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10篇 您的检索式:作者名="LI Zhongling"
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1First identification of kdr allele F1534S in VGSC gene and its association with resistance to pyrethroid insecticides in Aedes albopictus populations from Haikou City,Hainan Island,China显示文摘Background:Aedes albopictus is distributed widely in China,as a primary vector of Dengue fever and Chikungunya fever in south of China.Chemical insecticide control is one of the integrated programmes to prevent mosquito-borne diseases.Long-term applications of pyrethroids have resulted in the development of resistance in Ae.albopictus populations in China.However,the susceptibility of Ae.albopictus to pyrethroids in Hainan Island was unclear.Knockdown resistance(kdr),caused by point mutations in the VGSC gene,is one of the mechanisms that confer resistance to DDT and pyrethroids.This study was to investigate the resistance level of Ae.albopictus populations in Haikou City to three pyrethroid insecticides,and elucidate the relationship between the resistant phenotype and kdr mutations.Methods:The Aedes albopictus samples were collected in Xinbu Island(XI),Longtang Town(LT),Shishan Town(ST),Baishamen Park(BP),and Flower Market(FM)from Haikou City,Hainan Island,China.The larval susceptibility to deltamethrin,permethrin and beta-cypermethrin was tested by larval bioassays,and adult susceptibility to deltamethrin and DDT was determined by adult bioassays.The degree of resistance was determined by resistance ratio value(RR50>3)for larvae and by mortality for adult.The kdr alleles at codon 1534 of the VGSC gene were genotyped.The relationship between kdr genotypes and resistant phenotypes was analyzed by Chi-square test.Results:Out of five populations,assessed by larval bioassays,XI was susceptible to deltamethrin and permethrin;LT was susceptible to permethrin and beta-cypermethrin;and ST was susceptible to permithrin.FM and BP both were resistant to all of the three pyrethroids,and FM showed the highest degree of resistance,with RR50 values from 65.17 to 436.36.A total of 493 individuals from the larval bioassays were genotyped for kdr alleles.Five alleles were detected,including two wildtype alleles,TTC(F)(67.04%)and TTT(F)(0.41%),and three mutant alleles,TGC(C)(0.30%),TCC(S)(31.54%)and TTG(L)(0.71%).There was a clear correlation between mutant alleles(or F1534S)and resistant phenotypes(P<0.01).Conclusion:Two novel kdr mutant alleles F1534S and F1534L were detected in the pyrethroid resistant populations of Ae.albopictus in Haikou Hainan,China.For the first time,the mutant F1534S was associated with pyrethroid resistance in Ae.albopictus.Huiying Chen Kaili Li Xiaohua Wang Xinyan Yang Yi Lin Fang Cai Wenbin Zhong Chunyan Lin Zhongling Lin Yajun Ma 2016Infectious Diseases of Poverty2016,5,1:19
2聚合物驱后凝胶与化学剂交替注入的驱油效果研究显示文摘聚合物驱后油藏仍有大量剩余油残留其中,为探讨进一步提高聚合物驱后油藏的原油采收率的方法,利用人造非均质大平板岩心,开展了凝胶与聚合物、凝胶与聚合物/表面活性剂二元复合体系(简称聚表二元体系)多轮次交替注入的驱油效果研究。结果表明,交替注入0.26 PV凝胶与0.39 PV聚表二元体系进行驱油实验,采出程度可在聚合物驱采收率基础上提高11.29%,凝胶与聚合物溶液交替注入驱油阶段采出程度可提高7.10%,说明凝胶与聚表二元体系交替注入驱油技术对聚合物驱后剩余油的进一步挖潜更具潜力,但与凝胶与聚合物交替注入驱油技术相比,其成本相对较高。在现场进行实际技术优选时应综合考虑成本及市场原油价格等因素。张继红 朱正俊 王瑜 周子健 LI Zhongling 2016油田化学2016,33,1:8
3Nerve growth factor alleviates cerebral infarction and neurologic deficits by regulating VEGF,SDF-1 and S100A12 expression through PI3K pathway显示文摘Stroke remains the leading cause of death and disability worldwide,which destroys the quality of patients’lives and thus is becoming a heavy burden to the society.However,the current therapeutic approaches are far from satisfaction.The objective of this study is to elucidate the impact of nerve growth factor(NGF)on the brain damage induced by cerebral ischemia and its potential molecular mechanism.Middle cerebral artery occlusion(MCAO)rats were used as animal models and neurological functions were evaluated by modified Neurological Severity Score(NSS).Brain cell apoptosis was analyzed by TUNEL-positive staining while brain infarct size was determined according to 2% 2,3,5-triphenyltetrazolium chloride(TCC)staining volume.Rats receiving NGF demonstrated significantly alleviated brain damage,reflected by a substantial improvement in the neurobehavioral outcome,a decrease in brain cell apoptosis and shrinkage of brain infarct volume.Further analysis revealed a markedly elevated circulating vascular endothelial growth factor(VEGF)and stromal cell-derived factor 1(SDF-1)levels as well as a significant downregulation of SA10012 expression in NGF treated group compared with the untreated group.Strikingly,the protective effect of NGF on cerebral ischemic injury was abolished in rats treated with both NGF and PI3K inhibitors,indicating that phosphoinositide-3-kinase(PI3K)signaling is essential for NGF function.In conclusion,NGF treatment might be a potential therapeutic approach against cerebral infarction by downregulating SA10012 expression and upregulating VEGF,SDF-1 in a PI3K signaling dependent manner.ZHENG LI ZHONGLE ZHAO PENG ZHANG 2019BIOCELL2019,43,3:3
