32 Results for "

inhibit amino acid uptake

" in MedChemExpress (MCE) Product Catalog:
Products (32)

32 Results for "inhibit amino acid uptake" in MCE Product Catalog:

35
35 Publications Verification
Cat. No.: HY-112683
CAS No.: 1855871-76-9
Purity:  99.88%
Target:  

ASCT

Research Areas:  

Cancer

V-9302 is a competitive antagonist of transmembrane glutamine flux. V-9302 selectively and potently targets the amino acid transporter ASCT2 (SLC1A5) not ASCT1. V-9302 inhibits ASCT2-mediated glutamine uptake (IC50=9.6 μM) in HEK-293 cells .
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35
35 Publications Verification
Cat. No.: HY-112683A
CAS No.: 2416138-42-4
Purity:  99.10%
Target:  

ASCT

Research Areas:  

Cancer

V-9302 hydrochloride is a competitive antagonist of transmembrane glutamine flux. V-9302 hydrochloride selectively and potently targets the amino acid transporter ASCT2 (SLC1A5) not ASCT1. V-9302 hydrochloride inhibits ASCT2-mediated glutamine uptake (IC50=9.6 µM) in HEK-293 cells .
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33
33 Cited Publications
Cat. No.: HY-B1102
CAS No.: 314-13-6
Synonyms: Direct Blue 53; T-1824; C.I. 23860
Target:  

EAAT iGluR

Evans Blue (Direct Blue 53; T-1824; C.I. 23860) is a potent inhibitor of L-glutamate uptake via the membrane bound excitatory amino acid transporter (EAAT). Evans Blue is a L-glutamate and kainate receptor-mediated currents inhibitor. Evans Blue has a strong affinity towards serum albumin, making it a high molecular weight protein tracer. Evans Blue is also used to study BBB (blood-brain barrier) permeability .
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11
11 Cited Publications
Cat. No.: HY-108540
CAS No.: 20448-79-7
Purity:  99.13%
Synonyms: 2-amino-2-norbornanecarboxylic acid; LAT1-IN-1
Target:  

Apoptosis

Research Areas:  

Cancer

BCH (2-Amino-2-norbornanecarboxylic acid) is a selective and competitive inhibitor of large neutral amino acid transporter 1 (LAT1) significantly inhibit cellular uptake of amino acids and mTOR phosphorylation, which induces the suppression of cancer growth and apoptosis .
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2
2 Cited Publications
Cat. No.: HY-125923
CAS No.: 498-59-9
Purity:  ≥98.0%
Djenkolic acid is a sulfur-containing amino acid. Djenkolic acid can be isolated from the djenkol beans of the Southeast Asian plant Archidendron jiringa. Djenkolic acid de-inhibits the SO4 2- uptake system in Pseudomonas fluorescens. Djenkolic acid causes supersaturation of the urinary system with djenkolic acid crystals, leading to urinary tract obstruction and acute kidney injury .
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1
1 Cited Publications
Cat. No.: HY-107522
CAS No.: 205309-81-5
Purity:  99.54%
Target:  

EAAT

Research Areas:  

Neurological Disease

DL-TBOA is a potent non-transportable inhibitor of excitatory amino acid transporters with IC50s of 70 μM, 6 μM and 6 μM for excitatory amino acid transporter-1 (EAAT1), EAAT2 and EAAT3, respectively. DL-TBOA inhibits the uptake of [ 14C]glutamate in COS-1 cells expressing the human EAAT1 and EAAT2 with Ki valuesof 42 μM and 5.7 μM, respectively. DL-TBOA blocks EAAT4 and EAAT5 in a competitive manner with Ki values of 4.4 μM and 3.2 μM, respectively .
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1
1 Cited Publications
Cat. No.: HY-120139
CAS No.: 1941174-13-5
Purity:  99.75%
Research Areas:  

Cancer

KMH-233, a potent, reversible and selective inhibitor of l-type amino acid transporter LAT1/SLC7A5, inhibits the uptake of LAT1 substrate, l-leucin (IC50=18 μM) as well as cell growth. KMH-233 significantly potentiates the efficacy of Bestatin and Cisplatin even at low concentrations (25 μM) .
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1
1 Cited Publications
Cat. No.: HY-B0952
CAS No.: 123-82-0
Synonyms: Tuaminoheptane
Target:  

Adrenergic Receptor

Research Areas:  

