1.The specific immune response of dendritic cell vaccine pulsed with ALDH1A1 mRNA on nasopharyngeal carcinoma stem cells in vitro
XIE Yunqing ; XU Yangmei ; CHEN Shanshan ; LIN Xiaowei ; LIU Qinying
Chinese Journal of Cancer Biotherapy 2026;33(5):486-493
[摘 要] 目的:探讨乙醛脱氢酶1A1(ALDH1A1)mRNA负载树突状细胞(DC)疫苗体外诱导抗鼻咽癌干细胞免疫反应的能力。方法:体外转录ALDH1A1 mRNA并电转染至人外周血DC,构建ALDH1A1-DC疫苗,转染EGFP mRNA为对照。流式细胞术检测DC表型、淋巴细胞亚群、细胞毒性T 淋巴细胞(CTL)增殖和细胞因子分泌。分选ALDH+和ALDH- C666-1细胞,检测干细胞标志物(CD24、CD133)和干性基因(OCT4、SOX2、Nanog)的表达水平,采用CCK-8法评估ALDH1A1-DC疫苗诱导的特异性免疫杀伤能力。结果:EGFP-DC荧光表达率显著高于未转染DC(P < 0.000 1),ALDH1A1-DC抗原提呈分子HLA-ABC、共刺激分子CD86、CD40和CCR7表达与未转染DC相比显著增强(P = 0.001 3、P = 0.005 9、P = 0.000 4及P = 0.001 9)。与单独淋巴细胞组(T)及空载DC诱导的淋巴细胞组(DC-T)相比,ALDH1A1-DC诱导的CTL比例最高(均P < 0.000 1),分裂指数最高(P = 0.000 2、P = 0.000 3),且CD8+CD69+(P = 0.000 5、P < 0.000 1)和CD8+ IFN-γ+(P = 0.012 6、P = 0.001 9)细胞亚群比例均显著提高。ALDH1A1-DC-T细胞对ALDH+C666-1悬浮细胞球的杀伤效果显著优于ALDH-细胞球(P = 0.001 0),且与其他各组淋巴细胞相比表现出较强的抗ALDH+C666-1悬浮细胞球的免疫效应(P = 0.001 0,P < 0.000 1)。然而,HLA-ABC阻断后其对ALDH+C666-1细胞的特异性杀伤效应显著降低(P < 0.000 1)。结论:mRNA转染DC后可翻译蛋白并促进DC成熟,增强其诱导特异性CTL免疫反应的能力。
2.Research progress on cell models of sarcopenia
Yiting SHI ; Peiyuan ZHAO ; Xihong LIU ; Gai GAO ; Xiaowei ZHANG ; Zhishen XIE ; Zhenqiang ZHANG
Chinese Journal of Comparative Medicine 2025;35(8):131-145
Sarcopenia is a systemic disease characterized by accelerated loss of skeletal muscle mass and function,leading to an increased incidence of adverse outcomes such as falls and fractures.Sarcopenia is classified into primary and secondary types,with primary sarcopenia being closely related to aging and posing a serious threat to a healthy life among the elderly.Sarcopenia has an insidious onset and is often overlooked in terms of its clinical treatment.Its pathogenesis is complex,involving functional changes and pathological alterations in multiple systems,and presenting major research challenges.Cell models can effectively be used to simulate the pathological changes of diseases under controllable conditions,thus facilitating the investigation of the etiology and factors influencing sarcopenia,and providing an important approach for in-depth studies of its mechanism;however,there is currently no standardized cell model in the field of sarcopenia research.Commonly used cell models currently include models involving protein metabolism interventions,oxidative stress,and inflammatory response interventions.This review considers the commonly used skeletal muscle cell types and modeling method of sarcopenia,to provide a solid foundation and important method ological reference for further simulation of the pathological process of sarcopenia in subsequent experimental studies.
