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User-friendly Clasto-lactacystin B-lactone, Proteasome Inhibitor (tbi3031) Now 40% Cheaper [wANZeoag]

$39.99 $127.99 -69%

Clasto-lactacystin b-lactone: Advanced Proteasome InhibitorClasto-lactacystin b-lactone, also known as TBI3031, is a cutting-edge proteasome inhibitor that offers a novel approach to modulating cellular pathways. This potent inhibitor is designed to

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User-friendly Clasto-lactacystin B-lactone, Proteasome Inhibitor (tbi3031) Now 40% Cheaper [wANZeoag]

Clasto-lactacystin b-lactone: Advanced Proteasome Inhibitor

Clasto-lactacystin b-lactone, also known as TBI3031, is a cutting-edge proteasome inhibitor that offers a novel approach to modulating cellular pathways. This potent inhibitor is designed to target and disrupt the proteasome complex, which is crucial for the degradation of abnormal proteins in cells. With its unique molecular structure, Clasto-lactacystin b-lactone provides a reliable and efficient tool for researchers in various fields, including oncology, immunology, and neuroscience.

Key Features and Specifications

Clasto-lactacystin b-lactone stands out for its high specificity and selectivity as a proteasome inhibitor. Here are some of its key features and specifications:
  • High Potency: Offers strong inhibitory activity against the proteasome complex, ensuring effective modulation of protein degradation pathways.
  • Low Molecular Weight: Facilitates easy solubility and handling in various experimental settings.
  • Chemical Stability: Maintains its integrity over time, ensuring consistent performance in research applications.
These features make Clasto-lactacystin b-lactone an ideal choice for researchers seeking to explore the complex biology of protein degradation and its role in various diseases.

Practical Applications and Benefits

The versatile nature of Clasto-lactacystin b-lactone allows for a wide range of practical applications in research. Here are some of the benefits and uses:
  • Anticancer Research: Inhibits the proteasome to enhance the accumulation of tumor-suppressor proteins, potentially leading to anti-tumor effects.
  • Immunology Studies: Disrupts the degradation of key immune proteins, enabling better understanding of immune responses and the development of new immunotherapies.
  • Neuroscience Research: Investigates the role of protein degradation in neurodegenerative diseases, opening new avenues for therapeutic intervention.
With its exceptional properties and wide-ranging applications, Clasto-lactacystin b-lactone is a must-have tool for researchers aiming to advance their studies in the fields of proteomics and cellular biology.

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February 7, 2026

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