not penetrate between the myelin layers in
83 locked GABAR currents with low affinity, but lanthanum did not significantly alter NT2-N GABAR curren
85 gen vacancies and observe bonding changes in lanthanum-doped ceria catalyst particle aggregates with
86 ytotoxicity in uveal melanoma cells, and the lanthanum-DOTA-MC1RL analog was tested for binding affin
88 added to the luminal perfusate, paracellular lanthanum efflux from the lumen to the interstitium was
91 find that replacing only several percent of lanthanum for strontium leaves behind nanometer-scale AF
92 ermine the concentration-response curves for lanthanum for the three different isoforms at submaximal
93 from alpha1 to alpha6 altered the effect of lanthanum from potentiation to inhibition, 2) changing t
94 ased RIHP increases paracellular backflux of lanthanum from the renal interstitium to the proximal tu
97 cells, diazepam, zolpidem, loreclezole, and lanthanum had only small effects on GABA(A) receptor cur
98 ther a standard 120-keV TEMs with thermionic lanthanum hexaboride (LaB(6)) source can be upgraded wit
102 xpected chemical and structural diversity of lanthanum hydrides synthesized in the range of 50 to 180
107 synthesis of amino acid (L-Cysteine) capped lanthanum hydroxide nanoparticles [Cys-La(OH)3 NPs] towa
108 ts recorded in GYKI were blocked potently by lanthanum (IC50 = 2 microM) and were desensitized by 1 m
109 icometre-scale differences in radius between lanthanum(III) and dysprosium(III) are propagated to Han
110 etal-organic framework (MOF) CTH-17 based on lanthanum(III) and the conformationally chiral linker 1,
112 of several parameters such as pH, amount of lanthanum(III) as a carrier element, amount of 8-hydroxy
113 tion to N-diphenylphosphinylimines employing lanthanum(III) triflate as a catalyst and trifluoroaceti
115 te sensitive to rare-earth ionic radius, the lanthanum(III)-induced dimer being >100-fold tighter tha
117 having an opposite effect on the activity of lanthanum in HY vs SiO(2), point to confinement-activate
118 tive biosorption affinity for ytterbium over lanthanum in multiple solution conditions tested, while
119 reports of potentiation of GABAR currents by lanthanum in neurons and recombinant GABAR isoforms.
122 ndicated that, unlike most divalent cations, lanthanum increases both native and recombinant gamma-am
125 d matrix, there was significant paracellular lanthanum influx from the interstitium into the lumen (1
126 transport across the plasma membrane by the "lanthanum insulation method" was blocked prior to the in
130 re in which the host atom (calcium, yttrium, lanthanum) is at the centre of a cage formed by hydrogen
132 talytic reactivity of homoleptic tris(alkyl) lanthanum La{C(SiHMe(2) )(3) }(3) is highlighted by C-O
133 zed by reaction of the homoleptic tris(alkyl)lanthanum La{C(SiHMe(2))(3)}(3) and SBA-type MSN treated
138 ofibrous cobalt spinel catalyst codoped with lanthanum (La) and manganese (Mn) prepared from a zeolit
139 ous polarization, and magnetic properties of lanthanum (La) and strontium (Sr) doped rhombohedral bis
141 ocused on the recovery of neodymium (Nd) and lanthanum (La) from monazite ore that combines microbial
144 omic layer of a rare-earth oxide (RO) [(R is lanthanum (La), praseodymium (Pr), neodymium (Nd), samar
145 e extracellular tracer of paracellular flux, lanthanum (La), was infused directly into the renal inte
147 eatment of Arabidopsis leaves with trivalent lanthanum [La(III)], a representative of REEs, triggers
149 With the help of measured doubly charged lanthanum lines and spatially resolved measurements, the
150 he lithium-stable fast lithium-ion conductor lanthanum lithium tantalate directly with a thin copper
151 ffect; whole-cell current kinetics; block by lanthanum; loss of selectivity in the absence of divalen
152 ous due to the unique chemical properties of lanthanum making it cytotoxic to cancers, and able to en
154 e magnetoresistance (XMR) in LaSb introduced lanthanum monopnictides as a new platform to study this
156 surface reconstruction of Ruddlesden-Popper lanthanum nickel oxide (La(2)NiO(4+delta)) that occurs s
157 lue-cured tobacco treated with a gradient of lanthanum nitrate [La(NO3)3] solutions (0, 25, 50, 90, 1
159 method using a uniform mixture of rare earth lanthanum nitrate doped ACNTs and polyvinyl chloride (PV
