Phenformin
-
Phenformin
structure -
-
CAS No:
114-86-3
-
Formula:
C10H15N5
-
Chemical Name:
Phenformin
-
Synonyms:
Imidodicarbonimidic diamide,N-(2-phenylethyl)-;Biguanide,1-phenethyl-;N-(2-Phenylethyl)imidodicarbonimidic diamide;W 32;PEDG;β-Phenethylbiguanide;1-Phenethylbiguanide;Phenformin;Phenformine;Phenformix;Phenethylbiguanide;Cronoformin;Fenformin;Fenormin;DBI;DB-retard;Debeone;Diabis;Retardo;Dibiraf;Dibotin;Glyphen;β-PEBG;(Phenylethyl)biguanide;DB Comb.;Glukopostin;Fenfoduron;N-(β-Phenethyl)diguanide;1-Carbamimidamido-N-(2-phenylethyl)methanimidamide;1-(Diaminomethylidene)-2-(2-phenylethyl)guanidine
-
Categories:
Active Pharmaceutical Ingredients > Hormones and the Endocrine System
-
CAS No:
Description
ChEBI: A member of the class of biguanides that is biguanide in which one of the terminal nitrogen atoms is substituted by a 2-phenylethyl group. It was used as an anti-diabetic drug but was later withdrawn from the market due to potential risk of lactic acidoss.
Solid
Phenformin is a member of the class of biguanides that is biguanide in which one of the terminal nitrogen atoms is substituted by a 2-phenylethyl group. It was used as an anti-diabetic drug but was later withdrawn from the market due to potential risk of lactic acidosis. It has a role as an antineoplastic agent, a geroprotector and a hypoglycemic agent. It derives from a biguanide.|A biguanide hypoglycemic agent with actions and uses similar to those of metformin. Although it is generally considered to be associated with an unacceptably high incidence of lactic acidosis, often fatal, it is still available in some countries. (From Martindale, The Extra Pharmacopoeia, 30th ed, p290)|Phenformin is an agent belonging to the biguanide class of antidiabetics with antihyperglycemic activity. Phenformin is not used clinically due to the high risk of lactic acidosis that is associated with its use.|A biguanide hypoglycemic agent with actions and uses similar to those of METFORMIN. Although it is generally considered to be associated with an unacceptably high incidence of lactic acidosis, often fatal, it is still available in some countries. (From Martindale, The Extra Pharmacopoeia, 30th ed, p290)
Phenformin Basic Attributes
205.26
205.26
204-057-4
DD5K7529CE
DTXSID1023449
C81700
A - Alimentary tract and metabolism
Characteristics
103
-0.83
Solid
1.0541 (rough estimate)
176.5 °C
333.94°C (rough estimate)
204ºC
1.6380 (estimate)
210 mg/mL
Keep in a cool, dry, dark location in a tightly sealed container or cylinder. Keep away from incompatible materials, ignition sources and untrained individuals. Secure and label area. Protect containers/cylinders from physical damage.
4.71E-07mmHg at 25°C
LD50 orl-rat: 1650 mg/kg BCFAAI 110,470,71
WHITE OR PRACTICALLY WHITE, CRYSTALLINE POWDER /HYDROCHLORIDE/
Safety Information
3
22
36
DU2200000
Xn
SRP: At the time of review, criteria for land treatment or burial (sanitary landfill) disposal practices are subject to significant revision. Prior to implementing land disposal of waste residue (including waste sludge), consult with environmental regulatory agencies for guidance on acceptable disposal practices.
Drug products withdrawn or removed from the market for reasons of safety or effectiveness. Phenformin hydrochloride: All drug products containing phenformin hydrochloride. /Phenformin hydrochloride/|Manufacturers, packers, and distributors of drug and drug products for human use are responsible for complying with the labeling, certification, and usage requirements as prescribed by the Federal Food, Drug, and Cosmetic Act, as amended (secs 201-902, 52 Stat. 1040 et seq., as amended; 21 U.S.C. 321-392).
