Knowledge Center
Mitochondrial biogenesis: PGC-1α, AMPK, and SIRT1
Mitochondrial biogenesis is the process by which cells renew mitochondrial components and adjust their energy capacity. PGC-1α is an important regulator and works together with AMPK, SIRT1, NRF1, NRF2/GABP, and...
Mitochondrial biogenesis: PGC-1α, AMPK, and SIRT1
Mitochondrial biogenesis is the process by which cells renew mitochondrial components and adjust their energy capacity. PGC-1α is an important regulator and works together with AMPK, SIRT1, NRF1, NRF2/GABP, and...
UPRmt: mitochondrial stress response and protei...
UPRmt is a mitochondrial stress response activated by the accumulation of misfolded or damaged mitochondrial proteins. The pathway increases chaperones and proteases, among other things, to restore proteostasis. In model...
UPRmt: mitochondrial stress response and protei...
UPRmt is a mitochondrial stress response activated by the accumulation of misfolded or damaged mitochondrial proteins. The pathway increases chaperones and proteases, among other things, to restore proteostasis. In model...
Mitochondrial proteostasis: chaperones and prot...
Mitochondrial proteostasis monitors the production, import, folding, and degradation of mitochondrial proteins. Chaperones such as mtHSP70, HSP60, and HSP10 support correct protein folding. Proteases like LONP1, CLPXP, YME1L, and OMA1...
Mitochondrial proteostasis: chaperones and prot...
Mitochondrial proteostasis monitors the production, import, folding, and degradation of mitochondrial proteins. Chaperones such as mtHSP70, HSP60, and HSP10 support correct protein folding. Proteases like LONP1, CLPXP, YME1L, and OMA1...
Batch numbers on peptides: traceability explained
Batch numbers and lot numbers form the basis of traceability in research peptides. A batch number links a physical vial to relevant information about: production; analysis; packaging; storage; distribution. Good...
Batch numbers on peptides: traceability explained
Batch numbers and lot numbers form the basis of traceability in research peptides. A batch number links a physical vial to relevant information about: production; analysis; packaging; storage; distribution. Good...
Peptide vials: glass, sealing, and stability
The vial is an essential part of the quality chain of freeze-dried research peptides. A complete container-closure system usually consists of: a glass vial; an elastomer stopper; an aluminum...
Peptide vials: glass, sealing, and stability
The vial is an essential part of the quality chain of freeze-dried research peptides. A complete container-closure system usually consists of: a glass vial; an elastomer stopper; an aluminum...
Freeze-dried peptides: how lyophilization works
Lyophilization is an important process for stabilizing sensitive peptide formulations. During the process, water is removed from a frozen solution by sublimation. This can reduce molecular mobility and slow down...
Freeze-dried peptides: how lyophilization works
Lyophilization is an important process for stabilizing sensitive peptide formulations. During the process, water is removed from a frozen solution by sublimation. This can reduce molecular mobility and slow down...