Neuronal Metabolism Antibodies

Neuronal Metabolism Antibodies

Ace Therapeutics is dedicated to providing our clients with top-notch antibodies related to stroke neuronal metabolism. These antibodies are specifically designed to target key proteins and molecules involved in stroke neuronal metabolism. Whether you need antibodies for immunohistochemistry, western blotting, or other applications, Ace Therapeutics can meet your needs.

Neuronal metabolism mainly refers to the energy metabolism process within neuronal cells. Neurons require a large amount of energy to maintain normal physiological functions, such as transmitting nerve impulses, synthesizing proteins, and regulating the intracellular environment. Most neurons rely primarily on oxygen and glucose to produce energy. After glucose enters neurons, it produces ATP (adenosine triphosphate) through processes such as glycolysis and mitochondrial oxidative phosphorylation, providing the energy needed by cells.

In addition, the glucose transporter (glucose transporter 1, GLUT1) in the blood-brain barrier (BBB) plays an important role in maintaining this energy metabolism, helping to transport glucose from the blood to the brain and maintaining stable glucose in the brain. GLUT1 is an active glucose transporter that drives glucose transport in a concentration gradient and is highly expressed in endothelial cells of the BBB. GLUT1 efficiently maintains a relatively constant level of glucose transport regardless of changes in blood glucose levels.

Currently, a variety of antibodies have been used to study neuronal metabolism in stroke. Some antibodies commonly used include glucose transporter antibodies, pyruvate dehydrogenase antibodies, mitochondrial antibodies, and lactate dehydrogenase antibodies.

Ace Therapeutics provides comprehensive research tools for neuronal metabolism in stroke, including but not limited to GAL antibodies, FTO antibodies, IRS1 antibodies, and releasing peptide antibodies.

Please access our all-series neuronal metabolism antibodies or contact our scientist for personalized assistance.

All of our products are intended for preclinical research use only and cannot be used to diagnose, treat or manage patients.
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