We deliver to you every day from 7:00 to 23:00
Buy Peptides
Researched Benefits:
- Facilitates analysis of ACTH 4-10 derivative-mediated melanocortin receptor signaling and neuroplasticity
- Supports investigation into brain-derived neurotrophic factor expression and synaptic connectivity pathways
- Enables research on trkB receptor activation and high-affinity choline uptake mechanisms
- Useful for modeling neuroprotective responses in central nervous system cellular assays
Researched Benefits:
- Facilitates analysis of neurotrophic factor-mimetic activity and Trk receptor signaling
- Supports investigation into proteolytic cleavage and synaptic plasticity in neuronal assays
- Enables research on anti-apoptotic pathways and oxidative stress modulation in microglia
- Useful for evaluating glucose transporter expression and metabolic homeostasis in astrocytes
DSIP 10mg
Researched Benefits:
- Facilitates analysis of delta-sleep-inducing peptide-mediated modulation of thalamic and hypothalamic rhythms
- Supports investigation into GABAergic signaling and inhibition of corticotropin-releasing hormone release
- Enables research on NMDA-receptor antagonism and neuroprotective antioxidant enzyme expression assays
- Useful for evaluating central nervous system-mediated regulation of neuroendocrine and circadian pathways
Researched Benefits:
- Facilitates analysis of telomerase activation and telomere length maintenance in assays
- Supports investigation into peptide-DNA interactions within pineal gland chromatin architecture
- Enables research on melatonin secretion regulation and circadian rhythm metabolic pathways
- Useful for evaluating epigenetic modulation of cellular senescence and repair mechanisms
Researched Benefits:
- Facilitates analysis of telomerase activation and telomere length maintenance in assays
- Supports investigation into peptide-DNA interactions within pineal gland chromatin architecture
- Enables research on melatonin secretion regulation and circadian rhythm metabolic pathways
- Useful for evaluating epigenetic modulation of cellular senescence and repair mechanisms
Researched Benefits:
- Selective TREK-1 potassium channel antagonist for investigating antidepressant-like signaling pathways
- Facilitates analysis of hippocampal brain-derived neurotrophic factor expression and activation
- Supports research on glutamatergic neurotransmission modulation and synaptic plasticity in assays
- Enables evaluation of rapid-acting neurogenic responses within controlled cellular assay models
Researched Benefits:
- Facilitates analysis of tissue-specific gene expression and chromatin remodeling within the central nervous system.
- Supports investigation into the regulation of pineal gland function and melatonin biosynthetic pathways.
- Enables research on the modulation of oxidative stress and neuroprotective protein synthesis in neuronal tissue.
- Useful for evaluating the epigenetic regulation of circadian rhythms and cognitive-related cellular assays.
Selank 10mg
Researched Benefits:
- Potent ACTH(4-10) analog for investigating melanocortin receptor-mediated neuroplasticity and signaling
- Facilitates analysis of brain-derived neurotrophic factor expression and trkB receptor activation
- Supports research on enkephalinase inhibition and subsequent opioid-mediated neuroprotective signaling pathways
- Enables evaluation of GABAergic system modulation and serotonin metabolic rate in assays
Researched Benefits:
- Potent ACTH(4-10) analog for investigating melanocortin receptor-mediated neuroplasticity and signaling
- Facilitates analysis of brain-derived neurotrophic factor expression and trkB receptor activation
- Supports research on enkephalinase inhibition and subsequent opioid-mediated neuroprotective signaling pathways
- Enables evaluation of GABAergic system modulation and serotonin metabolic rate in assays
Researched Benefits:
- Potent ACTH(4-10) derivative for investigating melanocortin receptor-mediated neuroplasticity and signaling
- Supports analysis of brain-derived neurotrophic factor expression and trkB receptor activation
- Enables research on high-affinity choline uptake and acetylcholine biosynthetic pathway regulation
- Useful for evaluating enkephalinase inhibition and subsequent opioid-mediated neuroprotective response assays
Researched Benefits:
- Potent ACTH(4-10) derivative for investigating melanocortin receptor-mediated neuroplasticity and signaling
- Supports analysis of brain-derived neurotrophic factor expression and trkB receptor activation
- Enables research on high-affinity choline uptake and acetylcholine biosynthetic pathway regulation
- Useful for evaluating enkephalinase inhibition and subsequent opioid-mediated neuroprotective response assays
Researched Benefits:
- Potent pan-agonist for investigating Estrogen-Related Receptor (ERRα, ERRβ, and ERRγ) signaling.
- Facilitates analysis of mitochondrial biogenesis and enhanced oxidative phosphorylation pathways.
- Supports investigation into exercise-mimetic effects on skeletal muscle metabolic reprogramming.
- Enables research on fatty acid oxidation and glucose uptake mechanisms in metabolic homeostasis models.
Recently viewed items
Researched Benefits:
- Facilitates analysis of IGF-1Eb isoform-specific activation of muscle satellite cell proliferation
- Supports investigation into phosphorylation-mediated MAPK/ERK and PI3K/Akt signaling pathways
- Enables research on mechano-transduction and cellular responses to local mechanical stress
- Useful for evaluating myogenic regulatory factor expression in skeletal muscle assays
Researched Benefits:
- Facilitates analysis of FOXO4-p53 interaction inhibition for investigating targeted senolysis
- Supports investigation into p53-mediated mitochondrial apoptosis in senescent cell assays
- Enables research on selective elimination of senescent fibroblasts and myofibroblasts
- Useful for evaluating homeostatic recovery and cellular rejuvenation in aging-related models














