期刊文献+
共找到63篇文章
< 1 2 4 >
每页显示 20 50 100
Changes in Growth,Photosynthetic Pigments,Cell Viability,Lipid Peroxidation and Antioxidant Defense System in Two Varieties of Chickpea(Cicer arietinum L.)Subjected to Salinity Stress 被引量:1
1
作者 Zeenat Mushtaq Shahla Faizan +4 位作者 Basit Gulzar Humira Mushtaq Sayyada Bushra Alisha Hussain Khalid Rehman Hakeem 《Phyton-International Journal of Experimental Botany》 SCIE 2022年第1期149-168,共20页
Salinity is one of the most severe abiotic stresses for crop production.The present study investigates the salinityinduced modulation in growth indicators,morphology and movement of stomata,photosynthetic pigments,act... Salinity is one of the most severe abiotic stresses for crop production.The present study investigates the salinityinduced modulation in growth indicators,morphology and movement of stomata,photosynthetic pigments,activity of carbonic anhydrase as well as nitrate reductase,and antioxidant systems in two varieties of chickpea(Pusa-BG5023,and Pusa-BGD72).On 20^(th) day of sowing,plants were treated with varying levels of NaCl(0,50,100,150 and 200 mM)followed by sampling on 45 days of sowing.Recorded observations on both the varieties reveal that salt stress leads to a significant decline in growth,dry biomass,leaf area,photosynthetic pigments,protein content,stomatal behavior,cell viability,activity of nitrate reductase and carbonic anhydrase with the rise in the concentration of salt.However,quantitatively these changes were less in Pusa-BG5023 as compared to Pusa-BGD72.Furthermore,salinity-induced oxidative stress enhanced malondialdehyde content,superoxide radicals,foliar proline content,and the enzymatic activities of superoxide dismutase,catalase,and peroxidase.The variety Pusa-BGD72 was found more sensitive than Pusa-BG5023 to salt stress.Out of different graded concentrations(50,100,150 and 200 mM)of sodium chloride,50 mM was least toxic,and 200 mM was most damaging.The differential behavior of these two varieties measured in terms of stomatal behavior,cell viability,photosynthetic pigments,and antioxidant defense system can be used as prospective indicators for selection of chickpea plants for salt tolerance and sensitivity. 展开更多
关键词 Salt stress ion homeostasis antioxidant defense cell viability CHICKPEA
下载PDF
Effect of Cold Plasma on Cell Viability and Collagen Synthesis in Cultured Murine Fibroblasts 被引量:2
2
作者 石兴民 蔡晶芬 +7 位作者 许桂敏 任鸿斌 陈思乐 常正实 刘进仁 黄崇亚 张冠军 吴喜利 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第4期353-359,共7页
An argon atmospheric pressure plasma jet was employed to treat L929 murine fibroblasts cultured in vitro.Experimental results showed that,compared with the control cells,the treatment of fibroblasts with 15 s of plasm... An argon atmospheric pressure plasma jet was employed to treat L929 murine fibroblasts cultured in vitro.Experimental results showed that,compared with the control cells,the treatment of fibroblasts with 15 s of plasma led to a significant increase of cell viability and collagen synthesis,while the treatment of 25 s plasma resulted in a remarkable decrease.Exploration of related mechanisms suggested that cold plasma could up-regulate Cyclin D1 gene expression and down-regulate p27 gene expression at a low dose,while it could down-regulate Cyclin D1 expression and up-regulate p27 expression at a higher dose,thus altering the cell cycle progression,and then affecting cell viability and collagen synthesis of fibroblasts. 展开更多
关键词 cold plasma cell viability collagen synthesis fibroblasts
下载PDF
Protein adsorption, cell viability and corrosion properties of Ti6Al4V alloy treated by plasma oxidation and anodic oxidation
3
作者 ÖzgüBayrak Hojjat Ghahramanzadeh Asl Ayşe Ak 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2020年第9期1269-1280,共12页
The hardness,wettability,and electrochemical properties of Ti6Al4V alloy surfaces treated with anodic oxidation and plasma oxidation as well as the viabilities of the different cell lines on the obtained surfaces were... The hardness,wettability,and electrochemical properties of Ti6Al4V alloy surfaces treated with anodic oxidation and plasma oxidation as well as the viabilities of the different cell lines on the obtained surfaces were investigated.The anodic oxidation was performed for 10 min under 100 V potential,and it resulted in a 0.95μm thick nanoporous anatase-TiO2 structure.On the other hand,plasma oxidation was carried out at 650℃ for 1 h and resulted in a dense rutile-TiO2 structure with a thickness of 1.2μm.While a hardness of HV0.025823 and roughness of^220 nm were obtained by plasma oxidation,those obtained by anodic oxidation were HV0.025512 and^130 nm,respectively.The anodic oxidation process created a more hydrophilic surface with a contact angle of 87.2°.Both oxidation processes produced similar properties in terms of corrosion behavior and showed better resistance than the as-received state in a certain range of potential.Moreover,the surface treatments led to no significant change in the protein adsorption levels,which indicates that the difference in viability between the osteoblast and fibroblast cells was not due to the difference in surface protein adsorption.Given all the factors,the surfaces obtained by anodic oxidation treatment revealed higher cell viability than those obtained by plasma oxidation(p=0.05). 展开更多
