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Organic compounds that contain a carbon atom bonded to a halogen atom, and an oxygen atom via a double bond; commonly derived from an oxoacid by replacing a hydroxyl group with a halogen atom.
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1-Palmitoyl-2-oleoyl-sn-glycero-3-phosphoethanolamine is a phosphatidylethanolamine lipid used in membrane biophysics and lipid nanoparticle research. It promotes hexagonal phase formation and enhances membrane fusion, which can improve endosomal escape and cellular delivery of nucleic acid therapeutics.
Promotes hexagonal (HII) lipid phase formation under acidic conditions.
Facilitates membrane fusion and enhances endosomal escape.
Useful for lipid nanoparticle formulation and mRNA and gene delivery research.
High purity suitable for biochemical and biophysical assays.
Stable with defined storage recommendations for powder and in solvent.
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1-Palmitoyl-2-oleoyl-sn-glycero-3-phosphoethanolamine (1,2-POPE) is a phosphatidylethanolamine lipid commonly used in lipid nanoparticle (LNP) formulations to promote membrane fusion and enhance endosomal escape, improving cellular delivery efficiency of nucleic acid therapeutics such as mRNA. It is supplied as a white to off-white solid and is suitable for formulation and membrane biophysics research.
Promotes membrane fusion and facilitates endosomal escape.
Enhances lipid nanoparticle-mediated delivery of mRNA and other nucleic acids.
Induces hexagonal (HII) phase formation in acidic environments.
Available in multiple pack sizes to support formulation development.
High purity suitable for research applications.
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Also available in 1 mL, 1 mg, 10 mg, 25 mg, 50 mg, 100 mg and bulk. Please contact Fisher for quotes. 13-Methylberberine chloride shows anti-adipogenic effect on 3T3-L1 adipocytes, it has potential as an anti-obesity drug Purity 99.85%
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1-Palmitoyl-2-oleoyl-sn-glycero-3-phosphate sodium is a high-purity phosphatidic acid (16:0-18:1) supplied as the monosodium salt for biochemical and membrane research. It is used in signaling, lipid metabolism, and liposome preparation studies where defined PA species are required.
Phosphatidic acid monosodium salt (16:0-18:1)
Molecular formula C37H70NaO8P
CAS 169437-35-8
Purity 99.0%
Solid reagent suitable for liposome and membrane assays
Common applications: signaling, membrane biology, lipid metabolism studies
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Fmoc-Lys(palmitoyl)-OH is an Fmoc-protected amino acid in which the lysine side chain is modified with a palmitoyl (C16) acyl group. It is supplied as a white to off-white solid and is intended for use in solid-phase peptide synthesis to introduce lipidation (palmitoylation) on lysine residues for research applications.
White to off-white solid with high purity.
Purity greater than 97.0% as determined by NMR.
Molecular weight 606.84 g/mol and formula C37H54N2O5.
Suitable for solid-phase peptide synthesis and lipidated peptide design.
Store powder at -20°C for long-term stability; short-term storage at 4°C is acceptable.
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Tiotropium Bromide hydrate is a small-molecule antagonist targeting muscarinic acetylcholine receptors (mAChRs) It is designed to competitively inhibit mAChRs thereby modulating airway smooth muscle contraction and mediating bronchodilation Tiotropium Bromide hydrate exerts its biological activity primarily through competitive antagonism at mAChRs resulting in relaxation of airway smooth muscle Based on these pharmacological properties Tiotropium Bromide hydrate holds research potential in respiratory pharmacology particularly for investigating mechanistic pathways in chronic obstructive pulmonary disease (COPD) receptor-ligand interactions and pulmonary pharmacodynamics associated with airway obstruction
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Palmitoyl tetrapeptide-20 (PTP20) is a biomimetic peptide agonist of α-MSH. It promotes hair pigmentation and delays hair graying by activating the MC1-R pathway (AC50: 0.16 nM), enhancing catalase activity to reduce H2O2 accumulation, and upregulating SIRT1 activity. It can be used in research on preventing hair loss and improving hair graying. For research use only.
Biomimetic peptide agonist of α-MSH
Promotes hair pigmentation
Delays hair graying
Activates MC1-R pathway
Enhances catalase activity
Reduces H2O2 accumulation
Upregulates SIRT1 activity
Used in research on preventing hair loss
Used in research on improving hair graying
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