1.A new type of artificial airway sealer used between artificial airway and ventilator pipeline.
Chinese Critical Care Medicine 2023;35(9):991-994
The need for mechanical ventilation due to severe hypoxemia and acute respiratory distress syndrome has increased dramatically in the global pandemic of severe respiratory infectious diseases. In clinical scenarios, it is sometimes necessary to briefly disconnect the ventilator pipeline from the artificial airway. Still, this operation can lead to a sharp drop in airway pressure, which is contrary to the protective lung ventilation strategy and increases the risk of environmental exposure to bioaerosol, posing a serious threat to patients and medical workers. At present, there is yet to be a practical solution. A new artificial airway device was designed by the medical staff from the department of critical care medicine of Beijing Tiantan Hospital, Capital Medical University, based on many years of research experience in respiratory support therapy, and recently obtained the National Utility Model Patent of China (ZL 2019 2 0379605.4). The device comprises two connecting pipes, the sealing device body, and the globe valve represented by the iridescent optical ring. It has a simple structure, convenient operation, and low production cost. The device is installed between the artificial airway and the ventilator pipeline and realizes the instantaneous sealing of the artificial airway by adjusting the shut-off valve. Using this device to treat mechanically ventilated patients can minimize the ventilator-induced lung injury caused by the repeated disconnection of pipelines, avoid iatrogenic transmission of bioaerosols, and realize dual protection for patients and medical workers. It has extensive clinical application prospects and high health and economic value.
Humans
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Respiration, Artificial/adverse effects*
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Ventilators, Mechanical/adverse effects*
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Respiratory Distress Syndrome/therapy*
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Ventilator-Induced Lung Injury/prevention & control*
;
Hypoxia/complications*
2.Effects of Transglutaminase 2 Inhibition on Ventilator-Induced Lung Injury.
In Bum SUH ; Dae Wui YOON ; Won Oak OH ; Eun Joo LEE ; Kyung Hoon MIN ; Gyu Young HUR ; Seung Heon LEE ; Sung Yong LEE ; Sang Yeub LEE ; Chol SHIN ; Jae Jeong SHIM ; Kwang Ho IN ; Kyung Ho KANG ; Je Hyeong KIM
Journal of Korean Medical Science 2014;29(4):556-563
This study was performed to examine the role of transglutaminase 2 (TG2) in ventilator-induced lung injury (VILI). C57BL/6 mice were divided into six experimental groups: 1) control group; 2) lipopolysaccharide (LPS) group; 3) lung protective ventilation (LPV) group; 4) VILI group; 5) VILI with cystamine, a TG2 inhibitor, pretreatment (Cyst+VILI) group; and 6) LPV with cystamine pretreatment (Cyst+LPV) group. Acute lung injury (ALI) score, TG2 activity and gene expression, inflammatory cytokines, and nuclear factor-kappaB (NF-kappaB) activity were measured. TG2 activity and gene expression were significantly increased in the VILI group (P < 0.05). Cystamine pretreatment significantly decreased TG2 activity and gene expression in the Cyst+VILI group (P < 0.05). Inflammatory cytokines were higher in the VILI group than in the LPS and LPV groups (P < 0.05), and significantly lower in the Cyst+VILI group than the VILI group (P < 0.05). NF-kappaB activity was increased in the VILI group compared with the LPS and LPV groups (P < 0.05), and significantly decreased in the Cyst+VILI group compared to the VILI group (P = 0.029). The ALI score of the Cyst+VILI group was lower than the VILI group, but the difference was not statistically significant (P = 0.105). These results suggest potential roles of TG2 in the pathogenesis of VILI.
Acute Lung Injury/pathology
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Animals
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Cystamine/therapeutic use
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Cytokines/analysis
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Enzyme Inhibitors/therapeutic use
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Enzyme-Linked Immunosorbent Assay
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GTP-Binding Proteins/*antagonists & inhibitors/genetics/metabolism
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Gene Expression
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Lipopolysaccharides/toxicity
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Male
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Mice
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Mice, Inbred C57BL
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NF-kappa B/metabolism
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Respiration, Artificial
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Transglutaminases/*antagonists & inhibitors/genetics/metabolism
;
Ventilator-Induced Lung Injury/*enzymology/pathology/prevention & control

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