Flexible wearable sweat sensors allow continuous,real-time,noninvasive detection of sweat analytes,provide insight into human physiology at the molecular level,and have received significant attention for their promisi...Flexible wearable sweat sensors allow continuous,real-time,noninvasive detection of sweat analytes,provide insight into human physiology at the molecular level,and have received significant attention for their promising applications in personalized health monitoring.Electrochemical sensors are the best choice for wearable sweat sensors due to their high performance,low cost,miniaturization,and wide applicability.Recent developments in soft microfluidics,multiplexed biosensing,energy harvesting devices,and materials have advanced the compatibility of wearable electrochemical sweat-sensing platforms.In this review,we summarize the potential of sweat for medical detection and methods for sweat stimulation and collection.This paper provides an overview of the components of wearable sweat sensors and recent developments in materials and power supply technologies and highlights some typical sensing platforms for different types of analytes.Finally,the paper ends with a discussion of the challenges and a view of the prospective development of this exciting field.展开更多
【目的】研究秸秆配施化肥对暗棕壤团聚体组成、团聚体碳氮含量、土壤微生物量特征及小麦产量的影响,揭示长期秸秆配施化肥下土壤肥力和生产力的协同提升机制。【方法】依托长期定位40年施肥试验,选取4个处理:单施化肥(NP)、秸秆配施化...【目的】研究秸秆配施化肥对暗棕壤团聚体组成、团聚体碳氮含量、土壤微生物量特征及小麦产量的影响,揭示长期秸秆配施化肥下土壤肥力和生产力的协同提升机制。【方法】依托长期定位40年施肥试验,选取4个处理:单施化肥(NP)、秸秆配施化肥(S+NP)、秸秆配施1/2化肥(S+1/2NP)、秸秆配施1/4化肥(S+1/4NP),其中秸秆为麦秸隔年还田,用量为3000 kg·hm^(-2),氮磷化肥用量为150 kg N·hm^(-2)、150 kg P2O5·hm^(-2)。采集0—20 cm土层土样,利用湿筛法得到不同粒级的水稳性团聚体,测定团聚体中有机碳(SOC)、氮含量及土壤微生物量碳(SMBC)、微生物量氮(SMBN)含量。【结果】(1)长期秸秆配施化肥显著降低土壤容重并提高了团聚体稳定性,和NP相比,S+NP处理土壤容重降低4.7%,>2 mm团聚体含量、平均重量直径(MWD)和几何重量直径(GWD)分别提升254.4%、76.5%和91.3%。(2)S+NP、S+1/2NP处理>2 mm团聚体百分含量、MWD和GWD显著高于S+1/4NP,分别增加了49.1%—52.4%,19.43%—22.4%和24.2%—33.3%。(3)S+NP、S+1/2NP、S+1/4NP和NP相比增加了>2 mm和>0.25 mm团聚体对土壤有机碳、全氮贡献率,并显著提高全土SOC、SMBC和SMBN含量;其中,SOC含量在S+NP中最高,比S+1/2NP、S+1/4NP高6.3%和12.6%。(4)产量表现为S+NP>NP>S+1/2NP>S+1/4NP处理,S+NP比减施化肥处理提高小麦产量28.6%—47.5%。(5)土壤团聚体稳定性、SOC含量及小麦产量之间有较好的相关性,>2 mm和>0.25 mm团聚体含量、MWD和GWD分别与全土SOC含量及小麦产量呈显著或极显著正相关。【结论】暗棕壤地区在长期秸秆还田条件下,配施化肥量150 kg N·hm^(-2)、150 kg P2O5·hm^(-2)时能提高土壤团聚体稳定性、有机碳含量、微生物生物量和小麦产量,最大化实现土壤结构改良、肥力提升和作物增产的协同效应。展开更多
目的 观察针刺对血管性痴呆(vascular dementia,Va D)大鼠学习记忆能力及半胱天冬酶(cysteinyl aspartate specific proteinase,Caspase)-3通路相关蛋白的影响及其机制研究,探索针刺防治Va D的新靶点。方法 健康雄性SD大鼠随机分为假手...目的 观察针刺对血管性痴呆(vascular dementia,Va D)大鼠学习记忆能力及半胱天冬酶(cysteinyl aspartate specific proteinase,Caspase)-3通路相关蛋白的影响及其机制研究,探索针刺防治Va D的新靶点。方法 健康雄性SD大鼠随机分为假手术组、模型组和针刺组,模型组和针刺组大鼠制备Va D模型,针刺组选取百会和双侧肾俞、丰隆进行针刺干预2周,假手术组和模型组不予其他干预。观察各组大鼠的行为学、海马CA1区形态学改变,检测B淋巴细胞瘤-2基因(B-cell lymphoma-2,Bcl-2)、Caspase-3、Bcl-2相关X蛋白(Bcl-2-associated X protein,Bax) m RNA及蛋白的表达。结果 与假手术组比较,模型组大鼠逃避潜伏期明显延长(P<0.01),穿越平台次数显著减少(P<0.01),大鼠海马组织内Bax、Caspase-3 m RNA及蛋白的表达明显增加(P<0.01),Bcl-2 m RNA及蛋白的表达明显下降(P<0.01)。与模型组比较,针刺组大鼠逃避潜伏期明显缩短(P<0.01),穿越平台次数明显增加(P<0.01),大鼠海马区Bax、Caspase-3 m RNA及蛋白表达明显下降(P<0.01),Bcl-2 m RNA及蛋白水平明显增加(P<0.01)。结论 针刺能提高Va D大鼠的学习记忆能力,其机制可能与调节Caspase-3通路相关蛋白表达、抑制神经元凋亡相关。展开更多
