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Search results for amphotericin root_codes_comments in Code Comments (approximate match)
Status:
US Previously Marketed
First approved in 1963
Class (Stereo):
CHEMICAL (ACHIRAL)
Metabromsalan (or 3,5-dibromosalicylanilide) is a pesticide.
Status:
US Previously Marketed
Source:
PENTHRANE by ABBOTT
(1962)
Source URL:
First approved in 1962
Source:
PENTHRANE by ABBOTT
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Targets:
Conditions:
Methoxyflurane is an inhalation anesthetic. Methoxyflurane was used for surgical, obstetric, or dental anesthesia, but was withdrawn from US market due to safety concerns, but is still in use in Australia and other countries. Methoxyflurane induces muscle relaxation and reduces pains sensitivity by altering tissue excitability by decreasing the extent of gap junction mediated cell-cell coupling and altering the activity of the channels that underlie the action potential.
Status:
US Previously Marketed
First approved in 1961
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Cinoxate, a cinnamate, is a potent ultraviolet absorber at 289 nm. It is approved by FDA as the active ingredient in sunscreen compositions for over-the-counter (OTC) use at concentrations up to 3% and a minimum SPF value of not less than 2 in the finished product but is rarely used It can cause photoallergic contact dermatitis.
Status:
US Previously Marketed
Source:
D B I by CIBA
(1961)
Source URL:
First approved in 1959
Class (Stereo):
CHEMICAL (ACHIRAL)
Targets:
Phenformin is a biguanide hypoglycemic agent with actions and uses similar to those of metformin. It activates AMP-activated protein kinase (AMPK) and inhibits mTORC1 signaling. Phenformin used for the treatment of diabetes. Phenformin was removed from the U.S. market 20 years ago because of a high incidence of lactic acidosis. Risk factors for the development of lactic acidosis include renal deficiency, hepatic disease, cardiac disease, and drug interaction such as cimetidine. Phenformin exerts potential anti-neoplastic action.
Status:
First approved in 1959
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
PIPAMAZINE is a drug of the phenothiazine class formerly used as an antiemetic. It was eventually withdrawn from the US market in 1969, after reports of hepatotoxicity (liver injury).
Status:
US Previously Marketed
Source:
ISADOXOL by HARVEY
(1961)
Source URL:
First approved in 1959
Class (Stereo):
CHEMICAL (ACHIRAL)
Targets:
Conditions:
Oxyphenisatin is a stimulant laxative that has been used by mouth and as an enema. Oxyphenisatin was introduced as Lavema by Winthrop in US in 1959. Oxyphenisatin was used as a cleansing enema apart
from x-ray studies and prior to urinary, gastro-intestinal and
cholecystography x-ray examination. Oxyphenisatin was also used for preoperative preparation of the large intestine and colon. May be mixed with
barium for x-ray examination of the large intestine.
Oxyphenisatin may cause jaundice. Oxyphenisatin-induced liver damage usually occurs when the
drug has been taken for at least six months and usually two years. Oxyphenisatin was withdrawn in most countries in the early 1970s.
Status:
US Previously Marketed
Source:
MADRIBON by ROCHE
(1961)
Source URL:
First approved in 1958
Class (Stereo):
CHEMICAL (ACHIRAL)
Targets:
Sulfadimethoxine is a sulfonamide antibacterial used to treat many infections including treatment of respiratory, urinary tract, enteric, and soft tissue infections. It is most frequently used in veterinary medicine, although it is approved in some countries for use in humans. Sulfadimethoxine inhibits bacterial synthesis of folic acid (pteroylglutamic acid) from para-aminobenzoic acid. Sulfadimethoxine is approved in Russia for use in humans, including children, and has been successfully used there for more than 35 years and is available as an over-the-counter drug manufactured by a number of Russian pharmaceutical companies. In USA and Europe sulfadimethoxine is approved in a veterinary medicinal products. ANADA was approved by FDA in US in 1997 as an Over the Counter medicine for treatment of bovine respiratory disease complex (shipping fever complex) and bacterial pneumonia associated with Pasteurella Spp. Sensitive to sulfadimethoxine; necrotic pododermatitis (foot rot) and calf diphtheria caused by Fusobacterium necrophorum (Sphaerophorus necrophorus) sensitive to sulfadimethoxine. Bioequivalence for this generic animal drug, Sulfadimethoxine Injection 40%, was established by demonstration of chemical equivalence to the pioneer product, Hoffmann-La Roche's Albon® Injection 40% (NADA 041-245).
