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cell membrane structure

" in MedChemExpress (MCE) Product Catalog:

59

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6

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9

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9

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11

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Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-B2235A

    L-α-Phosphatidylcholine (egg yolk), 75%; 1,2-Diacyl-sn-glycero-3-phosphocholine (egg yolk), 75%; egg yolk Lecithins, 75%

    Biochemical Assay Reagents Others Metabolic Disease
    L-α-Lecithin (egg yolk), 75% is a kind of biological materials. L-α-Lecithin (egg yolk), 75% can be used for studying cell membrane structure, biofilm potential, liposome research, etc .
    L-α-Lecithin (egg yolk), 75%
  • HY-B2235B

    L-α-Phosphatidylcholine (egg yolk, Type XVI-E), 99%, lyophilized powder; 1,2-Diacyl-sn-glycero-3-phosphocholine (egg yolk, Type XVI-E), 99%; egg yolk Lecithins, Type XVI-E, 99%

    Biochemical Assay Reagents Liposome Others
    L-α-Lecithin (egg yolk, Type XVI-E), 99% (L-α-Phosphatidylcholine (egg yolk, Type XVI-E), 99%) is an active biomaterial. L-α-Lecithin (egg yolk, Type XVI-E), 99% forms liposomes with compounds (PF or BA). L-α-Lecithin (egg yolk, Type XVI-E), 99% increases membrane fluidity and affects microemulsion stability and fluorescence intensity stained with Nile red (HY-D0718). L-α-Lecithin (egg yolk, Type XVI-E), 99% It can be used for cell membrane structure research, biological membrane potential research, and liposome research .
    L-α-Lecithin (egg yolk, Type XVI-E), 99%
  • HY-D1098
    SYBR Green II
    2 Publications Verification

    Fluorescent Dye Others
    SYBR Green II is a fluorescent nucleic acid dye that mainly binds single-stranded nucleotides. SYBR Green II is sensitive to oligonucleotides or larger nucleic acid polymers in a variety of cells and gels. SYBR Green II can be used to study cell structure, membrane integrity or function, and cell cycle distribution. Wavelength 484/515 nm .
    SYBR Green II
  • HY-D1434
    FM1-43
    3 Publications Verification

    Fluorescent Dye Neurological Disease
    FM1-43 is a very lipophilic, water-soluble styrene dyes, can specifically bind to cell membranes and inner membrane organelles to produce fluorescence. FM1-43 is widely used in endocytic and exospic membrane structure markers.
    FM1-43
  • HY-103466
    FM4-64
    10+ Cited Publications

    Fluorescent Dye Others
    FM4-64 is a very lipophilic, water-soluble styrene dyes, can specifically bind to cell membranes and inner membrane organelles to produce fluorescence. FM4-64 is widely used in endocytic and exospic membrane structure markers.
    FM4-64
  • HY-N5034A

    Monoaminoethyl phosphate calcium; NSC 254167 calcium; O-Phosphoethanolamine calcium

    Liposome Others
    Phosphoethanolamine (calcium) (Monoaminoethyl phosphate (calcium); NSC 254167 (calcium); O-Phosphoethanolamine (calcium)) is a precursor to phosphatidylethanolamine and can be used in the synthesis of phosphatidylcholine. Phosphoethanolamine (calcium) is used in the study of phospholipid metabolism and cell membrane structure .
    Phosphoethanolamine calcium
  • HY-D1098A

    Fluorescent Dye Others
    SYBR Green II (Ionic form) is a fluorescent nucleic acid dye that mainly binds single-stranded nucleotides. SYBR Green II is sensitive to oligonucleotides or larger nucleic acid polymers in a variety of cells and gels. SYBR Green II can be used to study cell structure, membrane integrity or function, and cell cycle distribution. Wavelength 484/515 nm .
    SYBR Green II (Ionic form)
  • HY-156252

