Search
Powered By HealthLine
Health Tools
 Allergy Questions and Answers
 Allergic Reaction Guide
 Seasonal Allergies Guide
 Is it a Cold or Allergies?
 Food Allergy Guide
Featured Conditions
 Allergy
 Asthma
 Diet & Exercise
 Sleep
Resources
Healthscout News
3D Health Animations
Health Videos
Quizzes & Tools
Health Encyclopedia
In-Depth Reports
Library & Communities
News Archive
Drug Library
Find a Therapist
Enter City or Zip Code:
Powered by Psychology Today
PR Newswire
 Read latest







Channels
Home |  Today | Women| Men| Kids| Seniors| Diseases| Addictions| Sex & Relationships| Diet, Fitness, Looks| Alternative Medicine| Drug Checker
Drug DescriptionSide Effects & Drug InteractionsWarnings & Precautions
Clinical PharmacologyOverdosage & ContraindicationsIndications & DosagePatient Info

Macrobid

[Nitrofurantoin]


Clinical Pharmacology
CLINICAL PHARMACOLOGY

Each Macrobid capsule contains two forms of nitrofurantoin. Twenty-five percent is macrocrystalline nitrofurantoin, which has slower dissolution and absorption than nitrofurantoin monohydrate. The remaining 75% is nitrofurantoin monohydrate contained in a powder blend which, upon exposure to gastric and intestinal fluids, forms a gel matrix that releases nitrofurantoin over time.

Based on urinary pharmacokinetic data, the extent and rate of urinary excretion of nitrofurantoin from the 100 mg Macrobid capsule are similar to those of the 50 mg or 100 mg Macrodantin ® (nitrofurantoin macrocrystals) capsule. Approximately 20-25% of a single dose of nitrofurantoin is recovered from the urine unchanged over 24 hours.

Text Continues Below



Plasma nitrofurantoin concentrations after a single oral dose of the 100 mg Macrobid capsule are low, with peak levels usually less than 1 mcg/ mL. Nitrofurantoin is highly soluble in urine, to which it may impart a brown color. When Macrobid is administered with food, the bioavailability of nitrofurantoin is increased by approximately 40%.

Microbiology:

Nitrofurantoin is bactericidal in urine at therapeutic doses. The mechanism of the antimicrobial action of nitrofurantoin is unusual among antibacterials. Nitrofurantoin is reduced by bacterial flavoproteins to reactive intermediates which inactivate or alter bacterial ribosomal proteins and other macromolecules. As a result of such inactivations, the vital biochemical processes of protein synthesis, aerobic energy metabolism, DNA synthesis, RNA synthesis, and cell wall synthesis are inhibited.

The broad-based nature of this mode of action may explain the lack of acquired bacterial resistance to nitrofurantoin, as the necessary multiple and simultaneous mutations of the target macromolecules would likely be lethal to the bacteria. Development of resistance to nitrofurantoin has not been a significant problem since its introduction in 1953. Cross-resistance with antibiotics and sulfonamides has not been observed, and transferable resistance is, at most, a very rare phenomenon.

Page:  1 | 2 | 3 | 4 | Next >>







HealthScout is a part of HealthCentral
About Us   Our Blog   Contact Us   Privacy Policy   Terms of Use   Site Map  
Copyright © 2001-2013. The HealthCentralNetwork, Inc. All rights reserved.
Advertising Policy   Editorial Policy Advertise With Us   Anti-Spam Policy   PR Newswire