期刊文献+
共找到975篇文章
< 1 2 49 >
每页显示 20 50 100
Use of priming strategies to advance the clinical application of mesenchymal stromal/stem cell-based therapy
1
作者 Vitale Miceli 《World Journal of Stem Cells》 SCIE 2024年第1期7-18,共12页
Mesenchymal stromal/stem cells(MSCs)have garnered significant attention in the field of regenerative medicine due to their remarkable therapeutic potential.MSCs play a pivotal role in maintaining tissue homeostasis an... Mesenchymal stromal/stem cells(MSCs)have garnered significant attention in the field of regenerative medicine due to their remarkable therapeutic potential.MSCs play a pivotal role in maintaining tissue homeostasis and possess diverse functions in tissue repair and recovery in various organs.These cells are charac-terized by easy accessibility,few ethical concerns,and adaptability to in vitro cultures,making them a valuable resource for cell therapy in several clinical conditions.Over the years,it has been shown that the true therapeutic power of MSCs lies not in cell engraftment and replacement but in their ability to produce critical paracrine factors,including cytokines,growth factors,and exosomes(EXOs),which modulate the tissue microenvironment and facilitate repair and regeneration processes.Consequently,MSC-derived products,such as condi-tioned media and EXOs,are now being extensively evaluated for their potential medical applications,offering advantages over the long-term use of whole MSCs.However,the efficacy of MSC-based treatments varies in clinical trials due to both intrinsic differences resulting from the choice of diverse cell sources and non-standardized production methods.To address these concerns and to enhance MSC therapeutic potential,researchers have explored many priming strategies,including exposure to inflammatory molecules,hypoxic conditions,and three-dimensional culture techniques.These approaches have optimized MSC secretion of functional factors,empowering them with enhanced immunomodulatory,angiogenic,and regenerative properties tailored to specific medical conditions.In fact,various priming strategies show promise in the treatment of numerous diseases,from immune-related disorders to acute injuries and cancer.Currently,in order to exploit the full therapeutic potential of MSC therapy,the most important challenge is to optimize the modulation of MSCs to obtain adapted cell therapy for specific clinical disorders.In other words,to unlock the complete potential of MSCs in regenerative medicine,it is crucial to identify the most suitable tissue source and develop in vitro manipulation protocols specific to the type of disease being treated. 展开更多
关键词 Mesenchymal stromal/stem cells Therapeutic properties Paracrine effects Cell priming Cell-free therapies Regenerative medicine
下载PDF
Different priming strategies improve distinct therapeutic capabilities of mesenchymal stromal/stem cells:Potential implications for their clinical use 被引量:1
2
作者 Vitale Miceli Giovanni Zito +4 位作者 Matteo Bulati Alessia Gallo Rosalia Busà Gioacchin Iannolo Pier Giulio Conaldi 《World Journal of Stem Cells》 SCIE 2023年第5期400-420,共21页
Mesenchymal stromal/stem cells(MSCs)have shown significant therapeutic potential,and have therefore been extensively investigated in preclinical studies of regenerative medicine.However,while MSCs have been shown to b... Mesenchymal stromal/stem cells(MSCs)have shown significant therapeutic potential,and have therefore been extensively investigated in preclinical studies of regenerative medicine.However,while MSCs have been shown to be safe as a cellular treatment,they have usually been therapeutically ineffective in human diseases.In fact,in many clinical trials it has been shown that MSCs have moderate or poor efficacy.This inefficacy appears to be ascribable primarily to the heterogeneity of MSCs.Recently,specific priming strategies have been used to improve the therapeutic properties of MSCs.In this review,we explore the literature on the principal priming approaches used to enhance the preclinical inefficacy of MSCs.We found that different priming strategies have been used to direct the therapeutic effects of MSCs toward specific pathological processes.Particularly,while hypoxic priming can be used primarily for the treatment of acute diseases,inflammatory cytokines can be used mainly to prime MSCs in order to treat chronic immune-related disorders.The shift in approach from regeneration to inflammation implies,in MSCs,a shift in the production of functional factors that stimulate regenerative or anti-inflammatory pathways.The opportunity to fine-tune the therapeutic properties of MSCs through different priming strategies could conceivably pave the way for optimizing their therapeutic potential. 展开更多
关键词 Mesenchymal stromal/stem cells Mesenchymal stromal/stem cell therapeutic properties Mesenchymal stromal/stem cell paracrine effects Mesenchymal stromal/stem cell priming Pro-inflammatory priming Hypoxic priming 3D culture priming