DHEW/NCI; Bioassay of Phenformin Hydrochloride for Possible Carcinogenicity (1977) Technical Rpt Series No. 7 DHEW Pub No. (NIH) 77-807
Toxicity
PHENFORMIN HAS BEEN REPORTED...TO ENHANCE ACTIVITY OF WARFARIN. PROPOSED MECHANISM IS INCR FIBRINOLYTIC EFFECT CAUSED BY PHENFORMIN SEEN DURING FIRST FEW MO OF TREATMENT.|USE OF PROPRANOLOL IN DIABETIC PT...CAN RESULT IN DISTURBANCE OF CARBOHYDRATE METABOLISM & SHOULD BE AVOIDED. IF INSULIN & PROPRANOLOL...GIVEN CONCURRENTLY, PERIODIC SERUM GLUCOSE LEVELS SHOULD BE DETERMINED. ...SIMILAR PRECAUTIONS...APPLICABLE TO CONCURRENT USE OF...PHENFORMIN.|DIABETIC PT TREATED WITH PHENFORMIN SHOULD AVOID INGESTION OF ALCOHOLIC BEVERAGES BECAUSE CONCURRENT USE MAY CAUSE HYPOGLYCEMIC REACTIONS OR LEAD TO LIFE-THREATENING LACTIC ACIDOSIS WITH SHOCK.|DIPHENYLHYDANTOIN GIVEN IP TO RATS DECR LIVER LEVELS OF THIAMIN, RIBOFLAVIN, NIACIN, & PANTOTHENIC ACID. HEPATIC THIAMIN CONTENT WAS NORMALIZED BY SIMULTANEOUS ADMIN OF EITHER ACETOHEXAMINE OR PHENFORMIN.|For more Interactions (Complete) data for PHENFORMIN (6 total), please visit the HSDB record page.
A bioassay of the carcinogenicity of phenformin hydrochloride was conducted using Fischer 344 rats and B6C3F1 mice. The cmpd was admin in the diet for 78 wk to groups of 35 animals of each species and sex, using concn of 15,000 and 30,000 ppm for rats and concn of 1,200 and 2,500 ppm for mice. Treatment was followed by a period of observation of 26 wk. Control groups consisted of 15 untreated animals of each species and sex. Average weights attained by treated groups of rats and mice were consistently lower than those of control groups in all tests except that male for male rats, in which case the weights shown by treated and control animals were indistinguishable. Survival was apparently unaffected in both species by treatment with phenformin, but was poor in mice due to intercurrent disease. Tumors appearing in treated rats and mice were similar in type and number to those in controls, and no pathologic or statistical evidence of induction of tumors in these species by phenformin was found. Levels of Evidence of Carcinogenicity: Male Rats: Negative; Female Rats: Negative; Male Mice: Negative; Female Mice: Negative. /Phenformin hydrochloride/
Drug Information
For the reatment of type II diabetes mellitus.
Hypoglycemic Agents|EXPTL USE: PHENFORMIN (2 MG) ADMIN 5 DAYS/WK TO C3H/SN MICE FROM AGE 3.5 MO UNTIL DEATH DECR THE NUMBER OF SPONTANEOUS TUMORS 4.0 FOLD & AVG SURVIVAL OF ANIMALS BY 100 DAYS.|IF PT REQUIRES MORE THAN 40 UNITS OF INSULIN/DAY, HE IS UNLIKELY TO RESPOND TO PHENFORMIN. ...PHENFORMIN PLUS ESTROGENS HAVE BEEN USED WITH SUCCESS IN REDUCING MORTALITY IN SURVIVORS OF MYOCARDIAL INFARCTION.|PHENFORMIN IS USED IN TREATMENT OF MATURITY-ONSET DIABETES...|For more Therapeutic Uses (Complete) data for PHENFORMIN (8 total), please visit the HSDB record page.
