Background:Hypoxemia is a common and serious complication during sedated gastrointestinal endoscopy for out- and in-patients. Though diagnostic and severity scoring systems of obstructive sleep apnea (OSA) and difficult airway assessment (DAA) are widely used to assess hypoxemia risk, there is no exclusively designed prediction model and convenient tool in real-world practice. We aimed to develop and validate a robust and accurate hypoxemia risk prediction model for pre-operative use in this context. Methods:Using data from out-patients undergoing gastrointestinal endoscopy between May 2020 and November 2023 across seven hospitals in China with diverse regional and ethnic backgrounds, we developed and independently validated a hypoxemia risk prediction model for sedated gastrointestinal endoscopy (HAPPY-12K). The model was developed to pre-operatively predict occurrence of hypoxemia during sedated gastrointestinal endoscopy, defined as SpO2 falling below 95% for a duration exceeding 10 s. HAPPY-12K was a logistic regression model incorporating eight predictors: body mass index, Mallampati grade, limited jaw protrusion, short thyromental distance, large tongue, history of snoring, short neck with large circumference and pre-operative mean arterial pressure. The model was constructed by a well-established 3-D modeling strategy composed of Double types of effects, Double steps of screening, and Double steps of modeling. The discriminative ability was evaluated using the area under the receiver operating characteristic curve (AUC). The model calibration was examined through calibration slope, expected-to-observed (E:O) ratio and Brier score. For clinical utility, decision curve analysis was performed to assess net benefit (NB) and net reduction (NR). Furthermore, we systematically compared HAPPY-12K with other newly developed models using scores or raw variables from questionaries of OSA and DAA using DeLong's test. This study is registered in the Chinese Clinical Trial Registry (ChiCTR2300074128). Findings:We included 11,957 patients, divided into a Training Set (n = 2,518, hypoxemia rate 10.37%), and five validation sets (n = 9,439, hypoxemia rate raining from 8.40% to 28.45%). HAPPY-12K was developed in a Han Chinese population and exhibited satisfactory discrimination ability with AUCs ranging from 0.818 to 0.895 in external populations of the same ethnicity, and an acceptable AUC of 0.771 in a Uygur Chinese population. Although its Brier scores were satisfactory across all ethnic populations, HAPPY-12K displayed acceptable calibration (calibration slope < 1.2) in external Han Chinese populations, and good calibration (E:O ratio = 0.962) in independent homogenous populations comparable to the training set. The average NB and NR were 45.2‰ and 59.5%, respectively. It was estimated that HAPPY-12K would identify over half a million patients with truly developing hypoxemia during sedated gastrointestinal endoscopy and could help avoid over six million unnecessary interventions annually in China. Meanwhile, a head-to-head comparison revealed that HAPPY-12K outperformed other models. HAPPY-12K has been implemented as an interactive online tool available at http://bigdata.njmu.edu.cn/HAPPY-12K/. Interpretation:HAPPY-12K could enable efficient and precise hypoxemia risk assessment before sedated gastrointestinal endoscopy, providing timely alerts for high-risk outpatients. Funding:National Natural Science Foundation of China; Noncommunicable Chronic Diseases-National Science and Technology Major Project; Science and Technology Project of Jiangsu Disease Control and Prevention Administration; Science and Technology Development Project of Nanjing Medical University; Priority Academic Program Development of Jiangsu Higher Education Institutions; and Outstanding Young Level Academic Leadership Training Program of Nanjing Medical University.
