Category: Reagents

Reference: 10006626-25
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A medium-chain fatty acid; has been found at high levels in coconut oil; induces the activation of NF-κB and the expression of COX-2, iNOS, and IL-1α in RAW 264.7 cells at 25 µM
Reference: 10006626-250
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A medium-chain fatty acid; has been found at high levels in coconut oil; induces the activation of NF-κB and the expression of COX-2, iNOS, and IL-1α in RAW 264.7 cells at 25 µM
Reference: 10006626-50
€0.00 (tax incl.)
A medium-chain fatty acid; has been found at high levels in coconut oil; induces the activation of NF-κB and the expression of COX-2, iNOS, and IL-1α in RAW 264.7 cells at 25 µM
Reference: 10006627-10
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,A long-chain saturated fatty acid; comprises ~25 and 65% of the human total plasma lipids and saturated fatty acids, respectively; acylation of palmitic acid to proteins facilitates anchoring of membrane-bound...
Reference: 10006627-100
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,A long-chain saturated fatty acid; comprises ~25 and 65% of the human total plasma lipids and saturated fatty acids, respectively; acylation of palmitic acid to proteins facilitates anchoring of membrane-bound...
Reference: 10006627-25
€0.00 (tax incl.)
,A long-chain saturated fatty acid; comprises ~25 and 65% of the human total plasma lipids and saturated fatty acids, respectively; acylation of palmitic acid to proteins facilitates anchoring of membrane-bound...
Reference: 10006627-50
€0.00 (tax incl.)
,A long-chain saturated fatty acid; comprises ~25 and 65% of the human total plasma lipids and saturated fatty acids, respectively; acylation of palmitic acid to proteins facilitates anchoring of membrane-bound...
Reference: 10006692-1
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Cloprostenol is a synthetic PGF2α analog and a potent FP receptor agonist. (+)-15-epi Cloprostenol is the 15(S), or 15β-hydroxy enantiomer of (+)-cloprostenol. This epimer is less active by several orders of magnitude...
Reference: 10006692-10
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Cloprostenol is a synthetic PGF2α analog and a potent FP receptor agonist. (+)-15-epi Cloprostenol is the 15(S), or 15β-hydroxy enantiomer of (+)-cloprostenol. This epimer is less active by several orders of magnitude...
Reference: 10006692-5
€0.00 (tax incl.)
Cloprostenol is a synthetic PGF2α analog and a potent FP receptor agonist. (+)-15-epi Cloprostenol is the 15(S), or 15β-hydroxy enantiomer of (+)-cloprostenol. This epimer is less active by several orders of magnitude...
Reference: 10006692-500
€0.00 (tax incl.)
Cloprostenol is a synthetic PGF2α analog and a potent FP receptor agonist. (+)-15-epi Cloprostenol is the 15(S), or 15β-hydroxy enantiomer of (+)-cloprostenol. This epimer is less active by several orders of magnitude...
Reference: 10006856-1
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An ester of the free acid that is less water soluble, but more amenable for the formulation of stearidonate-containing diets and dietary supplements
Reference: 10006856-10
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An ester of the free acid that is less water soluble, but more amenable for the formulation of stearidonate-containing diets and dietary supplements
Reference: 10006856-5
€0.00 (tax incl.)
An ester of the free acid that is less water soluble, but more amenable for the formulation of stearidonate-containing diets and dietary supplements
Reference: 10006856-500
€0.00 (tax incl.)
An ester of the free acid that is less water soluble, but more amenable for the formulation of stearidonate-containing diets and dietary supplements
Reference: 10006864-10
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Mono-unsaturated fatty acids are components of the cellular membranes of autotrophic bacteria. The specific composition and abundance of membrane fatty acids can be used to identify specific genera of bacterial...
Reference: 10006864-25
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Mono-unsaturated fatty acids are components of the cellular membranes of autotrophic bacteria. The specific composition and abundance of membrane fatty acids can be used to identify specific genera of bacterial...
Reference: 10006864-5
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Mono-unsaturated fatty acids are components of the cellular membranes of autotrophic bacteria. The specific composition and abundance of membrane fatty acids can be used to identify specific genera of bacterial...
Reference: 10006864-50
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Mono-unsaturated fatty acids are components of the cellular membranes of autotrophic bacteria. The specific composition and abundance of membrane fatty acids can be used to identify specific genera of bacterial...
Reference: 10006865-100
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An esterified form of DHA; has been used as a reference standard in the quantification of fatty acids in microalgal and fish oils
Reference: 10006865-1
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An esterified form of DHA; has been used as a reference standard in the quantification of fatty acids in microalgal and fish oils
Reference: 10006865-50
€0.00 (tax incl.)