    Fungal Infection
    Antifungal agent 75 (compound 6r) is a potent antifungal agent against Candida albicans. Antifungal agent 75 significantly inhibits the formation of C. albicans biofilm, increases the permeability of the cell membrane, reduces the ergosterol level of the cell membrane, damages the membrane structure, and destroys the integrity of the cell structure to exert excellent antifungal activity .
    Antifungal agent 75
  • HY-D1074

    3,3'-Dipropyloxacarbocyanine iodide

    Fluorescent Dye Others
    DiOC3(3) (3,3'-Dipropyloxacarbocyanine iodide) is a green fluorescent lipophilic dye with cell membrane permeability. DiOC3(3) can be used to stain cell membranes and other lipid-soluble biological structures .
    DiOC3(3)
  • HY-167808

    Endogenous Metabolite Biochemical Assay Reagents
    Cis-9,12-Hexadecadienoic acid is a polyunsaturated fatty acid that has the activity of regulating the physical properties of cell membranes. The presence of Cis-9,12-Hexadecadienoic acid can enhance the fluidity and flexibility of cell membranes. Cis-9,12-Hexadecadienoic acid participates in a variety of physiological processes in the body, affecting cell signal transduction and membrane structure stability.
    cis-9,12-Hexadecadienoic acid
  • HY-P10932

    Fluorescent Dye Neurological Disease
    pGk13a is an azide (azide group can be combined with fluorophore)-containing amphiphilic membrane labeling probe. pGk13a enables high-resolution imaging of cell membranes in the ultrastructural membrane expansion microscopy (umExM) technique, facilitating the observation of membrane-associated structures and proteins. pGk13a can be used for neuronal structural studies .
    pGk13a
  • HY-W588725

    Azido-choline

    Biochemical Assay Reagents Others
    N3-Cho (Azido-choline) is a click chemistry reagent containing an azide group that can be used in the synthesis of cell membrane structures .
    N3-Cho
  • HY-W013699
    Chlorhexidine diacetate
    10+ Cited Publications

    Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine diacetate is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine diacetate binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine diacetate has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine diacetate can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine diacetate
  • HY-B1248A

    Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine acetate hydrate is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine acetate hydrate binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine acetate hydrate has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine acetate hydrate can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine acetate hydrate
  • HY-B1248
    Chlorhexidine
    10+ Cited Publications

    Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine
  • HY-B1145
    Chlorhexidine dihydrochloride
    10+ Cited Publications

    Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine dihydrochloride is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine dihydrochloride binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine dihydrochloride has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine dihydrochloride can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine dihydrochloride
  • HY-W588725A

    Azido-choline bromide

    Biochemical Assay Reagents Others
    N3-Cho (Azido-choline) bromide is a click chemistry reagent containing an azide group that can be used in the synthesis of cell membrane structures .
    N3-Cho bromide
  • HY-P10932A

    Fluorescent Dye Neurological Disease
    pGk13a TFA is an azide (azide group can be combined with fluorophore)-containing amphiphilic membrane labeling probe. pGk13a TFA enables high-resolution imaging of cell membranes in the ultrastructural membrane expansion microscopy (umExM) technique, facilitating the observation of membrane-associated structures and proteins. pGk13a TFA can be used for neuronal structural studies .
    pGk13a TFA
  • HY-B2235C

    Biochemical Assay Reagents Metabolic Disease
    L-α-Lecithin (soybean) is a kind of biological materials. L-α-Lecithin (soybean) can be used for studying cell membrane structure, biofilm potential, liposome research, etc .
    L-α-Lecithin (soybean)
  • HY-B1145S

    Isotope-Labeled Compounds Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine-d8 (dihydrochloride) is the deuterium labeled Chlorhexidine dihydrochloride (HY-B1145). Chlorhexidine dihydrochloride is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine dihydrochloride binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine dihydrochloride has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine dihydrochloride can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine-d8 dihydrochloride
  • HY-P1902