Comprehensive Summary,Autophagy is a multi-step cell metabolism process in which cells remove damaged and unwanted materials.During autophagy,autophagosomes fuse with lysosomes to form autophagosomes.Autophagosomal me...Comprehensive Summary,Autophagy is a multi-step cell metabolism process in which cells remove damaged and unwanted materials.During autophagy,autophagosomes fuse with lysosomes to form autophagosomes.Autophagosomal membrane components are recycled from autolysosomes through the autophagosomal components recycling(ACR),while lysosomal components circulate on the autolysosomal surface through the autophagic lysosome reformation(ALR)process.Autolysosomes contain components from autophagosomes and lysosomes.However,whether there is a fusion between autolysosome and autophagosome or lysosome at the organelle level remains unknown.In this study,a pH and viscosity dual-controlled mitochondria-targeting fluorescent probe Mito-Q was designed based on an asymmetric norcyanine to achieve the high-contrast imaging of mitochondria-containing autolysosomes.Mito-Q not only effectively detected mitochondrial viscosity changes and mitophagy with high sensitivity,but more importantly,the fusion of mitochondria-containing autolysosomes and autophagosomes(FMAA)was observed during autophagy by the real-time confocal imaging of HeLa cells.展开更多
This study employed multispectral techniques to evaluate fulvic acid(FA)compositional characteristic and elucidate its biodegradation mechanisms during partial nitritation(PN)process.Results showed that FA removal eff...This study employed multispectral techniques to evaluate fulvic acid(FA)compositional characteristic and elucidate its biodegradation mechanisms during partial nitritation(PN)process.Results showed that FA removal efficiency(FRE)decreased from 90.22 to 23.11%when FA concentrations in the reactor were increased from 0 to 162.30 mg/L,and that molecular size,degree of aromatization and humification of the effluent FA macromolecules all increased after treatment.Microbial population analysis indicated that the proliferation of the Comamonas,OLB12 and Thauera exhibit high FA utilization capacity in lower concentrations(<50.59 mg/L),promoting the degradation and removal of macromolecular FA.In addition,the sustained increase in external FA may decrease the abundance of above functional microorganisms,resulting in a rapid drop in FRE.Furthermore,from the genetic perspective,the elevated FA levels restricted carbohydrate(ko00620,ko00010 and ko00020)and nitrogen(HAO,AMO,NIR and NOR)metabolism-related pathways,thereby impeding FA removal and total nitrogen loss associated with N_(2)O emissions.展开更多
基金support from the National Key R&D Program of China (Nos.2020YFC2004500,2021YFB3200600)the National Natural Science Foundation of China (NSFC Nos.62073307,61774157,and 81771388)+1 种基金the CAMS Innovation Fund for Medical Sciences (2019-I2M-5-019)the CAS Joint Fund for Equipment Preresearch (8091A140106).
