.grx-pd { /* no font-size: inherits the theme's body text size so this block matches surrounding UI on both Shopify and Zoey */ max-width: 760px; font-family: -apple-system, BlinkMacSystemFont, "Segoe UI", Roboto, Helvetica, Arial, sans-serif; color: #1a1a1a; line-height: 1.5; } .grx-pd__intro { font-size: 1em; margin: 0 0 1.75rem; } /* em = relative to inherited body size */ .grx-pd__intro strong { color: #0f0f0f; } /* auto-fit grid: cards reflow from 1 col on mobile to 2 on wider screens without media queries */ .grx-pd__grid { display: grid; grid-template-columns: repeat(auto-fit, minmax(260px, 1fr)); gap: 14px; margin: 0 0 2rem; } .grx-pd__card { background: #f7f8fa; color: #3d3d3d; border-radius: 0; padding: 16px 18px; font-size: 1em; /* matches theme body text exactly */ transition: box-shadow .15s ease, transform .15s ease; } .grx-pd__card:hover { /* subtle lift signals these are discrete data points, not a plain list */ box-shadow: 0 4px 14px rgba(0,0,0,.06); } .grx-pd__card-title { /* larger + heavier than body so the mechanism reads first, body copy second */ display: block; font-size: 1em; font-weight: 700; color: #0f0f0f; margin: 0 0 .5rem; line-height: 1.5; } /* disclaimer intentionally low-contrast + small: legally present, visually de-emphasized */ .grx-pd__legal { border-top: 1px solid #e6e8ec; padding-top: 1.5rem; font-size: 1em; color: #6b7280; line-height: 1.55; } .grx-pd__legal p { margin: 0 0 .6rem; font-size: 1em;} .grx-pd__legal p:last-child { margin-bottom: 0; } Dihexa is a synthetic peptide derivative designed to interact with hepatocyte growth factor (HGF) pathways, exhibiting high affinity for the HGF receptor c-Met. It has been evaluated in peer-reviewed literature for its potential role in modulating synaptic connectivity and neural plasticity through enhancement of neurotrophic signaling cascades. c-Met Receptor BindingDihexa demonstrates high binding affinity to the c-Met receptor, facilitating activation of downstream signaling pathways associated with cellular growth and differentiation. Synaptogenesis and Spine FormationDihexa has been studied for its role in promoting synaptogenesis and dendritic spine formation in preclinical models. Neurotrophic Factor ModulationDihexa exhibits modulation of neurotrophic factors implicated in neural network remodeling in animal studies. Cognitive Pathway InfluenceDihexa has been evaluated for its capacity to influence cognitive-related pathways via enhancement of synaptic function in preclinical research. Neuronal Survival SupportDihexa supports mechanisms involved in neuronal survival and synaptic maintenance as observed in in vitro and in vivo models. This product is intended for use by licensed healthcare providers in clinical settings. It is not intended for consumer sale. Buyer/doctor has determined and documented that the use of this product is appropriate for the patient based on the assessment of the patient's needs. These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure, or prevent any disease. For professional use only.