4The effect of follicle-stimulating hormone on follicular development, granulosa cell apoptosis and steroidogenesis and its mediation by insulin-like growth factor-I in the goat ovary显示文摘Yuansong Yu Wei Li Zhengbin Han Mingjiu Luo Zhongle Chang Jinghe Tan 2003Theriogenology2003,,9:1
5Grayscale morphological filter tbr small target detection 显示文摘Zhu Zhenfu Li Zhongling Liang Haochen 2000Proceedings of SPIE-The International Society for Optical Engineering2000,,4130:1
6Climate change filtered out resource-acquisitive plants in a temperate grassland in Inner Mongolia,China显示文摘Global climate change has led to the decline of species and functional diversity in ecosystems,changing community composition and ecosystem functions.However,we still know little about how species with different resource-use strategies(different types of resource usage and plant growth of plants as indicated by the spectrum of plant economic traits,including acquisitive resource-use strategy and conservative resource-use strategy)would change in response to climate change,and how the changes in the diversity of species with different resource-use strategies may influence community-level productivity.Here,using long-term(1982–2017)observatory data in a temperate grassland in Inner Mongolia,we investigated how climate change had affected the species richness(SR)and functional richness(FRic)for the whole community and for species with different resource-use strategies.Specifically,based on data for four traits representing leaf economics spectrum(leaf carbon concentration,leaf nitrogen concentration,leaf phosphorus concentration,and specific leaf area),we divided 81 plant species appearing in the grassland community into three plant functional types representing resource-acquisitive,medium,and resource-conservative species.We then analyzed the changes in community-level productivity in response to the decline of SR and FRic at the community level and for different resource-use strategies.We found that community-level SR and FRic decreased with drying climate,which was largely driven by the decline of diversity for resource-acquisitive species.However,community-level productivity remained stable because resource-conservative species dominating this grassland were barely affected by climate change.Our study revealed distinctive responses of species with different resource-use strategies to climate change and provided a new approach based on species functional traits for predicting the magnitude and direction of climate change effects on ecosystem functions.Heying Jing Xingshuo Xiong Feng Jiang Xucai Pu Wenhong Ma Daijiang Li Zhongling Liu Zhiheng Wang 2024Science China(Life Sciences)2024,67,2:0
7Quantitative Estimation of Groundwater Leakage from Namco Lake by SAR Monitoring显示文摘Objective This study focused on the Namco,the largest lake on the Tibet plateau as well as the highest large lake in the world.A large imbalance between water input and output of this lake has attracted great attention in the field of hydrogeology during recent years.As there is no surface outflow from Namco,the large water imbalance can only be explained by water seepage.Synthetic apertureCHEN Jiaqi DENG Yunkai LI Ning WANG Yu LIU Zhongling ZHANG Shilin 2016Acta Geologica Sinica(English Edition)2016,90,4:0