下载PDF
Seed Priming Improves Enzymatic and Biochemical Performances of Rice During Seed Germination under Low and High Temperatures
3
作者 Salar MONAJJEM Elias SOLTANI +4 位作者 Ebrahim ZAINALI Masoud ESFAHANI Farshid GHADERI-FAR Maryam HOSSEINI CHALESHTORI Atefeh REZAEI 《Rice science》 SCIE CSCD 2023年第4期335-347,I0024-I0027,共17页
As an abiotic stress,adverse germination temperatures cause serious disruptions in physiological and biochemical processes involved in seed germination.Using a factorial experiment,we examined the effects of different... As an abiotic stress,adverse germination temperatures cause serious disruptions in physiological and biochemical processes involved in seed germination.Using a factorial experiment,we examined the effects of different seed priming treatments on enzymatic and biochemical performances of rice seed germination under different temperatures.Each of the rice genotypes(Hashemi,Sadry-domsefid,IRON-70-7053-7 and NORIN-22)was primed with hydro-hardening,KCl,CaCl2 and ascorbic acid(AsA)and without a priming agent as a control at low(15℃),optimum(25℃)and high(35℃)germination temperatures.The results showed that the enzymatic and biochemical performances of all the rice genotypes were affected by the seed priming agents,especially under the low germination temperature.At 15℃,seed priming with AsA was found to be the best agent for the activities of amylase,α-amylase,catalase(CAT),peroxidase(POX),ascorbate peroxidase(APOX)and superoxide dismutase(SOD)as well as the content of soluble sugars in the NORIN-22 genotype,and for protease activity and soluble protein content in the IRON-70-7053-7 genotype.SOD at the low germination temperature and CAT,POX and protease at the optimum and high germination temperatures were the most important enzymes in occurrence of germination potential in terms of seedling length,vigor index,normal seedling rate and germination rate.Under the priming agents,the highest changes in normal seedling rate were observed at the low and optimum germination temperatures by AsA priming in the Hashemi and NORIN-22 genotypes,and at the high germination temperature under KCl priming in the Hashemi genotype. 展开更多
关键词 antioxidant activity biochemical performance germination temperature RICE seed priming
下载PDF
Mepiquat chloride priming confers the ability of cotton seed to tolerate salt by promoting ABA-operated GABA signaling control of the ascorbate–glutathione cycle
4
作者 QI Qian WANG Ning +9 位作者 RUAN Sijia MUHAMMAD Noor ZHANG Hengheng SHI Jianbin DONG Qiang XU Qinghua SONG Meizhen YAN Gentu ZHANG Xiling WANG Xiangru 《Journal of Cotton Research》 CAS 2023年第4期288-305,共18页
Background Ensuring that seeds germinate and emerge normally is a prerequisite for cotton production,esp.in areas with salinized soil.Priming with mepiquat chloride(MC)can promote seed germination and root growth unde... Background Ensuring that seeds germinate and emerge normally is a prerequisite for cotton production,esp.in areas with salinized soil.Priming with mepiquat chloride(MC)can promote seed germination and root growth under salt stress,but its mechanism has not been fully elucidated.In this study,physiological and biochemical experiments revealed that MC-priming promotes the tolerance of cotton seeds to salt stress by increasing the ability of antioxidant enzymes related to the ascorbate-glutathione(AsA-GSH)cycle to scavenge reactive oxygen species(ROS).Results Results revealed that treatment with inhibitors of abscisic acid(ABA)and γ-aminobutyric acid(GABA)biosynthesis reduced the positive effects of MC-priming.Similarly,MC-priming increased the contents of ABA and GABA under salt stress by stimulating the expression levels of GhNCED2 and GhGAD4 and the activity of calmodulin-binding(CML)glutamate decarboxylase(GAD).Further analysis showed that an inhibitor of ABA synthesis reduced the positive impacts of MC-priming on the content of GABA under salt stress,but the content of ABA was not affected by the GABA synthesis inhibitor.Furthermore,a multi-omics analysis revealed that MC-priming increased the abundance and phosphorylation levels of the proteins related to ABA signaling,CML,and Ca^(2+)channels/transporters in the MC-primed treatments,which resulted in increased oscillations in Ca^(2+)in the MC-primed cotton seeds under salt stress.Conclusion In summary,these results demonstrate that MC-mediated ABA signaling operates upstream of the GABA synthesis generated by GAD by activating the oscillations of Ca^(2+)and then enhancing activity of the AsA-GSH cycle,which ensures that cotton seeds are tolerant to salt stress. 展开更多
关键词 Seed priming Salinity stress ABA signaling γ-aminobutyric acid ROS scavenging Mepiquat chloride
下载PDF
Priming: A promising strategy for crop production in response to future climate 被引量:8
5
作者 WANG Xiao LIU Fu-lai JIANG Dong 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第12期2709-2716,共8页
