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l homoserine lactone (hydrochloride)

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L-Homoserine lactone (hydrochloride)
T383132185-03-7
L-Homoserine lactone is a synthetic intermediate.1,2It has been used in the synthesis of organoselenium chemistry intermediates and analogs of bacterial quorum-sensing signaling molecules. 1.Koch, T., and Buchardt, O.Synthesis of L-(+)-selenomethionineSynthesis1065-1067(1993) 2.Chhabra, S.R., Harty, C., Hooi, D.S.W., et al.Synthetic analogues of the bacterial signal (quorum seensing) molecule N-(3-oxododecanoyl)-L-homoserine lactone as immune modulatorsJ. Med. Chem.46(1)97-104(2003)
  • $123
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L-Cysteine hydrochloride hydrate
TN52837048-04-6
L-Cysteine hydrochloride hydrate (L-Cysteine hydrochloride monohydrate) is a conditionally essential amino acid, which acts as a precursor for biologically active molecules such as hydrogen sulphide (H2S), taurine and glutathione. L-Cysteine hydrochloride hydrate suppresses ghrelin and reduces appetite in rodents and humans.
  • $29
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L-NAME hydrochloride
T657051298-62-5
L-NAME hydrochloride (L-NAME HCl), a cell-permeable NO synthase inhibitor, displays Ki values of 4.4 μM, 15 nM, and 39 nM, for iNOS (mouse) , nNOS (bovine) , and eNOS (human), respectively.
  • $46
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L-797,591 hydrochloride
T27787L In house
L-797,591 hydrochloride is active for somatostatin receptor isoform 1 (SSTR1). L-797,591 hydrochloride is commonly used in combination with AG1478 to enhance p-ERK5 expression in SSTR1 cells. L-797,591 hydrochloride significantly enhanced p38 phosphorylation in cotransfected cells, and this effect was reversed in combination with AG1478.
  • $400
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L-Leucyl-L-Leucine methyl ester hydrochloride
T77396491-83-4In house
L-Leucyl-L-Leucine methyl ester hydrochloride (Leu-Leu-ome hydrochloride) is a lysosomal condensation product that cytotoxic towards natural killer cells and CD4+ and CD8+ T lymphocytes.
  • $41 TargetMol
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L-Homoserine
T4757672-15-1
L-Homoserine ((S)-(-)-2-AMINO-4-HYDROXYBUTYRIC ACID) is a more reactive variant of the amino acid serine. In this variant, the hydroxyl side chain contains an additional CH2 group which brings the hydroxyl group closer to its own carboxyl group, allowing it to chemically react to form a five-membered ring. This occurs at the point that amino acids normally join to their neighbours in a peptide bond. L-Homoserine is therefore unsuitable for forming proteins and has been eliminated from the repertoire of amino acids used by living things. L-Homoserine is the final product on the C-terminal end of the N-terminal fragment following a cyanogen bromide cleavage.
  • $47
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TargetMol | Citations Cited
L-778123 hydrochloride
T3182253863-00-2
The L-778123 hydrochloride is an inhibitor of FPTase (IC50: 2 nM) and GGPTase-I (IC50: 98 nM) in enzyme inhibition determination.
  • $38
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N-(3-Oxodecanoyl)-L-homoserine lactone
T81722147795-40-2
N-(3-Oxodecanoyl)-L-homoserine lactone (3-Oxo-C10-HSL) functions as a bacterial quorum-sensing signal autoinducer [1].
  • $95
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N-cis-tetradec-9Z-enoyl-L-Homoserine lactone
T377381675245-06-3
Quorum sensing is a regulatory process used by bacteria for controlling gene expression in response to increasing cell density. This regulatory process manifests itself with a variety of phenotypes including biofilm formation and virulence factor production. Coordinated gene expression is achieved by the production, release, and detection of small diffusible signal molecules called autoinducers. The N-acylated homoserine lactones (AHLs) comprise one such class of autoinducers, each of which generally consists of a fatty acid coupled with homoserine lactone (HSL). AHLs vary in acyl group length (C4-C18), in the substitution of C3 (hydrogen, hydroxyl, or oxo group) and in the presence or absence of one or more carbon-carbon double bonds in the fatty acid chain. These differences confer signal specificity through the affinity of transcriptional regulators of the LuxR family. C14:1-δ9-cis-(L)-HSL is a long-chain AHL that functions as a signaling molecule in the quorum sensing of A. vitis. Regulating bacterial quorum sensing signaling can be used to inhibit pathogenesis and thus, represents a new approach to antimicrobial therpy in the treatment of infectious diseases.
