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The Difference in Contributing Factors and Costs Associated with Outpatient Refusal to Accept Cardiovascular Medications or Analgesics During Dispensing Process.
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Background: Study looking into cardiovascular disorders (CVD) medicines or analgesics cost-saving activities during dispensing process is lacking.

Aim: To determine differences in factors and costs associated with refused CVD medicines or analgesics during dispensing process

Method: This study was approved by Medical Research and Ethics Committee (MREC) (Registration number: NMRR-20-177-53153(IIR)). Participants receiving CVD medicines or analgesics during dispensing process were recruited via convenience sampling technique between February and March 2020 at the Specialist Pharmacy Department of Jerantut Hospital, Malaysia. Refusal to medications and its reasons were asked based on the questionnaire developed by the researchers.

Results: Overall, 175 patients participated in this survey and CVD drugs contributed toward 58.9% of the refused medicines. Those who refused CVD drugs and analgesics were significantly different in terms of gender, medications dosing frequency, refusal reasons namely side effects, medications use, intentionally skipping dose and skipping the dose when feeling well. No associations were found between forgetfulness and age with refusal to CVD drugs or painkillers. Those who refused CVD medicines had a significantly higher total daily medicines, total daily pill burden, and total number of medicines refused per prescription compared to those who refused analgesics. Cost of CVD medicines refused per prescription was significantly higher compared to analgesics, median Ringgit Malaysia (RM) 10.50 (IQR, RM 15.00) versus median RM 6.00 (IQR, 15.00), P=0.01.

Conclusion: Refusal to CVD medicines and analgesics was associated with several medication’s and patient’s factors. However, higher cost-saving was observed in those refusing CVD medicines.

 

Keywords: cardiovascular disease, analgesics, dispensing, wastage

                                                                                                                              

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Wed Sep 22 2021
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The Structural Design Of Tall And Special Buildings
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Sun Jan 24 2016
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The Instagram from a media tool to a marketing tool: بتول السيد مصطفى جواد أحمد
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Iraqi Geological Journal
Wellbore Instability Analysis to Determine the Safe Mud Weight Window for Deep Well, Halfaya Oilfield
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Fri Jun 07 2024
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The Effect of NF-κB Deactivation on Cancer Cell Response to ALA Mediated Photodynamic Therapy
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The Response of Some Properties of (Al-Si-Mg) Alloy to Nano-Ceramic Materials’ Addition
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Wed Mar 01 2023
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Calculation Mars – Earth distance and Mars orbital elements with Julian date
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In this paper, the Mars orbital elements were calculated. These orbital elements—the major axis, the inclination (i), the longitude of the ascending node (W), the argument of the perigee (w), and the eccentricity (e)—are essential to knowing the size and shape of Mars' orbit. The quick basic program was used to calculate the orbital elements and distance of Mars from the Earth from 25/5/1950 over 10000 days. These were calculated using the empirical formula of Meeus, which depended on the Julian date, which slightly changed for 10000 days; Kepler's equation was solved to find Mars' position and its distance from the Sun. The ecliptic and equatorial coordinates of Mars were calculated. The distance between Mars and the center of the E

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Tue Mar 31 2015
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Dual Measurements of Pressure and Temperature With Fiber Bragg Grating Sensor
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Thu Aug 01 2024
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A transdermal drug delivery system (TDDS) is characterized by the application of medications onto the skin's surface to deliver drugs at a controlled and predefined rate through the skin. Spanlastics, an elastic nanovesicle capable of transporting various pharmacological substances, shows promise as a drug delivery carrier. It offers numerous advantages over traditional vesicular systems applied topically, including enhanced stability, flexibility in penetration, and improved targeting capabilities. This study aims to develop meloxicam (MX)-loaded spanlastics gel as skin delivery carriers and to look into the effects of formulation factors like Tween80, Brij 35, and carbopol concentration on the properties of spanlastics gel, like pH, drug

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