Intraoperative persistent severe hypotension (PSH) is a common complication following pancreaticoduodenectomy (PD) and may affect the prognosis of patients. The aim of this trial was to explore the ultrastructural alterations of capillary endothelia cells and relevant factors that is associated with PSH and postoperative outcomes in patients undergoing PD. Total 103 patients were divided into PSH or non-PSH group during PD. The basic clinical features, hemodynamic monitoring, electrolyte biochemical indexes, postoperative inflammatory biomarkers and adverse outcomes were analyzed. Particularly, the great omentum samples were collected and the morphological changes of capillary endothelial cells were revealed by electronic microscopy. PSH occurred in forty-four patients (42.7
Postoperative Cognitive Dysfunction (POCD) is a neurocognitive complication after anaesthesia and surgery, with oxidative stress as a key pathological driver. Nuclear factor erythroid-related factor 2 (Nrf2) and Thioredoxin-Interacting Protein (TXNIP) are critical regulators of oxidative stress and inflammation, and TXNIP directly facilitates NLRP3 inflammasome activation. Using an 18-month-old mouse model of POCD established by tibial fracture surgery, we investigated the changes in the expression of TXNIP and the regulatory mechanism of the Nrf2/TXNIP/NLRP3 signaling pathway. Cognitive function was assessed by the Morris water maze test, and hippocampal samples were analyzed for protein levels(Nrf2, TXNIP, and NLRP3 inflammasome-related protein), pro-inflammatory factors (IL-1β and IL-18), Reactive Oxygen Species (ROS), and neuronal apoptosis. Anesthesia/surgery significantly upregulated TXNIP expression. Inhibiting TXNIP with verapamil attenuated oxidative stress, neuronal injury, and NLRP3 inflammasome activation, thereby ameliorating cognitive impairment. Similarly, sulforaphane (SFN)-mediated upregulation of Nrf2 suppressed TXNIP expression, decreased NLRP3 inflammasome-related proteins and pro-inflammatory factors, and alleviated cognitive deficits. These findings demonstrate thatthe Nrf2/TXNIP/NLRP3 axis mediates hippocampal oxidative stress and pyroptosis in POCD pathogenesis, highlighting this pathway as a potential therapeutic target.
Postoperative cognitive dysfunction (POCD) is a common complication after surgery, but its underlying mechanisms remain incompletely understood. Meningeal lymphatic vessels (MLV) regulate cerebrospinal fluid drainage, waste clearance, and immune surveillance; however, their role in POCD remains unclear. This study aimed to determine whether impaired meningeal lymphatic drainage contributes to POCD and to explore the underlying mechanisms. Meningeal lymphatic drainage was assessed by cisterna magna tracer injection in a mouse model of POCD and by contrast-enhanced MRI in a small exploratory clinical cohort of elderly surgical patients. To determine the functional role of MLV, mice received intracisternal VEGFC to enhance meningeal lymphatic drainage or VEGFR3d1–4 decoy receptor to disrupt meningeal lymphatic drainage. Single-cell RNA sequencing of meningeal tissues was performed to identify potential signaling pathways between macrophages and lymphatic endothelial cells. CXCL10 neutralization and CXCR3 blockade were further used to evaluate the functional role of this pathway in surgery-induced MLV dysfunction and cognitive impairment. Surgery impaired meningeal lymphatic drainage and induced postoperative cognitive deficits in aged mice. VEGFC-mediated enhancement of meningeal lymphatic drainage reduced neuroinflammation, p-tau217 accumulation, neuronal and synaptic injury, and cognitive impairment, whereas VEGFR3d1–4-mediated disruption of meningeal lymphatic drainage exacerbated these changes. Single-cell RNA sequencing identified the CXCL10–CXCR3 axis as a potential macrophage–lymphatic endothelial cell communication pathway. Neutralization of CXCL10 or blockade of CXCR3 improved meningeal lymphatic function and ameliorated postoperative cognitive deficits. In an exploratory clinical cohort, contrast-enhanced MRI-assessed meningeal lymphatic drainage was reduced in patients with early postoperative cognitive decline. Meningeal lymphatic dysfunction is associated with POCD and may contribute to postoperative cognitive decline by promoting neuroinflammation, p-tau217 accumulation, and neuronal and synaptic injury. Meningeal CXCL10–CXCR3 signaling may contribute to surgery-induced MLV dysfunction and may represent a potential therapeutic target for POCD.
