During the early phase of the coronavirus disease 2019(COVID-19)pandemic caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),diagnosis was difficult due to the diversity in symptoms and imaging findi...During the early phase of the coronavirus disease 2019(COVID-19)pandemic caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),diagnosis was difficult due to the diversity in symptoms and imaging findings and the variability of disease presentation.Pulmonary manifestations are reportedly the main clinical presentations of COVID-19 patients.Scientists are working hard on a myriad of clinical,epidemiological,and biological aspects to better understand SARS-CoV-2 infection,aiming to mitigate the ongoing disaster.Many reports have documented the involvement of various body systems and organs apart from the respiratory tract including the gastrointestinal,liver,immune system,renal,and neurological systems.Such involvement will result in diverse presentations related to effects on these systems.Other presentations such as coagulation defects and cutaneous manifestation may also occur.Patients with specific comorbidities including obesity,diabetes,and hypertension have increased morbidity and mortality risks with COVID-19.展开更多
Carboxymethyl cellulose hydrogels were developed through crosslinking process using eco-friendly crosslinkers such as maleic,succinic,and citric acids.Carboxymethyl cellulose was prepared from the cellulosic fraction ...Carboxymethyl cellulose hydrogels were developed through crosslinking process using eco-friendly crosslinkers such as maleic,succinic,and citric acids.Carboxymethyl cellulose was prepared from the cellulosic fraction of olive industry residues.A series of hydrogels with varying crosslinker acid concentrations,reaction times,and reaction temperatures was produced to study the swelling capacities and gel fraction of the obtained hydrogels.Additional study pertains to the preparation of antimicrobial nanocomposite hydrogels through in-situ incorporation of the silver nanoparticles during the crosslinking reaction.Silver nanoparticles were prepared by reduction of AgNO3 with leaves of Ricinus communis.The particle size of prepared silver nanoparticles was detected by transmission electron microscopy(TEM).Chemical structure and morphological characterizations of the prepared hydrogels were performed using Fourier transform infrared spectroscopy(FTIR),scanning electron microscopy(SEM),and energy-dispersive X-ray spectroscopy(EDX).Finally,the antimicrobial activity of the loaded silver hydrogels against Gram negative(G-ve),Gram positive(G+ve),and Candida albicans yeast was demonstrated.展开更多
文摘During the early phase of the coronavirus disease 2019(COVID-19)pandemic caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),diagnosis was difficult due to the diversity in symptoms and imaging findings and the variability of disease presentation.Pulmonary manifestations are reportedly the main clinical presentations of COVID-19 patients.Scientists are working hard on a myriad of clinical,epidemiological,and biological aspects to better understand SARS-CoV-2 infection,aiming to mitigate the ongoing disaster.Many reports have documented the involvement of various body systems and organs apart from the respiratory tract including the gastrointestinal,liver,immune system,renal,and neurological systems.Such involvement will result in diverse presentations related to effects on these systems.Other presentations such as coagulation defects and cutaneous manifestation may also occur.Patients with specific comorbidities including obesity,diabetes,and hypertension have increased morbidity and mortality risks with COVID-19.
文摘Carboxymethyl cellulose hydrogels were developed through crosslinking process using eco-friendly crosslinkers such as maleic,succinic,and citric acids.Carboxymethyl cellulose was prepared from the cellulosic fraction of olive industry residues.A series of hydrogels with varying crosslinker acid concentrations,reaction times,and reaction temperatures was produced to study the swelling capacities and gel fraction of the obtained hydrogels.Additional study pertains to the preparation of antimicrobial nanocomposite hydrogels through in-situ incorporation of the silver nanoparticles during the crosslinking reaction.Silver nanoparticles were prepared by reduction of AgNO3 with leaves of Ricinus communis.The particle size of prepared silver nanoparticles was detected by transmission electron microscopy(TEM).Chemical structure and morphological characterizations of the prepared hydrogels were performed using Fourier transform infrared spectroscopy(FTIR),scanning electron microscopy(SEM),and energy-dispersive X-ray spectroscopy(EDX).Finally,the antimicrobial activity of the loaded silver hydrogels against Gram negative(G-ve),Gram positive(G+ve),and Candida albicans yeast was demonstrated.