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N-cis-octadec-9Z-enoyl-L-Homoserine lactone
T377371400974-23-3
Quorum sensing is a regulatory process used by bacteria for controlling gene expression in response to increasing cell density. This regulatory process manifests itself with a variety of phenotypes including biofilm formation and virulence factor production. Coordinated gene expression is achieved by the production, release, and detection of small diffusible signal molecules called autoinducers. The N-acylated homoserine lactones (AHLs) comprise one such class of autoinducers, each of which generally consists of a fatty acid coupled with homoserine lactone (HSL). AHLs vary in acyl group length (C4-C18), in the substitution of C3 (hydrogen, hydroxyl, or oxo group) and in the presence or absence of one or more carbon-carbon double bonds in the fatty acid chain. These differences confer signal specificity through the affinity of transcriptional regulators of the LuxR family. C18:1-δ9 cis-(L)-HSL is a long-chain AHL that may have antimicrobial activity and thus, might be used to inhibit pathogenesis by regulating bacerial quorum sensing signaling.
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N-3-hydroxybutyryl-L-Homoserine lactone
T373351325550-06-8
N-3-hydroxybutyryl-L-Homoserine lactone is an N-acyl-homoserine lactone produced by the bacterium V. splendidus and has been found in sequencing batch biofilm reactors used in wastewater treatment.1,2 It is the racemic version of the V. harveyi autoinducer N-((R)-3-hydroxybutanoyl)-L-homoserine lactone.3 |1. Purohit, A.A., Johansen, J.A., Hansen, H., et al. Presence of acyl-homoserine lactones in 57 members of the Vibrionaceae family. J. Appl. Microbiol. 115(3), 835-847 (2013).|2. Feng, Z., Sun, Y., Li, T., et al. Operational pattern affects nitritation, microbial community and quorum sensing in nitrifying wastewater treatment systems. Sci. Total Environ. 677, 456-465 (2019).|3. Ke, X., Miller, L.C., and Bassler, B.L. Determinants governing ligand specificity of the Vibrio harveyi LuxN quorum-sensing receptor. Mol. Microbiol. 95(1), 127-142 (2015).
  • $93
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N-cis-hexadec-9Z-enoyl-L-Homoserine lactone
T37736479050-94-7
Quorum sensing is a regulatory process used by bacteria for controlling gene expression in response to increasing cell density.[1] This regulatory process manifests itself with a variety of phenotypes including biofilm formation and virulence factor production.[2] Coordinated gene expression is achieved by the production, release, and detection of small diffusible signal molecules called autoinducers. The N-acylated homoserine lactones (AHLs) comprise one such class of autoinducers, each of which generally consists of a fatty acid coupled with homoserine lactone (HSL). AHLs vary in acyl group length (C4-C18), in the substitution of C3 (hydrogen, hydroxyl, or oxo group) and in the presence or absence of one or more carbon-carbon double bonds in the fatty acid chain. These differences confer signal specificity through the affinity of transcriptional regulators of the LuxR family.[3] C16:1-Δ9-(L)-HSL is a long-chain AHL that functions as a quorum sensing signaling molecule in strains of S. meliloti.[4],[5],[6],[7] Regulating bacterial quorum sensing signaling can be used to inhibit pathogenesis and thus, represents a new approach to antimicrobial therapy in the treatment of infectious diseases.[8] Reference:[1]. González, J.E., and Keshavan, N.D. Messing with bacterial quorum sensing. Microbiol. Mol. Biol. Rev. 70(4), 859-875 (2006).[2]. Gould, T.A., Herman, J., Krank, J., et al. Specificity of acyl-homoserine lactone syntheses examined by mass spectrometry. J. Bacteriol. 188(2), 773-783 (2006).[3]. Penalver, C.G.N., Morin, D., Cantet, F., et al. Methylobacterium extorquens AM1 produces a novel type of acyl-homoserine lactone with a double unsaturated side chain under methylotrophic growth conditions. FEBS Lett. 580(2), 561-567 (2006).[4]. Teplitski, M., Eberhard, A., Gronquist, M.R., et al. Chemical identification of N-acyl homoserine lactone quorum-sensing signals produced by Sinorhizobium meliloti strains in defined medium. Archives of Microbiology 180, 494-497 (2003).