MedChem Express
Labetalol (hydrochloride) (Standard) is the analytical standard of Labetalol (hydrochloride). This product is intended for research and analytical applications.
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Labetuzumab govitecan (IMMU 130) is an Anti-CEACAM5/SN-38 antibody-drug conjugate (ADC). Labetuzumab govitecan consists of the antibody Labetuzumab, SN-38, and a pH-sensitive Linker. Labetuzumab govitecan can be used for research of cancers, such as colorectal cancer[1][2][3].
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MedChem Express
Labetuzumab govitecan (IMMU 130) is an Anti-CEACAM5/SN-38 antibody-drug conjugate (ADC). Labetuzumab govitecan consists of the antibody Labetuzumab, SN-38, and a pH-sensitive Linker. Labetuzumab govitecan can be used for research of cancers, such as colorectal cancer[1][2][3].
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LabMol-319 is a potent zika virus (ZIKV) NS5 RdRp inhibitor with an IC50 of 1.6 μM. LabMol-319 is an antiviral agent[1].
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LabMol-319 is a potent zika virus (ZIKV) NS5 RdRp inhibitor with an IC50 of 1.6 μM. LabMol-319 is an antiviral agent[1].
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Laburnetin is a kind of isoflavone antibacterial agent. Laburnetin has antibacterial activity against fungi and S. vesicarium. Laburnetin intensifies the susceptibility of Methicillin (HY-121544) resistant Staphylococcus aureus (MRSA) strains to Methicillin. Laburnetin can be used to control pests of cultivated species[1][2][3].
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Laccaic acid C is an potent inhibitor of RNase H with an IC50 of 8.1 μM. Laccaic acid C also inhibits viral proliferation in cell [1].
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Laccase-IN-1 (compound 4b) is an orally active inhibitor of laccase, with the IC50 of 11.3 μM. Laccase-IN-1displays protective and curative effects on apple fruits infected by B. dothidea. Laccase-IN-1 enhances the cell membrane permeability, destroys the mycelial surface morphology and the cell ultrastructure, and reduces the ergosterol and exopolysaccharide contents of B. dothidea[1].
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Laccase-IN-2 is an inhibitor of laccase. Laccase-IN-2 has excellent antifungal activity against Magnaporthe oryzae in vitro and in vivo[1].
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Laccase (EC 1.10.3.2) (Denilite IIS) is a multi-copper oxidase (MCOs), which widely exists in microorganisms, plants and fungi, and can catalyze the oxidation of one electron of various phenolic compounds. Laccase can promote the oxidative coupling of single lignin, which plays an important role in the formation and biodegradation of lignin, and also has the […]
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Laccase (EC 1.10.3.2) (Denilite IIS) is a multi-copper oxidase (MCOs), which widely exists in microorganisms, plants and fungi, and can catalyze the oxidation of one electron of various phenolic compounds. Laccase can promote the oxidative coupling of single lignin, which plays an important role in the formation and biodegradation of lignin, and also has the […]
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Lacidipine-13C8 is the deuterium labeled Lacidipine[1]. Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can […]
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Lactacystin is a potent, orally active, irreversible, cell-permeable, selective 20S proteasome inhibitor (IC50 = 4.8 μM). Lactacystin also inhibits the lysosomal enzyme cathepsin A. Lactacystin inhibits cell growth and induces apoptosisand cell cycle arrest, and has antiviral and antioxidative activity. Lactacystin induces neurite outgrowth and hypertension. Lactacystin has the potential for the research of cancer, […]
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Lactacystin is a potent, orally active, irreversible, cell-permeable, selective 20S proteasome inhibitor (IC50 = 4.8 μM). Lactacystin also inhibits the lysosomal enzyme cathepsin A. Lactacystin inhibits cell growth and induces apoptosisand cell cycle arrest, and has antiviral and antioxidative activity. Lactacystin induces neurite outgrowth and hypertension. Lactacystin has the potential for the research of cancer, […]
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Lactacystin is a potent, orally active, irreversible, cell-permeable, selective 20S proteasome inhibitor (IC50 = 4.8 μM). Lactacystin also inhibits the lysosomal enzyme cathepsin A. Lactacystin inhibits cell growth and induces apoptosisand cell cycle arrest, and has antiviral and antioxidative activity. Lactacystin induces neurite outgrowth and hypertension. Lactacystin has the potential for the research of cancer, […]
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Lactate Dehydrogenase A Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 37 kDa, targeting to Lactate Dehydrogenase A. It can be used for WB,IHC-F,IHC-P,ICC/IF,IP assays with tag free, in the background of Human, Rat.