Neurological Disease

2-Aminoheptane (Tuaminoheptane) is a norepinephrine transporter inhibitor. 2-Aminoheptane binds to norepinephrine transporter via ionic and hydrophobic interactions to block norepinephrine uptake. 2-Aminoheptane deactivates ω-TAmla enzyme, reduces recombinant whole cell stability, and acts as an amino group donor substrate for ω-TA and ω-TAmla enzymes. 2-Aminoheptane can be used in research on depression and Alzheimer's disease .
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Cat. No.: HY-Y1091
CAS No.: 923-27-3
D-Lysine is the D-enantiomer of L-Lysine (HY-N0469). D-Lysine is metabolically inert and not utilized for protein synthesis by mammalian ribosomes. D-Lysine blocks renal uptake of 111In/ 90Y-Octreotide (HY-P0036)-based probes without inhibiting uptake by tumor/receptor tissues, and thus acts as a renoprotective agent in diagnostic imaging and peptide receptor radionuclide therapy (PRRT). D-Lysine specifically inhibits the early steps of non-enzymatic glycation by competing with glucose via its free amino group, theoretically, it can serve as a glycation competitor that "does not interfere with protein synthesis" under chronic hyperglycemia in diabetes. D-Lysine can be used in research related to cancer and diabetes .
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Cat. No.: HY-Y1804
CAS No.: 7274-88-6
D-Lysine monohydrochloride is the D-enantiomer of L-Lysine (HY-N0469). D-Lysine monohydrochloride is metabolically inert and not utilized for protein synthesis by mammalian ribosomes. D-Lysine monohydrochloride blocks renal uptake of 111In/ 90Y-Octreotide (HY-P0036)-based probes without inhibiting uptake by tumor/receptor tissues, and thus acts as a renoprotective agent in diagnostic imaging and peptide receptor radionuclide therapy (PRRT). D-Lysine monohydrochloride specifically inhibits the early steps of non-enzymatic glycation by competing with glucose via its free amino group, theoretically, it can serve as a glycation competitor that "does not interfere with protein synthesis" under chronic hyperglycemia in diabetes. D-Lysine monohydrochloride can be used in research related to cancer and diabetes .
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Cat. No.: HY-W008385
CAS No.: 156-86-5
Synonyms: L-Homoarginine
H-HomoArg-OH (L-Homoarginine) is an orally active endogenous non-protein amino acid. H-HomoArg-OH acts as a weak alternative substrate for NOS and interferes with NO production, selectively inhibits tissue-nonspecific alkaline phosphatase (TNAP), and suppresses the uptake of arginine by y +-type transporters (system y +). H-HomoArg-OH increases tissue hArg concentrations in vivo, regulates amino acid homeostasis, and improves renal function and pathological features of diabetic nephropathy. H-HomoArg-OH can be used in studies related to diabetes and cardiomyopathy .
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Cat. No.: HY-W012340S
CAS No.: 2483830-23-3
Synonyms: L-Homoarginine-13C7,15N4 hydrochloride
H-HomoArg-OH- 13C7, 15N4 hydrochloride (L-Homoarginine- 13C7, 15N4 hydrochloride) is the 15N, 13C-labeled H-HomoArg-OH (hydrochloride) (HY-W012340). H-HomoArg-OH hydrochloride (L-Homoarginine hydrochloride) is an orally active endogenous non-protein amino acid. H-HomoArg-OH hydrochloride acts as a weak alternative substrate for NOS and interferes with NO production, selectively inhibits tissue-nonspecific alkaline phosphatase (TNAP), and suppresses the uptake of arginine by y +-type transporters (system y +). H-HomoArg-OH hydrochloride increases tissue hArg concentrations in vivo, regulates amino acid homeostasis, and improves renal function and pathological features of diabetic nephropathy. H-HomoArg-OH hydrochloride can be used in studies related to diabetes and cardiomyopathy .
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Cat. No.: HY-W012340
CAS No.: 1483-01-8
Synonyms: L-Homoarginine hydrochloride
H-HomoArg-OH hydrochloride (L-Homoarginine hydrochloride) is an orally active endogenous non-protein amino acid. H-HomoArg-OH hydrochloride acts as a weak alternative substrate for NOS and interferes with NO production, selectively inhibits tissue-nonspecific alkaline phosphatase (TNAP), and suppresses the uptake of arginine by y +-type transporters (system y +). H-HomoArg-OH hydrochloride increases tissue hArg concentrations in vivo, regulates amino acid homeostasis, and improves renal function and pathological features of diabetic nephropathy. H-HomoArg-OH hydrochloride can be used in studies related to diabetes and cardiomyopathy .
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Cat. No.: HY-P10997
CAS No.: 536971-53-6
Target:  