Anticipated more frequent extreme events due to changes in global climatic variability requires adaptation of crop species to multi-occurrence abiotic stresses hereby sustaining the food security. Priming, by pre-expo... Anticipated more frequent extreme events due to changes in global climatic variability requires adaptation of crop species to multi-occurrence abiotic stresses hereby sustaining the food security. Priming, by pre-exposure of plants to an eliciting factor, enables plants to be more tolerant to later biotic or abiotic stress events. Priming induced "stress memory" exists in both present generation and the offspring. Thus, priming is suggested to be a promising strategy for plants to cope with the abiotic stresses under global change scenarios. In this review, the underlying physiological and molecular mechanisms of priming induced enhancement of stress tolerance to the major abiotic stresses of drought and waterlogging, and high and low temperature in crop plants were discussed, and the potential to utilize the priming effect for sustaining crop productivity in future climates was also suggested. 展开更多
关键词 priming stress memory transgenerational priming physiological mechanisms
下载PDF
丹酚酸B通过抑制NLRP3炎症小体priming阶段减轻缺氧诱导大鼠心肌细胞损伤 被引量:12
6
作者 胡洋 潘韵铮 +6 位作者 李庆菊 郑仕中 卞勇 时乐 范方田 蒋宝平 许立 《中国药理学通报》 CAS CSCD 北大核心 2020年第2期210-215,共6页
目的探究丹酚酸B(Sal B)能否通过调控NLRP3炎症小体priming阶段减轻缺氧诱导大鼠心肌细胞损伤。方法CCK8法检测不同浓度丹酚酸B对大鼠H9C2细胞生长的影响,并挑选出合适的丹酚酸B实验浓度;微孔板、ELISA法检测缺氧造模后实验组,不同浓度... 目的探究丹酚酸B(Sal B)能否通过调控NLRP3炎症小体priming阶段减轻缺氧诱导大鼠心肌细胞损伤。方法CCK8法检测不同浓度丹酚酸B对大鼠H9C2细胞生长的影响,并挑选出合适的丹酚酸B实验浓度;微孔板、ELISA法检测缺氧造模后实验组,不同浓度给药组,以及抑制剂组LDH/cTn/IL-1β的分泌水平;qPCR以及蛋白质免疫印迹法检测造模后实验组,不同浓度给药组以及抑制剂组TLR4/Myd88/IRAK1/NF-κB/NLRP3基因以及蛋白表达水平。结果经过缺氧处理后,H9C2细胞活性下降,LDH/cTn/IL-1β分泌量升高,TLR4/Myd88/IRAK1/NF-κB/NLRP3在mRNA水平以及蛋白表达上调;与模型组相比,丹酚酸B预处理24h后,H9C2细胞活性增加,LDH/cTn/IL-1β分泌量下降,TLR4/Myd88/IRAK1/NF-κB/NLRP3 mRNA水平以及蛋白表达水平降低。结论丹酚酸B可以通过调控NLRP3炎症小体priming阶段,减轻缺氧诱导的大鼠心肌细胞损伤。 展开更多
关键词 丹酚酸B priming 核因子ΚB NLRP3 缺氧 心肌细胞损伤
下载PDF
Effects of different priming treatments and priming durations on germination percentage of parsley (Petroselinum crispum L.) seeds
7
作者 Atilla Dursun Melek Ekinci 《Agricultural Sciences》 2010年第1期17-23,共7页
The effects of different priming treatments and priming durations on germination percentage at different temperatures in parsley seeds were studied. The seeds were treated for 2, 4, 6 and 8 days with the PEG 6000 (–0... The effects of different priming treatments and priming durations on germination percentage at different temperatures in parsley seeds were studied. The seeds were treated for 2, 4, 6 and 8 days with the PEG 6000 (–0.5 MPa, –1.0 MPa and –1.5 MPa), KNO3 (0.30 mol/L and 0.35 mol/L), Mannitol (0.50 mol/L and 0.60 mol/L) and hydropriming (12h, 24h, 36h and 48h) and unprimed (control). Germination studies were made at 5, 10, 15, 20 and 25°C. Percentage of germination at different temperatures was significantly affected by priming treatments. Hydropriming (12h, 24h and 36 h) and mannitol 0.60 mol/L at 2 day generally had the highest germination percentages. In general, the highest germination percentage with priming was determined at 10°C. It may be said that seed priming treatments increased seed germination percentage at both low and high temperatures. The highest germination percentages were observed in both hydropriming and mannitol treatments as compared with PEG and KNO3 treatments. The PEG and KNO3 (2 and 4 days) treatments were better than unprimed treatment in all of the temperatures. 展开更多
关键词 PARSLEY GERMINATION PERCENTAGE Seed priming PEG KNO3 Hydropriming
下载PDF
Seed Priming and Tolerance to Salt and Water Stress in Divergent Grain Sorghum Genotypes
8
作者 Charles Lobo Pinheiro Hellen Thayse Nascimento Araújo +3 位作者 Selma Freire de Brito Marcos da Silva Maia Jesimiel da Silva Viana Sebastiao Medeiros Filho 《American Journal of Plant Sciences》 2018年第4期606-616,共11页
Tolerance to water and salt stress during germination and growth of agricultural species might have superior results when seeds are submitted to priming processes. The objective of the present study was to evaluate th... Tolerance to water and salt stress during germination and growth of agricultural species might have superior results when seeds are submitted to priming processes. The objective of the present study was to evaluate the use of hydropriming and hormonal priming with gibberellic acid (GA3) on the tolerance of divergent genotypes of sorghum to salt and water stress during germination and seedling growth. The genotypes analyzed were cultivar BRS 330 and lineage 201420, which are the most and least tolerant to water and salt stress, respectively. Sowing was undertaken under control (no stress), water stress (-0.6 MPa), and salt stress (20 dS&middot;m-1) conditions, and the seeds were subjected to the following treatments: control-no immersion;hydropriming-immersion for 2 hours in distilled water;and hormonal priming-immersion in GA3 solutions, at concentrations of 50, 75, and 100 ppm, for 2 hours. After soaking, the seeds were dried for 24 hours at a temperature of 30&deg;C ± 2&deg;C. The variables analyzed were percentage and germination speed index, root and shoot lengths, and root/shoot ratio. The stress conditions analyzed negatively affected the two genotypes;however, the seeds that underwent priming processes improved the performance of the genotypes under salt and water stress conditions, especially when using seeds of the more tolerant genotype (BRS 330) subjected to hormonal priming at 100 ppm GA3 concentration. 展开更多
