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Home > Encyclopedia > Chlorpropamide

Chlorpropamide

pharmaceutical raw materials
Chlorpropamide structure

Chlorpropamide 

structure
  • CAS No:

    94-20-2

  • Formula:

    C10H13ClN2O3S

  • Chemical Name:

    Chlorpropamide

  • Synonyms:

    Benzenesulfonamide,4-chloro-N-[(propylamino)carbonyl]-;Urea,1-[(p-chlorophenyl)sulfonyl]-3-propyl-;4-Chloro-N-[(propylamino)carbonyl]benzenesulfonamide;P 607;Catanil;N-(p-Chlorobenzenesulfonyl)-N′-propylurea;1-(p-Chlorobenzenesulfonyl)-3-propylurea;1-(p-Chlorophenylsulfonyl)-3-propylurea;Chloropropamide;Chlorpropamide;Diabenese;Diabinese;N-Propyl-N′-(p-chlorobenzenesulfonyl)urea;1-Propyl-3-(p-chlorobenzenesulfonyl)urea;N-Propyl-N′-p-chlorphenylsulfonylcarbamide;N-(4-Chlorophenylsulfonyl)-N′-propylurea;Chlorpropamid;Diabeneza;Diabaril;U 9818;Glisema;Chloronase;Meldian;Chlorodiabina;Diabetoral;Diabet-Pages;Diabenal;Melitase;Adiaben;Diabechlor;Millinese;Asucrol;Stabinol;NSC 44634;NSC 626720;Pamidin;1-(4-Chlorophenyl)sulfonyl-3-propyl-urea;1-(4-Chlorophenyl)sulfonyl-3-propylurea;1-(4-Chloro-benzenesulfonyl)-3-n-propyl-urea;4-Chloro-N-(propylcarbamoyl)benzenesulfonamide;360-19-0;856615-17-3

  • Categories:

    Active Pharmaceutical Ingredients  >  Hormones and the Endocrine System

Description

Chlorpropamide is an oral antihyperglycemic agent used for the treatment of non-insulin-dependent diabetes mellitus (NIDDM).Target:Chlorpropamide belongs to the sulfonylurea class of insulin secretagogues, which act by stimulating β cells of the pancreas to release insulin.Chlorpropamide is not recommended for the treatment of NIDDM as it increases blood pressure and the risk of retinopathy. Up to 80% of the single oral dose of chlorpropramide is metabolized, likely in the liver; 80-90%


Chloropropamide is a white crystalline powder with a slight odor. (NTP, 1992)|Solid


Chloropropamide is a white crystalline powder with a slight odor. (NTP, 1992)|Chlorpropamide is an N-sulfonylurea that is urea in which a hydrogen attached to one of the nitrogens is substituted by 4-chlorobenzenesulfonyl group and a hydrogen attached to the other nitrogen is substituted by propyl group. Chlorpropamide is a hypoglycaemic agent used in the treatment of type 2 (non-insulin-dependent) diabetes mellitus not responding to dietary modification. It has a role as a hypoglycemic agent and an insulin secretagogue. It is a N-sulfonylurea and a member of monochlorobenzenes.|Chlorpropamide is an oral antihyperglycemic agent used for the treatment of non-insulin-dependent diabetes mellitus (NIDDM). It belongs to the sulfonylurea class of insulin secretagogues, which act by stimulating β cells of the pancreas to release insulin. Sulfonylureas increase both basal insulin secretion and meal-stimulated insulin release. Medications in this class differ in their dose, rate of absorption, duration of action, route of elimination and binding site on their target pancreatic β cell receptor. Sulfonylureas also increase peripheral glucose utilization, decrease hepatic gluconeogenesis and may increase the number and sensitivity of insulin receptors. Sulfonylureas are associated with weight gain, though less so than insulin. Due to their mechanism of action, sulfonylureas may cause hypoglycemia and require consistent food intake to decrease this risk. The risk of hypoglycemia is increased in elderly, debilitated and malnourished individuals. Chlorpropamide is not recommended for the treatment of NIDDM as it increases blood pressure and the risk of retinopathy (UKPDS-33). Up to 80% of the single oral dose of chlorpropramide is metabolized, likely in the liver; 80-90% of the dose is excreted in urine as unchanged drug and metabolites. Renal and hepatic dysfunction may increase the risk of hypoglycemia.|Chlorpropamide is a Sulfonylurea.|Chlorpropamide is a long-acting, first-generation sulfonylurea with hypoglycemic activity. Compared to other sulfonylureas, chlorpropamide has an increased risk of prolonged hypoglycemia because of its long half-life.|A sulfonylurea hypoglycemic agent used in the treatment of non-insulin-dependent diabetes mellitus not responding to dietary modification. (From Martindale, The Extra Pharmacopoeia, 30th ed, p277)

