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1.
ACS Appl Bio Mater ; 4(7): 5485-5493, 2021 07 19.
Article in English | MEDLINE | ID: covidwho-1327183

ABSTRACT

Attachment of microbial bodies including the corona virus on the surface of personal protective equipment (PPE) is found to be potential threat of spreading infection. Here, we report the development of a triboelectroceutical fabric (TECF) consisting of commonly available materials, namely, nylon and silicone rubber (SR), for the fabrication of protective gloves on the nitrile platform as model wearable PPE. A small triboelectric device (2 cm × 2 cm) consisting of SR and nylon on nitrile can generate more than 20 V transient or 41 µW output power, which is capable of charging a capacitor up to 65 V in only ∼50 s. The importance of the present work relies on the TECF-led antimicrobial activity through the generation of an electric current in saline water. The fabrication of TECF-based functional prototype gloves can generate hypochlorite ions through the formation of electrolyzed water upon rubbing them with saline water. Further, computational modelling has been employed to reveal the optimum structure and mechanistic pathway of antimicrobial hypochlorite generation. Detailed antimicrobial assays have been performed to establish effectiveness of such TECF-based gloves to reduce the risk from life-threatening pathogen spreading. The present work provides the rationale to consider the studied TECF, or other materials with comparable properties, as a material of choice for the development of self-sanitizing PPE in the fight against microbial infections including COVID-19.


Subject(s)
Anti-Infective Agents/chemistry , Electricity , Personal Protective Equipment , Anti-Infective Agents/metabolism , Anti-Infective Agents/pharmacology , Bacterial Proteins/chemistry , Bacterial Proteins/metabolism , Biomimetic Materials/chemistry , Biomimetic Materials/pharmacology , COVID-19/pathology , COVID-19/prevention & control , COVID-19/virology , Humans , Nylons/chemistry , Personal Protective Equipment/microbiology , Personal Protective Equipment/virology , Pseudomonas aeruginosa/drug effects , Pseudomonas aeruginosa/metabolism , Recycling , SARS-CoV-2/drug effects , SARS-CoV-2/isolation & purification , SARS-CoV-2/metabolism , Silicone Elastomers/chemistry , Spike Glycoprotein, Coronavirus/chemistry , Spike Glycoprotein, Coronavirus/metabolism
2.
BMJ Open ; 10(7): e039120, 2020 07 07.
Article in English | MEDLINE | ID: covidwho-639452

ABSTRACT

OBJECTIVE: To develop and test a new reusable, sterilisable N95 filtering facepiece respirator (FFR)-comparable face mask, known as the Injection Molded Autoclavable, Scalable, Conformable (iMASC) system, given the dire need for personal protective equipment within healthcare settings during the COVID-19 pandemic. DESIGN: Single-arm feasibility study. SETTING: Emergency department and outpatient oncology clinic. PARTICIPANTS: Healthcare workers who have previously undergone N95 fit testing. INTERVENTIONS: Fit testing of new iMASC system. PRIMARY AND SECONDARY OUTCOME MEASURES: Primary outcome is success of fit testing using an Occupational Safety and Health Administration (OSHA)-approved testing method, and secondary outcomes are user experience with fit, breathability and filter replacement. RESULTS: Twenty-four subjects were recruited to undergo fit testing, and the average age of subjects was 41 years (range of 21-65 years) with an average body mass index of 26.5 kg/m2. The breakdown of participants by profession was 46% nurses (n=11), 21% attending physicians (n=5), 21% resident physicians (n=5) and 12% technicians (n=3). Of these participants, four did not perform the fit testing due to the inability to detect saccharin solution on premask placement sensitivity test, lack of time and inability to place mask over hair. All participants (n=20) who performed the fit test were successfully fitted for the iMASC system using an OSHA-approved testing method. User experience with the iMASC system, as evaluated using a Likert scale with a score of 1 indicating excellent and a score of 5 indicating very poor, demonstrated an average fit score of 1.75, breathability of 1.6, and ease of replacing the filter on the mask was scored on average as 2.05. CONCLUSIONS: The iMASC system was shown to successfully fit multiple different face sizes and shapes using an OSHA-approved testing method. These data support further certification testing needed for use in the healthcare setting.


Subject(s)
Coronavirus Infections/prevention & control , Equipment Design , Infectious Disease Transmission, Patient-to-Professional/prevention & control , Pandemics/prevention & control , Pneumonia, Viral/prevention & control , Respiratory Protective Devices , Silicone Elastomers , Adult , Aged , Allied Health Personnel , Betacoronavirus , COVID-19 , Coronavirus Infections/transmission , Equipment Reuse , Feasibility Studies , Female , Humans , Male , Middle Aged , Nurses , Physicians , Pneumonia, Viral/transmission , Prospective Studies , SARS-CoV-2 , Sterilization , Young Adult
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