关键词 Hydropriming Hormonal priming Gibberellic Acid Sorghum bicolor
下载PDF
Abscisic acid and jasmonic acid are involved in drought priming-induced tolerance to drought in wheat 被引量:5
9
作者 Xiao Wang Qing Li +5 位作者 Jingjing Xie Mei Huang Jian Cai Qin Zhou Tingbo Dai Dong Jiang 《The Crop Journal》 SCIE CSCD 2021年第1期120-132,共13页
Drought stress is a limiting factor for wheat production and food security.Drought priming has been shown to increase drought tolerance in wheat.However,the underlying mechanisms are unknown.In the present study,the g... Drought stress is a limiting factor for wheat production and food security.Drought priming has been shown to increase drought tolerance in wheat.However,the underlying mechanisms are unknown.In the present study,the genes encoding the biosynthesis and metabolism of abscisic acid(ABA)and jasmonic acid(JA),as well as genes involved in the ABA and JA signaling pathways were up-regulated by drought priming.Endogenous concentrations of JA and ABA increased following drought priming.The interplay between JA and ABA in plant responses to drought priming was further investigated using inhibitors of ABA and JA biosynthesis.Application of fluridone(FLU)or nordihydroguaiaretic acid(NDGA)to primed plants resulted in lower chlorophyll-fluorescence parameters and activities of superoxide dismutase and glutathione reductase,and higher cell membrane damage,compared to primed plants(PD)under drought stress.NDGA+ABA,but not FLU+JA,restored priming-induced tolerance,as indicated by a finding of no significant difference from PD under drought stress.Under drought priming,NDGA induced the suppression of ABA accumulation,while FLU did not affect JA accumulation.These results were consistent with the expression of genes involved in the biosynthesis of ABA and JA.They suggest that ABA and JA are required for priming-induced drought tolerance in wheat,with JA acting upstream of ABA. 展开更多
关键词 WHEAT Drought priming Abscisic acid Jasmonic acid Antioxidant activity
下载PDF
Rapid detection of Pseudomonas aeruginosa by cross priming amplification 被引量:4
10
作者 XIANG Yong YAN Ling +3 位作者 ZHENG Xiao-cui LI Li-zhen LIU Peng CAO Wei-sheng 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2020年第10期2523-2529,共7页
Pseudomonas aeruginosa(PA)is an opportunistic pathogen of humans and animals and a common source of nosocomial infections especially of the respiratory tract.Pseudomonas aeruginosa is also a major bacterial disease of... Pseudomonas aeruginosa(PA)is an opportunistic pathogen of humans and animals and a common source of nosocomial infections especially of the respiratory tract.Pseudomonas aeruginosa is also a major bacterial disease of poultry and in particular,eggs and newly hatched chicks.In this study,we developed a simple,accurate and rapid molecular detection method using cross priming amplification(CPA)with a nucleic acid test strip to detect P.aeruginosa.The assay efficiently amplified the target gene within 45 min at 62℃only using a simple water bath.The detection limit of the method was 1.18x 102 copiesμL^-1 for plasmid DNA and 4.4 CFU mL^-1 for bacteria in pure culture,and was 100 times more sensitive than conventional PCR.We screened 83 clinical samples from yellow-feather broiler breeder chickens and hospitalized/treated dogs and cats using CPA,PCR and traditional culture methods.The positive sample ratios were 15.3%(13/83)by CPA,13.3%(11/83)by PCR and 12.1%(10/83)by the culture method.The established CPA method has significant advantages for detecting P.aeruginosa.The method is easy to use and possesses high specificity and sensitivity without the requirements of complicated experimental equipment.The PA-CPA assay is especially fit for outdoor and primary medical units and is an ideal system for the rapid detection and monitoring of P.aeruginosa. 展开更多
关键词 Pseudomonas aeruginosa cross priming amplification isothermal amplification rapid detection detection method
下载PDF
The different root apex zones contribute to drought priming induced tolerance to a reoccurring drought stress in wheat 被引量:2
11
作者 Xiao Wang Jing Chen +6 位作者 Jiakun Ge Mei Huang Jian Cai Qin Zhou Tingbo Dai Luis Alejandro Jose Mur Dong Jiang 《The Crop Journal》 SCIE CSCD 2021年第5期1088-1097,共10页
