PXS-6302

Modify Date: 2024-04-03 11:26:13

PXS-6302 Structure
PXS-6302 structure
Common Name PXS-6302
CAS Number 2584947-54-4 Molecular Weight 265.25
Density N/A Boiling Point N/A
Molecular Formula C10H10F3NO2S Melting Point N/A
MSDS N/A Flash Point N/A

 Use of PXS-6302


PXS-6302 is an irreversible lysyl oxidase inhibitor with IC50s of 3.7 μM (Bovine LOX), 3.4 μM (rh LOXL1), 0.4 μM (rh LOXL2), 1.5 μM (rh LOXL3), 0.3 μM (rh LOXL4), respectively. PXS-6302 has readily skin penetrability, reduces collagen deposition and significantly improves scar appearance[1].

 Names

Name PXS-6302

 PXS-6302 Biological Activity

Description PXS-6302 is an irreversible lysyl oxidase inhibitor with IC50s of 3.7 μM (Bovine LOX), 3.4 μM (rh LOXL1), 0.4 μM (rh LOXL2), 1.5 μM (rh LOXL3), 0.3 μM (rh LOXL4), respectively. PXS-6302 has readily skin penetrability, reduces collagen deposition and significantly improves scar appearance[1].
Related Catalog
Target

3.7 μM (Bovine LOX), 3.4 μM (rh LOXL1), 0.4 μM (rh LOXL2), 1.5 μM (rh LOXL3), 0.3 μM (rh LOXL4)[1]

In Vitro PXS-6302 demonstrates high permeability to across a monolayer of cells, such as Caco-2 or MDCKII cells[1].
In Vivo PXS-6302 inhibits LOX, reduces crosslinking and improves scar appearance in porcine models of excisional and burn injury[1]. PXS-6302 (1.5%, oil in water cream; 500 mg cream applied to 16 cm2; external application; once daily, for 28 days) reduces collagen deposition and cross-linkin in murine models of injury and fibrosis under topical application[1]. PXS-6302 (0.5, 1.5, or 3%, oil in water cream; 400 mg cream applied to 16 cm2; external application; once daily, for 12 weeks) also significantly improves scar appearance without reducing tissue strength in porcine injury models under topical application[1]. Animal Model: Porcine excision injury model (female Juvenile pigs, 18-20 kg)[1] Dosage: 0.5, 1.5, or 3%, oil in water cream; 400 mg cream applied to 16 cm2 Administration: External application; 1, 2 and 3 weeks post-injury; once dayly, for 12 weeks Result: Showed significantly higher scores for the 3% treated scars suggesting significant improvement in scar appearance.

 Chemical & Physical Properties

Molecular Formula C10H10F3NO2S
Molecular Weight 265.25