BACKGROUND:Intraoperative persistent hypotension (IPH) during pancreaticoduodenectomy (PD) is linked to adverse postoperative outcomes, yet its risk factors remain unclear. AIM:To clarify the risk factors associated with IPH during PD, ensuring patient safety in the perioperative period. METHODS:A retrospective analysis of patient records from January 2018 to December 2022 at the First Affiliated Hospital of Nanjing Medical University identified factors associated with IPH in PD. These factors included age, gender, body mass index, American Society of Anesthesiologists classification, comorbidities, medication history, operation duration, fluid balance, blood loss, urine output, and blood gas parameters. IPH was defined as sustained mean arterial pressure < 65 mmHg, requiring prolonged deoxyepinephrine infusion for > 30 min despite additional deoxyepinephrine and fluid treatments. RESULTS:Among 1596 PD patients, 661 (41.42%) experienced IPH. Multivariate logistic regression identified key risk factors: increased age [odds ratio (OR): 1.20 per decade, 95% confidence interval (CI): 1.08-1.33] (P < 0.001), longer surgery duration (OR: 1.15 per additional hour, 95%CI: 1.05-1.26) (P < 0.01), and greater blood loss (OR: 1.18 per 250-mL increment, 95%CI: 1.06-1.32) (P < 0.01). A novel finding was the association of arterial blood Ca2+ < 1.05 mmol/L with IPH (OR: 2.03, 95%CI: 1.65-2.50) (P < 0.001). CONCLUSION:IPH during PD is independently associated with older age, prolonged surgery, increased blood loss, and lower plasma Ca2+.
Background Sepsis-associated encephalopathy (SAE) is an acute cerebral dysfunction caused by sepsis. Neuroinflammation induced by sepsis is considered a potential mechanism of SAE; however, very little is known about the role of the meningeal lymphatic system in SAE. Methods Sepsis was established in male C57BL/6J mice by intraperitoneal injection of 5 mg/kg lipopolysaccharide, and the function of meningeal lymphatic drainage was assessed. Adeno-associated virus 1-vascular endothelial growth factor C (AAV1-VEGF-C) was injected into the cisterna magna to induce meningeal lymphangiogenesis. Ligation of deep cervical lymph nodes (dCLNs) was performed to induce pre-existing meningeal lymphatic dysfunction. Cognitive function was evaluated by a fear conditioning test, and inflammatory factors were detected by enzyme-linked immunosorbent assay. Results The aged mice with SAE showed a significant decrease in the drainage of OVA-647 into the dCLNs and the coverage of the Lyve-1 in the meningeal lymphatic, indicating that sepsis impaired meningeal lymphatic drainage and morphology. The meningeal lymphatic function of aged mice was more vulnerable to sepsis in comparison to young mice. Sepsis also decreased the protein levels of caspase-3 and PSD95, which was accompanied by reductions in the activity of hippocampal neurons. Microglia were significantly activated in the hippocampus of SAE mice, which was accompanied by an increase in neuroinflammation, as indicated by increases in interleukin-1 beta, interleukin-6 and Iba1 expression. Cognitive function was impaired in aged mice with SAE. However, the injection of AAV1-VEGF-C significantly increased coverage in the lymphatic system and tracer dye uptake in dCLNs, suggesting that AAV1-VEGF-C promotes meningeal lymphangiogenesis and drainage. Furthermore, AAV1-VEGF-C reduced microglial activation and neuroinflammation and improved cognitive dysfunction. Improvement of meningeal lymphatics also reduced sepsis-induced expression of disease-associated genes in aged mice. Pre-existing lymphatic dysfunction by ligating bilateral dCLNs aggravated sepsis-induced neuroinflammation and cognitive impairment. Conclusion The meningeal lymphatic drainage is damaged in sepsis, and pre-existing defects in this drainage system exacerbate SAE-induced neuroinflammation and cognitive dysfunction. Promoting meningeal lymphatic drainage improves SAE. Manipulation of meningeal lymphangiogenesis could be a new strategy for the treatment of SAE.
Hepatocellular carcinoma (HCC) is a leading malignancy of the digestive system, especially in China. Although radiotherapy, chemotherapy, and transarterial chemoembolization have achieved tremendous success, surgical resection remains the primary treatment for HCC patients. Recent studies have shown that intravenous anesthetic drugs may affect the malignant behaviors of tumor cells, ultimately leading to differences in the postoperative prognosis of patients. Etomidate is one of the most widely used intravenous anesthetic drugs for the induction and maintenance of anesthesia in tumor patients undergoing surgery. However, the effects and underlying mechanisms of etomidate on HCC cells have not yet been characterized. Our study indicated that etomidate significantly impedes the malignant progression of HCC cells. Mechanistically, etomidate inhibits phosphorylation and, ultimately, the activity of Janus kinase 2 (JAK2) by competing with ATP for binding to the ATP-binding pocket of JAK2. Thus, it suppresses the JAK2/STAT3 signaling pathway in HCC cells to exert its anti-tumor efficacy. Herein, we provide preclinical evidence that etomidate is the optimal choice for surgical treatment of HCC patients.