关键词 TI6AL4V OXIDATION CORROSION cell viability protein adsorption
下载PDF
Poly(Butylene Adipate-Co-Terephthalate)and Poly(ε-Caprolactone)and Their Bionanocomposites with Cellulose Nanocrystals:Thermo-Mechanical Properties and Cell Viability Study
4
作者 Marcia Cristina Branciforti Caroline Faria Bellani +3 位作者 Carolina Lipparelli Morelli Alice Ferrand Nadia Benkirane-Jessel Rosario Elida Suman Bretas 《Journal of Renewable Materials》 SCIE 2019年第3期269-277,共9页
Although nanocomposites have recently attracted special interest in the tissue engineering area,due to their potential to reinforce scaffolds for hard tissues applications,a number of variables must be set prior to an... Although nanocomposites have recently attracted special interest in the tissue engineering area,due to their potential to reinforce scaffolds for hard tissues applications,a number of variables must be set prior to any clinical application.This manuscript addresses the evaluation of thermo-mechanical properties and of cell proliferation of cellulose nanocrystals(CNC),poly(butylene adipate-co-terephthalate)(PBAT),poly(ε-caprolactone)(PCL)films and their bionanocomposites with 2 wt% of CNC obtained by casting technique.Cellulose nanocrystals extracted from Balsa wood by acid hydrolysis were used as a reinforcing phase in PBAT and PCL matrix films.The films and pure CNC at different concentrations were cultured with osteoblasts MG-63 and the cell proliferation was assessed by AlamarBlue?assay.The thermal-mechanical properties of the films were evaluated by dynamic-mechanical thermal analysis(DMTA).It was found by DMTA that the CNC acted as reinforcing agent.The addition of CNCs in the PBAT and PCL matrices induced higher storage moduli due to the reinforcement effects of CNCs.The cell viability results showed that neat CNC favored osteoblast proliferation and both PBAT and PCL films incorporated with CNC were biocompatible and supported cell proliferation along time.The nature of the polymeric matrix or the presence of CNC practically did not affect the cell proliferation,confirming they have no in vitro toxicity.Such features make cellulose nanocrystals a suitable candidate for the reinforcement of biodegradable scaffolds for tissue engineering and biomedical applications. 展开更多
关键词 cell viability thermo-mechanical properties cellulose nanocrystals(CNC) biocompatible polymers tissue engineering BIONANOCOMPOSITES
下载PDF
Cell viability in the cadmium-stressed cell suspension cultures of tobacco is regulated by extracellular ATP,possibly by a reactive oxygen species-associated mechanism
5
作者 Zhenzhen SHI Jiaxin CAO +3 位作者 Hailong PANG Lingyun JIA Kun SUN Hanqing FENG 《BIOCELL》 SCIE 2020年第1期89-99,共11页
Cadmium(Cd)is one of the most widespread and toxic heavy metals to plants.Extracellular ATP(exATP)is thought to be an extracellular effector in regulating the physiological responses of plant cells to environmental st... Cadmium(Cd)is one of the most widespread and toxic heavy metals to plants.Extracellular ATP(exATP)is thought to be an extracellular effector in regulating the physiological responses of plant cells to environmental stresses.However,the function of exATP in Cd-stressed plant cells is much unknown.The present work showed that treating tobacco(Nicotiana tabacum L.cv.Bright Yellow-2)cell-suspension cultures with exogenous CdCl2 reduced the cell viability,exATP level,and Mg content.However,the production of reactive oxygen species(ROS),Cd content,and electrolyte leakage of the cells were enhanced by exogenous CdCl2.When the Cd-induced accumulation of ROS was decreased by the supplement with DMTU(dimethylthiourea,a scavenger of ROS),the Cd-induced increases of the electrolyte leakage and Cd content were alleviated,and the Cd-induced reductions of cell viability were partly rescued,suggesting that Cd-induced reduction of cell viability could be related to the ROS accumulation.Under the condition of Cd stress,when the reduction of exATP level was partly rescued by exogenous ATP(20μM),the increases of ROS production,electrolyte leakage,and Cd content were attenuated,and the reduction of cell viability was also alleviated.These observations indicate that exATP can regulate the cell viability in the Cd–stressed plant cells possibly by an ROS-associated mechanism. 展开更多