Drought priming is a promising approach to improve tolerance to further drought in wheat.The root apex plays important roles in drought however,its contribution to drought priming remains unknown.To provide mechanisti... Drought priming is a promising approach to improve tolerance to further drought in wheat.The root apex plays important roles in drought however,its contribution to drought priming remains unknown.To provide mechanistic insights into this process,the transcriptomes and proteomes at three different zones along the root axis under drought stress were analyzed.Physiological assessment of root growth indicated that priming augmented roots growth in response to drought and also the levels of protective proline and glycine betaine.Scanning across the proximal to the distal zones of the root apex indicated increases the transcription of genes involved in primary and secondary metabolism.Conversely,genes related to translation,transcription,folding,sorting and degradation,replication and repair were increased in the apex compared to the proximal zone.A single drought episode suppressed their expression but prior drought priming served to maintain expression with recurrent drought stress.The differentially primed responses genes were mainly involved in the pathways related to plant hormone signaling,stress defense and cell wall modification.The prediction of regulatory hubs using Cytoscape implicated signaling components such as the ABA receptor PYL4 as influencing antioxidant status and the cell cycle.Based our integrative transcriptomic-proteomic assessments we present a model for drought priming protected plant hormone signaling transduction pathways to drive the cell cycle and cell wall loosening to confer beneficial effects on roots to counter the effects of drought.This model provides a theoretical basis for improvement of drought tolerance in wheat,via an increased understanding of drought priming induced drought tolerance. 展开更多
关键词 WHEAT Drought priming Drought tolerance Root Transcriptome
下载PDF
Early ABA-stimulated maintenance of Cl^(−) homeostasis by mepiquat chloride priming confers salt tolerance in cotton seeds 被引量:2
12
作者 Ning Wang Xiangru Wang +7 位作者 Hengheng Zhang Xiaohong Liu Jianbin Shi Qiang Dong Qinghua Xu Huiping Gui Meizhen Song Gentu Yan 《The Crop Journal》 SCIE CSCD 2021年第2期387-399,共13页
Mepiquat chloride(MC)priming alleviates the effects of salt stress during seed germination in cotton(Gossypium hirsutum L.),but the mechanisms underlying its effects are unknown.We found that MC priming increases salt... Mepiquat chloride(MC)priming alleviates the effects of salt stress during seed germination in cotton(Gossypium hirsutum L.),but the mechanisms underlying its effects are unknown.We found that MC priming increases salt tolerance,as evidenced by marked increases in seed vigor and germination rates,and alleviated salt toxicity by reducing Cl^(−)accumulation in germinating seeds.Consistently,electrophysiological experiments revealed that the seeds with MC priming displayed superior Cl^(−)exclusion ability in the root apex.These beneficial effects of MC priming were abolished by the abscisic acid(ABA)-synthesis blocker fluridone under salt stress.MC priming induced an early response to acclimatization and stress,as indicated by rapidly increasing ABA content during initial exposure to salt stress.Transcriptome analyses revealed that MC priming induced an array of differentially expressed genes(DEGs)in germinating seeds.The most noticeable changes in germinating seeds were MC priming-induced increases in the expression of DEGs encoding components of ABA biosynthesis,ABA catabolism,and ABA signaling pathways under salt stress.MC priming also increased the expression of some DEGs encoding Cl^(−)ion transporters(e.g.CCC,SLAC1/SLAH1/SLAH3,CLC,and ALMT9)in germinating seeds.These results indicate that MC priming-induced ABA contributes to Cl^(−)homeostasis in tissues and acts as a positive regulator of salt tolerance via regulation of Cl^(−)transporters(particularly CCC and SLAC1/SLAH1/SLAH3).Taken together,these findings shed light on the molecular mechanism underlying MC-mediated tolerance to salt stress during seed germination. 展开更多
关键词 Seed priming Salinity tolerance Ionic flux RNA-SEQ ABA
下载PDF
Biochar-Induced Priming Effects in Young and Old Poplar Plantation Soils 被引量:2
13
作者 Weiwei Lu Yirui Zhang +7 位作者 Yixian Yao Yuying Wu Han Y.H.Chen Hailin Zhang Jia Yu Caiqin Shen Qi Liu Honghua Ruan 《Phyton-International Journal of Experimental Botany》 SCIE 2020年第1期13-26,共14页