The incidence of hypoxemia during painless gastrointestinal endoscopy remains a matter of concem. To date, there is no recognized simple method to predict hypoxemia in digestive endoscopic anesthesia. The NoSAS (neck circumference, obesity, snoring, age, sex) questionnaire, an objective and simple assessment scale used to assess obstructive sleep apnea (OSA), combined with the modified Mallampati grade (MMP), may have certain screening value. This combination may allow anesthesiologists to anticipate, manage, and consequently decrease the occurrence of hypoxemia. This study was a prospective observational trial. The primary endpoint was the incidence of hypoxaemia defined as pulse oxygen saturation (SpO2) < 95
OBJECTIVE:To prospectively evaluate the safety and efficacy of a "muscle relaxant-free" general anesthesia using a combination of remifentanil and propofol, compared to propofol-based monitored anesthesia care and conventional general anesthesia during therapeutic endoscopic retrograde cholangiopancreatography (ERCP).METHODS:From September to December 2019, 360 patients scheduled for elective ERCP at the Endoscopy Center of the First Affiliated Hospital of Nanjing Medical University were randomly assigned to three different groups: Group MAC (propofol-based monitored anesthesia care, n=120), Group GA1 (general anesthesia with neuromuscular blocking agents, n=120), or Group GA2 (remifentanil-propofol combination-based muscle relaxant-free general anesthesia, n=120).RESULTS:The results showed that there was a significant difference in intraprocedural cardiopulmonary adverse events among the three groups (Group MAC, 37.5%; Group GA1, 19.2%; Group GA2, 17.5%; P < 0.001). Total time (from patient entry into the Endoscopy Center to departure) and room time (from patient entry into the endoscopy suit to departure) were shorter in Group GA2 and Group MAC compared to Group GA1 (P < 0.001). Additionally, endoscopist satisfaction levels were significantly higher in Group GA1 and Group GA2 compared to Group MAC (P < 0.001).CONCLUSION:The study found that administering propofol-remifentanil combination for "muscle relaxant-free" general anesthesia during therapeutic ERCP was safe and effective. This approach offered greater safety and endoscopist satisfaction than propofol-based monitored anesthesia care, as well as shorter total time and room time than conventional general anesthesia.
目的:探讨模拟教学在麻醉专业研究生紧急气管插管培训中的效果.方法:将2016 年6 月至2020年6 月期间36名麻醉专业研究生随机分为对照组和实验组.比较两组学生理论考核成绩及操作相关内容.结果:两组研究生经培训后理论成绩均明显提高,且实验组提高更为显著(P<0.05);在实践操作中,实验组研究生在一次插管成功率、插管并发症及综合评分方面均显著优于对照组(P<0.05).结论:模拟教学培训可提供标准化、规范化的培训过程,提高学习效率,在提升麻醉专业研究生理论、技能水平上发挥着重要作用.
Postoperative cognitive dysfunction (POCD) is a cognitive deterioration and dementia that arise after a surgical procedure, affecting up to 40% of surgery patients over the age of 60. The precise etiology and molecular mechanisms underlying POCD remain uncovered. These reasons led us to employ integrative bioinformatics and machine learning methodologies to identify several biological signaling pathways involved and molecular signatures to better understand the pathophysiology of POCD. A total of 223 differentially expressed genes (DEGs) comprising 156 upregulated and 67 downregulated genes were identified from the circRNA microarray dataset by comparing POCD and non-POCD samples. Gene ontology (GO) analyses of DEGs were significantly involved in neurogenesis, autophagy regulation, translation in the postsynapse, modulating synaptic transmission, regulation of the cellular catabolic process, macromolecule modification, and chromatin remodeling. Pathway enrichment analysis indicated some key molecular pathways, including mTOR signaling pathway, AKT phosphorylation of cytosolic targets, MAPK and NF-κB signaling pathway, PI3K/AKT signaling pathway, nitric oxide signaling pathway, chaperones that modulate interferon signaling pathway, apoptosis signaling pathway, VEGF signaling pathway, cellular senescence, RANKL/RARK signaling pathway, and AGE/RAGE pathway. Furthermore, seven hub genes were identified from the PPI network and also determined transcription factors and protein kinases. Finally, we identified a new predictive drug for the treatment of SCZ using the LINCS L1000, GCP, and P100 databases. Together, our results bring a new era of the pathogenesis of a deeper understanding of POCD, identified novel therapeutic targets, and predicted drug inhibitors in POCD.
