Postoperative cognitive dysfunction is a seve re complication of the central nervous system that occurs after anesthesia and surgery,and has received attention for its high incidence and effect on the quality of life ...Postoperative cognitive dysfunction is a seve re complication of the central nervous system that occurs after anesthesia and surgery,and has received attention for its high incidence and effect on the quality of life of patients.To date,there are no viable treatment options for postoperative cognitive dysfunction.The identification of postoperative cognitive dysfunction hub genes could provide new research directions and therapeutic targets for future research.To identify the signaling mechanisms contributing to postoperative cognitive dysfunction,we first conducted Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses of the Gene Expression Omnibus GSE95426 dataset,which consists of mRNAs and long non-coding RNAs differentially expressed in mouse hippocampus3 days after tibial fracture.The dataset was enriched in genes associated with the biological process"regulation of immune cells,"of which Chill was identified as a hub gene.Therefore,we investigated the contribution of chitinase-3-like protein 1 protein expression changes to postoperative cognitive dysfunction in the mouse model of tibial fractu re surgery.Mice were intraperitoneally injected with vehicle or recombinant chitinase-3-like protein 124 hours post-surgery,and the injection groups were compared with untreated control mice for learning and memory capacities using the Y-maze and fear conditioning tests.In addition,protein expression levels of proinflammatory factors(interleukin-1βand inducible nitric oxide synthase),M2-type macrophage markers(CD206 and arginase-1),and cognition-related proteins(brain-derived neurotropic factor and phosphorylated NMDA receptor subunit NR2B)were measured in hippocampus by western blotting.Treatment with recombinant chitinase-3-like protein 1 prevented surgery-induced cognitive impairment,downregulated interleukin-1βand nducible nitric oxide synthase expression,and upregulated CD206,arginase-1,pNR2B,and brain-derived neurotropic factor expression compared with vehicle treatment.Intraperitoneal administration of the specific ERK inhibitor PD98059 diminished the effects of recombinant chitinase-3-like protein 1.Collectively,our findings suggest that recombinant chitinase-3-like protein 1 ameliorates surgery-induced cognitive decline by attenuating neuroinflammation via M2 microglial polarization in the hippocampus.Therefore,recombinant chitinase-3-like protein1 may have therapeutic potential fo r postoperative cognitive dysfunction.展开更多
目的探讨血清几丁质酶-3样蛋白1(chitinase 3-like protein 1,CHI3L1)与血液透析患者全因死亡和心脑血管疾病死亡之间的关系。方法本研究为前瞻性队列研究,病例来自2014年9月北京大学第三医院肾内科维持性血液透析患者。测定基线血CHI3L...目的探讨血清几丁质酶-3样蛋白1(chitinase 3-like protein 1,CHI3L1)与血液透析患者全因死亡和心脑血管疾病死亡之间的关系。方法本研究为前瞻性队列研究,病例来自2014年9月北京大学第三医院肾内科维持性血液透析患者。测定基线血CHI3L1水平,并根据中位数将患者分为高CHI3L1组和低CHI3L1组,随访9年。用Kaplan-Meier生存分析高CHI3L1组和低CHI3L1组患者生存率的差异,用限制性立方样条(restricted cubic spline,RCS)曲线描述CHI3L1与全因死亡率的剂量反应关系,用多因素COX比例风险模型分析患者全因死亡或心脑血管疾病死亡的独立危险因素。结果共纳入109例患者,随访时间为80.0(38.2,113.2)个月。Kaplan-Meier生存分析显示高CHI3L1组患者全因死亡率高于低CHI3L1组(χ^(2)=4.720,P=0.030),2组患者心脑血管疾病死亡率无明显差异(χ^(2)=1.954,P=0.162)。当CHI3L1≥199.8 ng/ml时,全因死亡率随着CHI3L1水平的增加有明显增加(HR=1.747,95%CI:1.035~2.947,P=0.037)。COX回归分析结果显示:年龄增加(HR=1.029,95%CI:1.001~1.056,P=0.040)、长透析龄(HR=2.251,95%CI:1.310~3.868,P=0.003)、收缩压高(HR=1.022,95%CI:1.008~1.036,P=0.002)、血肌酐低(HR=0.135,95%CI:0.064~0.283,P<0.001)均为血液透析患者全因死亡的独立危险因素,多种因素校正后高CHI3L1仍然是患者全因死亡的独立危险因素(HR=1.963,95%CI:1.010~3.813,P=0.047)。结论高CHI3L1组患者全因死亡率高于低CHI3L1组患者,血CHI3L1可能是血液透析患者全因死亡的独立预测指标。展开更多
基金supported by the National Natural Science Foundation of China,Nos.81730033,82171193(to XG)the Key Talent Project for Strengthening Health during the 13^(th)Five-Year Plan Period,No.ZDRCA2016069(to XG)+1 种基金the National Key R&D Program of China,No.2018YFC2001901(to XG)Jiangsu Provincial Medical Key Discipline,No.ZDXK202232(to XG)。
文摘Postoperative cognitive dysfunction is a seve re complication of the central nervous system that occurs after anesthesia and surgery,and has received attention for its high incidence and effect on the quality of life of patients.To date,there are no viable treatment options for postoperative cognitive dysfunction.The identification of postoperative cognitive dysfunction hub genes could provide new research directions and therapeutic targets for future research.To identify the signaling mechanisms contributing to postoperative cognitive dysfunction,we first conducted Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses of the Gene Expression Omnibus GSE95426 dataset,which consists of mRNAs and long non-coding RNAs differentially expressed in mouse hippocampus3 days after tibial fracture.The dataset was enriched in genes associated with the biological process"regulation of immune cells,"of which Chill was identified as a hub gene.Therefore,we investigated the contribution of chitinase-3-like protein 1 protein expression changes to postoperative cognitive dysfunction in the mouse model of tibial fractu re surgery.Mice were intraperitoneally injected with vehicle or recombinant chitinase-3-like protein 124 hours post-surgery,and the injection groups were compared with untreated control mice for learning and memory capacities using the Y-maze and fear conditioning tests.In addition,protein expression levels of proinflammatory factors(interleukin-1βand inducible nitric oxide synthase),M2-type macrophage markers(CD206 and arginase-1),and cognition-related proteins(brain-derived neurotropic factor and phosphorylated NMDA receptor subunit NR2B)were measured in hippocampus by western blotting.Treatment with recombinant chitinase-3-like protein 1 prevented surgery-induced cognitive impairment,downregulated interleukin-1βand nducible nitric oxide synthase expression,and upregulated CD206,arginase-1,pNR2B,and brain-derived neurotropic factor expression compared with vehicle treatment.Intraperitoneal administration of the specific ERK inhibitor PD98059 diminished the effects of recombinant chitinase-3-like protein 1.Collectively,our findings suggest that recombinant chitinase-3-like protein 1 ameliorates surgery-induced cognitive decline by attenuating neuroinflammation via M2 microglial polarization in the hippocampus.Therefore,recombinant chitinase-3-like protein1 may have therapeutic potential fo r postoperative cognitive dysfunction.