An esterified form of DHA; has been used as a reference standard in the quantification of fatty acids in microalgal and fish oils
Reference: 10006865-500
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An esterified form of DHA; has been used as a reference standard in the quantification of fatty acids in microalgal and fish oils
Reference: 10006866-1
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cis-4,10-13,16-Docosatetraenoic acid methyl ester is a long chain PUFA. It is a minor fatty acid component of rat testis lipids.(14216) The methyl ester is a neutral, more lipophilic form of the free acid.
Reference: 10006866-10
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cis-4,10-13,16-Docosatetraenoic acid methyl ester is a long chain PUFA. It is a minor fatty acid component of rat testis lipids.(14216) The methyl ester is a neutral, more lipophilic form of the free acid.
Reference: 10006866-5
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cis-4,10-13,16-Docosatetraenoic acid methyl ester is a long chain PUFA. It is a minor fatty acid component of rat testis lipids.(14216) The methyl ester is a neutral, more lipophilic form of the free acid.
Reference: 10006874-10
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A long chain saturated fatty acid ethyl ester found in small quantities in liverwort, C. concium
Reference: 10006874-100
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A long chain saturated fatty acid ethyl ester found in small quantities in liverwort, C. concium
Reference: 10006998-100
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An oxylipin and a metabolite of EPA; formed via cytochrome P450-mediated epoxidation of EPA to (±)14(15)-EpETE, followed by conversion of the epoxide to a diol by soluble epoxide hydrolase
Reference: 10006998-25
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An oxylipin and a metabolite of EPA; formed via cytochrome P450-mediated epoxidation of EPA to (±)14(15)-EpETE, followed by conversion of the epoxide to a diol by soluble epoxide hydrolase
Reference: 10006998-50
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An oxylipin and a metabolite of EPA; formed via cytochrome P450-mediated epoxidation of EPA to (±)14(15)-EpETE, followed by conversion of the epoxide to a diol by soluble epoxide hydrolase
Reference: 10006999-100
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EPA is an ω-3 fatty acid abundantly available in marine organisms. (±)17(18)-DiHETE is one of the major metabolites produced when EPA is incubated with various rat tissue homogenates or cynomolgus monkey seminal...
Reference: 10006999-25
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EPA is an ω-3 fatty acid abundantly available in marine organisms. (±)17(18)-DiHETE is one of the major metabolites produced when EPA is incubated with various rat tissue homogenates or cynomolgus monkey seminal...
Reference: 10006999-50
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EPA is an ω-3 fatty acid abundantly available in marine organisms. (±)17(18)-DiHETE is one of the major metabolites produced when EPA is incubated with various rat tissue homogenates or cynomolgus monkey seminal...
Reference: 10007001-1
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(±)19(20)-DiHDPA is one of the major metabolites produced when DHA is incubated with NADPH-supplemented rat liver microsomes; formed by the slow metabolism of DHA by monkey seminal vesicles
Reference: 10007001-100
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(±)19(20)-DiHDPA is one of the major metabolites produced when DHA is incubated with NADPH-supplemented rat liver microsomes; formed by the slow metabolism of DHA by monkey seminal vesicles
Reference: 10007001-50
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(±)19(20)-DiHDPA is one of the major metabolites produced when DHA is incubated with NADPH-supplemented rat liver microsomes; formed by the slow metabolism of DHA by monkey seminal vesicles
Reference: 10007001-500
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(±)19(20)-DiHDPA is one of the major metabolites produced when DHA is incubated with NADPH-supplemented rat liver microsomes; formed by the slow metabolism of DHA by monkey seminal vesicles
Reference: 10007012-100
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An esterified form of 12-oxo stearic acid; has been found in esterified L. chinensis and L. decipiens pulp oils and serves as a measure of 12-oxo stearic acid content
Reference: 10007012-25
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An esterified form of 12-oxo stearic acid; has been found in esterified L. chinensis and L. decipiens pulp oils and serves as a measure of 12-oxo stearic acid content
Reference: 10007133-1
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Furan fatty acids are unique, naturally occurring lipids that are found in significant amounts in dietary phospholipids, such as in salmon roe.(13184) CMPF is an endogenous metabolite of furan fatty acids in humans....
Reference: 10007133-10
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Furan fatty acids are unique, naturally occurring lipids that are found in significant amounts in dietary phospholipids, such as in salmon roe.(13184) CMPF is an endogenous metabolite of furan fatty acids in humans....
Reference: 10007133-5
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Furan fatty acids are unique, naturally occurring lipids that are found in significant amounts in dietary phospholipids, such as in salmon roe.(13184) CMPF is an endogenous metabolite of furan fatty acids in humans....
Reference: 10007133-500
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Furan fatty acids are unique, naturally occurring lipids that are found in significant amounts in dietary phospholipids, such as in salmon roe.(13184) CMPF is an endogenous metabolite of furan fatty acids in humans....
Reference: 10007164-100
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LTC4 is the parent cysLTs produced by the LTC4 synthase-catalyzed conjugation of glutathione to LTA4. LTC4 is produced by neutrophils, macrophages, and mast cells, and by transcellular metabolism in platelets.(781) It...
