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1.
World J Gastroenterol ; 27(9): 835-853, 2021 Mar 07.
Article in English | MEDLINE | ID: mdl-33727773

ABSTRACT

BACKGROUND: Liver injury is common and also can be fatal, particularly in severe or critical patients with coronavirus disease 2019 (COVID-19). AIM: To conduct an in-depth investigation into the risk factors for liver injury and into the effective measures to prevent subsequent mortality risk. METHODS: A retrospective cohort study was performed on 440 consecutive patients with relatively severe COVID-19 between January 28 and March 9, 2020 at Tongji Hospital, Wuhan, China. Data on clinical features, laboratory parameters, medications, and prognosis were collected. RESULTS: COVID-19-associated liver injury more frequently occurred in patients aged ≥ 65 years, female patients, or those with other comorbidities, decreased lymphocyte count, or elevated D-dimer or serum ferritin (P < 0.05). The disease severity of COVID-19 was an independent risk factor for liver injury (severe patients: Odds ratio [OR] = 2.86, 95% confidence interval [CI]: 1.78-4.59; critical patients: OR = 13.44, 95%CI: 7.21-25.97). The elevated levels of on-admission aspartate aminotransferase and total bilirubin indicated an increased mortality risk (P < 0.001). Using intravenous nutrition or antibiotics increased the risk of COVID-19-associated liver injury. Hepatoprotective drugs tended to be of assistance to treat the liver injury and improve the prognosis of patients with COVID-19-associated liver injury. CONCLUSION: More intensive monitoring of aspartate aminotransferase or total bilirubin is recommended for COVID-19 patients, especially patients aged ≥ 65 years, female patients, or those with other comorbidities. Drug hepatotoxicity of antibiotics and intravenous nutrition should be alert for COVID-19 patients.


Subject(s)
COVID-19/complications , Liver Diseases/virology , Adult , Aged , Aged, 80 and over , COVID-19/mortality , COVID-19/physiopathology , China/epidemiology , Female , Follow-Up Studies , Humans , Liver Diseases/diagnosis , Liver Diseases/mortality , Liver Diseases/physiopathology , Male , Middle Aged , Prognosis , Retrospective Studies , Risk Factors , Survival Analysis
2.
Langmuir ; 24(16): 8877-84, 2008 Aug 19.
Article in English | MEDLINE | ID: mdl-18656972

ABSTRACT

Our study has demonstrated for the first time that zirconia nanoparticles modified by a simple carboxylic surfactant of a very long alkyl chain can significantly enhance the activity of the immobilized lipases for asymmetric synthesis in organic media. Zirconia nanoparticles of ca. 20 nm diameter were grafted with carboxylic surfactant modifiers from Tween 85 and erucic acid. The surface of nanoparticles was successfully changed from hydrophilic to hydrophobic. Lipases from Candida rugosa and Pseudomonas cepacia were immobilized on the modified zirconia nanoparticles by adsorption in aqueous solution. The immobilized lipases were used for the resolution of ( R, S)-ibuprofen and ( R, S)-1-phenylethanol through esterification and acylation, respectively, in isooctane organic solvent. When immobilized on erucic acid-modified zirconia, both lipases gave significantly higher activity and enantioselectivity compared with those from their corresponding crude lipase powders. The nanohybrid biocatalysts are stable and can be reused for eight cycles without loss in activity and selectivity. The interaction between the hydrophobic surface of zirconia support and lipases probably induces the conformational rearrangement of lipases into an active, stable form.


Subject(s)
Enzymes, Immobilized/metabolism , Hydrophobic and Hydrophilic Interactions , Lipase/metabolism , Metal Nanoparticles/chemistry , Zirconium/chemistry , Burkholderia cepacia/enzymology , Candida/enzymology , Catalysis , Chemical Phenomena , Chemistry, Physical , Hydrogen-Ion Concentration , Metal Nanoparticles/ultrastructure , Microscopy, Electron, Transmission , Molecular Structure , Spectroscopy, Fourier Transform Infrared , Stereoisomerism , Surface Properties , Surface-Active Agents/chemistry , Temperature
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