Background: The pathophysiological mechanisms underlying postoperative cognitive dysfunction (POCD) remain unclear over the years. Neuroinflammation caused by surgery has been recognized as an important element in the development of POCD. Many studies also suggest that the vagus nerve plays an important role in transmitting peripheral injury signals to the central nervous system (CNS) and the resultant neuroinflammation. Previously, we have demonstrated that brain mast cells (BMCs), as the "first responders", play a vital role in neuroinflammation and POCD. However, how the vagus nerve communicates with BMCs in POCD has not yet been clarified. Methods: In the current study, we highlighted the role of the vagus nerve as a conduction highway in surgery-induced neuroinflammation for the first time. In our model, we tested if mice underwent unilateral cervical vagotomy (VGX) had less neuroinflammation compared to the shams after laparotomy (LP) at an early stage. To further investigate the roles of mast cells and glutamate in the process, we employed KitW-sh mice and primary bone marrow-derived MCs to verify the glutamate-NR2B axis on MCs once again. Results: Our results demonstrated that there were higher levels of glutamate and BMCs activation as early as 4 h after LP. Meanwhile, vagotomy could partially block the increases and reduce neuroinflammation caused by peripheral inflammation during the acute phase. Excitingly, inhibition of NR2B receptor and knockout of mast cells can attenuateneuroinflammation induced by glutamate. Conclusion: Taken together, our findings indicate that the vagus is a high-speed pathway in the transmission of peripheral inflammation to the CNS. Activation of BMCs triggered a neuroinflammatory cascade. Inhibition of NR2B receptor on BMCs can reduce glutamate-induced BMCs activation, neuroinflammation, and memory impairment, suggesting a novel treatment strategy for POCD.
目的:分析血浆外泌体miR-409-3p与冠状动脉搭桥术围术期神经认知障碍(perioperative neurocognitive disorders,PND)的相关性.方法:共纳入76例冠状动脉搭桥术患者,于术前1 d和术后7 d进行神经心理测试评估,并根据评估结果将患者分为PND组(n=24)和非PND组(n=52).提取所有患者血浆外泌体,分别采用透射电镜、粒径分析、Western blot对其进行鉴定.采用qRT-PCR检测外泌体miR-409-3p的表达水平.Logistic回归分析PND发生的危险因素.结果:两组在年龄、手术时间及教育年限方面差异有统计学意义.血浆外泌体miR-409-3p在PND组中的表达高于非PND组.年龄、手术时间及外泌体miR-409-3p为PND发生的独立危险因素.结论:高表达的血浆外泌体miR-409-3p可作为冠状动脉搭桥术PND的新型分子标志物.
Introduction The aims of this study are to evaluate depression and quality of life (QOL) after laparoscopic abdominoperineal resection (LAPR) or transanal total mesorectal excision (TaTME) surgery in low rectal cancer (RC) patients. Methods This is a prospective observational cohort study. Patients were divided into two groups: either TaTME surgery or LAPR. Psychosocial distress and QOL were assessed using a questionnaire before surgery, at 6 months postsurgery, and 12 months postsurgery. The Hospital Anxiety and Depression Scale was used to assess symptoms of anxiety and depression. The European Organization for Research and Treatment of Cancer-QOL questionnaire core was used to estimate the QOL. Results In the TaTME group, the scores of psychosocial distress and QOL showed an obvious tendency to decrease and then recover. Meanwhile, in the LAPR group, these scores deteriorated significantly at 6 and 12 months, and the recovery was less pronounced. Multivariable analysis suggested that surgical options and tumor stage were significantly associated with psychosocial distress and QOL. Conclusion For low RC, TaTME could significantly improve patients' QOL and reduce psychological distress as compared to patients with LAPR at 12 months after surgery.
