HA 14-1

98%

  • Product Code: 110640
  CAS:    65673-63-4
Molecular Weight: 409.23 g./mol Molecular Formula: C₁₇H₁₇BrN₂O₅
EC Number: MDL Number: MFCD00218213
Melting Point: 105-108° C Boiling Point: 535.1° C at 760 mmHg
Density: 1.48g/mL Storage Condition:  -20°C
Product Description: HA 14-1 is primarily used in research settings to study apoptosis, or programmed cell death, in various cell types. It acts as an inhibitor of Bcl-2, a protein that plays a crucial role in preventing apoptosis. By inhibiting Bcl-2, HA 14-1 helps researchers understand the mechanisms of cell survival and death, particularly in cancer cells. This compound is often employed in laboratory experiments to explore potential therapeutic strategies for cancers that overexpress Bcl-2, as it can sensitize these cells to apoptosis-inducing treatments. Additionally, HA 14-1 is utilized in studies investigating the role of Bcl-2 in other diseases where apoptosis regulation is critical, such as neurodegenerative disorders and autoimmune conditions. Its application is largely confined to in vitro and preclinical research, providing valuable insights into the molecular pathways of cell death and survival.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.100 10-20 days Ft57,792.32
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HA 14-1
HA 14-1 is primarily used in research settings to study apoptosis, or programmed cell death, in various cell types. It acts as an inhibitor of Bcl-2, a protein that plays a crucial role in preventing apoptosis. By inhibiting Bcl-2, HA 14-1 helps researchers understand the mechanisms of cell survival and death, particularly in cancer cells. This compound is often employed in laboratory experiments to explore potential therapeutic strategies for cancers that overexpress Bcl-2, as it can sensitize these cells to apoptosis-inducing treatments. Additionally, HA 14-1 is utilized in studies investigating the role of Bcl-2 in other diseases where apoptosis regulation is critical, such as neurodegenerative disorders and autoimmune conditions. Its application is largely confined to in vitro and preclinical research, providing valuable insights into the molecular pathways of cell death and survival.
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