PUMP MIX BLEND 20ml

PUMP MIX BLEND 20ml

34.99 EUR In stock Buy at Merchant

PUMP MIX BLEND research-grade multi-amino acid solution in a 20 ml glass bottle. This laboratory blend combines L-arginine, L-citrulline, L-glutamine, L-taurine, L-lysine, L-proline, L-carnitine and N-acetylcysteine (NAC), making it suitable for experimental models focused on nitric oxide pathways, amino acid transport, cellular metabolism, osmotic balance and redox-related processes. Research Use Only: All products are intended exclusively for laboratory and scientific research. Not for human or veterinary use. Purity Research-grade blend Form Clear solution Content Multi-amino acid blend per 1 ml Ingredients per 1 ml L-arginine 30 mg, L-citrulline 85 mg, L-glutamine 30 mg, L-taurine 45 mg, L-lysine 50 mg, L-proline 45 mg, L-carnitine 220 mg, N-acetylcysteine (NAC) 60 mg Packaging 20 ml glass bottle with sterile closure Storage 2–8 °C, protect from light Bottle Size 20 ml Application Laboratory and scientific research only Research Overview PUMP MIX BLEND is a formulated solution of amino acids and NAC frequently selected for experimental work involving nitric oxide precursor systems, amino acid uptake, mitochondrial energy metabolism, osmotic regulation and redox balance. The inclusion of arginine and citrulline supports studies of nitrogen metabolism and NO-related signaling, while taurine, glutamine, carnitine and NAC expand its relevance to broader cellular stress and metabolic research models. Primary Research Areas Nitric oxide & arginine-citrulline cycle research: used in experimental models investigating substrate availability, endothelial signaling and nitrogen balance. Cellular energy & mitochondrial metabolism: applied in studies involving L-carnitine transport systems, amino acid utilization and metabolic efficiency. Osmoregulation & cell stress response: taurine and glutamine are commonly explored in models of cell volume control, membrane stability and stress adaptation. Redox balance & antioxidant pathways: N-acetylcysteine is widely studied as a precursor-related compound in glutathione-associated and oxidative stress research. Amino acid transport & structural metabolism: lysine and proline are relevant in experimental work focused on amino acid transport, protein turnover and matrix-related pathways.

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