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Mitoquinone mesylate

845959-50-4

Mitoquinone mesylate

Mitoquinone mesylate

Mitoquinone mesylateBasic Functional Ingredients
Structure: Mitoquinone mesylate structure
CAS: 845959-50-4
MF: C38H47O7PS
MW: 678.81
Synonymes
Mitoquinone mesylateMitoQ10-(4,5-dimethoxy-2-methyl-3,6-dioxocyclohexa-1,4-dien-1-yl)decyl-triphenylphosphanium,methanesulfonateMitoquinone mesylate (Mitoquinone methanesulfonateMitoQ mesylateMitoQ10 mesylateMitoquinol MesylateMitoquinone mesylate, ethanol solution
Utilisation

Mitoquinone mesylate is primarily used as a TPP-based mitochondria-targeted antioxidant to block H2O2-induced intracellular ROS reactions and prevent oxidative damage. It is also employed to protect cells from harmful substances such as reactive oxygen (ROS) by targeting mitochondria and reducing oxidative damage.

Spécification
99%+
Description

Aperçu

Mitoquinone mesylate is a TPP-based mitochondria-targeted antioxidant that can block H2O2-induced intracellular ROS reactions and prevent oxidative damage. It appears as an orange solid and is easily soluble in DMSO (dimethyl sulfoxide), making it convenient for experimental use. Its core role is achieved through targeting the mitochondria to reduce oxidative damage, thereby protecting cells from harmful substances such as reactive oxygen (ROS), offering a specialized and effective approach to combat oxidative stress directly at the mitochondrial level.

EINECS: 000-010-1

Caractéristiques

Storage temp.: -20°C

Solubility:  Soluble in DMSO.

Form: waxy solid

Color: Orange

Stability: Stable for 2 years from date of purchase as supplied. Solutions in DMSO may be stored at -20°C for up to 3 months.

Applications

1.In cellular and mitochondrial biology research: Serves as a TPP-based mitochondria-targeted antioxidant to block H₂O₂-induced intracellular ROS reactions, thereby preventing oxidative damage in experimental cell models and supporting detailed studies of mitochondrial function.

2.In oxidative stress mechanism investigations: Utilized for its ability to target mitochondria specifically, reduce oxidative damage, and protect cells from harmful reactive oxygen species (ROS) and related substances under controlled oxidative challenge conditions.

3.In antioxidant protection and cellular health studies: Applied to explore and demonstrate mitochondria-directed antioxidant effects that maintain cellular integrity by minimizing ROS-mediated injury in various in vitro and biochemical assay systems.

4.In experimental pharmacology and biochemical assays: Leverages its orange solid form and high DMSO solubility for accurate dosing, enabling reliable evaluation of mitochondrial-targeted protection against oxidative damage across multiple research protocols.

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