Chlorpropamide Basic Attributes

276.74

276.74

202-314-5

WTM2C3IL2X

756690|626720|44634

DTXSID9020322

C47447

Crystals from dil ethanol|WHITE, CRYSTALLINE POWDER|White, crystalline powder

A - Alimentary tract and metabolism

2935009090

Characteristics

83.6

2.3

Chloropropamide is a white crystalline powder with a slight odor. (NTP, 1992)

1.4±0.1 g/cm3

127-129 °C

216.0±29.3 °C

1.585

soluble in ethanol (1:12), acetone (1:5), chloroform (1:9) and solutions of alkali hydroxides. Does not mix well with water.

LD50 i.p. in rats: 580 mg/kg (Goldenthal)

SLIGHT ODOR

5.13None

5.13|pKa (H20)= 5.13; pKa (Diox-H2O)= 6.10 (mean of two values)

158.5 Ų [M+H]+ [CCS Type: TW, Method: calibrated with polyalanine and drug standards]

Insoluble in water.

Amides and Imides

A halogenated amide. Organic amides/imides react with azo and diazo compounds to generate toxic gases. Flammable gases are formed by the reaction of organic amides/imides with strong reducing agents. Amides are very weak bases (weaker than water). Imides are less basic yet and in fact react with strong bases to form salts. That is, they can react as acids. Mixing amides with dehydrating agents such as P2O5 or SOCl2 generates the corresponding nitrile. The combustion of these compounds generates mixed oxides of nitrogen (NOx).

Safety Information

NONH for all modes of transport

3

20/21/22-40

22-36

YS6650000

Xn

Stable. Combustible.

P280

H312-H332-H351

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.

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 Chlorpropamide for Possible Carcinogenicity p.vii (1978) Technical Rpt Series No. 45 DHEW Pub No. (NIH) 78-845

Flash point data for this chemical are not available; however, it is probably combustible. (NTP, 1992)

|Warning|H312 (100%): Harmful in contact with skin [Warning Acute toxicity, dermal]|P201, P202, P261, P271, P280, P281, P302+P352, P304+P312, P304+P340, P308+P313, P312, P322, P363, P405, and P501|Aggregated GHS information provided by 129 companies from 2 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.

Fires involving this material can be controlled with a dry chemical, carbon dioxide or Halon extinguisher. (NTP, 1992)

SMALL SPILLS AND LEAKAGE: Should a spill occur while you are handling this chemical, FIRST REMOVE ALL SOURCES OF IGNITION, then you should dampen the solid spill material with 60-70% ethanol and transfer the dampened material to a suitable container. Use absorbent paper dampened with 60-70% ethanol to pick up any remaining material. Seal the absorbent paper, and any of your clothes, which may be contaminated, in a vapor-tight plastic bag for eventual disposal. Solvent wash all contaminated surfaces with 60-70% ethanol followed by washing with a soap and water solution. Do not reenter the contaminated area until the Safety Officer (or other responsible person) has verified that the area has been properly cleaned. STORAGE PRECAUTIONS: You should store this material under ambient temperatures. (NTP, 1992)

