- Peptides
- Peptide and Derivatives
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- Dipeptides
Dipeptides
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Dipeptides (286)
- Formula: C9H18N2O4
- Molecular Weight: 218.25
Serylleucine (H-Ser-Leu-OH) is a dipeptide. Serylleucine's core 1 o-glycosylated peptide (SLC1G) can be detected in urine as a metabolite and is a biomarker in TB studies.
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- Formula: C23H24N2O6
- Molecular Weight: 424.45
Fmoc-Gly-Ser(psi(Me,Me)pro)-OH is a side-chain protected amino acid building block. Fmoc-Gly-Ser(psi(Me,Me)pro)-OH can be used for peptide synthesis.
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- Formula: C10H20N2O4
- Molecular Weight: 232.28
Thr-Leu is a dipeptide composed of threonine and leucine. Thr-Leu can be hydrolyzed in the peritoneal cavity to generate constituent amino acids, thereby increasing the osmotic pressure of the dialysate. Thr-Leu can be used for the kinetic study of amino acid-based peritoneal dialysis fluids.
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- Formula: C8H12N2O2
- Molecular Weight: 168.19
Cyclo(Ala-Pro) is an anticancer agent that is toxic to cancer cells such as A549, HCT-116 and HepG2.
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- Formula: C10H18N2O3
- Molecular Weight: 214.26
H-Pro-Val-OH is a deprotonation dipeptide containing proline, which can catalyze the Michael addition reaction of acetone to trans-β-nitrostyrene. H-Pro Val OH can also serve as a substrate for fibroblast enzymes and prolinase, and has potential applications in biochemical analysis.
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- Formula: C7H12N2O4
- Molecular Weight: 188.18
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- Formula: C5H10N2O3
- Molecular Weight: 146.14
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- Formula: C5H10N2O3
- Molecular Weight: 146.14
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- Formula: C7H12N2O5
- Molecular Weight: 204.18
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- Formula: C15H20N2O3
- Molecular Weight: 276.34
Cyclo(Tyr-Leu) is a cyclic dipeptide.
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- Formula: C18H18N2O2
- Molecular Weight: 294.35
Cyclo(Phe-Phe) 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.
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- Formula: C9H15N3O6
- Molecular Weight: 261.23
γ-Glu-Asn (γ-Glutamylasparagine) is a calcium sensing receptor (CaSR) agonist. γ-Glu-Asn is a dipeptide composed of glutamic acid and asparagine.
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- Formula: C9H16N2O6
- Molecular Weight: 248.23
H-Glu-Thr-OH (L-α-Glutamyl-L-threonine) is a dipeptide made up of two amino acids—glutamic acid (Glu) and threonine (Thr)—connected by a peptide bond, and it acts as an agonist for the extracellular calcium-sensing receptor (CaSR).
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- Formula: C13H18N2O4
- Molecular Weight: 266.29
H-Thr-Phe-OH 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.
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- Formula: C12H16N2O4
- Molecular Weight: 252.27
H-Ser-Phe-OH 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.
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- Formula: C12H25N5O3
- Molecular Weight: 287.36
Arg-Leu 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.
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- Formula: C11H14N2O3
- Molecular Weight: 222.24
Glycyl-DL-phenylalanine is a phenylalanine derivative.
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- Formula: C32H41N3O8
- Molecular Weight: 595.68
Fmoc-Lys(Boc)-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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- Formula: C11H17ClN4O3
- Molecular Weight: 288.73
His-Pro (Histidyl-proline) hydrochloride is a dipeptide consisting of histidyl and proline.
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- Formula: C4H8N2O3
- Molecular Weight: 132.12
Glycylglycine (Standard) is the analytical standard of Glycylglycine (HY-D0889). This product is intended for research and analytical applications. Glycylglycine is a non-selective glycylglycine dipeptidase substrate and iNOS inhibitor. Glycylglycine can cross the cell membrane by passive diffusion and is hydrolyzed to glycine in the cell, participating in energy metabolism and antioxidant processes. Glycylglycine promotes spermatogonial stem cells (SSCs) proliferation, inhibits astrocyte overactivation and reduces nitric oxide (NO) release, while upregulating the expression of neurotrophic factors (such as PDGFA, FGF2, CNTF) to support nerve myelin repair. Glycylglycine can be used to study male reproductive biology (such as SSCs proliferation regulation) and neurodegenerative diseases (such as neuroprotective mechanisms in multiple sclerosis).
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