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Status:
Possibly Marketed Outside US
First approved in 2020
Source:
M019
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Octenidine dihydrochloride is a cationic surfactant, with antimicrobial activity against Gram-positive and Gram-negative bacteria. Octenidine approved as a medicinal substance in several European countries and used for skin antisepsis in combination with aliphatic alcohols, e.g. propan-1-ol and propan-2-ol, or with detergents such as antiseptic soap. Octenidine is also used for antisepsis on wounds and mucosa either as a single substance, as an approved combination of Octenidine and phenoxyethanol. Octenidine is virtually not absorbed via the skin or mucous membranes. Because Octenidine is only approved and used topically and is virtually not absorbed, no systemic effects are to be expected. Therefore, no further pharmacokinetic studies or studies on behalf of metabolism have been conducted. Octenidine is easy and safe to handle, chemically stable, not inflammable, without resistance development and low toxicity to man and the environment alike. Its popularity among therapists and wound care specialists is based on good clinical results, easy and pain-free application and local tolerance. Beside readily available combinations with phenoxyethanol, mouth rinses, and vaginal applications, semi-fluid preparations and dressings are described.
Status:
Possibly Marketed Outside US
Source:
21 CFR 333A
(2020)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (MIXED)
Status:
Possibly Marketed Outside US
Source:
21 CFR 333A
(2020)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Status:
Possibly Marketed Outside US
Source:
M003
(2022)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Methylal, also known, as dimethoxymethane is widely used as a solvent and in the manufacture of perfumes, resins, adhesives. Besides methylal is applied to increase the octane number of gasoline. This compound can be toxic if the average exposure concentration in workplace air will be above 3100 mg/m(3).
Status:
Possibly Marketed Outside US
Source:
21 CFR 333A
(2020)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Status:
Possibly Marketed Outside US
Source:
21 CFR 333A
(2020)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Status:
Possibly Marketed Outside US
Source:
21 CFR 333A
(2020)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Status:
Possibly Marketed Outside US
Source:
21 CFR 333A
(2020)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Status:
Possibly Marketed Outside US
Source:
21 CFR 333A
(2020)
Source URL:
First approved in 2020
Source:
21 CFR 333A
Source URL:
Class (Stereo):
CHEMICAL (MIXED)
Status:
Possibly Marketed Outside US
Source:
M019
(2020)
Source URL:
First approved in 2020
Source:
M019
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
There has been little to no interest in the biological and/or pharmacological application of lauryl phosphate.