The priming effect(PE)induced by biochar provides a basis for evaluating its carbon(C)sequestration potential in soils.A 60 days’laboratory incubation was conducted,which involved the amendment of biochar(1%of soil m... The priming effect(PE)induced by biochar provides a basis for evaluating its carbon(C)sequestration potential in soils.A 60 days’laboratory incubation was conducted,which involved the amendment of biochar(1%of soil mass)produced from rice straw at 300℃(B300)and 500℃(B500)to young(Y)and old(O)poplar plantation soils,with the aim of studying the responses of biochar-induced PEs to poplar plantation ages.This incubation included six treatments:Y+CK(control),Y+B300,Y+B500,O+CK,O+B300,and O+B500.Carbon dioxide(CO_(2))emissions were significantly increased(p<0.05)in the B300 amended soils,while it was decreased in the B500 amended soils compared to the CK.The primed CO_(2) emissions were 2.35 times higher in the Y+B300 than the O+B300 treatments,which was measured to be 18.6 and 5.56 mg C·kg^(-1) with relative PEs of 12.4%and 3.35%,respectively.However,there was little difference between the primed CO_(2) emissions in Y+B500 and O+B500 treatments,which were measured to be-24.9 and-29.6 mg·C·kg^(-1) with relative PEs of-16.6%and-17.8%,respectively.Dissolved organic carbon(DOC)was significantly lower in the young poplar plantation soil than that in the old poplar plantation soil regardless of biochar amendment throughout the incubation,indicating greater C-limit of soil microorganisms in the young poplar plantation soil.Using ^(13)C isotope tracing,neither B300 nor B500 decreased native soil-derived DOC,which indicated that the negative B500-induced PEs were not due to a reduction in the availability of native soil-derived C.In conclusion,the response of biochar-induced PEs to poplar plantation age depends on biochar types while soil available C indirectly affects biochar-induced PEs.Further studies should focus on how the interactive effects between soil C availability and microbial community impacts biochar-induced PEs. 展开更多
关键词 BIOCHAR dissolved organic carbon pyrolysis temperature poplar plantation age priming effect
下载PDF
Mobilization of CD34^+CD38^- hematopoietic stem cells after priming in acute myeloid leukemia 被引量:1
14
作者 Adriana Plesa Eve Mattei +8 位作者 Charles Dumontet Youcef Chelghoum Hélène Labussière Giovanna Cannas Mauricette Michallet Xavier Thomas Mohamed Elhamri Stéphane Morisset Inès Tagoug 《World Journal of Stem Cells》 SCIE CAS 2013年第4期196-204,共9页
AIM: To evaluate quantitatively and qualitatively the different CD34+cell subsets after priming by chemotherapy granulocyte colony-stimulating factor(± G-CSF)in patients with acute myeloid leukemia.METHODS: Perip... AIM: To evaluate quantitatively and qualitatively the different CD34+cell subsets after priming by chemotherapy granulocyte colony-stimulating factor(± G-CSF)in patients with acute myeloid leukemia.METHODS: Peripheral blood and bone marrow sampleswere harvested in 8 acute myeloid leukemia patients during and after induction chemotherapy. The CD34/CD38 cell profile was analyzed by multi-parameter flow cytometry. Adhesion profile was made using CXC chemokine receptor 4(CXCR4)(CD184), VLA-4(CD49d/CD29) and CD47.RESULTS: Chemotherapy ± G-CSF mobilized immature cells(CD34+CD38 population), while the more mature cells(CD34+CD38lowand CD34+CD38+populations) decreased progressively after treatment. Circulating CD34+cells tended to be more sensitive to chemotherapy after priming with G-CSF. CD34+cell mobilization was correlated with a gradual increase in CXCR4 and CD47expression, suggesting a role in cell protection and the capacity of homing back to the marrow.CONCLUSION: Chemotherapy ± G-CSF mobilizes into the circulation CD34+bone marrow cells, of which, the immature CD34+CD38-cell population. Further manipulations of these interactions may be a means with which to control the trafficking of leukemia stem cells to improve patients' outcomes. 展开更多
关键词 Acute MYELOID LEUKEMIA LEUKEMIA stem cell IMMUNOPHENOTYPE priming TIMED sequential chemotherapy
下载PDF
Nitrogen availability regulates deep soil priming effect by changing microbial metabolic efficiency in a subtropical forest 被引量:1
15
作者 Chang Liao Qiuxiang Tian Feng Liu 《Journal of Forestry Research》 SCIE CAS CSCD 2021年第2期713-723,共11页
In terrestrial ecosystems,deep soils(below 30 cm)are major organic carbon(C)pools.The labile carbon input could alter soil organic carbon(SOC)mineralization,resulting in priming effect(PE),which could be modified by n... In terrestrial ecosystems,deep soils(below 30 cm)are major organic carbon(C)pools.The labile carbon input could alter soil organic carbon(SOC)mineralization,resulting in priming effect(PE),which could be modified by nitrogen(N)availability,however,the underlying mechanism is unclear for deep soils,which complicates the prediction of deep soil C cycling in response to N deposition.A series of N applications with ^(13)C labeled glucose was set to investigate the effect of labile C and N on deep SOC mineralization.Microbial biomass,functional community,metabolic efficiency and enzyme activities were examined for their effects on SOC mineralization and PE.During incubation,glucose addition promoted SOC mineralization,resulting in positive PE.The