160 mization, foliar application of 90 mg L(- 1) lanthanum nitrate is proposed as the optimal concentrati
162 tion-dependent response showed: 25-90 mg L-1 lanthanum nitrate significantly increased the content of
164 in some seawater samples with low levels of lanthanum-NPs, suggesting anthropogenic inputs of nanoCe
172 patients with stage 3b/4 CKD, treatment with lanthanum over 96 weeks did not affect arterial stiffnes
173 ydrate (Ce(2) (C(2) O(4) )(3) .10H(2) O) and lanthanum oxalate decahydrate (La(2) (C(2) O(4) )(3) .10
175 yered structure of manganese dioxide (MnO2), lanthanum oxide (La2O3), and Platinum (Pt) for Li-O2 bat
176 ectroscopy (MS) results show that the silica-lanthanum oxide composite exhibits enhanced capability f
179 ourney of metal oxides in phosphoproteomics, lanthanum oxide is employed for the engineering of an af
180 is work focuses on the in-tip fabrication of lanthanum oxide porous monolith and its application in t
182 Reversible adsorption of H2S on cerium and lanthanum oxide surfaces is demonstrated over many cycle
186 ity and spectroscopic measurements show that lanthanum oxychloride (LaOCl), lanthanum trichloride (La
188 (LaOCl), lanthanum trichloride (LaCl3), and lanthanum phases with an intermediate extent of chlorina
191 The discovery of 250-kelvin superconducting lanthanum polyhydride under high pressure marked a signi
192 d hydrogen-induced superconductivity in this lanthanum polyhydride, and leads to an understanding of
194 thanum, and 3) the site for interaction with lanthanum probably was on the extracellular surface of G
195 enriched with 2 and 0.5 wt% of vanadium and lanthanum, respectively, which may be considered as a pr
197 iculum stores, and subsequent Ca2+ entry via lanthanum-sensitive store-operated Ca2+ channels (SOC) a
200 the present study, we have examined whether lanthanum shows subunit-dependent selectivity for modifi
202 This approach was successfully applied to lanthanum strontium cobaltite thin films epitaxially gro
203 tion of vertically aligned nanocomposites of lanthanum strontium manganite and doped ceria with strai
205 Here, we circumvent this problem by growing lanthanum-substituted BiFeO(3) at 450 degrees C (which i
206 opted an eco-friendly approach to synthesize lanthanum-substituted copper ferrite (CuLaFe(2)O(4)) by
207 Here we describe an oxide anode formed from lanthanum-substituted strontium titanate (La-SrTiO3) in
208 ometer-scale AF puddles clustering away from lanthanum substitutions preferentially located in the mi
210 esent combined (1)H- and (139)La-NMR data on lanthanum superhydrides, LaH(x), (x = 10.2 - 11.1), synt
211 Using the water-soluble tracer, colloidal lanthanum, there was no evidence of tracer accumulation
212 al reabsorption and paracellular backflux of lanthanum through the intercellular tight junctions of t
213 low-lying, unoccupied 4f atomic orbitals in lanthanum to be the key difference between these superco
216 nts show that lanthanum oxychloride (LaOCl), lanthanum trichloride (LaCl3), and lanthanum phases with
217 creen of transition metal cyanide complexes, lanthanum tricyanide was identified as an improved secon
218 = Ce, Er, Sm, Y, Yb, La) were evaluated and lanthanum tricyanide was identified as the optimal catal
219 eport the full account of our efforts on the lanthanum tricyanide-catalyzed acyl silane-ketone benzoi
220 sized and characterized a nitride perovskite lanthanum tungsten nitride (LaWN(3)) in the form of oxyg
221 erapamil; an inhibitor of calcium transport, lanthanum; various protease inhibitors; Na+ -free and K+
223 y)Sb(z) modulated reactants, the addition of lanthanum was found to suppress the nucleation of FeSb(2
224 ked calcium transients in podocytes, whereas lanthanum was ineffective, indicating the calcium source
227 resent study, during in vivo microperfusion, lanthanum was used as an extracellular marker to determi
228 ), and crustal elements (aluminum, iron, and lanthanum), which were also elevated in this region.
229 rface of catalysts with an irreducible metal-lanthanum, which is significantly different from known m
230 by 141 +/- 30% at approximately 1000 microM lanthanum with an EC50 of 107 +/- 34 microM and a slope
232 wed induction upon growth in the presence of lanthanum (Xox proteins, TonB-dependent receptor), we al
234 effect of electron beams on Al-doped lithium lanthanum zirconium oxide (LLZO) under different imaging