| Literature DB >> 28683148 |
Shu-Ping Lin1,2, Wen-Ye Lin3, Jung-Tzu Chang4, Chun-Feng Chu4.
Abstract
Despite measures to reduce disease transmission, a risk can occur when blood glucose meters (BGMs) are used on multiple individuals or by caregivers assisting a patient. The laboratory and in-clinic performance of a BGM system before and after disinfection should be demonstrated to guarantee accurate readings and reliable control of blood glucose (BG) for patients. In this study, an effective disinfection procedure, conducting wiping 10 times to assure a one minute contact time of the disinfectant on contaminated surface, was first demonstrated using test samples of the meter housing materials, including acrylonitrile butadiene styrene (ABS), polymethyl methacrylate (PMMA), and polycarbonate (PC), in accordance with ISO 15197:2013. After bench studies comprising 10,000 disinfection cycles, the elemental compositions of the disinfected ABS, PMMA, and PC samples were almost the same as in the original samples, as indicated by electron spectroscopy for chemical analysis. Subsequently, the validated disinfection procedure was then directly applied to disinfect 5 commercial BGM systems composed of ABS, PMMA, or PC to observe the effect of the validated disinfection procedure on meter accuracy. The results of HBsAg values after treatment with HBV sera and disinfectant wipes for each material were less than the LoD of each material of 0.020 IU/mL. Before and after the multiple disinfection cycles, 900 of 900 samples (100%) were within the system accuracy requirements of ISO 15197:2013. All of the systems showed high performance before and after the series of disinfection cycles and met the ISO 15197:2013 requirements. In addition, our results demonstrated multiple cleaning and disinfection cycles that represented normal use over the lifetime of a meter of 3-5 years. Our validated cleaning and disinfection procedure can be directly applied to other registered disinfectants for cleaning commercial BGM products in the future.Entities:
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Year: 2017 PMID: 28683148 PMCID: PMC5500346 DOI: 10.1371/journal.pone.0180617
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Product images and the principal materials for the 5 systems evaluated in this study.
a Product images are reprinted from [http://www.btm-medical.com/en/product-list.php?id=38] under a CC BY license, with permission from the Biotest Medical Corp., original copyright 2013. b Full name of the principal types of materials: acrylonitrile butadiene styrene (ABS), polymethyl methacrylate (PMMA), polycarbonate (PC). c Distributor is given if different from manufacturer (according to the manufacturer’s labeling).
Detailed information for the 5 systems evaluated in this study.
| System | Test strip enzyme | Comparison method | Calibration instrument for blood glucose measure | Measurement range (mg/dL) | Measurement conditions | Test strips | ||||
|---|---|---|---|---|---|---|---|---|---|---|
| Humidity (%) | Temperature(°C) | Hematocrit (%) | Lot 1 (No., expiry date) | Lot 2 (No., expiry date) | Lot 3 (No., expiry date) | |||||
| Solison/5131 | GDH-FAD | GOD | YSI 2300 | 20~600 | 20~80% | 10~40°C | 20~60% | S4I07026A 2016.09 | S4J00908A 2016.10 | S4K06405A 2016.11 |
| Super Check Plus/5149 | GDH-FAD | GOD | YSI 2300 | 20~600 | 20~80% | 10~40°C | 20~60% | S4I07026A 2016.09 | S4J00908A 2016.10 | S4K06405A 2016.11 |
| Super Check Plus/5228 | GDH-FAD | GOD | YSI 2300 | 20~600 | 20~80% | 10~40°C | 20~60% | S2H00106A2014.08 | S2H00107A 2014.08 | S2H00208A 2014.08 |
| Super Check/6228 | GOD | GOD | YSI 2300 | 20~600 | 20~80% | 10~40°C | 32~56% | S4G04221A2016.07 | S4G04422A 2016.07 | S4G05628A 2016.07 |
| Super Check 2/6277 | GOD | GOD | YSI 2300 | 20~600 | 20~80% | 10~40°C | 32~56% | S4G04221A2016.07 | S4G04422A 2016.07 | S4G05628A 2016.07 |
Fig 2The analyses of elemental composition of the three principal materials of the 5 BGMs before and after multiple disinfection cycles were shown in (a), (b), and (c). The quantification of chemical elements before and after multiple disinfection cycles was statistically analyzed and shown in (d). Six samples of each material were tested (N = 6, value = mean ± SD.).
The results of cleaning and disinfection of HBV for ABS, PMMA and PC.
There were 20 samples for each test item in disinfection efficacy. Data were generated by the Abbott ARCHITECT system.
| Samples | Positive Control | Negative control | Disinfection efficacy | Physical deterioration | Damage of elemental compositions | Disinfection validation | |||
|---|---|---|---|---|---|---|---|---|---|
| Control of HBV concentration (IU/mL) | |||||||||
| 80.0±1.23 | 8.1±0.15 | 0.8±0.03 | 0.08±0.004 | ||||||
| ABS | 79.5±1.52 (+) | 0.002± 0.001 (-) | 0.018± 0.001 (-) | 0.013± 0.001 (-) | 0.001± 0.001 (-) | 0.009± 0.001 (-) | No | No | Accepted |
| PMMA | 78.9±1.85 (+) | 0.002± 0.001 (-) | 0.017± 0.002 (-) | 0.013± 0.001 (-) | 0.011± 0.001 (-) | 0.008± 0.001 (-) | No | No | Accepted |
| PC | 79.2±1.67 (+) | 0.001± 0.0005 (-) | 0.018± 0.001 (-) | 0.014± 0.002 (-) | 0.012± 0.001 (-) | 0.009± 0.002 (-) | No | No | Accepted |
N = 20, value = mean ± SD.
