1.Design and application of positive and negative pressure sequential irrigation suction device
Kun-feng SANG ; Xian-jin ZHONG ; Jia-li HUANG
Chinese Medical Equipment Journal 2025;46(1):114-117
Objective To design a positive and negative pressure sequential irrigation suction device and explore its efficacy when applied to unblocking nasoenteric tubes.Methods The device consisted of a positive-pressure irrigation component,a negative-pressure suction component,a three-way adapter and a precise unblocker.The positive-pressure irrigation compo-nent was composed of a positive-pressure irrigation unit,a positive pressure regulator,a pressure sensor,a pressure bag and etc;the negative-pressure suction component was made up of a negative-pressure suction unit,a negative pressure regulator,a negative-pressure gauge,a negative-pressure bottle and etc.The pressure bag was hollow cylinder-shaped,and made of ordinary polyvinyl chloride for its inner layer and acrylonitrile-styrene-butadiene copolymer for its outer layer.Sixty patients with nasoenteric tube blockage were selected and randomly divided into a control group and an observation group,with 30 cases in each group.Irrigation suction was carried out with a 10 mL syringe for the control group and with the device for the observation group,and then unblocking was performed with lukewarm water between 38 and 40 degrees.The two groups were compared in terms of the unblocking efficacy,time required for unblocking and the days and cost of nutritional support.SPSS 22.0 software was used for statistical analysis.Results The observation group gained advantages over the control group in terms of the total effective rate(93.3%vs 73.4%),unblocking efficacy,time required for unblocking((7.63±4.97)min vs(10.73±4.57)min),days of nutritional support((10.07±3.07)d vs(13.03±4.05)d)and cost of nutritional support((3 180±260)yuan vs(4 550±660)yuan).Conclusion The device developed effectively enhances the efficacy for unblocking nasoenteric tubes,shortens the time required and decreases the days and cost of nutritional support,and thus is worthy promoting practi-cally.[Chinese Medical Equipment Journal,2025,46(1):114-117]
2.Design and application of positive and negative pressure sequential irrigation suction device
Kun-feng SANG ; Xian-jin ZHONG ; Jia-li HUANG
Chinese Medical Equipment Journal 2025;46(1):114-117
Objective To design a positive and negative pressure sequential irrigation suction device and explore its efficacy when applied to unblocking nasoenteric tubes.Methods The device consisted of a positive-pressure irrigation component,a negative-pressure suction component,a three-way adapter and a precise unblocker.The positive-pressure irrigation compo-nent was composed of a positive-pressure irrigation unit,a positive pressure regulator,a pressure sensor,a pressure bag and etc;the negative-pressure suction component was made up of a negative-pressure suction unit,a negative pressure regulator,a negative-pressure gauge,a negative-pressure bottle and etc.The pressure bag was hollow cylinder-shaped,and made of ordinary polyvinyl chloride for its inner layer and acrylonitrile-styrene-butadiene copolymer for its outer layer.Sixty patients with nasoenteric tube blockage were selected and randomly divided into a control group and an observation group,with 30 cases in each group.Irrigation suction was carried out with a 10 mL syringe for the control group and with the device for the observation group,and then unblocking was performed with lukewarm water between 38 and 40 degrees.The two groups were compared in terms of the unblocking efficacy,time required for unblocking and the days and cost of nutritional support.SPSS 22.0 software was used for statistical analysis.Results The observation group gained advantages over the control group in terms of the total effective rate(93.3%vs 73.4%),unblocking efficacy,time required for unblocking((7.63±4.97)min vs(10.73±4.57)min),days of nutritional support((10.07±3.07)d vs(13.03±4.05)d)and cost of nutritional support((3 180±260)yuan vs(4 550±660)yuan).Conclusion The device developed effectively enhances the efficacy for unblocking nasoenteric tubes,shortens the time required and decreases the days and cost of nutritional support,and thus is worthy promoting practi-cally.[Chinese Medical Equipment Journal,2025,46(1):114-117]
3.Observation of liver indexes in patients with relapsed/refractory multiple myeloma treated with CAR-T-cells based on BCMA.
