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1 -molecular-weight polyhydroxylated compound (polyol).
2 o either the candidin polyol or the nystatin polyol.
3 y in combination with a caprolactone-derived polyol.
4 ernally by fluorides or a penta-deprotonated polyol.
5 t as a prelude to deoxygenation reactions of polyols.
6 enantioselective propargylation of aliphatic polyols.
7 ts extension to the synthesis of 1,3-related polyols.
8 oride that is unlike that of other sugars or polyols.
9 entable oligo-, di-, and monosaccharides and polyols.
10 ntable oligo-, di-, and mono-saccharides and polyols.
11 her the glycolytic flux the lower the PP and polyols.
12 decrease is due to polymer interaction with polyols.
13 fermentable oligo-, di-, monosaccharides and polyols.
14 or substrate-controlled functionalization of polyols.
15 include significant amounts of sugars and/or polyols.
16 omes to the trace amounts of impurities in a polyol, a major issue for reproducibility and scale up s
17 o determine the in vitro effects of pluronic polyols, a family of widely used surfactants currently u
19 tor (ARI) previously shown to prevent spinal polyol accumulation and formalin-evoked hyperalgesia in
20 -inositol efflux as induced by intracellular polyol accumulation appear to be interactively associate
22 in galactose neuropathy, factors other than polyol accumulation may contribute to the deficit in CNT
24 rast, the ARI IDD676 had no effect on spinal polyol accumulation, elevated spinal COX-2, or hyperalge
26 l transport route for tonicity-activated and polyol- activated myo-inositol release from cell to medi
28 cantly inhibited both tonicity-activated and polyol-activated myo-inositol release, as did the chlori
29 logenesis, we studied how various sugars and polyols affect the formation and stability of collagen f
30 ux fusion bioreporters, specific for sugars, polyols, amino acids, organic acids, or flavonoids, have
32 3)) consisted of organic hydroxyl (including polyol and other alcohol) groups characteristic of sacch
34 ces, the overall trend was that the pluronic polyol and the mode of administration did not result in
35 ce to predict the stereochemistry of unknown polyols and (13)C and (1)H chemical shift profiles as th
36 uch higher lactate content compared to other polyols and (ii) high sensor selectivity (Klactate(gluco
39 p consists of general lyoprotectants such as polyols and polyethylen glycol that apparently preserve
40 ug treatment at 5 mg/kg/d po), it normalizes polyols and reduces the motor nerve conduction velocity
44 Selective degradation allows recovery of the polyols, and direct observation of the soft block oligom
50 Furthermore, nonglucose carbohydrates and polyols are found in fetal blood, some in concentrations
57 cently identified series of carboxylates and polyols as efficient enhancers for an AFP from the beetl
58 e utility of this method for the analysis of polyols as single-component solutions, as mixtures, or i
59 ofuels--alcohols and hydrocarbon precursors (polyols) as well as gaseous biofuel--hydrogen have been
60 ment of a novel approach to 1, 3, 5.(2n + 1) polyols based on iterative radical homologation as well
61 matrix (polypyrrole) and a dynamic network (polyol-borate), strong and flexible polymer films were d
62 h acetyl-L-carnitine had no effects on nerve polyols, but corrected the Na+/K+ -ATPase defect and was
64 that NO regulates the vascular synthesis of polyols by S-thiolating AR; therefore, increasing NO syn
66 Anion Relay Chemistry (ARC) to construct the polyol chain, a Ti-catalyzed asymmetric Diels-Alder reac
67 nthetic strategy has been devised to prepare polyol chains associated with the polyene macrolides.
69 to determine the in vivo effects of pluronic polyols combined with either an allograft or an alloplas
70 mechanistic differences in decomposition of polyols compared to that of monoalcohols and hydrocarbon
74 is subsequently reduced by a NADPH-dependent polyol dehydrogenase and dephosphorylated by a sugar pho
78 pable of transporting xylitol, a five-carbon polyol derived from xylose, the most abundant pentose in
79 s is presented for the de novo production of polyol differentiated hexoses in only two chemical steps
80 followed by directed reductions to build the polyol domain, a Stille cross-coupling reaction to assem
84 harides, disaccharides, monosaccharides, and polyols (FODMAPs) exacerbate symptoms of irritable bowel
85 harides, disaccharides, monosaccharides, and polyols (FODMAPs) often is used to manage functional gas
86 ermentable oligo-, di-, monosaccharides, and polyols [FODMAPs]) has been reported to be effective in
87 rmentable, oligo-, di-, monosaccharides, and polyols [FODMAPs]) in subjects believed to have NCGS.