RECOMMENDED RESPIRATOR: Where the neat test chemical is weighed and diluted, wear a NIOSH-approved half face respirator equipped with an organic vapor/acid gas cartridge (specific for organic vapors, HCl, acid gas and SO2) with a dust/mist filter. (NTP, 1992)

Toxicity

IPN-RAT LD50 580 mg/kg

DRUGS THAT MAY INCR RISK OF HYPOGLYCEMIA...INCL OTHER HYPOGLYCEMIC AGENTS, SULFONAMIDES, PROPRANOLOL, SALICYLATES, PHENYLBUTAZONE, PROBENECID, DICUMAROL, CHLORAMPHENICOL, MAO INHIBITORS, & ALCOHOL. /SULFONYLUREAS/|Allopurinol or its metabolites might compete with chlorpropamide for renal tubular secretion and can result in an increased chlorpropamide effect in an occasional patient.|A disulfiram like reaction, which is characterized primarily by flushing of the face, neck, and arms, may occur with any of the sulfonylureas when alcohol is ingested concurrently ... . /Sulfonylurea antidiabetic agents/|The risk of hypoglycemia may be increased or prolonged when moderate or large amounts of alcohol have been consumed concurrently with sulfonylurea antidiabetic agents use; small amounts of alcohol taken with meals do not usually result in hypoglycemia. /Sulfonylurea antidiabetic agents/|For more Interactions (Complete) data for CHLORPROPAMIDE (19 total), please visit the HSDB record page.

LD50 RATS ORAL 2390 MG/KG|LD50 RATS INTRAVENOUS 590 MG/KG|LD50 DOGS INTRAVENOUS 575 MG/KG|LD50 DOGS ORAL 800 MG/KG|LD50 MICE ORAL 1680 MG/KG

A bioassay of chlorpropamide for possible carcinogenicity was conducted by administering the test material in feed to Fischer 344 rats and B6C3F1 mice. Groups of 35 rats and 35 mice of each sex were administered chlorpropamide as follows: rats 5 days/wk for 103 to 105 wk at 3,000 or 6,000 ppm, and mice 5 days wk for 34 wk at 5,000 or 10,000 ppm, followed by 70 wk at 2,500 or 5,000 ppm. The time weighted average doses for mice were 3,317 ppm for low dose males and females, and 6,635 ppm for high dose males and females. Matched controls consisted of groups of 15 untreated rats and 15 untreated mice of each sex. All surviving rats and mice were /sacrificed/ at 103 to 105 wk. Mean body weights of both low and high dose rats were lower than those of matched controls throughout the study. In mice, doses were reduced at week 34, due to early deaths in the high dose groups; following this adjustment the treated mice gained weight, but the weights never reached those of controls. Survival of treated rats and the low dose mice was adequate for meaningful statistical analyses of the incidences of tumors. In both rats and mice, the incidences of tumors among the treated groups were not significantly incr in comparison with matched controls. It is concluded that under the conditions of this bioassay, chlorpropamide was not carcinogenic in Fischer 344 rats or B6C3F1 mice.

Highly bound to plasma proteins.

Drug Information

For treatment of NIDDM in conjunction with diet and exercise.

Hypoglycemic Agents|Sulfonylureas are used to control hyperglycemia in NIDDM pt who cannot achieve appropriate control with changes in diet alone. /Sulfonylurea/|...EFFECTIVE IN MATURITY-ONSET DIABETIC PT IN WHOM PANCREAS RETAINS CAPACITY TO SECRETE INSULIN. /SULFONYLUREAS/|MEDICATION (VET): IN DIABETES MELLITUS IN DOGS.|For more Therapeutic Uses (Complete) data for CHLORPROPAMIDE (8 total), please visit the HSDB record page.