3.Research on the evaluation model of young talents in administration of secondary specialty hospitals under the philosophy of high-quality development
Weijia REN ; Mengxiao WEI ; Xiaowei GAN ; Lifeng ZHANG ; Lingxia JIN ; Mengxi ZHANG ; Wei SONG ; Chenxi XIE
Modern Hospital 2025;25(3):404-408
Public hospitals have formed a relatively perfect working foundation in the introduction and training of young talents,but the evaluation system of young talents is not perfect.Based on the requirements of high-quality development,grasp the principle of party management of talents,combine the talents development situation in Jiading District Maternal and Child Health Care Hospital,takes the special training of young talents in administration as the starting point,comprehensively uses the literature method,interview method and Delphi method to establish the index database,uses the exploratory factor analysis meth-od to calculate the index weight,and constructs the evaluation model of young talents in hospital administrative management,so as to help hospitals better screen and evaluate talents and give full play to the value and role of talents as the first resource.
4.Research on the evaluation model of young talents in administration of secondary specialty hospitals under the philosophy of high-quality development
Weijia REN ; Mengxiao WEI ; Xiaowei GAN ; Lifeng ZHANG ; Lingxia JIN ; Mengxi ZHANG ; Wei SONG ; Chenxi XIE
Modern Hospital 2025;25(3):404-408
Public hospitals have formed a relatively perfect working foundation in the introduction and training of young talents,but the evaluation system of young talents is not perfect.Based on the requirements of high-quality development,grasp the principle of party management of talents,combine the talents development situation in Jiading District Maternal and Child Health Care Hospital,takes the special training of young talents in administration as the starting point,comprehensively uses the literature method,interview method and Delphi method to establish the index database,uses the exploratory factor analysis meth-od to calculate the index weight,and constructs the evaluation model of young talents in hospital administrative management,so as to help hospitals better screen and evaluate talents and give full play to the value and role of talents as the first resource.
5.Research progress on cell models of sarcopenia
Yiting SHI ; Peiyuan ZHAO ; Xihong LIU ; Gai GAO ; Xiaowei ZHANG ; Zhishen XIE ; Zhenqiang ZHANG
Chinese Journal of Comparative Medicine 2025;35(8):131-145
Sarcopenia is a systemic disease characterized by accelerated loss of skeletal muscle mass and function,leading to an increased incidence of adverse outcomes such as falls and fractures.Sarcopenia is classified into primary and secondary types,with primary sarcopenia being closely related to aging and posing a serious threat to a healthy life among the elderly.Sarcopenia has an insidious onset and is often overlooked in terms of its clinical treatment.Its pathogenesis is complex,involving functional changes and pathological alterations in multiple systems,and presenting major research challenges.Cell models can effectively be used to simulate the pathological changes of diseases under controllable conditions,thus facilitating the investigation of the etiology and factors influencing sarcopenia,and providing an important approach for in-depth studies of its mechanism;however,there is currently no standardized cell model in the field of sarcopenia research.Commonly used cell models currently include models involving protein metabolism interventions,oxidative stress,and inflammatory response interventions.This review considers the commonly used skeletal muscle cell types and modeling method of sarcopenia,to provide a solid foundation and important method ological reference for further simulation of the pathological process of sarcopenia in subsequent experimental studies.
6.Exploring the scientific connotation of"spleen qi disperses essence"based on apolipoproteins
Tao WANG ; Gai GAO ; Qingqing SONG ; Yanyan SHEN ; Daiyu XU ; Xiaowei ZHANG ; Jiangyan XU ; Zhenqiang ZHANG ; Zhishen XIE
Journal of Beijing University of Traditional Chinese Medicine 2025;48(11):1501-1506
As one of the core theories of spleen governing transportation and transformation in the traditional Chinese medicine visceral manifestation theory,the modern biological basis of"spleen qi disperses essence"has not been fully elucidated.Lipids are one of the three major nutrients in the body,which are derived from exogenous absorption or endogenous transformation,and belong to the category of"grease"and"essence"substances in traditional Chinese medicine.Because of their hydrophobic nature,lipids require apolipoproteins to be transported in the bloodstream and used by the body;similarly,essence also needs spleen qi transformation to be distributed throughout the body and exert their nourishing effects,revealing a certain degree of inherent unity between the two.When the spleen qi functions properly,essence dispersal is orderly and lipid metabolism remains in homeostatic balance;if spleen deficient leads to impaired transportation,the essence will not be distributed,and the lipid turbidity will accumulate,causing disease.Classic strengthening spleen prescriptions such as Zexie Decoction,can reshape lipid homeostasis by regulating apolipoproteins.Based on apolipoprotein-mediated lipid metabolism,this paper explores the modern molecular biology basis of the theory of"spleen qi disperses essence,"which provides novel insights for enriching the modern research of traditional Chinese medicine visceral manifestation theory,and lays the foundation for clinical practice and theoretical innovation in the treatment of metabolic diseases from the spleen.