88 terparts; (b) the optimum ratios of epoxy to polyol for most rapid cure were 50:50 or 60:40 under con
89 tide phosphate (NADPH)-dependent reductases, polyol formation, and flux through the polyol pathway in
91 absence of symmetry in the final cyclooctane polyols (four shown) generated in this investigation.
92 Control of the stereogenic centers of the polyol fragment was performed by utilizing an Evans aldo
93 ve cleavage sequence to construct the C5-C11 polyol fragment, a diastereoselective aldol reaction to
94 nantioselective monosilylations of diols and polyols furnish valuable alcohol-containing molecules in
95 tions tested; (c) resins containing TONE 305 polyol generally were faster to cure than those containi
98 tose, mannose, raffinose, and sucrose), four polyols (glycerol, mannitol, erythritol, and sorbitol),
99 of water as chain-transfer reagent to afford polyols (HO-(PPC)-OH) with narrow molecular weight distr
100 ion with hydrogen-bond interactions in three polyols (i.e., CF3CH(OH)CH2CH(OH)CF3, 1; (CF3)2C(OH)C(OH
102 saccharides, disaccharides, derivatives, and polyols in (0.05, 0.15, 0.25 and 0.35) mol kg(-1) aqueou
103 no conclusive evidence for the existence of polyols in meteorites, leaving a gap in our understandin
104 The addition of an organocatalyst to these polyols in the presence of lactides produces well-define
106 r and electrophoretic mobility shift assays, polyols increased the ORE-dependent expression of MIOX.
107 nations in dimethyl sulfoxide on a series of polyols indicate that multiple hydrogen bonds to a singl
110 es the transformation of a four-carbon sugar polyol into an oxygen-reduced compound, providing promis
111 selective modification of glycols and higher polyols is possible, streamlining or eliminating use of
113 of WAY-121,509 sufficient to reduce retinal polyol levels by 95% ameliorated the development of gala
114 raised glycated hemoglobin or sciatic nerve polyol levels, confirming that hyperglycemia was unaffec
116 ovide access to other members of the polyene-polyol macrolides, including stereoisomers of RK-397.
120 her disorders, including leukodystrophy with polyol metabolism abnormality, demonstrate that an incre
122 ical levels of glucose specifically activate polyol metabolism with a consequent decrease in Na,K-ATP
123 f aldose reductase (AR), a primary enzyme of polyol metabolism, in Capan-1 human pancreatic duct cell
127 d (reaction time < 15 min), sulfide-mediated polyol method in which Ag(I) is reduced to Ag(0) by ethy
129 gy of the conjugate base of a small covalent polyol model compound (i.e., (HOCH2CH2CH(OH)CH2)2CHOH) i
130 olling regioselectivity during the course of polyol modification, we found that histidine-containing
132 carnitine administration on peripheral nerve polyols, myoinositol, Na+/K+ -ATPase, vasoactive prostag
134 ct of key bulking agents/excipients - sugars/polyols - on the material form, structure, strength, fai
135 reversible processes by adding amino acids, polyol or simple alcohols, or sugars, forming IAA conjug
137 were faster to cure than those containing no polyol, or TONES 201 or 310; and (d) a resin mixture was
139 conducting) polymers considering sensors for polyols, particularly, saccharides and hydroxy acids.
