Tauroursodeoxycholic Acid (TUDCA): A Deep Dive into Neural Stem Cell Proliferation and Metabolism

Discover how Tauroursodeoxycholic Acid (TUDCA) is revolutionizing neural stem cell research by reprogramming metabolic pathways to enhance proliferation and neurogenesis. Explore its mechanisms and applications in advancing CNS therapies.

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Key Advantages of TUDCA for Your Research

Metabolic Plasticity Induction

TUDCA drives a crucial metabolic shift in NSCs, favoring de novo lipogenesis over fatty acid oxidation, which is directly linked to increased cell division. Discover how this metabolic plasticity can be leveraged for research purposes.

Support for Neurogenesis

By influencing mitochondrial function and potentially histone acetylation via nuclear PDHE1-α, TUDCA supports the complex processes required for NSC differentiation and the expansion of the neural stem cell pool.

Research Grade Quality

As a dedicated manufacturer and supplier, we ensure the highest purity and quality of TUDCA (CAS 14605-22-2), providing researchers with a reliable compound for reproducible results in their biochemical and neuroscience studies.

Applications in Advanced Research

Neural Stem Cell Biology

Investigate the fundamental mechanisms of NSC proliferation and differentiation, and how metabolic regulators like TUDCA can modulate these processes. Purchase TUDCA for your lab today.

Neuroprotection Studies

Explore the neuroprotective potential of TUDCA, examining its effects on ER stress and cell death pathways relevant to neurodegenerative diseases. Contact us for bulk quotes.

Metabolic Pathway Research

Delve into the intricate interplay between lipid and glucose metabolism in neural cells. TUDCA offers a unique tool to probe these pathways, and we are a trusted supplier.

Drug Discovery & Development

Utilize TUDCA in preclinical studies aimed at developing novel therapies for neurological disorders, leveraging its known effects on NSC behavior.