    Apoptosis Cardiovascular Disease
    Cardiotoxin Analog (CTX) IV (6-12) is a membrane active peptide that specifically targets negatively charged phospholipid membranes (such as phosphatidylserine and phosphatidylinositol) and can be isolated from the venom of the Taiwan cobra. Cardiotoxin Analog (CTX) IV (6-12) is a snake venom cardiotoxin that binds to cell membranes and embeds into lipid bilayers through hydrophobic interactions and electrostatic attraction, thereby destroying the stability of membrane structure. Cardiotoxin Analog (CTX) IV (6-12) can induce membrane lipid disorder and cell lysis, exhibiting hemolysis and cytotoxicity .
    Cardiotoxin Analog (CTX) IV (6-12)
  • HY-B0608

    Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine digluconate (20% in water) is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine digluconate (20% in water) binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine digluconate (20% in water) has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine digluconate (20% in water) can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine digluconate (20% in water)
  • HY-B1248R

    Reference Standards Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine (Standard) is the analytical standard of Chlorhexidine (HY-B1248). This product is intended for research and analytical applications. Chlorhexidine is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine (Standard)
  • HY-B1145R

    Reference Standards Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine dihydrochloride (Standard) is the analytical standard of Chlorhexidine dihydrochloride (HY-B1145). This product is intended for research and analytical applications. Chlorhexidine dihydrochloride is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine dihydrochloride binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine dihydrochloride has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine dihydrochloride can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine dihydrochloride (Standard)
  • HY-W013699R

    Reference Standards Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine diacetate (Standard) is the analytical standard of Chlorhexidine diacetate (HY-W013699). This product is intended for research and analytical applications. Chlorhexidine diacetate is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine diacetate binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine diacetate has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine diacetate can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine diacetate (Standard)
  • HY-W738281

    Isotope-Labeled Compounds Antibiotic Bacterial Necroptosis Apoptosis Infection
    Chlorhexidine-d8 is deuterium-labeled Chlorhexidine (HY-B1248) . Chlorhexidine is a orally active cationic antimicrobial agent that targets microbial cell membranes. Chlorhexidine binds to cell membrane phospholipids non-specifically, destroys membrane structure and induces leakage of cell contents. Chlorhexidine has broad-spectrum bactericidal activity against both Gram-positive and Gram-negative bacteria. Chlorhexidine can interfere with membrane permeability, cause protein precipitation and energy metabolism disorders, such as rapid inhibition of microbial growth and induction of cell death (necrosis or apoptosis) .
    Chlorhexidine-d8
  • HY-P1902A

    Apoptosis Cardiovascular Disease
    Cardiotoxin Analog (CTX) IV (6-12) TFA is a membrane active peptide that specifically targets negatively charged phospholipid membranes (such as phosphatidylserine and phosphatidylinositol) and can be isolated from the venom of the Taiwan cobra. Cardiotoxin Analog (CTX) IV (6-12) TFA is a snake venom cardiotoxin that binds to cell membranes and embeds into lipid bilayers through hydrophobic interactions and electrostatic attraction, thereby destroying the stability of membrane structure. Cardiotoxin Analog (CTX) IV (6-12) TFA can induce membrane lipid disorder and cell lysis, exhibiting hemolysis and cytotoxicity .
    Cardiotoxin Analog (CTX) IV (6-12) TFA
  • HY-N6708

    Antibiotic Bacterial Infection
    Alamethicin is a linear 20-amino acid antibiotic, which can induce voltage-gated conductance in model and cell membranes. Alamethicin exhibits antimicrobial activity against Gram-positive bacteria, but not Gram-negative bacteria. Alamethicin can form an amphipathic α-helical structure in biological membranes .
    Alamethicin
  • HY-W989120

    Biochemical Assay Reagents
    cis-6,9,12-Hexadecatrienoic acid is an important fatty acid with biological membrane fluidity and flexibility regulation activity. The multiple double bond structures of cis-6,9,12-Hexadecatrienoic acid help to improve the fluidity of cell membranes, thereby affecting cell molecular transport and signal transduction pathways. cis-6,9,12-Hexadecatrienoic acid plays a key role in cell physiological processes and promotes the normal function and interaction of cells.
    cis-6,9,12-Hexadecatrienoic acid
  • HY-D2317