141 ients, mice undergoing iAKI show significant polyol pathway activation in the kidney cortex character
143 s and to assess the potential involvement of polyol pathway activity in the pathogenesis of spinally
144 documents discrete cellular consequences of polyol pathway activity in the retina, and it suggests t
146 ucose concentrations are known to induce the polyol pathway and increase fructose generation in the l
147 is the first and rate-limiting enzyme of the polyol pathway and is involved in the pathogenesis of di
148 ole of endogenous fructose production by the polyol pathway and its metabolism through fructokinase i
149 may be a useful strategy for inhibiting the polyol pathway and preventing the development of diabete
150 novel mechanism, involving activation of the polyol pathway and repression of microRNA-24 (miR-24), t
151 e idea of activation of aldose reductase and polyol pathway as an important mechanism of hyperglycemi
154 Herein we report that inhibition of the polyol pathway enzyme aldose reductase (AR) by two struc
156 esent study was to elucidate the role of the polyol pathway enzyme aldose reductase (AR) in the media
157 Herein we report that inhibition of the polyol pathway enzyme aldose reductase (AR) prevents the
158 e of this study was to determine whether the polyol pathway enzyme aldose reductase mediates diabetes
164 trolled cases of diabetes, lead to increased polyol pathway flux, activation of protein kinase C and
165 dose reductase inhibitors can prevent excess polyol pathway flux, and hence these agents may prevent
166 volved in the pathogenesis of complications: polyol pathway flux, increased formation of AGEs (advanc
170 ases, polyol formation, and flux through the polyol pathway in cultured dog retinal capillary cells w
173 ed for 3 months at a dose that inhibited the polyol pathway in the retina of diabetic rats to a simil
174 as associated with significant inhibition of polyol pathway intermediates in both lens and sciatic ne
175 es showed a dramatic increase in glucose and polyol pathway intermediates in diabetes, a striking upr
176 depletion, and enhanced the accumulation of polyol pathway intermediates without worsening myo-inosi
181 activation of Janus kinase 2 (JAK2), and the polyol pathway play important parts in the hyperprolifer
182 diabetic rat if documented inhibition of the polyol pathway prevents a sequence of retinal vascular a
184 blocking the excess glucose flux through the polyol pathway that prevails under diabetic conditions h
185 easing evidence to link abnormalities in the polyol pathway to the pathogenesis of diabetic neuropath
186 by gas chromatography, and flux through the polyol pathway was investigated by 19F nuclear magnetic
187 in the development of DR, namely, increased polyol pathway, activation of protein kinase C (PKC), in
188 e genes, blocks NF-kappaB, and represses the polyol pathway, AGEs production, and hyperlipidemia.
189 glucose uptake, nerve energy metabolism, the polyol pathway, and protein kinase C (PKC) activity in E
190 of aldose reductase, the first enzyme of the polyol pathway, is a key response to ischemia and that i
191 study investigated the relation between the polyol pathway, PKC-beta, ROS, JAK2, and Ang II in the d
192 e reductase, the rate-limiting enzyme of the polyol pathway, plays a key role in the pathogenesis of
193 f 3-deoxyglucosone, at least in part via the polyol pathway, provides an amplification loop to sustai
194 ehydrogenase (SDH) in the second step of the polyol pathway, under conditions of high glucose flux.
195 the pentose phosphate pathway (PPP) and the polyol pathway, while also regulating ion channel functi
199 exerted by phosphofructokinase on the PP and polyol pathways revealed that the extent of glycolytic f
202 anowires (AgNWs) were prepared by a modified polyol process and were incubated in three cell culture
203 The formation of AuCuSn(2) using a modified polyol process occurs through a multistep pathway that w
206 of non-charged solutes including carbamides, polyols, purines, and pyrimidines in a phloretin- and me
208 particles (NPs) were prepared using standard polyol reduction chemistry in ethylene glycol (EG) with
210 ave been extensively synthesized by a simple polyol reduction method using different copper salts, i.
211 B self-assembles in lipid membranes with the polyol region lining a channel interior that funnels to
215 elective and stereospecific oxidation of the polyol (S,S)-1,2,3,4-tetrahydroxybutane [(S,S)-threitol]
216 simple, reagentless, and flexible format for polyol screening that does not require aqueous alkaline
223 achieve various group transfer reactions on polyol substrates with high enantio- or regioselectivity
224 electivity for the glycosylations of complex polyols such as 6-deoxyerythronolide B and oleandomycin-
227 an iterative strategy for the preparation of polyols, such as the fully differentiated L-ribo-tetrol
236 thesize tri-thiol-functionalized-ethoxylated polyols that are combined with polyethylene glycol diacr
240 al reduction of silyl-protected C6O6-derived polyols to produce a diverse set of oxygen-functionalize
241 pentose phosphate (PP), glycogenolysis, and polyols to translate the glucose metabolome of the heart
245 nvironment, specifically oligosaccharide and polyol utilization, arsenic resistance and lantibiotic p
248 e simplest representative of biomass-derived polyols, was studied via density functional theory (DFT)
249 echanism of regulation of MIOX expression by polyols, we have cloned the human MIOX gene locus of 10
253 We found that the effects of sugars and polyols were highly specific with respect to small struc
255 moselective oxidation of unprotected vicinal polyols with [(neocuproine)Pd(OAc)]2(OTf)2 (1) (neocupro
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