...STUDIES...INDICATE INCR INCIDENCE OF...DIFFICULTIES IN PT TAKING ORAL HYPOGLYCEMIC DRUG. ...VENTRICULAR TACHYCARDIA &...FIBRILLATION WERE NOTED...USUALLY DURING EARLY STAGES OF MYOCARDIAL INFARCTION... /SULFONYLUREA/|SULFONYLUREAS SHOULD BE ADMINISTERED WITH CAUTION TO PT WITH EITHER RENAL OR HEPATIC INSUFFICIENCY /SULFONYLUREAS/|VET: AVOID USE IN PREGNANT ANIMALS.|VET: /SULFONYLUREA SUBSTANCES/...HAVE BEEN OF LITTLE VALUE IN CANINE DIABETES TREATMENT. ONLY MILDEST CASES HAVE RESPONDED AT ALL. /HYPOGLYCEMIC SULFONYLUREA/|For more Drug Warnings (Complete) data for CHLORPROPAMIDE (18 total), please visit the HSDB record page.

Chlorpropamide, a second-generation sulfonylurea antidiabetic agent, is used with diet to lower blood glucose levels in patients with diabetes mellitus type II. Chlorpropamide is twice as potent as the related second-generation agent glipizide.

Substances which lower blood glucose levels. (See all compounds classified as Hypoglycemic Agents.)

Readily absorbed from the GI tract. Peak plasma concentrations occur within 2-4 hours and the onset of action occurs within one hour. The maximal effect of chlorpropamide is seen 3-6 hours following oral administration.|80-90% of a single oral dose is excreted in the urine as unchaged drug and metabolites within 96 hours.|...EFFECTIVELY ABSORBED FROM GI TRACT ...|Excreted (percentage)...60 /from table/|... 20% excreted unchanged; ... /from table/|Chlorpropamide is readily absorbed from the GI tract following oral administration. Following oral administration of a single dose, the drug is detectable in plasma within 1 hour and peak plasma chlorpropamide concentrations occur within 2-4 hours.|For more Absorption, Distribution and Excretion (Complete) data for CHLORPROPAMIDE (6 total), please visit the HSDB record page.

Up to 80% of dose is metabolized likely through the liver to to 2-hydroxylchlorpropamide (2-OH CPA), p-chlorobenzenesulfonylurea (CBSU), 3-hydroxylchlorpropamide (3-OH CPA), and p-chlorobenzenesulfonamide (CBSA); CBSA may be produced by decomposition in urine. It is unknown whether chlorpropamide metabolites exert hypoglycemic effects.|...METABOLISM OF CHLORPROPAMIDE IS INCOMPLETE, AND ABOUT 20% OF THE DRUG IS EXCRETED UNCHANGED|...SOME HYDROLYTIC BREAKDOWN OF ACTUAL UREA MOIETY HAS BEEN DETECTED, RESULTING IN FORMATION OF SULFONAMIDE DERIV... RECENT EVIDENCE SUGGESTS THIS...TO BE ARTIFACTUAL & NOT A GENUINE METABOLITE...|FOLLOWING PER ORAL ADMIN TO MAN OF TRITIATED CHLORPROPAMIDE...80% OF DOSE WAS EXCRETED...DURING 7-DAY PERIOD. METABOLITES...WERE P-CHLOROBENZENESULFONAMIDE...[(P-CHLOROPHENYL)SULFONYL]UREA... 1-[(P-CHLOROPHENYL)SULFONYL]-3-(2-HYDROXYPROPYL)UREA. ..&.1-[(P-CHLOROPHENYL)SULFONYL]-3-(3-HYDROXYPROPYL)UREA...|...DIABETIC PT WERE ADMIN.../CHLORPROPAMIDE/... AT...250-500 MG...PRODUCTS EXCRETED...INCL.../(P-CHLOROPHENYL)SULFONYLUREA/ (21%)... /P-CHLOROBENZENESULFONAMIDE/ (2%), 2-HYDROXYCHLORPROPAMIDE (55%), & 3-HYDROXYCHLORPROPAMIDE (2%).|For more Metabolism/Metabolites (Complete) data for CHLORPROPAMIDE (6 total), please visit the HSDB record page.|Chlorpropamide has known human metabolites that include 2-hydroxy-chlorpropamide, 3-hydroxy-chlorpropamide, and p-Chlorobenzene sulfonylurea.