Background Postoperative nausea and vomiting (PONV) as a clinically most common postoperative complication requires multimodal antiemetic medications targeting at a wide range of neurotransmitter pathways. Lacking of neurobiological mechanism makes this ‘big little problem’ still unresolved. We aim to investigate whether gut-vagus-brain reflex generally considered as one of four typical emetic neuronal pathways might be the primary mediator of PONV. Methods Three thousand two hundred twenty-three patients who underwent vagus nerve trunk resection (esophagectomy and gastrectomy) and non-vagotomy surgery (hepatectomy, pulmonary lobectomy and colorectomy) from December 2016 to January 2019 were enrolled. Thirty cases of gastrectomy with selective resection on the gastric branch of vagus nerve were also recruited. Nausea and intensity of vomiting was recorded within 24 h after the operation. Results PONV occurred in 11.9% of 1187 patients who underwent vagus nerve trunk resection and 28.7% of 2036 non-vagotomy patients respectively. Propensity score matching showed that vagotomy surgeries accounted for 19.9% of the whole PONV incidence, much less than that observed in the non-PONV group (35.1%, P < 0.01). Multivariate logistic regression result revealed that vagotomy was one of underlying factor that significantly involved in PONV (OR = 0.302, 95% CI, 0.237-0.386). Nausea was reported in 5.9% ~ 8.6% vagotomy and 12 ~ 17% non-vagotomy patients. Most vomiting were mild, being approximately 3% in vagotomy and 8 ~ 13% in non-vagotomy patients, while sever vomiting was much less experienced. Furthermore, lower PONV occurrence (10%) was also observed in gastrectomy undergoing selective vagotomy. Conclusion Patients undergoing surgeries with vagotomy developed less PONV, suggesting that vagus nerve dependent gut-brain signaling might mainly contribute to PONV.
Objective Neuroinflammation plays a critical role in central nervous system diseases. Exosomal miRNAs released from various cells are implicated in cell-to-cell communication. Prior studies have placed substantial emphasis on the role of cytokines in mast cell-microglia interactions during neuroinflammation. However, it has never been clearly determined whether exosomal miRNAs participate in the interaction between mast cells and microglia and thus mediate neuroinflammation. Methods The characteristics of exosomes isolated from cell culture supernatants were confirmed by transmission electron microscopy (TEM), nanoparticle-tracking analysis (NTA) and Western blot. The transfer of PKH67-labelled exosomes and Cy3-labelled miR-409-3p was observed by fluorescence microscopy. Migration and activation of murine BV-2 microglial cells were evaluated through Transwell assays and immunofluorescence staining for Iba1 and CD68. CD86, IL-1β, IL-6 and TNF-α were assessed via qRT-PCR and ELISA. MiR-409-3p was detected by qRT-PCR. Nr4a2 and NF-κB levels were measured by western blot. Regulatory effects were identified by luciferase reporter assays. Results Lipopolysaccharide (LPS)-stimulated murine P815 mast cells secreted exosomes that were efficiently taken up by murine BV-2 cells, which promoted murine BV-2 cell migration and activation. LPS-P815 exosomes increased the CD86, IL-1β, IL-6 and TNF-α levels in murine BV-2 microglia. Furthermore, activated mast cells delivered exosomal miR-409-3p to murine BV-2 microglia. Upregulated miR-409-3p promoted murine BV-2 microglial migration, activation and neuroinflammation by targeting Nr4a2 to activate the NF-κB pathway. Conclusion Exosomal miR-409-3p secreted from activated mast cells promotes microglial migration, activation and neuroinflammation by targeting Nr4a2 to activate the NF-κB pathway, which provides evidence that not only cytokines but also exosomal miRNAs participate in neuroinflammation. In the future, targeting exosomal miRNAs may provide new insights into neuroinflammation.
Background Radiofrequency catheter ablation (RFCA) as a safe and effective method has been widely used in ventricular tachycardia (VT) patients, and with which anesthesiologists frequently manage their perioperative care. The aim of this study was to investigate the effects of different anesthetic depths on perioperative RFCA and recurrence in patients who with intractable VT and could not tolerate an awake procedure. Methods We reviewed electronic medical records of patients with VT who underwent RFCA by general anesthesia from January 2014 to March 2019. According to intraoperative VT induction, they were divided into two groups: non-inducible group (group N) and inducible group (group I). We constructed several multivariable regression models, in which covariates included patient characteristics, comorbidities, protopathy and bispectral index (BIS) value. Results One hundred one patients were analyzed. Twenty-nine patients (28.7%) experienced VT no induction, and 26 patients (25.7%) relapsed within 1 year. Compared with group I, the proportion of patients with arrhythmogenic right ventricular cardiomyopathy in group N were higher ( P < 0.05), and the recurrence rate of VT was significantly higher (51.7% vs 15.3%) ( P < 0.05). The BIS value in group N was significantly lower ( P < 0.01), in addition, the BIS < 40 was associated with elevated odds of VT no induction compared with a BIS > 50 (odds ratio, 6.92; 95% confidence interval, 1.47–32.56; P = 0.01). VT no induction was an independent predictor of recurrence after RFCA (odds ratio, 5.01; 95% confidence interval, 1.88–13.83; P < 0.01). Conclusion Lower BIS value during VT induction in RFCA operation was associated with high risk of VT no induction, which affects postoperative outcomes. We proposed that appropriate depth of anesthesia should be maintained during the process of VT induction.