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Lactate Dehydrogenase A Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 37 kDa, targeting to Lactate Dehydrogenase A. It can be used for WB,IHC-F,IHC-P,ICC/IF,IP assays with tag free, in the background of Human, Rat.
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Lactate Dehydrogenase A Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 37 kDa, targeting to Lactate Dehydrogenase A. It can be used for WB,IHC-F,IHC-P,ICC/IF,IP assays with tag free, in the background of Human, Rat.
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Lactate Dehydrogenase Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 37 kDa, targeting to Lactate Dehydrogenase. It can be used for WB,ICC/IF,IHC-P,FC,IP assays with tag free, in the background of Human, Mouse.
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Lactate Dehydrogenase Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 37 kDa, targeting to Lactate Dehydrogenase. It can be used for WB,ICC/IF,IHC-P,FC,IP assays with tag free, in the background of Human, Mouse.
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Lactate Dehydrogenase Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 37 kDa, targeting to Lactate Dehydrogenase. It can be used for WB,ICC/IF,IHC-P,FC,IP assays with tag free, in the background of Human, Mouse.
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Lactate Dehydrogenase C Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 36 kDa, targeting to Lactate Dehydrogenase C. It can be used for WB assays with tag free, in the background of Human.
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Lactate Dehydrogenase C Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 36 kDa, targeting to Lactate Dehydrogenase C. It can be used for WB assays with tag free, in the background of Human.
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Lactate Dehydrogenase C Antibody is a non-conjugated and Rabbit origined monoclonal antibody about 36 kDa, targeting to Lactate Dehydrogenase C. It can be used for WB assays with tag free, in the background of Human.
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Lactate oxidase (EC 1.13.12.4) belongs to a group of FMN-dependent enzymes and they catalyze a conversion of lactate to pyruvate with a release of hydrogen peroxide. Lactate oxidase can be used in the detection of Lactate[1].
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Lactate oxidase (EC 1.13.12.4) belongs to a group of FMN-dependent enzymes and they catalyze a conversion of lactate to pyruvate with a release of hydrogen peroxide. Lactate oxidase can be used in the detection of Lactate[1].
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Lactate transportor 1 (compound 1) is an active lactate transporter in living cells. Lactate transportor 1 displays the cytotoxic effect, with IC50 values of 3.36, 3.27,5.58 and 7.66 μM in Hela, CAL27, MCF7 and MCF10A, respectively. Lactate transportor 1 has an additive effect with Cisplatin (HY-17394) observed in HeLa cells[1].
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Lactate-13C (sodium) is the 13C labeled Lactate sodium[1]. Lactate (Lactic acid) sodium is the product of glycogenolysis and glycolysis. Lactate (Lactic acid) sodium functions in a variety of biochemical processes[2].
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Lactate-13C (sodium) is the 13C labeled Lactate sodium[1]. Lactate (Lactic acid) sodium is the product of glycogenolysis and glycolysis. Lactate (Lactic acid) sodium functions in a variety of biochemical processes[2].
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Lactate-13C-1 (sodium) is the 13C labeled Lactate (sodium)[1]. Lactate (Lactic acid) sodium is the product of glycogenolysis and glycolysis. Lactate (Lactic acid) sodium functions in a variety of biochemical processes[2].