magnitude of PE decreased significantly with increasing N.The N-regulated PE was not dependent on extracellular enzyme activities but was positively correlated with carbon use efficiency and negatively with metabolic quotient.Higher N levels resulted in higher microbial biomass and SOC-derived microbial biomass than lower N levels.These results suggest that the decline in the PE under high N availability was mainly controlled by higher microbial metabolic efficiency which allocated more C for growth.Structural equation modelling also revealed that microbial metabolic efficiency rather than enzyme activities was the main factor regulating the PE.The negative effect of additional N suggests that future N deposition could promote soil C sequestration. 展开更多
关键词 Deep soil priming effect Community-level physiological profiling Soil enzyme activity Microbial metabolic efficiency
下载PDF
Priming strategies for controlling stem cell fate: Applications and challenges in dental tissue regeneration 被引量:1
16
作者 Si-Yuan Zhang Jia-Yin Ren Bo Yang 《World Journal of Stem Cells》 SCIE 2021年第11期1625-1646,共22页
Mesenchymal stromal cells(MSCs)have attracted intense interest in the field of dental tissue regeneration.Dental tissue is a popular source of MSCs because MSCs can be obtained with minimally invasive procedures.MSCs ... Mesenchymal stromal cells(MSCs)have attracted intense interest in the field of dental tissue regeneration.Dental tissue is a popular source of MSCs because MSCs can be obtained with minimally invasive procedures.MSCs possess distinct inherent properties of self-renewal,immunomodulation,proangiogenic potential,and multilineage potency,as well as being readily available and easy to culture.However,major issues,including poor engraftment and low survival rates in vivo,remain to be resolved before large-scale application is feasible in clinical treatments.Thus,some recent investigations have sought ways to optimize MSC functions in vitro and in vivo.Currently,priming culture conditions,pretreatment with mechanical and physical stimuli,preconditioning with cytokines and growth factors,and genetic modification of MSCs are considered to be the main strategies;all of which could contribute to improving MSC efficacy in dental regenerative medicine.Research in this field has made tremendous progress and continues to gather interest and stimulate innovation.In this review,we summarize the priming approaches for enhancing the intrinsic biological properties of MSCs such as migration,antiapoptotic effect,proangiogenic potential,and regenerative properties.Challenges in current approaches associated with MSC modification and possible future solutions are also indicated.We aim to outline the present understanding of priming approaches to improve the therapeutic effects of MSCs on dental tissue regeneration. 展开更多
关键词 Mesenchymal stem cells priming Dental regeneration Culture conditions CYTOKINES Growth factors Genetic modification
下载PDF
Significance of Chemical Priming on Yield and Yield Components of Wheat under Drought Stress 被引量:1
17
作者 Alam Sher Aaqil khan +4 位作者 Sajid Hussain Li Jin Cai Muhammad Irfan Ahmad Sikandar Ali Jamro Arif Rashid 《American Journal of Plant Sciences》 2017年第6期1339-1344,共6页
Drought is the most important factor limiting plant production in the majority of agricultural crops of the world. Wheat is generally grown on arid-agricultural fields. An experiment was conducted at the Plant physiol... Drought is the most important factor limiting plant production in the majority of agricultural crops of the world. Wheat is generally grown on arid-agricultural fields. An experiment was conducted at the Plant physiology research area, Agronomic Research Institute Faisalabad, during winter 2010-11 to evaluate the effect of drought on wheat variety Lasani 2008. The experiment was comprised of following treatments. T1 Normal moisture (3 IR at CRS, Booting and grain filling), T2 No irrigation (only rainfed) control, T3 water spray (100 ppm), T4 ascorbic acid (100 ppm), T5 salicylic acid (100 ppm), T6 calcium chloride (100 ppm), T7 glycinbetain (100 ppm). According to the resulting data the treatment in which three irrigation were applied produced more no. of tillers (52%), spikelet per spike (41%), spike length (30%), grain per spike (58%), grain yield (54%), biological yield (35%) as compared to control. The treatment in which no irrigation was applied produced less no. of tillers, spikelet per spike, spike length, grain per spike, grain yield, biological yield. Thousand grain weight and harvest index were non significant among all treatments. 展开更多
关键词 WHEAT HORMONAL priming DROUGHT Ascorbic ACID Salicylic ACID Calcium Chloride Glycinbetain
下载PDF
The role of seed priming in improving seedling growth of maize (<i>Zea mays</i>L.) under salt stress at field conditions 被引量:1
18
作者 Berhanu Abraha Gebremedhn Yohannes 《Agricultural Sciences》 2013年第12期666-672,共7页