Qian SUN ; Yue Kun QI ; Kun Ming QI ; Zhi Ling YAN ; Hai CHENG ; Wei CHEN ; Feng ZHU ; Wei SANG ; De Peng LI ; Jiang CAO ; Ming SHI ; Zhen Yu LI ; Kai Lin XU
Chinese Journal of Hematology 2023;44(10):832-837
Objective: To observe the characteristics of the evolution of liver indexes in patients with relapsed/refractory multiple myeloma (RRMM) treated with CAR-T-cells based on BCMA. Methods: Retrospective analysis was performed of patients with RRMM who received an infusion of anti-BCMA CAR-T-cells and anti-BCMA combined with anti-CD19 CAR-T-cells at our center between June 1, 2019, and February 28, 2023. Clinical data were collected to observe the characteristics of changes in liver indexes such as alanine aminotransferase (ALT), aspartate aminotransferase (AST), total bilirubin (TBIL), and direct bilirubin (DBIL) in patients, and its relationship with cytokine-release syndrome (CRS) . Results: Ninety-two patients were included in the analysis, including 41 patients (44.6%) in the group receiving a single infusion of anti-BCMA CAR-T-cells, and 51 patients (55.4%) in the group receiving an infusion of anti-BCMA combined with anti-CD19 CAR-T-cells. After infusing CAR-T-cells, 31 patients (33.7%) experienced changes in liver indexes at or above grade 2, which included 20 patients (21.7%) with changes in one index, five patients (5.4%) with changes in two indexes, and six patients (6.5%) with changes in three or more indexes. The median time of peak values of ALT and AST were d17 and d14, respectively, and the median duration of exceeding grade 2 was 5.0 and 3.5 days, respectively. The median time of peak values of TBIL and DBIL was on d19 and d21, respectively, and the median duration of exceeding grade 2 was 4.0 days, respectively. The median time of onset of CRS was d8, and the peak time of fever was d9. The ALT, AST, and TBIL of patients with CRS were higher than those of patients without CRS (P=0.011, 0.002, and 0.015, respectively). CRS is an independent factor that affects ALT and TBIL levels (OR=19.668, 95% CI 18.959-20.173, P=0.001). The evolution of liver indexes can be reversed through anti-CRS and liver-protection treatments, and no patient died of liver injury. Conclusions: In BCMA-based CAR-T-cell therapy for RRMM, CRS is an important factor causing the evolution of liver indexes. The evolution of liver indexes after CAR-T-cell infusion is transient and reversible after treatment.
Humans
;
Antigens, CD19
;
B-Cell Maturation Antigen/therapeutic use*
;
Bilirubin
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Immunotherapy, Adoptive
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Liver
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Multiple Myeloma/drug therapy*
;
Retrospective Studies
;
T-Lymphocytes
4.Protective effects of oxymatrine against H2O2-induced damage in L02 cells.
Yan-Zhong HAN ; Yong-Feng ZHOU ; Xiu-Xiu SANG ; Hui-Min LIU ; He-Rong CUI ; Ya-Kun MENG ; Guang-Quan LI ; Lan-Zhi HE ; Ping YIN ; Jia-Bo WANG ; Zhao-Fang BAI ; Xiao-He XIAO
China Journal of Chinese Materia Medica 2016;41(7):1302-1307
To investigate the protective effects of oxymatrine (OMT) against H2O2-induced damage in L02 cells and research the mechanism,L02 cells were used as the research object. The oxidative stress model of L02 was established by hydrogen peroxide (H2O2). CCK-8 was used to detect the cell activation of L02 cells treated by different OMT. FCM (flow cytometry) assay was used to evaluate the cell proliferation of L02 cells treated by OMT. The apoptosis of L02 cells was detected using Annexin-V/7-AAD apoptosis detection kit. The level of ROS was detected by DCFH-DA fluorescence probe. The GSH-PX and SOD were detected by micro plate and colorimetric method. Results showed that when the concentration of OMT is between 6.25 and 100 mg•L⁻¹, it could promote the production of NADPH and strengthen the activity of GSH-PX and SOD to get rid of the ROS to protect the L02 cell from the apoptosis of L02 cell induced by H2O2.

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