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315 The expression levels of GLP-1R, PKA/CREB signaling pathway components, and inflammation-related proteins (such as TNF-, IL-1, and IL-6) in the rat knee cartilage tissue were measured using Western blot and immunoprecipitation techniques

~403 Da (copper complex) Form: Lyophilized powder Vial Size: 50mg in 3mL glass vial Purity: 99%+ verified by HPLC and mass spectrometry (See COAs) Research Background GHK-Cu has been investigated in research literature across several scientific contexts: Tissue biology research investigations into peptide-copper complex effects on cellular signaling pathways in tissue models Extracellular matrix research studies examining cellular responses involving collagen synthesis pathways and matrix protein regulation in cell culture systems Copper-binding peptide chemistry analytical chemistry research on GHKs selective copper binding properties and the cellular biology of copper homeostasis Cellular signaling pathway research investigations into GHK-Cus interactions with cellular receptor systems and downstream signaling cascades Gene expression research studies examining GHK-Cus effects on cellular gene expression patterns in research models Comparative peptide research analytical studies positioning GHK-Cu alongside other naturally occurring copper-binding peptides in cellular research contexts GHK-Cu is historically significant as one of the most extensively studied naturally occurring copper-binding peptides, originally identified by Pickart et al

Safety profiles vary by compound and are better established for some peptides than others
For this reason, identifying strategies that reduce metabolic efficiency has long been of interest in experimental research