关键词 cell viability Cd ions Extracellular ATP Reactive oxygen species
下载PDF
P53 protein expression and cell viability in irradiated peripheral blood mononuclear cells as bioindicators of radiosensitivity
6
作者 Mariana Brayner Cavalcanti Ana Paula Galvao da Silva +1 位作者 Rafael de Freitas e Silva Ademir Amaral 《Journal of Biophysical Chemistry》 2011年第2期63-67,共5页
Cellular radiosensitivity is directly correlated with the mechanism of DNA repair, in which p53 protein plays a major role. In this context, this study correlated cell death with p53 expression in lymphocytes irradiat... Cellular radiosensitivity is directly correlated with the mechanism of DNA repair, in which p53 protein plays a major role. In this context, this study correlated cell death with p53 expression in lymphocytes irradiated in vitro with different doses of gammaradiation. For this, peripheral blood samples were collected from 10 healthy subjects. Each sample was divided in aliquots and, separately, irradiated with doses of 0,5;2 and 4 Gy. After this, peripheral blood mononuclear cells (PBMCs) were isolated and cultivated during 72 hours in 5% CO2 at 37oC without mitogen stimulation. The expression of p53 protein was evaluated by flow cytometry. In parallel, cell viability was determined by trypan blue staining. Statistical analysis was performed us-ing analysis of variance (ANOVA), differences were considered as statistically significant when p < 0.05. The results showed an increase of p53 expression with the absorbed dose, which was proportional to cell death, suggesting that p53 can be used as bioindicator of individual radiosensitivity. 展开更多
关键词 P53 Protein RADIOSENSITIVITY LYMPHOCYTES Flow Cytometry cell viability
下载PDF
A review on cell damage,viability,and functionality during 3D bioprinting
7
作者 He-Qi Xu Jia-Chen Liu +1 位作者 Zheng-Yi Zhang Chang-Xue Xu 《Military Medical Research》 SCIE CAS CSCD 2023年第5期620-635,共16页
Three-dimensional(3D)bioprinting fabricates 3D functional tissues/organs by accurately depositing the bioink composed of the biological materials and living cells.Even though 3D bioprinting techniques have experienced... Three-dimensional(3D)bioprinting fabricates 3D functional tissues/organs by accurately depositing the bioink composed of the biological materials and living cells.Even though 3D bioprinting techniques have experienced significant advancement over the past decades,it remains challenging for 3D bioprinting to artificially fabricate functional tissues/organs with high post-printing cell viability and functionality since cells endure various types of stress during the bioprinting process.Generally,cell viability which is affected by several factors including the stress and the environmental factors,such as pH and temperature,is mainly determined by the magnitude and duration of the stress imposed on the cells with poorer cell viability under a higher stress and a longer duration condition.The maintenance of high cell viability especially for those vulnerable cells,such as stem cells which are more sensitive to multiple stresses,is a key initial step to ensure the functionality of the artificial tissues/organs.In addition,maintaining the pluripotency of the cells such as proliferation and differentiation abilities is also essential for the 3D-bioprinted tissues/organs to be similar to native tissues/organs.This review discusses various pathways triggering cell damage and the major factors affecting cell viability during different bioprinting processes,summarizes the studies on cell viabilities and functionalities in different bioprinting processes,and presents several potential approaches to protect cells from injuries to ensure high cell viability and functionality. 展开更多
关键词 Three-dimensional bioprinting cell damage Shear stress cell viability cell functionality
下载PDF
Harnessing decellularised extracellular matrix microgels into modular bioinks for extrusion-based bioprinting with good printability and high post-printing cell viability
8
作者 Hanyu Chu Kexin Zhang +6 位作者 Zilong Rao Panpan Song Zudong Lin Jing Zhou Liqun Yang Daping Quan Ying Bai 《Biomaterials Translational》 2023年第2期115-127,共13页