    Fluorescent Dye Others
    HaloFlipper 30 is a fluorescent probe that covalently reacts with HaloTag fusion proteins to form an ester bond, which allows the probe to be stably attached to membrane structures. HaloFlipper 30 has high specificity, precision and good cell permeability .
    HaloFlipper 30
  • HY-P5712
    Gramicidin S
    1 Publications Verification

    Gramicidin soviet

    Antibiotic Bacterial Na+/K+ ATPase Infection
    Gramicidin S (Gramicidin soviet) is a cationic cyclic peptide antibiotic that selectively targets bacterial cell membranes and has anticancer activity. Gramicidin S also exerts antibacterial activity by destroying membrane integrity and interfering with membrane protein function. Gramicidin S inserts into the phospholipid bilayer through hydrophobic amino acid residues, specifically binds to negatively charged membrane lipids and disrupts membrane structure, thereby inhibiting cell division and cell wall synthesis, and ultimately causing bacterial death. Gramicidin S also inhibits ion channels, with IC50s of 41 μM, 24 μM, and 3 μM for Na +/K +-ATPase, tobacco leaf plasma membrane Mg 2+/K +-ATPase, and rat heart plasma membrane Ca 2+-ATPase, respectively .
    Gramicidin S
  • HY-W553514

    Biochemical Assay Reagents
    DL-α-Phosphatidylcholine, distearoyl is a synthetic form of phosphatidylcholine that has the activity of spontaneously forming bilayer membranes in aqueous environments. DL-α-Phosphatidylcholine, distearoyl is an important component of biological membranes and provides support for the integrity of cell structures. DL-α-Phosphatidylcholine, distearoyl plays a key role in the preparation of compound delivery systems to improve the solubility and biocompatibility of compounds.
    DL-α-Phosphatidylcholine, distearoyl
  • HY-157880

    Azido-PC

    Biochemical Assay Reagents Others
    N3-PC (Azido-PC) is a photoactivatable phosphatidylcholine that can be used in the synthesis of cell membrane structures. N3-PC (Azido-PC) is a click chemistry reagent containing an azide group .
    N3-PC
  • HY-W286362

    Palmitic acid anilide

    Bacterial Infection
    Palmitanilide (Palmitic acid anilide) is an antibacterial agent against Gram-positive bacteria. Palmitanilide can electrostatically bind to relevant components in the cell walls of Gram-positive bacteria (such as Bacillus cereus), alter the cell membrane structure, and affect the normal functions of the cells. Palmitanilide is promising for research of infectious diseases caused by Gram-positive bacteria .
    Palmitanilide
  • HY-176746

    Fungal Infection
    CMLD009688 is a cationic amphiphilic antifungal agent. CMLD009688 selectively inhibits plant pathogenic fungi such as Fusarium graminearum. CMLD009688 interacts with biological membranes, perturbing vacuolar and mitochondrial membrane structures to induce fungal cell death. CMLD009688 is promising for research of plant fungal diseases (e.g., wheat head blight, gray mold) .
    CMLD009688
  • HY-168066

    Fungal Infection
    Antifungal agent 117 is a bis-pyrazole carboxamide derivative with antifungal activity, exhibiting an EC50 value of 11.58 mg/L against Sclerotinia sclerotiorum. Antifungal agent 117 increases cell membrane permeability, causing an imbalance in osmotic pressure inside and outside the cell, and induces the accumulation of reactive oxygen species (ROS), leading to oxidative damage to the cell membrane, resulting in leakage of cellular contents and eventually cell death. RNA sequencing analysis reveals that Antifungal agent 117 downregulates catalase genes and upregulates neutral ceramidase genes, disrupting cell membrane structure, accelerating sphingolipid metabolism, and promoting cell death. Antifungal agent 117 shows great potential in the fields of plant protection and antifungal infection .
    Antifungal agent 117
  • HY-150163