Salinity is considered as a major abiotic stress affecting germination, seedling growth and crop production in arid and semi-arid regions. Many techniques are used to improve tolerance to salinity. Priming is believed... Salinity is considered as a major abiotic stress affecting germination, seedling growth and crop production in arid and semi-arid regions. Many techniques are used to improve tolerance to salinity. Priming is believed to be an effective solution that increases germination, plant growth and improve yield of several vegetables and crops under saline soil condition. The objective of this study was to see the effect of seed priming with 5 g/L NaCl on maize seedling growth exposed to five salinity levels under field conditions. Maize seeds were soaked in 5 g/L NaCl solution for 12 h at room temperature. Primed and unprimed seeds were sown in pots and were irrigated with saline solutions of five concentrations (0, 2, 4, 6 and 8 g/l NaCl). Each pot was irrigated with 200 ml saline solution of the desired treatment in two days interval. Priming seeds with NaCl significantly (P Zea mays. Further, this study needs to be continued if performance of mature maize plants could also be improved and yield could be increased by sowing primed seeds in saline soils. 展开更多
关键词 MAIZE Salinity SEED Germination SEED priming Seedling Growth
下载PDF
Inflammatory niche:Mesenchymal stromal cell priming by soluble mediators
19
作者 Aleksandra Jauković Tamara Kukolj +3 位作者 Hristina Obradović Ivana Okić-Đorđević Slavko Mojsilović Diana Bugarski 《World Journal of Stem Cells》 SCIE CAS 2020年第9期922-937,共16页
Mesenchymal stromal/stem cells(MSCs)are adult stem cells of stromal origin that possess self-renewal capacity and the ability to differentiate into multiple mesodermal cell lineages.They play a critical role in tissue... Mesenchymal stromal/stem cells(MSCs)are adult stem cells of stromal origin that possess self-renewal capacity and the ability to differentiate into multiple mesodermal cell lineages.They play a critical role in tissue homeostasis and wound healing,as well as in regulating the inammatory microenvironment through interactions with immune cells.Hence,MSCs have garnered great attention as promising candidates for tissue regeneration and cell therapy.Because the inflammatory niche plays a key role in triggering the reparative and immunomodulatory functions of MSCs,priming of MSCs with bioactive molecules has been proposed as a way to foster the therapeutic potential of these cells.In this paper,we review how soluble mediators of the inflammatory niche(cytokines and alarmins)influence the regenerative and immunomodulatory capacity of MSCs,highlighting the major advantages and concerns regarding the therapeutic potential of these inflammatory primed MSCs.The data summarized in this review may provide a significant starting point for future research on priming MSCs and establishing standardized methods for the application of preconditioned MSCs in cell therapy. 展开更多
关键词 Mesenchymal stem cells Pro-inflammatory cytokines ALARMINS priming Boosting the therapeutic potential
下载PDF
Light Regulated Osa-miR169e Is Implicated during Priming under High Temperature Stress in Rice
20
作者 Akhilesh Kumar Kushawaha Ambreen Khan +1 位作者 Sudhir Kumar Sopory Neeti Sanan-Mishra 《American Journal of Plant Sciences》 2019年第9期1662-1674,共13页
Plants face biotic and abiotic stresses during their entire life cycle, which leads to the loss in crop productivity. It has been shown that a relatively shorter exposure to heat stress, called priming, results in bet... Plants face biotic and abiotic stresses during their entire life cycle, which leads to the loss in crop productivity. It has been shown that a relatively shorter exposure to heat stress, called priming, results in better adaptation of plants under subsequent stresses, which plants may face. While rice plants in nature often encounter high temperature stress conditions, the strategies to cope with those are poorly understood. We identified the involvement of microRNA pathways in the adaptation to heat stress (HS) at the physiological and molecular levels. It was observed that osa-miR169 levels are altered after HS and in response to light conditions. Its expression was also regulated by heat priming during anthesis and effectively responds to the successive exposure to high temperature stress during grain filling in rice. Osa-miR169 targets nuclear factor Y (NF-Y). We propose that osa-miR169: NF-Y regulatory module may be important for HS memory induced during high temperature priming and thus may serve to integrate stress responses with light regulated development. The future study in this direction will be useful to understand how plants acclimatize to the changing environment and thus help in generating stress tolerant crops. 展开更多
关键词 ABIOTIC Stress Heat priming LIGHT ACCLIMATION MicroRNA
下载PDF
上一页 1 2 49 下一页 到第
使用帮助 返回顶部