IN PRESENCE OF RENAL GLYCOSURIA, FATAL HYPOGLYCEMIA CAN OCCUR.|IRREVERSIBLE LACTIC ACIDOSIS OCCURRED IN TWO PATIENTS UNDERGOING PHENFORMIN THERAPY FOR DIABETES.|PHENFORMIN...ANTIDIABETIC AGENT TAKEN ORALLY, IS REPORTED TO HAVE CAUSED TRANSITORY MYOPIA IN 53-YR-OLD DIABETIC PATIENTS.|DIABETIC SUBJECTS WITH SEVERE HEPATIC OR RENAL INSUFFICIENCY OR CONGESTIVE HEART FAILURE ARE NOT SUITABLE CANDIDATES FOR ORAL HYPOGLYCEMIC THERAPY. ...ITS ADMIN DURING PREGNANCY IS CURRENTLY NOT RECOMMENDED.|For more Drug Warnings (Complete) data for PHENFORMIN (11 total), please visit the HSDB record page.
Used to treat diabetes, phenformin is a biguanide (contains 2 guanidino groups) hypoglycemic agent with actions and uses similar to those of metformin (Glucophage). Both drugs work by (1) decreasing the absorption of glucose by the intestines, (2) decreasing the production of glucose in the liver, and by (3) increasing the body's ability to use insulin more effectively. More specifically, phenformin improves glycemic control by improving insulin sensitivity. Phenformin is generally considered to be associated with an unacceptably high incidence of actic acidosis. In general biguanides should be used only in stable type II diabetics who are free of liver, kidney and cardiovascular problems and who cannot be controlled with diet.
Substances which lower blood glucose levels. (See all compounds classified as Hypoglycemic Agents.)
PHENFORMIN IS ADEQUATELY ABSORBED FROM GI TRACT. DRUG HAS SHORT T/2 (3 HR) & CORRESPONDINGLY BRIEF DURATION OF ACTION. HYPOGLYCEMIC EFFECT MAY BE PROLONGED TO BETWEEN 6 & 14 HR WITH USE OF TIMED-DISINTEGRATION CAPSULES.|(14)C-LABELED PHENFORMIN ADMIN TO RATS (100 MG/KG ORALLY OR IP) & GUINEA PIGS (25 MG/KG ORALLY & 12.5 IP). EXCRETION OF RADIOACTIVITY & METAB WAS SLOWER IN GUINEA PIGS WHICH MAY PARTLY EXPLAIN THE INCR PHARMACOLOGICAL RESPONSE OF GUINEA PIGS TO PHENFORMIN.|RATS ELIMINATED 26% OF AN INTRADUODENAL DOSE OF LABELED PHENFORMIN (20 MG/KG) IN BILE IN 6 HR COMPARED TO 6% IN GUINEA PIG.|IN 8 DIABETIC PT HALF-LIFE OF PHENFORMIN WAS UNRELATED TO DEGREE OF RENAL IMPAIRMENT, WHEREAS REDUCED RENAL CLEARANCES OF INSULIN & CREATININE WERE SIGNIFICANTLY CORRELATED WITH PROLONGED HALF-LIFE OF ITS METABOLITE P-HYDROXYPHENETHYLBIGUANIDE.
