Background: Many countries, such as Niger, are considering changing their vaccine vial size presentation and may want to evaluate the subsequent impact on their supply chains, the series of steps required to get vaccines from their manufacturers to patients. The measles vaccine is particularly important in Niger, a country prone to measles outbreaks.
Methods: We developed a detailed discrete event simulation model of the vaccine supply chain representing every vaccine, storage location, refrigerator, freezer, and transport device (e.g., cold trucks, 4 × 4 trucks, and vaccine carriers) in the Niger Expanded Programme on Immunization (EPI). Experiments simulated the impact of replacing the 10-dose measles vial size with 5-dose, 2-dose and 1-dose vial sizes.
Results: Switching from the 10-dose to the 5-dose, 2-dose and 1-dose vial sizes decreased the average availability of EPI vaccines for arriving patients from 83% to 82%, 81% and 78%, respectively for a 100% target population size. The switches also changed transport vehicle's utilization from a mean of 58% (range: 4-164%) to means of 59% (range: 4-164%), 62% (range: 4-175%), and 67% (range: 5-192%), respectively, between the regional and district stores, and from a mean of 160% (range: 83-300%) to means of 161% (range: 82-322%), 175% (range: 78-344%), and 198% (range: 88-402%), respectively, between the district to integrated health centres (IHC). The switch also changed district level storage utilization from a mean of 65% to means of 64%, 66% and 68% (range for all scenarios: 3-100%). Finally, accounting for vaccine administration, wastage, and disposal, replacing the 10-dose vial with the 5 or 1-dose vials would increase the cost per immunized patient from $0.47US to $0.71US and $1.26US, respectively.
Conclusions: The switch from the 10-dose measles vaccines to smaller vial sizes could overwhelm the capacities of many storage facilities and transport vehicles as well as increase the cost per vaccinated child.
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http://dx.doi.org/10.1186/1471-2458-11-425 | DOI Listing |
Eur J Pharm Sci
December 2024
Institute of Pharmaceutical Sciences, University of Freiburg, 79104 Freiburg im Breisgau, Germany; Andreas Hettich GmbH, 78532 Tuttlingen, Germany. Electronic address:
Thermosensitive liposomes (TSLs) have great potential for the selective delivery of cytostatic drugs to the tumor site with greatly reduced side effects. Here we report the discovery and characterization of new thermosensitive small multilamellar lipid nanoparticles (tSMLPs) with unusually high temperature selectivity. Furthermore, the temperature-dependent release of the fluorescent marker calcein from tSMLPs is enhanced by human serum albumin.
View Article and Find Full Text PDFInt J Anesth Clin Med
December 2024
Department of Anesthesiology and Perioperative Medicine, The University of Texas MD Anderson Cancer Center, Houston, USA.
Background: The rapidly acting opioid fentanyl commonly used in the perioperative setting, has traditionally been packaged in 100 or 250-μg vials. In September 2021, our institution implemented a change from fentanyl 100-μg vials to 50-μg preloaded syringes in our operating rooms. The objective of this study was aimed at assessing the association of the fentanyl product change on reducing medication waste and the amount of fentanyl administered during surgery.
View Article and Find Full Text PDFHeliyon
November 2024
Tecnologico de Monterrey, Institute of Advanced Materials for Sustainable Manufacturing, Ave. Eugenio Garza Sada 2501 Sur, Col. Tecnológico, Monterrey, 64700, N.L., Mexico.
Novel copper-nickel matrix composites reinforced with silicon carbide (SiC) micro particles for metal contact applications were manufactured by powder metallurgy technology and were experimentally characterized. Cu and Cu alloys are commonly used as metal contact for either vacuum, oil, or SF6 in low-voltage circuit breaker devices, but their application in environments with the presence of oxygen is limited due to their tendency to form high-resistance copper oxides. Thus, the addition of Ni as an alloying element provides resistance to both humidity and several corrosive environments and increases the composites' hardness, mechanical strength, and wear resistance.
View Article and Find Full Text PDFJ Comput Assist Tomogr
December 2024
Department of Radiology, UT Southwestern Medical Center, Dallas TX.
Iodinated contrast media (ICM) is an integral and ubiquitous component of modern diagnostic imaging. Although most radiology practices are familiar with ICM administration and physiological excretion, they may be less aware of how much ICM is wasted on a per exam basis. Furthermore, radiologists may not recognize the environmental fate of discarded ICM waste.
View Article and Find Full Text PDFPDA J Pharm Sci Technol
December 2024
Lighthouse Instruments, LLC., Charlottesville, VA 22902.
An increasing number of pharmaceutical products require deep cold storage at cryogenic conditions, approximately -150°C to -190°C, to maintain stability and/or activity. Previous work has revealed that, at these extreme conditions, a typical pharmaceutical package configuration (vial, stopper, crimp cap) may lose container closure integrity (CCI) due to both the glass transition temperature (-55°C to -70°C) of the rubber stopper used to seal the vial and the different thermal expansion coefficients of the primary packaging components. Importantly, this type of temporary breach in CCI frequently reseals itself when the vial is brought back to ambient temperature.
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