ChemicalBook--->CAS DataBase List--->968-93-4

968-93-4

968-93-4 Structure

968-93-4 Structure
IdentificationMore
[Name]

Testolactone
[CAS]

968-93-4
[Synonyms]

1,2-didehydrotestololactone
13-hydroxy-3-oxo-13,17-secoandrosta-1,4-dien-17-oic acid delta-lactone
TESTOLACTONE
1,2,3,4,4a,4b,7,9,10,10a-decahydro-2-hydroxy-2,4b-dimethyl-7-oxo-1-phenanthren
1,2-dehydrotestololactone
1,2-didehydro-testololacton
17alpha-oxo-d-homo-1,4-androstadiene-3,17-dione
17-secoandrosta-1,4-dien-17-oicacid,13-hydroxy-3-oxo-1delta-lactone
1-dehydrotestololactone
delta(1)-dehydrotestolactone
delta(1)-dehydrotestololactone
delta(1)-testolactone
delta-1-testololactone
d-homo-17a-oxaandrosta-1,4-diene-3,17-dione
epropionicaciddelta-lactone
fludestrin
nsc-12173
sq9538
teolit
teslac
[EINECS(EC#)]

213-534-6
[Molecular Formula]

C19H24O3
[MDL Number]

MFCD00866295
[Molecular Weight]

300.39
[MOL File]

968-93-4.mol
Chemical PropertiesBack Directory
[Melting point ]

218-219°
[alpha ]

D23 -45.6° (c = 1.24 in chloroform)
[Boiling point ]

482.0±45.0 °C(Predicted)
[density ]

1.17±0.1 g/cm3(Predicted)
[CAS DataBase Reference]

968-93-4(CAS DataBase Reference)
Safety DataBack Directory
[HS Code ]

2937290000
[Hazardous Substances Data]

968-93-4(Hazardous Substances Data)
Hazard InformationBack Directory
[Originator]

Fludestrin,Heyden,W. Germany,1968
[Uses]

Antineoplastic; non-selective steroidal aromatase inhibitor that prevents the conversion from androgen to estrogen. Used in in the treatment of familial male precocious puberty. An effective anti-tumor agent.
[Uses]

Testolactone USP (Teslac) is used to treat Breast cancer.
[Definition]

ChEBI: Testolactone is a seco-androstane and a 3-oxo-Delta(1),Delta(4)-steroid.
[Manufacturing Process]

(a) Fermentation: A medium of the following composition is prepared: 3.0 grams cornsteep liquor solids; 3.0 grams NH4H2PO4; 2.5 grams CaCO3; 2.2 grams soybean oil; 0.5 gram progesterone and distilled water to make 1 liter. The medium is adjusted to pH 7.00.1. Then, 100 ml portions of the medium are distributed in 500 ml Erlenmeyer flasks and the flasks plugged with cotton and sterilized in the usual manner (i.e., by autoclaving for 30 minutes at 120°C). When cool, each of the flasks is inoculated with 5 to 10% of a vegetative inoculum of Cylindrocarpon radicola [the vegetative inoculum being grown from stock cultures (lyophilized vial or agar slant) for 48 to 72 hours in a medium of the following composition: 15 grams cornsteep liquor; 10 grams brown sugar; 6 grams NaNO3; 0.001 gram ZnSO4; 1.5 grams KH2PO4;0.5 gram MgSO47H2O; 5 grams CaCO3; 2 grams lard oil; and distilled water to make 1 liter].
The flasks are then placed on a reciprocating shaker (120 one and one-half inch cycles per minute) and mechanically shaken at 25°C for 3 days. The contents of the flasks are then pooled and, after the pH of the culture is adjusted to about 40.2 with sulfuric acid, filtered through Seitz filter pads to separate the mycelium from the fermented medium.
(b) Extraction: 40 liters of the culture filtrate obtained in (a) is extracted with 40 liters chloroform in an extractor (e.g., Podbelniak, US Patent 2,530,886, or improvements thereon) and the filtered chloroform extract is evaporated to dryness in vacuo. The residue (11.1 grams) is taken up in 200 ml of 80% aqueous methanol, and the resulting solution is extracted four times with 100 ml portions of hexane. The 80% aqueous methanol solution is then concentrated in vacuo until crystals appear; and, after cooling at 0°C for several (usually about 3 to 4) hours, the crystals formed are recovered by filtration. About 2.9 grams 1-dehydrotestololactone (MP 217° to 217.5°C) are thus obtained. Concentration of the mother liquors yields additionally about 6.0 grams of the lactone. Recrystallization from acetone yields a purified 1-dehydrotestololactone having a melting point of 218° to 219°C.
[Therapeutic Function]

Cancer chemotherapy
[General Description]

Testolactone, 13-hydroxy-3-oxo-13,17-secoandrosta-1,4-dien-17-oic acidΔ-lactone (Teslac),was originally synthesized as a possible anabolic steroid,considering its structural similarity to testosterone. The keystructural difference from anabolic steroids is the D-ring lactone instead of the typical cyclopentyl ring. Althoughconsidered in many texts an androgen or anabolic steroid (itis a Schedule III drug because of its classification as an anabolicsteroid), testolactone lacks androgenic effects in vivo.Its action is believed to be caused by irreversible inhibitionof aromatase. It is a relatively weak inhibitor of aromatase,but the irreversible nature of the inhibition can lead to prolongedeffects. Its relatively weak inhibition of aromataseand its undesirable dosage schedule (5×50-mg tabletsq.i.d.) give this older agent only limited use in breast cancertreatment because of better available options.
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