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Hexahydrobenzoesaeure-(7-14C), also known as Hexahydrobenzoic acid-(7-14C), is a radiolabeled compound derived from hexahydrobenzoic acid, a saturated cyclic carboxylic acid. Hexahydrobenzoesaeure-(7-14C) is characterized by the presence of a 14C isotope at the 7th carbon position, which makes it useful for tracing and studying metabolic pathways in biological systems. The 14C isotope serves as a radioactive tracer, allowing researchers to monitor the compound's distribution, metabolism, and excretion within organisms. Hexahydrobenzoesaeure-(7-14C) is primarily employed in scientific research to understand the behavior of hexahydrobenzoic acid in various biological processes, such as drug metabolism and environmental fate studies.

932-68-3

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932-68-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 932-68-3 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 9,3 and 2 respectively; the second part has 2 digits, 6 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 932-68:
(5*9)+(4*3)+(3*2)+(2*6)+(1*8)=83
83 % 10 = 3
So 932-68-3 is a valid CAS Registry Number.

932-68-3Relevant academic research and scientific papers

Studies on pharmacokinetics and biotransformation of the antimycotic drug ciclopiroxolamine in animals and man after topic and systemic application

Kellner,Arnold,Christ,Eckert,Herok,Hornke,Rupp

, p. 1337 - 1353 (2007/10/02)

Following the dermal application of the carbon-14 labelled broad spectrum antimycotic 6-cyclohexyl-1-hydroxy-4-methyl-2(1H)-pyridone, 2-aminoethanol salt (ciclopiroxolamine, Hoe 296, Batrafen) in the form of a 1% aqueous cream to healthy human dorsal skin (penetration time: 6 h; occlusive dressing for 5 h), percutaneous absorption accounted on average for 1.3% of the dose applied. Excretion occurred via the kidney, with biological half-lives of 1.7 h. As can be seen from penetration studies of cadaverous skin, the horny layer contained the highest concentrations, with values of 2300-4500 μg/cm3. The levels determined in the corium were still above the minimum inhibitory concentrations. These concentrations were already obtained at the first test stage (1.5 h after application) and did not change virtually at all over the longer penetration period. According to studies using histoautoradiography, ciclopirox can penetrate the skin via the epidermis and the hair follicles. When cicloprox-14C-olamine aqueous cream was spread on the surface of fingernails, the radioactive-labelled compound penetrated right through the nail. The percutaneous absorption in dogs was higher, at 5-15% of the dose, than it was in humans. After vaginal application (1 mg/kg) of ciclopirox-14C-olamine in the form of a 1% aqueous cream to bitches, between 42 and 97% of the dose (depending on the animal) was recovered in the urine and faeces, the remainder having penetrated into the tampon used to close the vagina. Ciclopirox is excreted by dogs and man in the urine, primarily as a glucuronide. In humans another glucuronide with properties similar to those of the original substance was detected. Two conjugated, relatively non-polar metabolites were also present in small amounts. The metabolite patterns after oral and dermal application were similar. The binding of ciclopirox to serum proteins in humans was 96 ± 2% in a concentration range of 0.01-11.0 χ/ml. Placental transfer was low in the rats studied. Though there was good absorption by the mother animal, the radioactivity in the foetal tissues was always lower than that of the maternal blood.

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