What it's studied for In animals and in cells, dihexa has been looked at for: Memory and learning in rodents mostly the Morris water maze, a test where a rat has to remember where a hidden platform is Models of Alzheimer's disease for example, in genetically modified mice bred to develop Alzheimer's-like brain changes Models of Parkinson's disease and motor problems Growing new synapses in hippocampal cells in a dish There's also a genuinely mundane use worth knowing about, because it's revealing: dihexa shows up in stem cell laboratories as a reagent a cheap chemical stand-in for an expensive growth factor, used to help turn stem cells into liver cells in a dish
After the study, almost 70 -90 % of GHK-Cu had been retained in the patch in tested animals
In addition, the unregulated TSH secreted in thyrotroph adenoma can lead to increased production of T3 and T4
This blend is synthesized strictly for in vitro laboratory research, analytical testing, and imaging studies
[1] [2] It is not recommended for adults over 75 years, as safety and efficacy data in this population are limited
It is "metabolically expensive." It burns through energy faster than the average brain because it is hyper-sensitive to sensory input (light, sound, smell, barometric pressure)