[5]. Gao, M., Chen, H., Eberhard, A., et al. sinI- and expR-dependent quorum sensing in Sinorhizobium meliloti. Journal of Bacteriology 187(23), 7931-7944 (2005).[6]. Marketon, M.M., Glenn, S.A., Eberhard, A., et al. Quorum sensing controls exopolysaccharide production in Sinorhizobium meliloti. Journal of Bacteriology 185(1), 325-331 (2003).[7]. Marketon, M., Gronquist, M.R., Eberhard, A., et al. Characterization of the Sinorhizobium meliloti sinR/sinI locus and the production of novel N-Acyl homoserine lactones. Journal of Bacteriology 184(20), 5686-5695 (2002).[8]. Cegelski, L., Marshall, G.R., Eldridge, G.R., et al. The biology and future prospects of antivirulence therapies. Nat. Rev. Microbiol. 6(1), 17-27 (2008).
  • $110
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N-undecanoyl-L-Homoserine lactone
T37879216596-71-3
Quorum sensing is a regulatory system used by bacteria for controlling gene expression in response to increasing cell density. This regulatory process manifests itself with a variety of phenotypes including biofilm formation and virulence factor production. Coordinated gene expression is achieved by the production, release, and detection of small diffusible signal molecules called autoinducers. The N-acylated homoserine lactones (AHLs) comprise one such class of autoinducers, each of which generally consists of a fatty acid coupled with homoserine lactone (HSL). Regulation of bacterial quorum sensing signaling systems to inhibit pathogenesis represents a new approach to antimicrobial therapy in the treatment of infectious diseases. AHLs vary in acyl group length (C4-C18), in the substitution of C3 (hydrogen, hydroxyl, or oxo group), and in the presence or absence of one or more carbon-carbon double bonds in the fatty acid chain. These differences confer signal specificity through the affinity of transcriptional regulators of the LuxR family. C11-HSL possesses a rare odd-numbered acyl carbon chain and may be a minor quorum-sensing signaling molecule in P. aeruginosa strains.
  • $110
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N-tetradecanoyl-L-Homoserine lactone
T37747202284-87-5
Quorum sensing is a regulatory system used by bacteria for controlling gene expression in response to increasing cell density. Controlling bacterial infections by quenching their quorum sensing systems is a promising field of study. The expression of specific target genes, such as transcriptional regulators belonging to the LuxR family of proteins, is coordinated by the synthesis of diffusible acylhomoserine lactone (AHL) molecules. N-tetradecanoyl-L-Homoserine lactone (C14-HSL) is a small diffusible signaling molecule involved in quorum sensing, thereby controlling gene expression and affecting cellular metabolism in bacteria.[1],[2],[3] It appears later than shorter acyl chain AHLs in developing biofilms[4] and, like other long chain AHLs, stimulates bacterial growth.[5] C14-HSL also alters the proteolytic activity and enhances the migration of some strains of Proteus mirabilis.[6]
  • $110
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N-(3-Hydroxytetradecanoyl)-DL-homoserine lactone
T12138172670-99-4
N-(3-Hydroxytetradecanoyl)-DL-homoserine lactone has antibacterial activity.
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L-Methioninamide hydrochloride
T7822716120-92-6
L-Methioninamide hydrochloride is a potent inhibitor of methionyl-tRNA synthetase that reduces the toxicity of CDDP.
  • $40
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Acetyl-L-Homoserine lactone
T3830051524-71-1
Acetyl-L-homoserine lactone belongs to the family of N-acylated homoserine lactones (HSLs) and has an acyl chain length of two carbons. HSLs perform a role in quorum sensing; however, unlike other HSLs, acetyl-L-homoserine lactone does not elicit a response in bacteria. In an assay of carbapenem antibiotic biosynthesis, acetyl-L-homoserine lactone does not induce a response in E. carotovora. In a fluorescence assay using E. coli containing a reporter plasmid of GFP expression in response to exogenous HSLs, acetyl-L-homoserine does not elicit GFP production.