Approximately 36 hours with interindividual variation ranging from 25-60 hours. Duration of effect persists for at least 24 hours.|Chlorpropamid has a long half-life (24 to 48 hours).|Half-life...24-48 /hours/ /from table/

Sulfonylureas such as chlorpropamide bind to ATP-sensitive potassium channels on the pancreatic cell surface, reducing potassium conductance and causing depolarization of the membrane. Depolarization stimulates calcium ion influx through voltage-sensitive calcium channels, raising intracellular concentrations of calcium ions, which induces the secretion, or exocytosis, of insulin.|...ACTION OF SULFONYLUREAS APPEARS TO BE STIMULATION OF RELEASE OF INSULIN FROM BETA CELLS. ...TO BE EFFECTIVE, PT MUST HAVE SOME FUNCTIONAL ISLET CELLS... /HYPOGLYCEMIC SULFONYLUREAS/|Sulfonylureas cause hypoglycemia by stimulating insulin release from pancreatic beta cells. Their effects in the treatment of diabetes ... are more complex. /Sulfonylureas/|Sulfonylureas are now...thought to act by a number of different mechanisms. 1. ...produce a depolarization of the pancreatic islet beta cell membrane potassium ion permeability. This results in a release of preformed insulin into the circulation and occurs mostly in non-insulin dependent diabetics. 2. ...reduce basal glucose output from the liver... 3. increase insulin receptor binding... 4. ...increasing intracellular levels of AMP... 5. increase insulin secretion by suppressing the release of glucagon and somatostatin from alpha and delta pancreatic cells. /Sulfonylureas/|Sulfonylureas lower blood glucose in NIDDM by directly stimulating the acute release of insulin from functioning beta cells of pancreatic islet tissue by an unknown process that involves a sulfonylurea receptor on the beta cell. Sulfonylureas inhibit the ATP potassium channels on the beta cell membrane and potassium efflux, which results in depolarization and calcium influx, calcium-calmodulin binding, kinase activation, and release of insulin containing granules by exocytosis, an effect similar to that of glucose. Insulin is a hormone that lowers blood glucose and controls the storage and metabolism of carbohydrates, proteins, and fats. Therefore, sulfonylureas are effective only in patients whose pancreata are capable of producing insulin. /Sulfonylurea antidiabetic agents/

SYMPTOMS: Symptoms of exposure to this chemical may include hypoglycemia, nausea, vomiting, diarrhea, anorexia, hunger, pruritus, urticaria, maculopapular eruptions, leukopenia, agranulocytosis, thrombocytopenia, hemolytic anemia, aplastic anemia, pancytopenia, eosinophilia, hepatic porphyria, jaundice and disulfiram-like reactions. ACUTE/CHRONIC HAZARDS: When heated to decomposition this compound emits toxic fumes of chlorine, nitrogen oxides and sulfur oxides. (NTP, 1992)

EYES: First check the victim for contact lenses and remove if present. Flush victim's eyes with water or normal saline solution for 20 to 30 minutes while simultaneously calling a hospital or poison control center. Do not put any ointments, oils, or medication in the victim's eyes without specific instructions from a physician. IMMEDIATELY transport the victim after flushing eyes to a hospital even if no symptoms (such as redness or irritation) develop. SKIN: IMMEDIATELY flood affected skin with water while removing and isolating all contaminated clothing. Gently wash all affected skin areas thoroughly with soap and water. If symptoms such as redness or irritation develop, IMMEDIATELY call a physician and be prepared to transport the victim to a hospital for treatment. INHALATION: IMMEDIATELY leave the contaminated area; take deep breaths of fresh air. If symptoms (such as wheezing, coughing, shortness of breath, or burning in the mouth, throat, or chest) develop, call a physician and be prepared to transport the victim to a hospital. Provide proper respiratory protection to rescuers entering an unknown atmosphere. Whenever possible, Self-Contained Breathing Apparatus (SCBA) should be used; if not available, use a level of protection greater than or equal to that advised under Protective Clothing. INGESTION: DO NOT INDUCE VOMITING. If the victim is conscious and not convulsing, give 1 or 2 glasses of water to dilute the chemical and IMMEDIATELY call a hospital or poison control center. Be prepared to transport the victim to a hospital if advised by a physician. If the victim is convulsing or unconscious, do not give anything by mouth, ensure that the victim's airway is open and lay the victim on his/her side with the head lower than the body. DO NOT INDUCE VOMITING. IMMEDIATELY transport the victim to a hospital. (NTP, 1992)

