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Filtered Search Results
Sigma Aldrich Fine Chemicals Biosciences Sodium palmitate|408-35-5 | MFCD00002749 | 10g
Sodium palmitate | 98.5% | MW: 278.41 | 408-35-5 | MFCD00002749 | 10g
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Sigma Aldrich Fine Chemicals Biosciences Stearic acid Grade I | 57-11-4 | MFCD00002752 | 1g
Stearic acid Grade I | Purity: 98.5% | Mol Wt: 284.48 | 57-11-4 | MFCD00002752 | 1g
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Sigma Aldrich Fine Chemicals Biosciences Stearic acid Grade I, >=98.5% (capillary GC) | 57-11-4 | MFCD00002752 | 100G
Stearic acid Grade I, >=98.5% (capillary GC) | Purity: >=98.5% (capillary GC) | Mol Wt: 284.48 | 57-11-4 | MFCD00002752 | 100G
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Sigma Aldrich Fine Chemicals Biosciences Palmitic acid >=99% | 57-10-3 | MFCD00002747 | 250G
Palmitic acid >=99% | Purity: >=99% | Mol Wt: 256.42 | 57-10-3 | MFCD00002747 | 250G
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Sigma Aldrich Fine Chemicals Biosciences Stearic acid Grade I, >=98.5% (capillary GC) | 57-11-4 | MFCD00002752 | 25G
Stearic acid Grade I, >=98.5% (capillary GC) | Purity: >=98.5% (capillary GC) | Mol Wt: 284.48 | 57-11-4 | MFCD00002752 | 25G
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Sigma Aldrich Fine Chemicals Biosciences Stearic acid >=95%, FCC, FG | 57-11-4 | MFCD00002752 | 25KG
Stearic acid >=95%, FCC, FG | Purity: >=95% | Mol Wt: 284.48 | 57-11-4 | MFCD00002752 | 25KG
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Sigma Aldrich Fine Chemicals Biosciences Sodium palmitate | 408-35-5 | MFCD00002749 | 5g
Sodium palmitate | Purity: ≥98.5% | MW:278.41 | 408-35-5 | MFCD00002749 | 5g
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Sigma Aldrich Fine Chemicals Biosciences Nonadecanoic acid >=98% (GC) | 646-30-0 | MFCD00002754 | 5G
Nonadecanoic acid >=98% (GC) | Purity: >=98% (GC) | Mol Wt: 298.5 | 646-30-0 | MFCD00002754 | 5G
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Sigma Aldrich Fine Chemicals Biosciences Retinoic acid|302-79-4 | MFCD00001551 | 1g
Retinoic acid | 98% (HPLC) | MW: 300.44 | 302-79-4 | MFCD00001551 | 1g
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Medchemexpress LLC MEDCHEMEXPRESS LLC
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5000695545 7-OCTYNOIC ACID 5G
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Medchemexpress LLC Pentynoic acid STP ester sodium | 1807530-14-8 | 99.5% | C11H5F4NaO5S | 10MG
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Pentynoic acid STP ester sodium is a water-soluble, alkyne-activated STP (sulfotetrafluorophenyl) ester reagent used to introduce a terminal alkyne handle onto proteins and peptides for bioconjugation. It enables amine-targeted coupling under mild, aqueous conditions and subsequent alkyne-based conjugation such as copper(I)-catalyzed azide-alkyne cycloaddition.
- Contains a terminal propargyl (alkyne) group for click chemistry.
- STP activated ester enables efficient coupling to lysine residues.
- Water-soluble formulation suitable for reactions in aqueous buffers.
- High purity for reproducible bioconjugation outcomes.
- DMSO-soluble at high concentration; ultrasonication may be required.
- Store sealed and away from moisture to preserve reagent activity.
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Cayman Chemical 3-hydroxy PalmItIc AcId 500mg
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Found in the lipid A part of LPS and useful as chemical marker of endotoxins; accumulates during long-chain 3-hydroxy-acyl-CoA dehydrogenase and mitochondrial trifunctional protein deficiencies, inducing oxidative stress and leading to mitochondrial bioenergetics deregulation and eventual multi-organ dysfunction
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Sigma Aldrich Fine Chemicals Biosciences Stearic Acid | 57-11-4 | MFCD00002752 | 1kg
Stearic Acid | Purity: 95% | Mol Wt: 284.48 | 57-11-4 | MFCD00002752 | 1kg
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AdipoGen Eicosapentaenoic acid
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Chemical. CAS 10417-94-4. Formula C20H30O2. MW 302.45. Eicosapentaenoic acid EPA is one of several omega-3 fatty acids abundantly available in marine organisms. EPA has antioxidant, anti-inflammatory, cardiovascular, anticancer and antiobesity activities. EPA is a polyunsaturated fatty acid PUFA that acts as a precursor. When omega-3 fatty acids, like EAP is incorporated into the cell membrane, it induces production of eicosanoids and resolvins which then compete with arachidonic acid for the activity of phospholipase A2. Fatty acids are then liberated inside the cytosol and via cyclooxygenase-2 COX-2, 5-lipoxygenase and thromboxane synthetase activity get degraded into prostaglandins, leukotrienes, and thromboxanes, responsible for decreasing the synthesis of eicosanoids derived from arachidonic acid AA, like PGI2, PGF2alpha, PGE2, and LTB4 pro-inflammatory and increase the synthesis of LT5, thromboxane-3 and PGE3 weak effects on inflammation.
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Cayman Chemical Palmitoleic Acid
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An ω-7 monounsaturated fatty acid; increases basal and insulin-stimulated glucose uptake and Glut4 protein levels in 3T3-L1 adipocytes at 200 µM; ex vivo, increases glucose uptake and aerobic and anaerobic glycolysis and reduces de novo fatty acid synthesis and activity of the lipogenic enzymes ACL and G6PDH in isolated murine adipocytes at 300 mg/kg; dietary administration reduces high-fat diet-induced insulin resistance and liver inflammation in mice at 300 mg/kg
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