8Developmental competence and ultrastructural changes of heat-stressed mouse early blastocysts produced in vitro显示文摘Mouse early blastocysts were exposed to temperatures of 39℃ and 41℃ for 2 h,respectively,to determine their developmental competence and ultrastructural changes. The results showed that heat stress at 41℃ for 2 h,significantly reduced the percentages of expanded and hatched blastocysts,but not at 39℃ for 2 h. The average cell numbers in expanded blastocysts,which developed from early blastocysts heat-stressed at temperatures of 39℃ and 41℃,were significantly reduced. The average cell numbers in hatched blastocysts subjected to heat stress were no different from those in the control group cultured at 37℃. The mitochondria of the early blastocysts heat-stressed at 39℃ for 2 h,were slightly swollen,but they had recovered after culturing at 37℃ for 2 h. However,the mitochondria in the blastocysts heat stressed at 41℃ for 2 h were severely swollen,and their number increased. The ribosomes shed from the rough endoplasmic reticulum,and the number of secondary lysosomes in the plasma increased. The integrity of desmosomes was disrupted. The space between the nuclear envelope and the perivitelline membrane enlarged. The fibre fraction and the particulate fraction of nucleoli were separated. The heterochromatin in nucleoli was also increased in its quantity. There were some lamellar-shape structures and heterogeneous dense materials exhibiting in the cytoplasm. The ultrastructural changes induced by heat shock at 41℃ for 2 h were not reversible. In conclusion,the damage of heat stress to mitochondria,lysosomes,ribosomes and cell nucleus,may be one of the most important factors that inhibit the normal development of mouse earlyPingping Qu Wenru TIAN Tao LI Zhongling JIANG Shansong GAO Zhongjie TIAN Mingzhi WANG 2009Current Zoology2009,55,1:0
9Excipient-free porphyrin/SN-38 based nanotheranostics for drug delivery and cell imaging显示文摘Nanotheranostics with comprehensive diagnostic and therapeutic capabilities show exciting cancer treatment potentials.Here,we develop an excipient-free drug delivery system for cancer diagnosis as well as therapy,in which a near infra-red photosensitizer and a chemotherapeutic drug can be self-delivered without any carriers.The building block of the drug delivery system was synthesized by covalently conjugating four anticancer drugs(7-ethyl-10-hydroxy-camptothecin,SN-38)with a photosensitizer(porphyrin)via hydrolyzable ester linkage,which endows the drug delivery system with 100%active pharmaceutical ingredients,excellent imaging,and therapeutic functionalities.The conjugates can readily self-assemble into nanosheets(PS NSs)and remain stable for at least 20 days in aqueous solution.In PS NSs,fluorescence resonance energy transfer(FRET)dominates the fluorescence of SN-38 and enables to monitor the drug release fluorescentiy.The PS NSs also show excellent anticancer activity in vitro,due to the increased cell uptake with the synergistic effect of photodynamic therapy and chemotherapy.Ye Yuan Ruonan Bo Di Jing Zhao Ma Zhongling Wang Tzu-yin Lin Lijie Dong Xiangdong Xue Yuanpei Li 2020Nano Research2020,13,2:0
10Dual-ratiometric magnetic resonance tunable nanoprobe with acidic-microenvironment-responsive property to enhance the visualization of early tumor pathological changes显示文摘The development of microenvironment-responsive nanoprobes has shown great promise for use in magnetic resonance imaging(MRI),with the advantage of significantly improved specificity and good biocompatibility.However,the clinical application of responsive probes is hampered by a lack of biological sensitivity for early molecular diagnostics and visualizing microenvionment of metabolism reprogramming in tumor progression.Here,we report on a dual-ratiometric magnetic resonance tunable(DMRT)nanoprobe designed by crosslinking different ratios of transferrin chelating gadolinium and superparamagnetic nanoparticles,complexed to a pH responsive biocompatible polymer.This dually activatable nanoprobe enables pH-dependent tumor microenvironment visualization,providing exceptional quantitative pathophysiological information in vitro and in vivo.When used in combination with dual-contrast enhancement triple subtraction imaging technique(DETSI),this smart nanoprobe guarantees the diagnosis of early-stage diseases.We envisage that this novel integrated nanoplatform will provide a new paradigm for the clinical translation of robust DMRT nanoprobes for early disease detection and staging,as well as microenvironment visualization and disease progression monitoring.Rong Cao Ning Tang Yi Zhu An Chen Yumeng Li Renbin Ge Yuan Li Zhongyi Huang Jiajing Guo Jiali Deng Hongwei Lu Ziwei Lu Helen Forgham Thomas PDavis Ruirui Qiao Zhongling Wang 2023Nano Research2023,16,7:0
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