  • $183
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N-3-hydroxydecanoyl-L-Homoserine lactone
T38154192883-12-8
Quorum sensing is a regulatory system used by bacteria for controlling gene expression in response to increasing cell density. Different quorum sensing molecules are produced at different times in bacterial population growth and have distinct cellular effects mediated through changes in gene expression. N-3-hydroxydecanoyl-L-Homoserine lactone is a small diffusible signaling molecule secreted by various bacteria. This lactone is produced via lactonolysis from 3-oxodecanoyl-homoserine lactone, altering quorum sensing or contributing to quorum quenching.
  • $195
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N-hexadecanoyl-L-Homoserine lactone
T3774187206-01-7
Quorum sensing is a regulatory system used by bacteria for controlling gene expression in response to increasing cell density.[1] This regulatory process manifests itself with a variety of phenotypes including biofilm formation and virulence factor production.[2] Coordinated gene expression is achieved by the production, release, and detection of small diffusible signal molecules called autoinducers. The N-acylated homoserine lactones (AHLs) comprise one such class of autoinducers, each of which generally consists of a fatty acid coupled with homoserine lactone (HSL). Regulation of bacterial quorum sensing signaling systems to inhibit pathogenesis represents a new approach to antimicrobial therapy in the treatment of infectious diseases.[3] AHLs vary in acyl group length (C4-C18), in the substitution of C3 (hydrogen, hydroxyl, or oxo group), and in the presence or absence of one or more carbon-carbon double bonds in the fatty acid chain. These differences confer signal specificity through the affinity of transcriptional regulators of the LuxR family.[4] C16-HSL is one of a number of lipophilic, long acyl side-chain bearing AHLs, including its monounsaturated analog C16:1-(L)-HSL, produced by the LuxI AHL synthase homolog SinI involved in quorum-sensing signaling in S. meliloti, a nitrogen-fixing bacterial symbiont of certain legumes.[5],[6] C16-HSL is the most abundant AHL produced by the proteobacterium R. capsulatus and activates genetic exchange between R. capsulatus cells.[7] N-Hexadecanoyl-L-homoserine lactone and other hydrophobic AHLs tend to localize in relatively lipophilic cellular environments of bacteria and cannot diffuse freely through the cell membrane. The long-chain N-acylhomoserine lactones may be exported from cells by efflux pumps or may be transported between communicating cells by way of extracellular outer membrane vesicles.[8],[9]Reference:[1]. González, J.E., and Keshavan, N.D. Messing with bacterial quorum sensing Microbiol. Mol. Biol. Rev. 70(4), 859-875 (2006).[2]. Gould, T.A., Herman, J., Krank, J., et al. Specificity of acyl-homoserine lactone syntheses examined by mass spectrometry Journal of Bacteriology 188(2), 773-783 (2006).[3]. Cegelski, L., Marshall, G.R., Eldridge, G.R., et al. The biology and future prospects of antivirulence therapies Nature Reviews.Microbiology 6(1), 17-27 (2008).[4]. Penalver, C.G.N., Morin, D., Cantet, F., et al. Methylobacterium extorquens AM1 produces a novel type of acyl-homoserine lactone with a double unsaturated side chain under methylotrophic growth conditions FEBS Letters 580, 561-567 (2006).[5]. Gao, M., Chen, H., Eberhard, A., et al. sinI- and expR-dependent quorum sensing in Sinorhizobium meliloti Journal of Bacteriology 187(23), 7931-7944 (2005).[6]. Teplitski, M., Eberhard, A., Gronquist, M.R., et al. Chemical identification of N-acyl homoserine lactone quorum-sensing signals produced by Sinorhizobium meliloti strains in defined medium Archives of Microbiology 180, 494-497 (2003).[7]. Schaefer, A.L., Taylor, T.A., Beatty, J.T., et al. Long-chain acyl-homoserine lactone quorum-sensing regulation of Rhodobacter capsulatus gene transfer agent production Journal of Bacteriology 184(23), 6515-6521 (2002).[8]. Pearson, J.P., Van Delden, C., and Iglewski, B.H. Active efflux and diffusion are involved in transport of Pseudomonas aeruginosa cell-to-cell signals Journal of Bacteriology 181(4), 1203-1210 (1999).[9]. Mashburn-Warren, L., and Whiteley, M. Special delivery: Vesicle trafficking in prokaryotes Molecular Microbiology 61(4), 839-846 (2006).