IN RATS & GUINEA PIGS, MAJOR METABOLITE OF PHENFORMIN, N(1)-BETA-PHENETHYLBIGUANIDE, IS N(1)-P-HYDROXY-BETA-PHENETHYLBIGUANIDE, & CORRESPONDING O-ETHER GLUCURONIDE HAS ALSO BEEN DETECTED.|METAB IN RATS & GUINEA PIGS. RATS EXCRETED LARGE AMT OF 4-HYDROXYPHENFORMIN (FREE & GLUCURONIC ACID CONJUGATED) & SOME UNCHANGED PHENFORMIN. METAB VARIED WITH DOSE & ROUTE OF ADMIN. GUINEA PIGS EXCRETED SMALL AMT OF 4-HYDROXYPHENFORMIN AFTER IP ADMIN & NONE AFTER ORAL ADMIN.|LABELED COMPD WAS ADMIN. AN UNIDENTIFIED METAB & ITS GLUCURONIDE, WHICH MAY RESULT FROM ALIPHATIC C- OR N-HYDROXYLATION, ACCOUNTED FOR 47% OF 24-HR URINARY RADIOACTIVITY (17% OF DOSE) FOLLOWING ORAL ADMIN TO GUINEA PIGS.|26 HR FOLLOWING ADMIN OF SINGLE DOSE OF PHENFORMIN, 50 MG/KG ORALLY, P-HYDROXYPHENFORMIN WAS MAJOR URINARY METAB IN PHENOTYPICALLY EXTENSIVE METABOLIZERS, BUT WAS NOT OBSERVED IN PHENOTYPICALLY POOR METABOLIZERS.|METAB IN 8 DIABETIC PT WITH RENAL IMPAIRMENT. EXCRETION OF THE METAB P-HYDROXYPHENETHYLBIGUANIDE WAS VARIABLE (BETWEEN 4.9% & 27% OF TOTAL URINARY DOSE LOSS) PROBABLY DUE TO GENETIC POLYMORPHISM OF HEPATIC MECHANISMS FOR HYDROXYLATION.|Phenformin has known human metabolites that include p-Hydroxyphenylethylbiguanide.
Phenformin binds to the AMP-activated protein kinase (AMPK). AMPK is an ultra-sensitive cellular energy sensor that monitors energy consumption and down-regulates ATP-consuming processes when activated. The biguanide phenformin has been shown to independently decrease ion transport processes, influence cellular metabolism and activate AMPK. Phenformin's hypoglycemic activity is related the effect it has in activating AMPK and fooling insulin sensitive cells into thinking that insulin levels are low and causing the body to use glucose as if in a state of low caloric consumption. This drug also seems to inhibit several varients of ATP-sensitive potassium channels (namely the receptor subtype Kir6.1).|IN VITRO, PHENFORMIN, IN RELATIVELY LARGE DOSES, INCR GLUCOSE UTILIZATION BY ENHANCING ANAEROBIC GLYCOLYSIS. THIS IS THOUGHT TO OCCUR AS RESULT OF, OR COINCIDENT WITH, INHIBITION OF CELLULAR RESPIRATION. ...ADENOSINE TRIPHOSPHATE (ATP) CONCN FALL & THOSE OF LACTATE INCR. SECOND ACTION OF DRUG IS TO DECR GLUCONEOGENESIS.|...MOST RECENTLY RECOGNIZED IS INHIBITION OF INTESTINAL ABSORPTION OF GLUCOSE & PROBABLY CERTAIN OTHER SUBSTANCES AS WELL; FOR EXAMPLE, DECR ABSORPTION OF VITAMIN B12 HAS BEEN OBSERVED. ...DOES NOT ACT IN NORMAL SUBJECT...PRESUMABLY BECAUSE INCR IN PERIPHERAL GLUCOSE UTILIZATION IS COMPENSATED FOR BY INCR HEPATIC GLUCOSE...|BIGUANIDES APPARENTLY LOWER BLOOD SUGAR INDIRECTLY BY INHIBITING GLUCONEOGENESIS & INCR INSULIN SENSITIVITY. /ORAL HYPOGLYCEMICS/|They induce and increase in peripheral glucose utilization, a decrease in hepatic gluconeogenesis, and a decrease in intestinal absorption of glucose, vitamin B, and bile acids. /Biguanides/|Phenformin generally lowers the blood sugar only in the diabetic patient; it also depresses the blood sugar level in a nutritionally starved individual but not in one who is well fed. In its usual dose administered to a healthy individual, phenformin does not induce lactic acidosis. Phenformin requires insulin for its action, but does not induce and elevation in plasma insulin levels.
PHENFORMIN MAY CAUSE METALLIC TASTE, NAUSEA, ANOREXIA, VOMITING, DIARRHEA, OR CRAMPS IN SOME PT, PARTICULARLY IF DOSE IS GREATER THAN 200 MG/DAY. ... WT LOSS & WEAKNESS MAY SOMETIMES OCCUR.