The printability of bioink and post-printing cell viability is crucial for extrusion-based bioprinting.A proper bioink not only provides mechanical support for structural fidelity,but also serves as suitable three-dim... The printability of bioink and post-printing cell viability is crucial for extrusion-based bioprinting.A proper bioink not only provides mechanical support for structural fidelity,but also serves as suitable three-dimensional(3D)microenvironment for cell encapsulation and protection.In this study,a hydrogel-based composite bioink was developed consisting of gelatin methacryloyl(GelMA)as the continuous phase and decellularised extracellular matrix microgels(DMs)as the discrete phase.A flow-focusing microfluidic system was employed for the fabrication of cell-laden DMs in a high-throughput manner.After gentle mixing of the DMs and GelMA,both rheological characterisations and 3D printing tests showed that the resulting DM-GelMA hydrogel preserved the shear-thinning nature,mechanical properties,and good printability from GelMA.The integration of DMs not only provided an extracellular matrix-like microenvironment for cell encapsulation,but also considerable shear-resistance for high post-printing cell viability.The DM sizes and inner diameters of the 3D printer needles were correlated and optimised for nozzle-based extrusion.Furthermore,a proof-of-concept bioink composedg of RSC96 Schwann cells encapsulated DMs and human umbilical vein endothelial cell-laden GelMA was successfully bioprinted into 3D constructs,resulting in a modular co-culture system with distinct cells/materials distribution.Overall,the modular DM-GelMA bioink provides a springboard for future precision biofabrication and will serve in numerous biomedical applications such as tissue engineering and drug screening. 展开更多
关键词 3D bioprinting bioinks cell viability decellularised extracellular matrix microgels
原文传递
Effects of Sialic Acid from Edible Bird Nest on Cell Viability Associated with Brain Cognitive Performance in Mice 被引量:3
9
作者 Siti Khadijah Abdul Khalid Aswir Abd Rashed +1 位作者 Saleha Abdul Aziz Hafandi Ahmad 《World Journal of Traditional Chinese Medicine》 2019年第4期214-219,共6页
Background:Edible bird nest(EBN)is a natural food product rich in glycoprotein such as sialic acid,which has been reported to improve brain functions.The EBN is widely consumed due to its higher nutritional contents a... Background:Edible bird nest(EBN)is a natural food product rich in glycoprotein such as sialic acid,which has been reported to improve brain functions.The EBN is widely consumed due to its higher nutritional contents and antioxidant status;however,an interaction of EBN on brain cell metabolic activity and viability are still unclear.Objective:The objectives of this study were to identify the effect of sialic acid from EBN on the cell viability and to determine the appropriate concentration of sialic acid on cognitive performance in mice.Materials and Methods:The viability of pheochromocytoma and neuroblastoma cell lines were tested using the 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide assay.For in vivo study,7-week-old female BALB/c mice were randomly assigned into four treatment groups and were treated with sialic acid for 21 days.At day 22,all mice were tested on cognitive performance by Y-maze test.Results:Treatment concentration of sialic acid extract and sialic acid standard at 60μg/mL(0.6 ppm)increased cell viability and showed no cytotoxicity effects in pheochromocytoma and neuroblastoma cell lines.In addition,an administration of higher dose of sialic acid at 0.6 ppm in animals improved Y-maze test performance,which they showed significantly higher number of entries and time spent in the novel arm.Conclusion:Thus,the current study shows that the sialic acid extract at 0.6 ppm improved brain cognitive performance in mice associated with an increased viability of pheochromocytoma and neuroblastoma cell lines. 展开更多
关键词 cell viability cognitive function edible bird nest MICE sialic acid
原文传递
A facile,versatile hydrogel bioink for 3D bioprinting benefits long-term subaqueous fidelity,cell viability and proliferation
10
作者 Hongqing Chen Fei Fei +7 位作者 Xinda Li Zhenguo Nie Dezhi Zhou Libiao Liu Jing Zhang Haitao Zhang Zhou Fei Tao Xu 《Regenerative Biomaterials》 SCIE 2021年第3期141-155,共15页
Both of the long-term fidelity and cell viability of three-dimensional(3D)-bioprinted constructs are essential to precise soft tissue repair.However,the shrinking/swelling behavior of hydrogels brings about inadequate... Both of the long-term fidelity and cell viability of three-dimensional(3D)-bioprinted constructs are essential to precise soft tissue repair.However,the shrinking/swelling behavior of hydrogels brings about inadequate long-term fidelity of constructs,and bioinks containing excessive polymer are detrimental to cell viability.Here,we obtained a facile hydrogel by introducing 1%aldehyde hyaluronic acid(AHA)and 0.375%N-carboxymethyl chitosan(CMC),two polysaccharides with strong water absorption and water retention capacity,into classic gelatin(GEL,5%)–alginate(ALG,1%)ink.This