  • $95
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N-3-oxo-hexadecanoyl-L-Homoserine lactone
T37337925448-37-9
N-3-oxo-hexadecanoyl-L-Homoserine lactone is an unusual, substituted, long-chain N-acyl-homoserine lactone (AHL) produced by some bacteria, including strains of Agrobacterium vitis and Pseudomonas. Like other AHLs, this C16-containing form is thought to be involved in quorum sensing. Substituted, long-chain AHLs, including N-3-oxo-tetradecanoyl-L-homoserine lactone , prime for systemic acquired resistance to pathogen attack in plants.
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L-4-Oxalysine hydrochloride
T11795118021-35-5
L-4-Oxalysine hydrochloride has shown antitumor activities, is a natural product isolated from the culture media of Streptomyces roseovirdofuscus in China.
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N-3-oxo-pentanoyl-L-Homoserine lactone
T37338148433-21-0
N-3-oxo-pentanoyl-L-Homoserine lactone is a chain-shortened derivative of the bacterial quorum sensing signaling molecule N-3-oxo-octanoyl-L-homoserine lactone .1It inhibits binding of the autoinducer N-3-oxo-hexanoyl homoserine lactone toE. colicontaining the transcription factor LuxR when used at a concentration of 230 nM.2It acts as an autoinducer to activate theV. fischeriluminescence system inE. coliwhen used at concentrations ranging from 20 to 200 nM. 1.Chhabra, S.R., Stead, P., Bainton, N.J., et al.Autoregulation of carbapenem biosynthesis in Erwinia carotovora by analogues of N-(3-oxohexanoyl)-L-homoserine lactoneJ. Antibiot. (Tokyo)46(3)441-454(1993) 2.Schaefer, A.L., Hanzelka, B.L., Eberhard, A., et al.Quorum sensing in Vibrio fischeri: Probing autoinducer-LuxR interactions with autoinducer analogsJ. Bacteriol.178(10)2897-2901(1996)
  • $78
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Methyl ((2'-cyano-[1,1'-biphenyl]-4-yl)methyl)-L-valinate hydrochloride
T65280482577-59-3
Methyl ((2'-cyano-[1,1'-biphenyl]-4-yl)methyl)-L-valinate hydrochloride is a useful organic compound for research related to life sciences. The catalog number is T65280 and the CAS number is 482577-59-3.
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    Methyl cis-4-Hydroxy-L-proline Hydrochloride
    T6522240126-30-5
    Methyl cis-4-Hydroxy-L-proline Hydrochloride is a useful organic compound for research related to life sciences. The catalog number is T65222 and the CAS number is 40126-30-5.
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      L-733060 hydrochloride
      T22902148687-76-7
      Potent NK1 antagonist
      • $738
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      3-Nitro-L-tyrosine ethyl ester hydrochloride
      T124433
      3-Nitro-L-tyrosine ethyl ester hydrochloride is a useful organic compound for research related to life sciences and the catalog number is T124433.
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      L-Lysine lactam (hydrochloride)
      T3642226081-07-2
      L-lysine lactam is a building block.1,2It has been used in the synthesis of lysine sulfonamide HIV protease inhibitors, as well as bengamide derivatives within vitroanticancer activity.
      • $78
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      L-745870 hydrochloride
      T117991173023-36-3
      L-745870 hydrochloride has excellent brain penetration. L-745870 hydrochloride is a high-affinity, selective and orally active human dopamine D4 receptor antagonist with a Ki of 0.43 nM, and considerably weaker D2 receptor affinity with a Ki of 960 nM and D3 receptor affinity with a Ki of 2300 nM. 