Fenformin
Phenformin Use and Manufacturing
There are generally three methods for the preparation of polybenzimidazole: high temperature solution polycondensation method: 3, 3', 4, 4'-tetraaminobenzidine hydrochloride and diphenyl isophthalate. In the presence of a high-boiling solvent and polyphosphoric acid, the reaction was carried out at 200°C for several hours. The polymer was precipitated with water, washed and dried to obtain a prepolymer. Then at 250-300 ℃ high temperature dehydration cyclization to obtain polybenzimidazole. This method can easily produce high molecular weight products. Low-temperature solution polycondensation method: 3, 3', 4, 4'-tetraaminobiphenyl and isophthaloyl chloride in strong polar solvents such as dimethylacetamide, using pyridine as acid absorbent, at low temperature (0 (Below ℃) Polycondensation to obtain a prepolymer, adding a precipitant, separation, washing, drying the prepolymer, and then dehydration cyclization at 250-300 ℃ high temperature to obtain polybenzimidazole. Melt polycondensation method: Add 3, 3', 4, 4'-tetraaminobiphenyl and diphenyl isophthalate to the reactor, under nitrogen protection, react at 260 ℃ for 1-2h, dephenol to produce polyamino The amide prepolymer is crushed, and then dehydrated and cyclized at 385-400°C under high vacuum for 3-4 hours to obtain polybenzimidazole.
This oral, biguanide-class antidiabetic (FWhydrochloride = 241.72 g/mol; M.P. = 175-178°C; typically supplied as the water-soluble hydrochloride salt), also known as phenethylbiguanide and phenylethylbiguanide, and named systematically as N’-b-phenethylformamidinyliminourea, was withdrawn from the U.S. market in 1977 due to high risk of inducing often fatal lactic acidosis. Target(s): cholesterol biosynthesis; 7-dehydrocholesterol reductase; diamine oxidase; glucose transport; insulysin;
ONLY COMMERCIALLY AVAIL PREPN IN BIGUANIDE SERIES OF HYPOGLYCEMIC AGENTS IS PHENFORMIN. ... PHENFORMIN HYDROCHLORIDE, USP (DBI, MELTROL), IS MARKETED AS 25-MG TABLETS & AS 50- & 100-MG TIMED DISINTEGRATION CAPSULES. /HYDROCHLORIDE/
FOLLOWING SEPARATION BY ALUMINA TLC, PHENFORMIN & BPC 151 WERE ELUTED & DETERMINED BY MEASURING THEIR ABSORPTION AT 235 & 259 NM, RESPECTIVELY.
Computed Properties
Molecular Weight:205.26
XLogP3:-0.8
Hydrogen Bond Donor Count:3
Hydrogen Bond Acceptor Count:1
Rotatable Bond Count:4
Exact Mass:205.13274550
Monoisotopic Mass:205.13274550
Topological Polar Surface Area:103
Heavy Atom Count:15
Complexity:236
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes
Recommended Suppliers of Phenformin
-
CN
4 YRS
Business licensed Certified factoryManufactory Supplier of N-Diethyl-m-toluamide,6-Methyluracil,Anisole,4-Dimethoxybenzoic acid,CS (lacrimator),Daucosterol,N,N-Formylmorpholine,Epichlorohydrin,Tetramethylguanidine,Dimethicone,3
Learn More Other Chemicals
-
Phenformin hydrochloride
834-28-6
-
Orforglipron
2212020-52-3
-
Cevimeline hydrochloride
107220-28-0
-
1-Butanone, 1-[4-(1,1-dimethylethyl)phenyl]-4-[4-(diphenylmethoxy)-1-piperidinyl]-, (2E)-2-butenedioate (1:1) Formula
97928-20-6
-
Timbetasin acetate Formula
1346423-89-9
-
Canagliflozin Formula
842133-18-0
-
Darifenacin Structure
133099-04-4
-
Propylthiouracil Structure
51-52-5
-
What is Testosterone, acetate
1045-69-8
-
What is Dexamethasone acetate
1177-87-3