8.Exploring the scientific connotation of"spleen qi disperses essence"based on apolipoproteins
Tao WANG ; Gai GAO ; Qingqing SONG ; Yanyan SHEN ; Daiyu XU ; Xiaowei ZHANG ; Jiangyan XU ; Zhenqiang ZHANG ; Zhishen XIE
Journal of Beijing University of Traditional Chinese Medicine 2025;48(11):1501-1506
As one of the core theories of spleen governing transportation and transformation in the traditional Chinese medicine visceral manifestation theory,the modern biological basis of"spleen qi disperses essence"has not been fully elucidated.Lipids are one of the three major nutrients in the body,which are derived from exogenous absorption or endogenous transformation,and belong to the category of"grease"and"essence"substances in traditional Chinese medicine.Because of their hydrophobic nature,lipids require apolipoproteins to be transported in the bloodstream and used by the body;similarly,essence also needs spleen qi transformation to be distributed throughout the body and exert their nourishing effects,revealing a certain degree of inherent unity between the two.When the spleen qi functions properly,essence dispersal is orderly and lipid metabolism remains in homeostatic balance;if spleen deficient leads to impaired transportation,the essence will not be distributed,and the lipid turbidity will accumulate,causing disease.Classic strengthening spleen prescriptions such as Zexie Decoction,can reshape lipid homeostasis by regulating apolipoproteins.Based on apolipoprotein-mediated lipid metabolism,this paper explores the modern molecular biology basis of the theory of"spleen qi disperses essence,"which provides novel insights for enriching the modern research of traditional Chinese medicine visceral manifestation theory,and lays the foundation for clinical practice and theoretical innovation in the treatment of metabolic diseases from the spleen.
9.A study of the trajectory of arterial oxygen tension dynamics after successful resuscitation of cardiac arrest patients and its impact on prognosis.
Jie HU ; Lei ZHONG ; Dan ZONG ; Jianhong LU ; Bo XIE ; Xiaowei JI
Chinese Critical Care Medicine 2025;37(9):843-847
OBJECTIVE:
To construct a longitudinal trajectory model of arterial oxygen tension (PaO2) within 24 hours after cardiac arrest (CA).
METHODS:
A retrospective cohort study was conducted. CA patients admitted to the ICU from 2014 to 2015 were selected from the eICU Collaborative Research Database (eICU-CRD). Data about patients' demographic characteristics, history of comorbidities, laboratory test indicators within 24 hours of intensive care unit (ICU) admission [including all PaO2 data and arterial carbon dioxide tension (PaCO2)], vasopressor use, and clinical outcomes were extracted from the database. The primary outcome variable was all-cause in-hospital mortality. Group-based trajectory model (GBTM) were built based on the changes in PaO2 within 24 hours of ICU admission, and patients were grouped according to their initial static PaO2 values upon ICU admission. Multivariable adjusted Poisson regression analysis was used to compare the in-hospital mortality risk among patients in different PaO2 dynamic trajectory groups. Sensitivity analyses were performed using multivariable logistic regression and multivariable adjusted Poisson regression without imputation of missing values.