Abstract Background Microglia, the principal sentinel immune cells of the central nervous system (CNS), play an extensively vital role in neuroinflammation and perioperative neurocognitive disorders (PND). Histamine, a potent mediator of inflammation, can both promote and prevent microglia-related neuroinflammation by activating different histamine receptors. Rat microglia express four histamine receptors (H1R, H2R, H3R, and H4R), among which the histamine 1 and 4 receptors can promote microglia activation, whereas the role and cellular mechanism of the histamine 2 and 3 receptors have not been elucidated. Therefore, we evaluated the effects and potential cellular mechanisms of histamine 2/3 receptors in microglia-mediated inflammation and PND. Methods This study investigated the role of histamine 2/3 receptors in microglia-induced inflammation and PND both in vivo and in vitro. In the in vivo experiments, rats were injected with histamine 2/3 receptor agonists in the right lateral ventricle and were then subjected to exploratory laparotomy. In the in vitro experiments, primary microglia were pretreated with histamine 2/3 receptor agonists before stimulation with lipopolysaccharide (LPS). Cognitive function, microglia activation, proinflammatory cytokine production, NF-κb expression, M1/M2 phenotypes, cell migration, and Toll-like receptor-4 (TLR4) expression were assessed. Results In our study, the histamine 2/3 receptor agonists inhibited exploratory laparotomy- or LPS-induced cognitive decline, microglia activation, proinflammatory cytokine production, NF-κb expression, M1/M2 phenotype transformation, cell migration, and TLR4 expression through the PI3K/AKT/FoxO1 pathway. Conclusion Based on our findings, we conclude that histamine 2/3 receptors ameliorate PND by inhibiting microglia activation through the PI3K/AKT/FoxO1 pathway. Our results highlight histamine 2/3 receptors as potential therapeutic targets to treat neurological conditions associated with PND.
Although type 2 diabetes is an important predictor of perioperative neurocognitive disorder (PND), little is currently known about its mechanism of action. Adult male db/db and db/m mice were subjected to four different treatments, including either sham or tibial fracture surgery as well as intraperitoneal injection of vehicle or TAK-242 (the selective inhibitor of TLR4) at 1, 24, and 48 h after surgery. The fear conditioning test was performed to detect cognitive impairment on post-operative day (POD) 3. The hippocampus was collected on POD 1 for western-blots and on POD 3 for western-blots, transmission electron microscopy, and electrophysiological experiments. Toll-like receptor 4 (TLR4) inhibition reversed more profound decline in the freezing behavior of db/db mice on POD 3. The surgery reduced the slope of hippocampal field excitatory postsynaptic potentials, and induced blood-brain barrier (BBB) damage in db/db mice on POD 3. The surgery also increased protein levels of TLR4, tumor necrosis factor (TNF)-α, interleukin (IL)-1β, albumin, matrix metalloproteinase (MMP)-2, and MMP-9, and decreased protein levels of claudin-5, occludin, tissue inhibitor of matrix metalloproteinase (TIMP)-1, and TIMP-2 in the hippocampus of db/db and db/m mice. These changes were all reversed by TAK-242 treatment. At last, compared with those in post-operative db/m mice, the surgery increased protein levels of TLR4, TNF-α, and IL-1β, decreased protein levels of claudin-5 and occludin, and sustained the MMP/TIMP imbalance in the hippocampus of db/db mice on POD 3. Our results suggest that TLR4-mediated aggravated hippocampal MMP/TIMP imbalance, BBB disruption, sustained inflammatory cytokine release, and impairment of long-term potentiation play a key role in tibial fracture surgery-induced persistent PND in db/db mice.