    Endogenous Metabolite Metabolic Disease
    RBM14C12 is a compound with cell signal transduction activity. RBM14C12 has important uses in studying lipid metabolism and cell membrane structure. RBM14C12 can also be used to develop novel compounds to regulate the biological mechanisms of lipid-related diseases.
    RBM14C12
  • HY-172804

    Succinate Dehydrogenase Fungal Apoptosis Infection
    SDH-IN-26 (Compound C3) is a succinate dehydrogenase (SDH) inhibitor. SDH-IN-26 exhibits significant inhibitory activity against multiple phytopathogenic fungi, such as Rhizoctonia solani and Botrytis cinerea, with an EC50 value of 0.270 μg/mL against Rhizoctonia solani. SDH-IN-26 damages the integrity of the fungal cell membrane, increases membrane permeability, disrupts cell structure, and reduces the number of mitochondria, thus affecting the normal growth of mycelia. SDH-IN-26 leads to a decrease in mitochondrial membrane potential, and induces cell apoptosis. SDH-IN-26 is promising for research of plant diseases caused by fungi .
    SDH-IN-26
  • HY-148123

    Biochemical Assay Reagents Neurological Disease
    Glycerophospholipids and cephalins are a class of phospholipid compounds and important components of neural membranes. Glycerophospholipids and cephalins are hydrolysis substrates of phospholipase (such as PLA2, PLC, and PLD). After complete hydrolysis, they produce 1 mol of glycerol, phosphate, ethanolamine, and 2 mol of fatty acids, respectively. Glycerophospholipids and cephalins can maintain membrane structure, fluidity, and ion permeability, and serve as precursors of second messengers such as arachidonic acid and diacylglycerol. Glycerophospholipids and cephalins can regulate signal transduction, cell apoptosis, and membrane transport, and are used in the study of neurodegenerative diseases (such as Alzheimer's disease) .
    Glycerophospholipids, cephalins
  • HY-D1300
    LysoTracker Red
    5+ Cited Publications

    LysoTracker Red DND-99

    Biochemical Assay Reagents Fluorescent Dye Others
    LysoTracker Red is a Red fluorescently labeled lysosomal probe with a maximum excitation/emission wavelength of 577/590 nm. The structure is composed of a fluorescein group and linked weak bases, which can freely cross the cell membrane and gather on spherical organelles. It is suitable for observing the internal biosynthesis and related pathogenesis of lysosomes .
    LysoTracker Red
  • HY-16485

    TD-6424 hydrochloride

    Antibiotic Bacterial Infection
    Telavancin hydrochloride is the hydrochloride form of Telavancin (HY-112959). Telavancin hydrochloride is a semisynthetic derivative of vancomycin, and exhibits antibacterial efficacy through inhibition of cell wall synthesis and disruption of cell membrane barrier function. Telavancin hydrochloride is efficient against antibiotic resistant S. aureus strains MRSA, VISA, and hVISA. Telavancin hydrochloride attenuates gram positive bacteria induced complicated skin and skin structure infections (cSSSI) .
    Telavancin hydrochloride
  • HY-112959

    TD-6424

    Antibiotic Bacterial Infection
    Telavancin (TD-6424) is a semisynthetic lipoglycopeptide vancomycin-derivative, is a novel antimicrobial agent developed by Theravance for overcoming resistant Gram-positive bacterial infections, specifically methicillin-resistant Staphylococcus aureus (MRSA). Telavancin disrupts cell membrane integrity, can be used for research of complicated skin and skin structure infections (cSSSIs) caused by Gram-positive bacteria .
    Telavancin
  • HY-D1296
    Green DND-26
    1 Publications Verification

    Fluorescent Dye Others
    Green DND-26 is a green fluorescently labeled lysosomal probe with a maximum excitation/emission wavelength of 504/511 nm. The structure is composed of a fluorescein group and linked weak bases, which can freely cross the cell membrane and generally gather on spherical organelles. Green DND-26 is suitable for observing the internal biosynthesis and related pathogenesis of lysosomes .
    Green DND-26
  • HY-P3508A