文摘Flexible wearable sweat sensors allow continuous,real-time,noninvasive detection of sweat analytes,provide insight into human physiology at the molecular level,and have received significant attention for their promising applications in personalized health monitoring.Electrochemical sensors are the best choice for wearable sweat sensors due to their high performance,low cost,miniaturization,and wide applicability.Recent developments in soft microfluidics,multiplexed biosensing,energy harvesting devices,and materials have advanced the compatibility of wearable electrochemical sweat-sensing platforms.In this review,we summarize the potential of sweat for medical detection and methods for sweat stimulation and collection.This paper provides an overview of the components of wearable sweat sensors and recent developments in materials and power supply technologies and highlights some typical sensing platforms for different types of analytes.Finally,the paper ends with a discussion of the challenges and a view of the prospective development of this exciting field.
文摘【目的】研究秸秆配施化肥对暗棕壤团聚体组成、团聚体碳氮含量、土壤微生物量特征及小麦产量的影响,揭示长期秸秆配施化肥下土壤肥力和生产力的协同提升机制。【方法】依托长期定位40年施肥试验,选取4个处理:单施化肥(NP)、秸秆配施化肥(S+NP)、秸秆配施1/2化肥(S+1/2NP)、秸秆配施1/4化肥(S+1/4NP),其中秸秆为麦秸隔年还田,用量为3000 kg·hm^(-2),氮磷化肥用量为150 kg N·hm^(-2)、150 kg P2O5·hm^(-2)。采集0—20 cm土层土样,利用湿筛法得到不同粒级的水稳性团聚体,测定团聚体中有机碳(SOC)、氮含量及土壤微生物量碳(SMBC)、微生物量氮(SMBN)含量。【结果】(1)长期秸秆配施化肥显著降低土壤容重并提高了团聚体稳定性,和NP相比,S+NP处理土壤容重降低4.7%,>2 mm团聚体含量、平均重量直径(MWD)和几何重量直径(GWD)分别提升254.4%、76.5%和91.3%。(2)S+NP、S+1/2NP处理>2 mm团聚体百分含量、MWD和GWD显著高于S+1/4NP,分别增加了49.1%—52.4%,19.43%—22.4%和24.2%—33.3%。(3)S+NP、S+1/2NP、S+1/4NP和NP相比增加了>2 mm和>0.25 mm团聚体对土壤有机碳、全氮贡献率,并显著提高全土SOC、SMBC和SMBN含量;其中,SOC含量在S+NP中最高,比S+1/2NP、S+1/4NP高6.3%和12.6%。(4)产量表现为S+NP>NP>S+1/2NP>S+1/4NP处理,S+NP比减施化肥处理提高小麦产量28.6%—47.5%。(5)土壤团聚体稳定性、SOC含量及小麦产量之间有较好的相关性,>2 mm和>0.25 mm团聚体含量、MWD和GWD分别与全土SOC含量及小麦产量呈显著或极显著正相关。【结论】暗棕壤地区在长期秸秆还田条件下,配施化肥量150 kg N·hm^(-2)、150 kg P2O5·hm^(-2)时能提高土壤团聚体稳定性、有机碳含量、微生物生物量和小麦产量,最大化实现土壤结构改良、肥力提升和作物增产的协同效应。
文摘目的 观察针刺对血管性痴呆(vascular dementia,Va D)大鼠学习记忆能力及半胱天冬酶(cysteinyl aspartate specific proteinase,Caspase)-3通路相关蛋白的影响及其机制研究,探索针刺防治Va D的新靶点。方法 健康雄性SD大鼠随机分为假手术组、模型组和针刺组,模型组和针刺组大鼠制备Va D模型,针刺组选取百会和双侧肾俞、丰隆进行针刺干预2周,假手术组和模型组不予其他干预。观察各组大鼠的行为学、海马CA1区形态学改变,检测B淋巴细胞瘤-2基因(B-cell lymphoma-2,Bcl-2)、Caspase-3、Bcl-2相关X蛋白(Bcl-2-associated X protein,Bax) m RNA及蛋白的表达。结果 与假手术组比较,模型组大鼠逃避潜伏期明显延长(P<0.01),穿越平台次数显著减少(P<0.01),大鼠海马组织内Bax、Caspase-3 m RNA及蛋白的表达明显增加(P<0.01),Bcl-2 m RNA及蛋白的表达明显下降(P<0.01)。与模型组比较,针刺组大鼠逃避潜伏期明显缩短(P<0.01),穿越平台次数明显增加(P<0.01),大鼠海马区Bax、Caspase-3 m RNA及蛋白表达明显下降(P<0.01),Bcl-2 m RNA及蛋白水平明显增加(P<0.01)。结论 针刺能提高Va D大鼠的学习记忆能力,其机制可能与调节Caspase-3通路相关蛋白表达、抑制神经元凋亡相关。