RESULTS:
A total of 3 866 CA patients were included. Three GBTM trajectory groups were identified based on PaO2 changes within 24 hours of ICU admission: Group-1 (low level first increased then decreased, 148 cases), Group-2 (sustained low level, 3 040 cases), and Group-3 (first high level then decreased, 678 cases). Significant differences were found among the three groups in age, body weight, maximum serum potassium, maximum PaCO2, minimum hemoglobin (Hb), vasopressor use, total hospitalization time, ICU stay, and hospital mortality. After incorporating variables with significant differences into the multivariable adjusted Poisson regression model, results showed that compared to Group-2 patients, patients in Group-1 and Group-3 had an increased risk of all-cause in-hospital mortality [Group-1 adjusted relative risk (aRR) = 1.20, 95% confidence interval (95%CI) was 1.02-1.41; Group-3 aRR = 1.11, 95%CI was 1.01-1.24]. Based on initial static PaO2 values at ICU admission, patients were divided into four groups: PaO2 < 100 mmHg (1 mmHg = 0.133 kPa; 1 217 cases), PaO2 100-200 mmHg (569 cases), PaO2 201-300 mmHg (547 cases), and PaO2 > 300 mmHg (1 082 cases). Multivariable adjusted Poisson regression analysis indicated a significant upward trend in aRR for the latter three groups compared to the PaO2 < 100 mmHg group. Sensitivity analyses revealed that compared to Group-2, patients in Group-1 and Group-3 had a significantly increased risk of all-cause in-hospital mortality (both P < 0.05).
CONCLUSIONS
Within 24 hours after return of spontaneous circulation in CA patients, PaO2 exhibits different dynamic trajectories, and patients with hyperoxia have an increased risk of in-hospital mortality.
Humans
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Retrospective Studies
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Hospital Mortality
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Heart Arrest/blood*
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Prognosis
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Oxygen/blood*
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Intensive Care Units
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Cardiopulmonary Resuscitation
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Male
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Female
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Middle Aged
10.Construction and Application of An Animal Model of Respiratory Syncytial Virus Infection Based on Humanized IGF1R Mice
Xiaowei YANG ; Dan XIE ; Shuran LI ; Lei BAO ; Zihan GENG ; Xian LIU ; Mengyao CUI ; Yaxin WANG ; Shan CAO ; Xiaolan CUI ; Jing SUN ; Shanshan GUO
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(21):48-53
ObjectiveTo construct an animal model of respiratory syncytial virus(RSV)-infected pneumonia suitable for preclinical studies. MethodsThe virulence of RSV to the four cell lines was observed by cytopathic effect (CPE), and 50% tissue culture infective dose(TCID50) was calculated. Twenty BALB/c mice were randomly divided into a normal group and a model group. Six BALB/c-hIGF1R mice served as the humanized IGF1R model group. Except for the normal group, the other groups received intranasal RSV infection on days 1 and 3 to establish a viral pneumonia model. The efficacy of establishing an RSV-induced pneumonia animal model based on humanized insulin-like growth factor 1 receptor (IGF1R) mice was evaluated by measuring organ indices, peripheral blood lymphocyte percentages, pulmonary pathology and imaging, and pulmonary viral load. Additionally, ten BALB/c mice served as normal group, and thirty-two BALB/c-hIGF1R mice were randomly assigned to humanized IGF1R model group, ribavirin group (82.5 mg·kg-¹·d-¹), and high and low dose groups of Lianhua Qingwen (3.3 mg·kg-¹·d-¹ , 1.65 mg·kg-¹·d-¹), with 8 mice per group. The viral load in lung tissue was measured after ribavirin and Lianhua Qingwen intervention, and the model was applied to the evaluation of anti-RSV drugs. ResultsIn the lungs of the humanized IGF1R model group, large solid and diffuse ground-glass shadows were seen, and the lung volume was significantly increased (P<0.01). The lung index was significantly increased (P<0.01), and both the spleen index and thymus index were significantly decreased (P<0.01). The percentages of CD3+ and CD4+T cells were significantly decreased (P<0.05), and there was a large amount of inflammation and stasis in the perivascular area of the lung tissue, which was predominantly characterized by lymphocytes. The endothelium of blood vessels was partially detached, with a small number of eosinophils. After infecting BALB/c-hIGF1R mice with RSV, the expression of viral nucleic acids in the lung tissue of the mice was significantly increased, with significant differences compared with the normal group (P<0.01). The expression of viral nucleic acids in the ribavirin group and the high and low dose groups of Lianhua Qingwen was significantly reduced, with significant differences compared with the normal group (P<0.01). ConclusionHumanized IGF1R mice are more susceptible to respiratory SVC, and the animal model of RSV-infected pneumonia based on humanized IGF1R mice was successfully constructed, which is suitable for the evaluation of anti-RSV drugs.

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