      • $35
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      N-pentadecanoyl-L-Homoserine lactone
      T37745182359-66-6
      Quorum sensing is a regulatory system used by bacteria for controlling gene expression in response to increasing cell density. This regulatory process manifests itself with a variety of phenotypes including biofilm formation and virulence factor production. Coordinated gene expression is achieved by the production, release, and detection of small diffusible signal molecules called autoinducers. The N-acylated homoserine lactones (AHLs) comprise one such class of autoinducers, each of which generally consists of a fatty acid coupled with homoserine lactone (HSL). Regulation of bacterial quorum sensing signaling systems to inhibit pathogenesis represents a new approach to antimicrobial therapy in the treatment of infectious diseases. AHLs vary in acyl group length (C4-C18), in the substitution of C3 (hydrogen, hydroxyl, or oxo group), and in the presence or absence of one or more carbon-carbon double bonds in the fatty acid chain. These differences confer signal specificity through the affinity of transcriptional regulators of the LuxR family. C15-HSL is a product of Y. pseudituberculosis.
      • $110
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      Methyl benzyl-L-valinate hydrochloride
      T65057177721-72-1
      Methyl benzyl-L-valinate hydrochloride is a useful organic compound for research related to life sciences. The catalog number is T65057 and the CAS number is 177721-72-1.
        7-10 days
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        L-Homopropargylglycine hydrochloride
        T41089942518-19-6
        L-Homopropargylglycine hydrochloride is an alkyl-based PROTAC linker used in PROTAC synthesis. It is an amino acid analog of methionine with an alkyne group, enabling a click chemical reaction with azide-containing Alexa Fluor.
        • $78
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        L-Cysteine hydrochloride
        T814152-89-1
        L-Cysteine hydrochloride (L-Cysteine HCl) is a conditionally essential amino acid,L-Cysteine hydrochloride suppresses ghrelin and reduces appetite in rodents and humans
        • $31
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        4-Fluoro-L-Phenylalanine hydrochloride
        T6767264231-54-5
        4-Fluoro-L-Phenylalanine hydrochloride is a useful organic compound for research related to life sciences. The catalog number is T67672 and the CAS number is 64231-54-5.
          7-10 days
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          Nε-Acetyl-L-lysine hydrochloride
          T671941820580-06-0
          Nε-Acetyl-L-lysine hydrochloride is a useful organic compound for research related to life sciences. The catalog number is T67194 and the CAS number is 1820580-06-0.
            7-10 days
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            L-Lysine hydrochloride
            T8071657-27-2
            L-Lysine hydrochloride is an essential amino acid for humans with various benefits including treating herpes, reducing diabetes-related illnesses, increasing calcium absorption and improving gut health.
            • $39
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            N-3-oxo-tetradecanoyl-L-Homoserine lactone
            T37339177158-19-9
            Quorum sensing is a regulatory system used by bacteria for controlling gene expression in response to increasing cell density. Controlling bacterial infections by quenching their quorum sensing systems is a promising field of study. The expression of specific target genes, such as transcriptional regulators belonging to the LuxIR family of proteins, is coordinated by the synthesis of diffusible acylhomoserine lactone (AHL) molecules. N-3-oxo-tetradecanoyl-L-homoserine lactone (3-oxo-C14-HSL) is a small diffusible signaling molecule involved in quorum sensing, thereby controlling gene expression and affecting cellular metabolism in bacteria.[1] [2] [3] It appears later than shorter acyl chain AHLs in developing biofilms [4] and, like other long chain 3-oxo-AHLs, stimulates the production of putisolvin, [5] which in turn, inhibits biofilm formation.
            • $275
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            (-)-L-threo-PDMP (hydrochloride)
            T35436161491-04-9
            (-)-L-threo-PDMP is an enhancer of ganglioside biosynthesis. The (-)-L-threo-PDMP (1S,2S) isomer is the active stimulatory component of DL-threo-PDMP in contrast to (+)-D-threo-PDMP , which is an inhibitor of glucosylceramide synthetase. (-)-L-threo-PDMP upregulates GM3, GD3, and GQ1b synthase levels, which are glycosyltransferases involved in ganglioside biosynthesis, and increases ganglioside levels in cells. It increases neurite outgrowth and synapse formation in vitro and improves retention of a long-term memory learned prior to forebrain ischemia in rats when administered following ischemia at a dose of 40 mg/kg per day.