Reference: 10007164-25
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LTC4 is the parent cysLTs produced by the LTC4 synthase-catalyzed conjugation of glutathione to LTA4. LTC4 is produced by neutrophils, macrophages, and mast cells, and by transcellular metabolism in platelets.(781) It...
Reference: 10007164-50
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LTC4 is the parent cysLTs produced by the LTC4 synthase-catalyzed conjugation of glutathione to LTA4. LTC4 is produced by neutrophils, macrophages, and mast cells, and by transcellular metabolism in platelets.(781) It...
Reference: 10007165-100
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LTD4 is one of the constituents of slow-reacting substance of anaphylaxis (SRS-A) produced by the metabolism of LTC4 by γ-glutamyl transpeptidase.(541,589) LTD4-induced bronchoconstriction and enhanced vascular...
Reference: 10007165-25
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LTD4 is one of the constituents of slow-reacting substance of anaphylaxis (SRS-A) produced by the metabolism of LTC4 by γ-glutamyl transpeptidase.(541,589) LTD4-induced bronchoconstriction and enhanced vascular...
Reference: 10007165-50
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LTD4 is one of the constituents of slow-reacting substance of anaphylaxis (SRS-A) produced by the metabolism of LTC4 by γ-glutamyl transpeptidase.(541,589) LTD4-induced bronchoconstriction and enhanced vascular...
Reference: 10007166-100
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LTE4 is produced by the action of a dipeptidase on LTD4 leaving only the cysteinyl group still attached to the fatty acid backbone.(2236) It is one of the constituents of slow-reacting substance of anaphylaxis...
Reference: 10007166-25
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LTE4 is produced by the action of a dipeptidase on LTD4 leaving only the cysteinyl group still attached to the fatty acid backbone.(2236) It is one of the constituents of slow-reacting substance of anaphylaxis...
Reference: 10007166-50
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LTE4 is produced by the action of a dipeptidase on LTD4 leaving only the cysteinyl group still attached to the fatty acid backbone.(2236) It is one of the constituents of slow-reacting substance of anaphylaxis...
Reference: 10007207-100
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Major β-oxidation product resulting from peroxisomal metabolism of 12(S)-HETE
Reference: 10007207-25
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Major β-oxidation product resulting from peroxisomal metabolism of 12(S)-HETE
Reference: 10007207-50
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Major β-oxidation product resulting from peroxisomal metabolism of 12(S)-HETE
Reference: 10007210-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007211-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007221-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007223-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007224-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007232-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007237-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007240-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007241-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications
Reference: 10007242-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007243-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007244-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications
Reference: 10007248-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007251-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007252-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007253-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007261-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007262-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007263-100
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007264-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007265-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007267-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007268-1
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications
Reference: 10007269-10
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A quantitative analytical standard guaranteed to meet MaxSpec® identity, purity, stability, and concentration specifications,
Reference: 10007279-10
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Dampens excessive neutrophil trafficking to sites of inflammation; reduces neutrophil infiltration by 70% at doses as low as 10 pg per mouse and significantly reduces leukocyte adherence and emigration at 1 nM
Reference: 10007279-100
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Dampens excessive neutrophil trafficking to sites of inflammation; reduces neutrophil infiltration by 70% at doses as low as 10 pg per mouse and significantly reduces leukocyte adherence and emigration at 1 nM
Reference: 10007279-25
€0.00 (tax incl.)
Dampens excessive neutrophil trafficking to sites of inflammation; reduces neutrophil infiltration by 70% at doses as low as 10 pg per mouse and significantly reduces leukocyte adherence and emigration at 1 nM
Reference: 10007279-50
€0.00 (tax incl.)
Dampens excessive neutrophil trafficking to sites of inflammation; reduces neutrophil infiltration by 70% at doses as low as 10 pg per mouse and significantly reduces leukocyte adherence and emigration at 1 nM
Reference: 10007280-10
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A DHA-derived resolvin that stimulates the phagocytosis of E. coli by human macrophages
Reference: 10007280-100
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A DHA-derived resolvin that stimulates the phagocytosis of E. coli by human macrophages
Reference: 10007280-25
€0.00 (tax incl.)
A DHA-derived resolvin that stimulates the phagocytosis of E. coli by human macrophages
Reference: 10007280-50
€0.00 (tax incl.)
A DHA-derived resolvin that stimulates the phagocytosis of E. coli by human macrophages
Reference: 10007286-1
€0.00 (tax incl.)
One of several novel taurine-conjugated fatty acids that act as a FAAH substrate and may activate TRPV1 and TRPV4
Reference: 10007286-10
€0.00 (tax incl.)
One of several novel taurine-conjugated fatty acids that act as a FAAH substrate and may activate TRPV1 and TRPV4
Reference: 10007286-5
€0.00 (tax incl.)
One of several novel taurine-conjugated fatty acids that act as a FAAH substrate and may activate TRPV1 and TRPV4

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