Protease Inhibitors
Learn MoreMicrotubule inhibitors are a class of drugs that have revolutionized the field of cancer treatment These innovative pharmaceuticals disrupt the dynamic nature of microtubules which are essential components of the cell's structural framework By interfering with microtubule assembly and function these inhibitors effectively halt cell division preventing the uncontrolled growth and proliferation of cancer cells This targeted approach is particularly effective in treating various types of cancer making microtubule inhibitors invaluable tools in oncology Our company offers a diverse range of microtubule inhibitors providing researchers and medical professionals with essential resources to combat this devastating disease
Catalog Number | Chemical Name | CAS # | Price |
---|---|---|---|
BC-0096 | Pseudolaric Acid B | 82508-31-4 | Online Inquiry |
BC-0525 | BNC-105 | 945771-74-4 | Online Inquiry |
BC-0542 | Combretastatin A4 | 117048-59-6 | Online Inquiry |
BC-0557 | Docetaxel | 114977-28-5 | Online Inquiry |
BC-0565 | Epothilone B | 152044-54-7 | Online Inquiry |
BC-0604 | Lexibulin | 917111-44-5 | Online Inquiry |
BC-0619 | Nek2/Hec1 inhibitor | 560103-80-2 | Online Inquiry |
BC-0622 | Nocodazole | 31430-18-9 | Online Inquiry |
BC-0627 | Paclitaxel | 33069-62-4 | Online Inquiry |
BC-0637 | Podophyllotoxin | 518-28-5, 4354-76-1 | Online Inquiry |
BC-0671 | VEGFR-2 & tubulin inhibitor | 830333-53-4 | Online Inquiry |
BC-0673 | Vinblastine Sulfate | 143-67-9 | Online Inquiry |
BC-0674 | Vinorelbine Tartrate | 125317-39-7 | Online Inquiry |
BC-0837 | Colchicine | 64-86-8 | Online Inquiry |
BC-0848 | Importazole | 662163-81-7 | Online Inquiry |
Microtubule inhibitors are versatile and valuable tools in both scientific research and medical applications In the field of research they are commonly utilized to investigate the intricate processes involved in cell division and organization By inhibiting the formation or function of microtubules scientists can gain a deeper understanding of cellular dynamics mitotic spindle formation and intracellular transport mechanisms
Furthermore microtubule inhibitors have shown great promise in the field of cancer treatment As cancer cells often have increased rates of cell division they rely heavily on microtubule dynamics for their growth and proliferation By targeting and inhibiting microtubule function these inhibitors can disrupt the cell division process and induce programmed cell death thereby inhibiting tumor growth and potentially increasing patient survival rates
Additionally microtubule inhibitors have been explored as potential treatments for neurological disorders such as Alzheimer's disease In these conditions abnormal protein aggregation and impaired intracellular transport contribute to disease progression By inhibiting microtubule function these inhibitors can help regulate protein distribution and prevent the formation of toxic protein aggregates offering potential therapeutic benefits
In summary microtubule inhibitors are powerful tools with wide-ranging applications in scientific research and medical treatments Their ability to modulate cellular processes and target disease-related pathways makes them valuable assets in understanding biological mechanisms and developing new therapeutic interventions
Please note that all services are for research use only. Not intended for any clinical use.
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