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Lactisole is a canonical antagonist of sweet taste receptor, selectively targeting to T1R3 subunit, a glucose-sensing receptor. Lactisole inhibits insulin secretion induced by glucose in mouse islets[1][2].
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Lactisole is a canonical antagonist of sweet taste receptor, selectively targeting to T1R3 subunit, a glucose-sensing receptor. Lactisole inhibits insulin secretion induced by glucose in mouse islets[1][2].
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Lacto-N-difucohexaose I (LNDFH I), a linker, could be used to combine oligosaccharides containing Lewis b sugar chain to water insoluble polysaccharide[1].
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Lacto-N-difucohexaose I (LNDFH I), a linker, could be used to combine oligosaccharides containing Lewis b sugar chain to water insoluble polysaccharide[1].
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Lacto-N-fucopentaose III (LNFP-III) is an immune modulator. Lacto-N-fucopentaose III reduces the severity of experimental autoimmune encephalomyelitis (EAE) and CNS inflammation[1].
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Lacto-N-neodifucohexaose II (Compd 9) is a derivative of key human milk tetrasaccharide[1]. Lacto-N-neodifucohexaose II is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. Strain-promoted alkyne-azide cycloaddition (SPAAC) can also occur with molecules containing DBCO or BCN groups.
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Lactoferricin H, Lactotransferrin (37-61), human is a biological active peptide. (This is an antimicrobial peptide derived from human lactotransferrin amino acid residues 37-61.)
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Lactoferrin (322-329) (human) is a polypeptide that can be found by peptide screening. Peptide screening is a research tool that pools active peptides primarily by immunoassay. Peptide screening can be used for protein interaction, functional analysis, epitope screening, especially in the field of agent research and development[1].
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Lactoferrin is a substance released by neutrophils. Lactoferrin is an orally active multifunctional iron binding glycoprotein. Lactoferrin prevents cell adhesion, growth and spreading of cell colonies. Lactoferrin also has antiviral activity and inhibits microbial and viral adhesion and entry into host cells. Besides, Lactoferrin has anti-inflammatory, immunomodulatory, and anti-cancer activities[1][2][3].
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Lactoferrin is a substance released by neutrophils. Lactoferrin is an orally active multifunctional iron binding glycoprotein. Lactoferrin prevents cell adhesion, growth and spreading of cell colonies. Lactoferrin also has antiviral activity and inhibits microbial and viral adhesion and entry into host cells. Besides, Lactoferrin has anti-inflammatory, immunomodulatory, and anti-cancer activities[1][2][3].
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Lactoferrin is a substance released by neutrophils. Lactoferrin is an orally active multifunctional iron binding glycoprotein. Lactoferrin prevents cell adhesion, growth and spreading of cell colonies. Lactoferrin also has antiviral activity and inhibits microbial and viral adhesion and entry into host cells. Besides, Lactoferrin has anti-inflammatory, immunomodulatory, and anti-cancer activities[1][2][3].
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Lactoferrin is a substance released by neutrophils. Lactoferrin is an orally active multifunctional iron binding glycoprotein. Lactoferrin prevents cell adhesion, growth and spreading of cell colonies. Lactoferrin also has antiviral activity and inhibits microbial and viral adhesion and entry into host cells. Besides, Lactoferrin has anti-inflammatory, immunomodulatory, and anti-cancer activities[1][2][3].
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Lactoferrin is a substance released by neutrophils. Lactoferrin is an orally active multifunctional iron binding glycoprotein. Lactoferrin prevents cell adhesion, growth and spreading of cell colonies. Lactoferrin also has antiviral activity and inhibits microbial and viral adhesion and entry into host cells. Besides, Lactoferrin has anti-inflammatory, immunomodulatory, and anti-cancer activities[1][2][3].
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Lactosylceramide (LacCer) is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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Lactucin is an anti-inflammatory agent. Lactucin induces cancer cell apoptosis. Lactucin also shows analgesic, anticancer and antimalarial activities[1][2][3][4].
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