            • $163
            35 days
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            N-phenylacetyl-L-Homoserine lactone
            T3774655154-48-8
            N-phenylacetyl-L-Homoserine lactone attenuates the group sensing of the pathogen Acinetobacter baumannii and can be used to study bacterial infections.
            • $62
            In Stock
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            L-Carnitine hydrochloride
            T201236645-46-1
            Carnitine is a quaternary amine that occurs naturally in most mammalian tissue. Carnitine is present in relatively high concentrations in skeletal muscle and heart where it is involved in regulating energy metabolism. It has also been used to allow the en
            • $39
            7-10 days
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            Methyl O-(tert-butyl)-L-threoninate hydrochloride
            T6524771989-43-0
            Methyl O-(tert-butyl)-L-threoninate hydrochloride is a useful organic compound for research related to life sciences. The catalog number is T65247 and the CAS number is 71989-43-0.
              7-10 days
              Inquiry
              4-Azido-L-phenylalanine hydrochloride
              T14038L34670-43-4
              4-Azido-L-phenylalanine hydrochloride (p-Azido-L-phenylalanine hydrochloride) is an unnatural amino acid used as an effective vibrational reporter of local protein environments.
              • $30
              In Stock
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              Propenyl-L-NIO (hydrochloride)
              T23188
              Propenyl-L-NIO (hydrochloride) is an iNOS inhibitor.
              • $90
              Backorder
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              Ethyl-L-NIO (hydrochloride)
              T22770150403-97-7
              modestly selective NOS inhibitor
              • $138
              35 days
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              N-(Ketocaproyl)-DL-homoserine lactone
              T1622676924-95-3
              N-(Ketocaproyl)-DL-homoserine lactone is a quorum sensing (QS) autoinducer. N-(Ketocaproyl)-DL-homoserine lactone also is a natural and active ligand of LuxR.
              • $30
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              L-Glucono-gamma-lactone
              T3273274464-44-1
              L-Glucono-gamma-lactone is a food additive that can be used as a sequestrant, an acidifier, or a curing, pickling, or leavening agent.
              • $1,520
              6-8 weeks
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              N-(beta-Ketocaproyl)-L-hoMoserine lactone
              T22374143537-62-6
              N-(beta-Ketocaproyl)-L-hoMoserine lactone (N-(Ketocaproyl)-L-homoserine lactone) is a component of quorum regulatory sensing and an autoinducer of P. fischeri luciferase.
              • $39
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              N-decanoyl-L-Homoserine lactone
              T37739177315-87-6
              N-decanoyl-L-Homoserine lactone (C10-HSL) is an N-acyl-homoserine lactone (AHL) produced by Pseudomonas cremoris strain ND07.N-decanoyl-L-homoserine lactone inhibits the growth of primary roots of Arabidopsis thaliana.N-decanoyl-L-homoserine lactone treatment caused a transient and immediate increase in free Ca2+ and reactive oxygen species (ROS) concentrations in the root cytoplasm. N-decanoyl-L-homoserine lactone treatment induced transient and immediate increases in cytoplasmic free Ca2+ and reactive oxygen species (ROS) concentrations in Arabidopsis roots, increased mitogen-activated protein kinase 6 (MPK6) activity, and contributed to the production of nitric oxide (NO).
              • $39
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              Ethyl L-valinate hydrochloride
              T6758617609-47-1
              Ethyl L-valinate hydrochloride is a useful organic compound for research related to life sciences. The catalog number is T67586 and the CAS number is 17609-47-1.
                7-10 days
                Inquiry
                L-858,051 (hydrochloride)
                T37477115116-37-5
                L-858,051 is a water-soluble analog of forskolin , a cell-permeant activator of adenylate cyclase. L-858,051 activates adenylate cyclase (EC50 = 3 μM), inhibits glucose transport, and blocks cytochalasin B binding in rat adipocyte membranes. L-858,051 is used to activate adenylate cyclase and initiate signaling through elevated cAMP synthesis in a variety of cell types in culture.
                • $1,520
                6-8 weeks
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                L-Azidohomoalanine hydrochloride
                T41090942518-29-8
                L-Azidohomoalanine hydrochloride (H-L-Aha-OH hydrochloride) is an alkyl chain-based PROTAC linker.
                • $30
                In Stock
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