基金the National Key Research and Development Program of China(2019YFA0210500)for H.S.the National Natural Science Foundation of China(No.31900033 to H.s.)forfinancial support.
文摘Comprehensive Summary,Autophagy is a multi-step cell metabolism process in which cells remove damaged and unwanted materials.During autophagy,autophagosomes fuse with lysosomes to form autophagosomes.Autophagosomal membrane components are recycled from autolysosomes through the autophagosomal components recycling(ACR),while lysosomal components circulate on the autolysosomal surface through the autophagic lysosome reformation(ALR)process.Autolysosomes contain components from autophagosomes and lysosomes.However,whether there is a fusion between autolysosome and autophagosome or lysosome at the organelle level remains unknown.In this study,a pH and viscosity dual-controlled mitochondria-targeting fluorescent probe Mito-Q was designed based on an asymmetric norcyanine to achieve the high-contrast imaging of mitochondria-containing autolysosomes.Mito-Q not only effectively detected mitochondrial viscosity changes and mitophagy with high sensitivity,but more importantly,the fusion of mitochondria-containing autolysosomes and autophagosomes(FMAA)was observed during autophagy by the real-time confocal imaging of HeLa cells.
基金supported by the Key Research and Development Project of Shandong (Nos.2021CXGC011202,2020CXGC011404,and 2022CXGC021002)the National Natural Science Foundation of China (No.22276006)。
文摘This study employed multispectral techniques to evaluate fulvic acid(FA)compositional characteristic and elucidate its biodegradation mechanisms during partial nitritation(PN)process.Results showed that FA removal efficiency(FRE)decreased from 90.22 to 23.11%when FA concentrations in the reactor were increased from 0 to 162.30 mg/L,and that molecular size,degree of aromatization and humification of the effluent FA macromolecules all increased after treatment.Microbial population analysis indicated that the proliferation of the Comamonas,OLB12 and Thauera exhibit high FA utilization capacity in lower concentrations(<50.59 mg/L),promoting the degradation and removal of macromolecular FA.In addition,the sustained increase in external FA may decrease the abundance of above functional microorganisms,resulting in a rapid drop in FRE.Furthermore,from the genetic perspective,the elevated FA levels restricted carbohydrate(ko00620,ko00010 and ko00020)and nitrogen(HAO,AMO,NIR and NOR)metabolism-related pathways,thereby impeding FA removal and total nitrogen loss associated with N_(2)O emissions.