Literature DB >> 23979189

Stability of Ampicillin Sodium, Nafcillin Sodium, And Oxacillin Sodium in AutoDose Infusion System Bags.

Yanping Zhang1, Lawrence A Trissel.   

Abstract

The objective of this study was to evaluate the physical and chemical stability of ampicillin sodium 1g/100mL, nafcillin sodium 1g/100mL, and oxacillin sodium 1g/100mL, each of which was admixed in 0.9% sodium chloride injection and packaged in an AutoDose Infusion System bag. Triplicate test samples were prepared by reconstituting the penicillin antibiotics and bringing the required amount of each drug to a final volume of 100 mL with 0.9% sodium chloride injection. The test solutions were packaged in AutoDose Bags, which are ethylene vinyl acetate plastic containers designed for use in the AutoDose Infusion System. Samples were stored protected from light and were evaluated at appropriate intervals for up to 7 days at 23 deg C and up to 30 days at 4 deg C. Physical stability was assessed by means of a multistep evaluation procedure that included both turbidimetric and particulate measurement as well as visual inspection. Chemical stability was assesed with stability-indicating high-perofrmance liquid chromatographic (HPLC) analytical techniques based on the determination of drug concentrations initially and at appropriate intervals over the study periods. All the penicillin admixtures were initially clear when viewed in normal fluorescent room light. When the admixtures were viewed with a Tyndall beam, a trace haze was observed with the ampicillin sodium and nafcillin sodium mixtures but not with the oxacillin sodium mixture. Measured turbidity and particulate content were low and exhibited little change in the ampicillin sodium and oxacillin sodium samples throughout the study. The nafcillin sodium samples stored at room temperature remained clear, but a microprecipitate developed in the refrigerated samples between 14 and 21 days of storage. All samples were essentially colorless throughout the study. HPLC analysis indicated some decomposition in the samples. Ampicillin sodium, which was the least stable, exhibited a 10% loss after 24 hours at 23 deg C. In the samples stored at 4 deg C, ampicillin losses were 6% and 11% after 3 days and 5 days,respecively. Nafcillin sodium exhiibited a 10% loss after 5 days at 23 deg C. Less than 3% loss occurred after 14 days at 4 deg C, but the microprecipitation that developed resulted in the termination of that portion of the study. Oxacillin sodium was the most stable; it exhibited less than a 10% loss after 7 days at 23 deg C and less than a 5% loss after 30 days at 4 deg C. Ampicillin sodium, nafcillin sodium, and oxacillin sodium exhibited physical and chemical stability consistent with previous studies on these drugs. The AutoDose Infusion System bags did not adversely affect the physical and chemical stability of those three penicillin antibiotics.

Entities:  

Year:  2002        PMID: 23979189

Source DB:  PubMed          Journal:  Int J Pharm Compd        ISSN: 1092-4221


  4 in total

Review 1.  Systematic review of stability data pertaining to selected antibiotics used for extended infusions in outpatient parenteral antimicrobial therapy (OPAT) at standard room temperature and in warmer climates.

Authors:  Stephen John Perks; Cassie Lanskey; Niechole Robinson; Tilley Pain; Richard Franklin
Journal:  Eur J Hosp Pharm       Date:  2019-06-20

2.  Stability of Ampicillin in Normal Saline Following Refrigerated Storage and 24-Hour Pump Recirculation.

Authors:  Mariah Huskey; Paul Lewis; Stacy D Brown
Journal:  Hosp Pharm       Date:  2020-05-31

3.  Ampicillin permeation across OmpF, the major outer-membrane channel in Escherichia coli.

Authors:  Ishan Ghai; Harsha Bajaj; Jayesh Arun Bafna; Hussein Ali El Damrany Hussein; Mathias Winterhalter; Richard Wagner
Journal:  J Biol Chem       Date:  2018-03-14       Impact factor: 5.157

4.  Ampicillin and Ceftriaxone Solution Stability at Different Temperatures in Outpatient Parenteral Antimicrobial Therapy.

Authors:  L Herrera-Hidalgo; L E López-Cortes; R Luque-Márquez; J Gálvez-Acebal; A de Alarcón; L F López-Cortes; A Gutiérrez-Valencia; M V Gil-Navarro
Journal:  Antimicrob Agents Chemother       Date:  2020-06-23       Impact factor: 5.191

  4 in total

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