MAY CAUSE HYPOGLYCEMIC REACTIONS...COMA... THIS IS A ... PROBLEM IN ELDERLY PT WITH IMPAIRED HEPATIC OR RENAL FUNCTION... OTHER SIDE EFFECTS... NAUSEA & VOMITING, CHOLESATIC JAUNDICE, AGRANULOCYTOSIS, APLASTIC & HEMOLYTIC ANEMIAS... /SULFONYLUREAS/|...WATER RETENTION CAN BE LIFE THREATENING IN PT WITH TENDENCY TO RETAIN WATER...|Coma or altered mental status is generally the most important presenting sign in the majority (90%) of patients who have ingested excessive doses of the sulfonylureas ... /Sulfonylurea/

Apo-Chlorpropamide

Chlorpropamide Use and Manufacturing

Methods of Manufacturing

Marshall, Sigal, J Org Chem 23, 927 (1958); Brit Pat 853,555 (1960 to Pfizer)...

Uses

For treatment of NIDDM in conjunction with diet and exercise.

...usually administered in a daily dose of 100 to 250 mg, whil 750 to 1000 mg is maximal.

TLC; GUVEN, KC, GECGIL, S & O PEKIN, ECZACILIK BULTENI 8, 158 (1966); CHEM ABSTR 65, 18427D (1966); STRICKLAND, RD, SEPARATION & DETECTION OF ORAL HYPOGLYCEMIC AGENTS BY TLC, J CHROMATOGR 24, 455 (1966).|AOAC Method 986.37. Chlorpropamide in Drug Tablets. Liquid Chromatographic Method.

BLOOD, TLC. PFIZER LABORATORIES, DIVISION OF CHAS PFIZER & CO, INC, NEW YORK, NY, INTERNAL ASSAYS.|HIGH-PERFORMANCE LIQUID CHROMATOGRAPHIC DETERMINATION OF SERUM CHLORPROPAMIDE.

Human Drugs -> FDA Approved Drug Products with Therapeutic Equivalence Evaluations (Orange Book) -> Active Ingredients|Pharmaceuticals

Computed Properties

Molecular Weight:276.74
XLogP3:2.3
Hydrogen Bond Donor Count:2
Hydrogen Bond Acceptor Count:3
Rotatable Bond Count:4
Exact Mass:276.0335411
Monoisotopic Mass:276.0335411
Topological Polar Surface Area:83.6
Heavy Atom Count:17
Complexity:345
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

Drug Function and Efficacy

1. Stimulate the pancreatic islet beta cells to secrete insulin, the prerequisite is that the pancreatic islet beta cells still have a certain function of synthesizing and secreting insulin; 2. By increasing the level of portal vein insulin or directly acting on the liver, inhibiting liver glycogenolysis and gluconeogenesis, the liver produces and outputs less glucose; 3. It may increase the sensitivity of extrapancreatic tissues to insulin and the utilization of sugar (probably mainly through post-receptor effects), and the overall effect is to reduce fasting blood sugar and postprandial blood sugar. In addition, this product also has an antidiuretic effect, which can reduce the clearance of free water. In patients with partial diabetes insipidus, it can enhance the residual antidiuretic hormone effect.

This ingredient has been used in drugs with the following functions (note: it does not mean that the ingredient itself has the following health functions)

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