a Samples were inoculated with positive control sera (80.0±1.23 IU/mL) to test viral activity before disinfection.
b Samples were inoculated with negative control PBS solution to test viral activity before disinfection.
c The result shows HBV existed on the tested coupon according to the LoD (0.020 IU/mL).
d The result shows no HBV existed on the tested coupon according to the LoD (0.020 IU/mL).
e The appearance of samples was judged after 10,000-time disinfection in comparison with original samples.
f The data of elemental compositions were evaluated by ESCA. The results were compared with those of original samples.
System accuracy assessment for glucose concentration according to ISO 15197:2013.
| Testing conditions | Meter systems | Range of BG (mg/dL) | Linear regression of 3 BGMs | Overall result within accuracy limits (±15 mg/dL and ±15%) | % at BG concentration of | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| <100 mg/dL | ≥100 mg/dL | |||||||||||
| R2 | Slope (95% CI) | % | n | Percentage of values (%) within the reference values | Percentage of values (%) within the reference values | |||||||
| ±15 mg/dL | ±10 mg/dL | ±5 mg/dL | ±15% | ±10% | ±5% | |||||||
| Before multiple cleaning and disinfection cycles | Solison/5131 | 35–514 | 0.99±0.001 | 1.00±0.017 | 100.0 | 900/900 | 100.0 | 95.2 | 76.8 | 100.0 | 96.1 | 78.5 |
| Super Check Plus/5149 | 36–522 | 0.99±0.001 | 0.99±0.019 | 100.0 | 900/900 | 100.0 | 95.4 | 76.9 | 100.0 | 95.6 | 74.9 | |
| Super Check Plus/5228 | 20–600 | 1.00±0.000 | 1.00±0.001 | 100.0 | 900/900 | 100.0 | 96.5 | 83.3 | 100.0 | 98.9 | 90.9 | |
| Super Check/6228 | 35–522 | 0.99±0.001 | 1.00±0.012 | 100.0 | 900/900 | 100.0 | 93.8 | 71.1 | 100.0 | 92.4 | 72.4 | |
| Super Check 2/6277 | 35–522 | 0.99±0.001 | 1.00±0.006 | 100.0 | 900/900 | 100.0 | 96.0 | 72.0 | 100.0 | 93.2 | 70.8 | |
| After multiple cleaning and disinfection cycles | Solison/5131 | 36–520 | 0.99±0.001 | 0.99±0.010 | 100.0 | 900/900 | 100.0 | 92.6 | 64.4 | 100.0 | 93.6 | 69.2 |
| Super Check Plus/5149 | 37–523 | 0.99±0.001 | 1.00±0.012 | 100.0 | 900/900 | 100.0 | 94.2 | 70.2 | 100.0 | 92.6 | 70.2 | |
| Super Check Plus/5228 | 20–600 | 1.00±0.000 | 1.00±0.003 | 100.0 | 900/900 | 100.0 | 98.4 | 77.0 | 100.0 | 98.0 | 88.1 | |
| Super Check/6228 | 36–528 | 0.99±0.000 | 1.00±0.011 | 100.0 | 900/900 | 100.0 | 91.0 | 70.9 | 100.0 | 92.0 | 69.1 | |
| Super Check 2/6277 | 36–528 | 0.99±0.001 | 1.01±0.013 | 100.0 | 900/900 | 100.0 | 91.5 | 69.7 | 100.0 | 90.8 | 66.4 | |
Fig 3System accuracy plots for the 5 systems before disinfection.
The solid lines indicate the system accuracy criteria per ISO 15197:2013. The results demonstrate that the difference between each individual glucose result falls within the acceptance limit.
Fig 4System accuracy plots for the 5 systems after disinfection.
The solid lines indicate the system accuracy criteria per ISO 15197:2013. The results demonstrate that the difference between each individual glucose result falls within the acceptance limit.
Fig 5The proposed disinfection procedure for BGM cleaning.
Reprinted from [http://www.btm-medical.com/en/product-list.php?id=38] under a CC BY license, with permission from the Biotest Medical Corp., original copyright 2013.
Characteristics of blood-borne modern epidemics and their EPA-registered disinfectants.
| Virus | Classification | Global infection/ annual death | Transmission route a | Survival in dried blood | Stability in dried blood | EPA-registered disinfectants | Ref. |
|---|---|---|---|---|---|---|---|
| HBV | DNA | 2.4×108/ 6.9×105 | Blood, body fluids | Yes | 7 d | List D, List E | [ |
| HIV | RNA | 3.7×107/ 2.1×106 | Blood, body fluids | Low quantities | Several hours~ 14 d | List C, List D, List E | [ |
| HCV | RNA | 1.5×108/ 7×105 | Blood | Yes | 4 d | List F | [ |
| Ebola | RNA | 2.9×104/ 1.1×104 | Blood, body fluids | Yes | 5 d | List L | [ |
a Numbers are based on data published from the World Health Organisation (WHO) and the Centers for Disease Control and Prevention (CDC).
b Information is based on data published from the EPA official website (https://www.epa.gov/pesticide-registration/selected-epa-registered-disinfectants).