3 Results for "

β-hairpin conformation

" in MedChemExpress (MCE) Product Catalog:
Products (3)

3 Results for "β-hairpin conformation" in MCE Product Catalog:

Cat. No.: HY-P11035
Target:  

Ephrin Receptor

Research Areas:  

Neurological Disease Cancer

APY-d3 is a highly selective EphA4 receptor inhibitor, with an IC50 value of 17-56 nM for human EphA4, an IC50 value of 20 nM for mouse EphA4, and a Kd value of 138 nM for EphA4-LBD. APY-d3 binds to EphA4, blocks its interaction with ephrin ligands, inhibits tyrosine phosphorylation of EphA4, prevents growth cone collapse, and does not induce EphA4 phosphorylation in primary cortical neurons. APY-d3 adopts a β-hairpin conformation stabilized by an N-terminal to C-terminal disulfide bond. APY-d3 can be used in research related to amyotrophic lateral sclerosis, Alzheimer's disease, stroke, neurodegenerative diseases and cancer .
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Cat. No.: HY-P6299
CAS No.: 944792-75-0
Research Areas:  

Neurological Disease Cancer

MAX8 is a synthetic β-hairpin peptide that folds rapidly and self-assembles into a β-sheet-rich fibrous hydrogel network via non-covalent crosslinking. MAX8 hydrogel exhibits excellent shear-thinning and self-healing properties, enabling precise delivery via syringe and maintaining local retention after implantation. MAX8 hydrogel can uniformly encapsulate cells while preserving their viability and morphology, and protect growth factors (e.g., NGF) and chemotherapeutic drugs from degradation. MAX8 is applicable for spinal cord injury repair, medulloblastoma treatment, and three-dimensional high-throughput drug screening .
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Cat. No.: HY-P10699
CAS No.: 487036-63-5
Research Areas:  

Neurological Disease Cancer

MAX1 is a synthetic β-hairpin peptide that folds rapidly and self-assembles into a β-sheet-rich fibrous hydrogel network via non-covalent crosslinking. MAX1 hydrogel exhibits excellent shear-thinning and self-healing properties, enabling precise delivery via syringe and maintaining local retention after implantation. MAX1 hydrogel can uniformly encapsulate cells while preserving their viability and morphology, and protect growth factors (e.g., NGF) and chemotherapeutic drugs from degradation. MAX1 is applicable for spinal cord injury repair, medulloblastoma treatment, and three-dimensional high-throughput drug screening .
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