Status:
First approved in 1957
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Triacetin, also known as Glyceryl Triacetate, is a cosmetic biocide, plasticizer, and solvent in cosmetic formulations, at concentrations ranging from 0.8% to 4.0%. It is a commonly used carrier for flavors and fragrances. Triacetin was affirmed as a generally recognized as safe (GRAS) human food ingredient by the Food and Drug Administration (FDA). It is used as an inactive ingredient additive in some drug formulations. It has been used as a plasticizer in the tests of acrylic polymer films for drug delivery. Triacetin is not toxic to animals. However, in one study, it caused erythema, slight edema, alopecia, and desquamation, and did cause some irritation in rabbit eyes. Concentration of triacetin in consumer products is in the range of about 0.005-2 % for cosmetics, and has been reported to be as high as 15-33 % for one specific antifungal drug.
Status:
First approved in 1956
Class (Stereo):
CHEMICAL (ABSOLUTE)
Targets:
Oleandomycin is a macrolide antibiotic, which was first described under the designation P.A.105 by Sobin, English, and Celmer (1954-5). Later it appeared on the market under three names and in two forms: as pure oleandomycin ("matromycin," Pfizer; "romicil," Hoffmann-La Roche) and as a mixture with twice its weight of tetracycline ("sigmamycin," Pfizer). Oleandomycin can be employed to inhibit the activities of bacteria responsible for causing infections in the upper respiratory tract much like Erythromycin can. Both can affect staphylococcus and enterococcus genera. Oleoandomycin is reported to inhibit most gram-positive bacteria, but has only a slight inhibiting effect on gram-negative bacteria, rickettsiae, and larger viruses. The spectrum of activity on micro-organisms is therefore wider than that of penicillin and streptomycin, but narrower than that of chloramphenicol and the tetracyclines. Oleandomycin is approved as a veterinary antibiotic in some countries. It has been approved as a swine and poultry antibiotic in the United States. However, it is currently only approved in the United States for production uses. Oleandomycin is a bacteriostatic agent. Like erythromycin, oleandomycin binds to the 50s subunit of bacterial ribosomes, inhibiting the completion of proteins vital to survival and replication. It interferes with translational activity but also with 50s subunit formation. However, unlike erythromycin and its effective synthetic derivatives, it lacks a 12-hydroxyl group and a 3-methoxy group. This change in structure may adversely affect its interactions with 50S structures and explain why it is a less powerful antibiotic.
Status:
US Previously Marketed
Source:
ALBAMYCIN T NOVOBIOCIN by UPJOHN
(1964)
Source URL:
First approved in 1956
Class (Stereo):
CHEMICAL (ABSOLUTE)
Conditions:
Novobiocin (also known as streptonivicin) is an aminocoumarin antibiotic, active against Staphylococcus epidermidis. Novobiocin and other aminocoumarin antibiotics act as a potent competitive inhibitor of DNA gyrase B. The oral form of the drug was withdrawn from the market in 1999 due to safety or effectiveness reasons. Later it was discovered that novobiocin inhibited Hsp90 and topoisomerase II, and novobiocin was investigated in clinical trials against metastatic breast cancer and non-small cell lung cancer. Topical form of novobiocin was investigated in combination with nalidixic acid for treatment of psoriasis.