DNA/RNA Synthesis

F3 peptide is a nucleolin-binding tumor-homing peptide that mediates selective uptake and internalization by tumor cells. F3 peptide is a 31-amino acid fragment of human high mobility group nucleosomal protein 2 (HMGN2). F3 peptide inhibits protein synthesis through ribosome inactivation. F3 peptide targets the tumor vasculature. F3 peptide can serve as an effective ligand to improve the druggability of macromolecular drugs or nanoparticles. F3 peptide is used in research on cancers such as glioblastoma and breast cancer .
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Cat. No.: HY-W008385R
CAS No.: 156-86-5
Synonyms: L-Homoarginine (Standard)
H-HoArg-OH (Standard) (L-Homoarginine (Standard)) is the analytical standard of H-HoArg-OH (HY-W008385). This product is intended for research and analytical applications. H-HomoArg-OH (L-Homoarginine) is an orally active endogenous non-protein amino acid. H-HomoArg-OH acts as a weak alternative substrate for NOS and interferes with NO production, selectively inhibits tissue-nonspecific alkaline phosphatase (TNAP), and suppresses the uptake of arginine by y +-type transporters (system y +). H-HomoArg-OH increases tissue hArg concentrations in vivo, regulates amino acid homeostasis, and improves renal function and pathological features of diabetic nephropathy. H-HomoArg-OH can be used in studies related to diabetes and cardiomyopathy .
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Cat. No.: HY-W008385S
CAS No.: 1332075-41-8
Synonyms: L-Homoarginine-d4
H-HoArg-OH-d4 (L-Homoarginine-d4) is the d4-labeled H-HoArg-OH (HY-W008385). H-HoArg-OH (L-Homoarginine) is an orally active endogenous non-protein amino acid. H-HoArg-OH acts as a weak alternative substrate for NOS and interferes with NO production, selectively inhibits tissue-nonspecific alkaline phosphatase (TNAP), and suppresses the uptake of arginine by y +-type transporters (system y +). H-HoArg-OH increases tissue hArg concentrations in vivo, regulates amino acid homeostasis, and improves renal function and pathological features of diabetic nephropathy. H-HoArg-OH can be used in studies related to diabetes and cardiomyopathy .
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Cat. No.: HY-W035399S
D-Lysine-d8 dihydrochloride is the d8-labeled D-Lysine (HY-Y1091). D-Lysine is the D-enantiomer of L-Lysine (HY-N0469). D-Lysine is metabolically inert and not utilized for protein synthesis by mammalian ribosomes. D-Lysine blocks renal uptake of 111In/ 90Y-Octreotide (HY-P0036)-based probes without inhibiting uptake by tumor/receptor tissues, and thus acts as a renoprotective agent in diagnostic imaging and peptide receptor radionuclide therapy (PRRT). D-Lysine specifically inhibits the early steps of non-enzymatic glycation by competing with glucose via its free amino group, theoretically, it can serve as a glycation competitor that "does not interfere with protein synthesis" under chronic hyperglycemia in diabetes. D-Lysine can be used in research related to cancer and diabetes .
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Cat. No.: HY-108540R
CAS No.: 20448-79-7
Synonyms: 2-amino-2-norbornanecarboxylic acid (Standard); LAT1-IN-1 (Standard)
Research Areas:  

Cancer

BCH (Standard) is the analytical standard of BCH. This product is intended for research and analytical applications. BCH (2-Amino-2-norbornanecarboxylic acid) is a selective and competitive inhibitor of large neutral amino acid transporter 1 (LAT1) significantly inhibit cellular uptake of amino acids and mTOR phosphorylation, which induces the suppression of cancer growth and apoptosis .
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Cat. No.: HY-107522B
CAS No.: 2093503-71-8
Target:  

EAAT

Research Areas:  

Neurological Disease

DL-TBOA ammonium is a potent non-transportable inhibitor of excitatory amino acid transporters with IC50s of 70 μM, 6 μM and 6 μM for excitatory amino acid transporter-1 (EAAT1), EAAT2 and EAAT3, respectively. DL-TBOA ammonium inhibits the uptake of [ 14C]glutamate in COS-1 cells expressing the human EAAT1 and EAAT2 with Ki valuesof 42 μM and 5.7 μM, respectively. DL-TBOA ammonium blocks EAAT4 and EAAT5 in a competitive manner with Ki values of 4.4 μM and 3.2 μM, respectively .
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Cat. No.: HY-120139A
CAS No.: 2994330-89-9
Target:  

ASCT

Research Areas:  

Cancer

(R)-KMH-233 is the isomer of KMH-233 (HY-120139), and can be used as an experimental control. KMH-233, a potent, reversible and selective l-type amino acid transporter 1 (LAT1) inhibitor, inhibits the uptake of LAT1 substrate, l-leucin (IC50=18 μM) as well as cell growth. KMH-233 significantly potentiates the efficacy of Bestatin and Cisplatin even at low concentrations (25 μM) .
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