    MDM-2/p53 Cancer
    PNC-27 acetate, a chimeric p53-penetratin peptide binds to HDM-2 in a p53 peptide-like structure, induces selective membrane-pore formation and leads to cancer cell lysis. PNC-27 acetate is an anticancer peptide. PNC-27 acetate can be used in acute myeloid leukemia research .
    PNC-27 acetate
  • HY-P3508

    MDM-2/p53 Cancer
    PNC-27, a chimeric p53-penetratin peptide binds to HDM-2 in a p53 peptide-like structure, induces selective membrane-pore formation and leads to cancer cell lysis. PNC-27 is an anticancer peptide. PNC-27 can be used in acute myeloid leukemia research .
    PNC-27
  • HY-145795

    Liposome Others
    OF-02 is an ionizable lipid for mRNA delivery and a key component of lipid nanoparticles (LNPs). OF-02 is protonated in the acidic endosomal environment to promote endosomal escape of mRNA and efficiently induce protein expression in target cells. OF-02 relies on the pH-responsive membrane fusion properties to form a complex with mRNA and destroy the endosomal membrane structure to achieve mRNA release in the cytoplasm. OF-02 is mainly used in the development of mRNA vaccines, gene editing, and protein replacement therapy[1][2][3].
    OF-02
  • HY-107343

    Ethyl docosahexaenoate

    Others Neurological Disease Metabolic Disease
    Docosahexaenoic acid ethyl ester (Ethyl docosahexaenoate) is a 90% concentrated ethyl ester of docosahexaenoic acid manufactured from the microalgal oil. Docosahexaenoic acid ethyl ester enhances 6-hydroxydopamine-induced neuronal damage by induction of lipid peroxidation in mouse striatum. Docosahexaenoic acid (DHA) is a key component of the cell membrane, and its peroxidation is inducible due to the double-bond chemical structure. Docosahexaenoic acid has neuroprotective effects .
    Docosahexaenoic acid ethyl ester
  • HY-161948

    Ferroptosis Cancer
    Ferroptosis inducer-4 (Compound 5) is a ferroptosis (Ferroptosis) inducer with a structure featuring terminal double bonds introduced at the sn-2 position of phospholipids. Ferroptosis inducer-4 exhibits significant cytotoxicity towards HT-1080 cells, with an IC50 of 18 μM. This cytotoxic mechanism involves the generation of lipid peroxides and oxidative damage to the cell membrane triggered by the terminal double bonds. Ferroptosis inducer-4 can be used for research on ferroptosis regulation .
    Ferroptosis inducer-4
  • HY-W339834

    Acyltransferase Endogenous Metabolite Liposome Others
    1-Stearoyl-sn-glycerol 3-phosphate sodium is a bioactive phospholipid that plays a crucial role in modulating cellular processes such as motility, proliferation, invasion, survival, and growth factor production, primarily through its interaction with G protein-coupled receptors (GPCRs). Typically found at low concentrations in plasma (~100nM), this compound is synthesized during the formation of membrane phospholipids and is derived from various cell types, including activated platelets, epithelial cells, leukocytes, neuronal cells, and tumor cells. Its unique structure includes stearic acid at the sn-1 position alongside a hydroxyl group at the sn-2 position.
    1-Stearoyl-sn-glycerol 3-phosphate sodium
  • HY-P5589

    PlnA

    Bacterial Reactive Oxygen Species (ROS) Infection Inflammation/Immunology
    Plantaricin A is an antimicrobial peptide that can be derived from Lactobacillus plantarum. Plantaricin A has a synergistic effect with Ciprofloxacin. PlnA shows anti-microbial activity. Plantaricin A increases the membrane potential of S. aureus and the level of intracellular ROS. Plantaricin A inhibits the function of the efflux pump by binding it and altering the structure of MepA, NorA, and LmrS. Plantaricin A significantly relieves inflammation, and promotes wound healing. Plantaricin A permeabilizes cancerous rat pituitary cells[ 1][2].
    Plantaricin A

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