GEL–ALG/CMC/AHA bioink possesses weak temperature dependence due to the Schiff base linkage of CMC/AHA and electrostatic interaction of CMC/ALG.We fabricated integrated constructs through traditional printing at room temperature and in vivo simulation printing at 37C.The printed cell-laden constructs can maintain subaqueous fidelity for 30 days after being reinforced by 3%calcium chloride for only 20 s.Flow cytometry results showed that the cell viability was 91.3861.55%on day 29,and the cells in the proliferation plateau at this time still maintained their dynamic renewal with a DNA replication rate of 6.0661.24%.This work provides a convenient and practical bioink option for 3D bioprinting in precise soft tissue repair. 展开更多
关键词 bioink BIOPRINTING subaqueous fidelity cell viability
原文传递
Roles of constitutively secreted extracellular chaperones in neuronal cell repair and regeneration
11
作者 Sandeep Satapathy Mark R.Wilson 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第4期769-772,共4页
Protein quality control involves many processes that jointly act to regulate the expression, localization, turnover, and degradation of proteins, and has been highlighted in recent studies as critical to the different... Protein quality control involves many processes that jointly act to regulate the expression, localization, turnover, and degradation of proteins, and has been highlighted in recent studies as critical to the differentiation of stem cells during regeneration. The roles of constitutively secreted extracellular chaperones in neuronal injury and disease are poorly understood. Extracellular chaperones are multifunctional proteins expressed by many cell types, including those of the nervous system, known to facilitate protein quality control processes. These molecules exert pleiotropic effects and have been implicated as playing important protective roles in a variety of stress conditions, including tissue damage, infections, and local tissue inflammation. This article aims to provide a critical review of what is currently known about the functions of extracellular chaperones in neuronal repair and regeneration and highlight future directions for this important research area. We review what is known of four constitutively secreted extracellular chaperones directly implicated in processes of neuronal damage and repair, including transthyretin, clusterin, α2-macroglobulin, and neuroserpin, and propose that investigation into the effects of these and other extracellular chaperones on neuronal repair and regeneration has the potential to yield valuable new therapies. 展开更多
关键词 cell viability CLUSTERIN extracellular chaperones inflammation NEUROSERPIN protein misfolding TRANSTHYRETIN α2-macroglobulin
下载PDF
Ponatinib and gossypol act in synergy to suppress colorectal cancer cells by modulating apoptosis/autophagy crosstalk and inhibiting the FGF19/FGFR4 axis
12
作者 Naglaa M.El-Lakkany Hadeel H.Elkattan Alaa E.Elsisi 《Asian Pacific Journal of Tropical Biomedicine》 SCIE CAS 2023年第3期131-138,共8页
Objective:To evaluate the efficacy of ponatinib plus gossypol against colorectal cancer HCT-116 and Caco-2 cells.Methods:Cells were treated with ponatinib and/or gossypol at increasing concentrations to evaluate syner... Objective:To evaluate the efficacy of ponatinib plus gossypol against colorectal cancer HCT-116 and Caco-2 cells.Methods:Cells were treated with ponatinib and/or gossypol at increasing concentrations to evaluate synergistic drug interactions by combination index.Cell viability,FGF19/FGFR4,and apoptotic and autophagic cell death were studied.Results:Ponatinib(1.25-40μM)and gossypol(2.5-80μM)monotherapy inhibited HCT-116 and Caco-2 cell viability in a doseand time-dependent manner.The combination of ponatinib and gossypol at a ratio of 1 to 2 significantly decreased cell viability(P<0.05),with a>2-and>4-fold reduction in IC50,respectively,after 24 h and 48 h,as compared to the IC50 of ponatinib.Lower combined concentrations showed greater synergism(combination index<1)with a higher ponatinib dose reduction index.Moreover,ponatinib plus gossypol induced morphological changes in HCT-116and Caco-2 cells,increased beclin-1 and caspase-3,and decreased FGF19,FGFR4,Bcl-2 and p-Akt as compared to treatment with drugs alone.Conclusions:Gossypol enhances ponatinib's anticancer effects against colorectal cancer cells through antiproliferative,apoptotic,and autophagic mechanisms.This may open the way for the future use of ponatinib at lower doses with gossypol as a potentially safer targeted strategy for colorectal cancer treatment. 展开更多
关键词 AUTOPHAGY APOPTOSIS cell viability FGF19/FGFR4 GOSSYPOL PONATINIB HCT-116 CACO-2 Colorectal cancer
下载PDF
Efficacy of Bee Products(Anzer Honey,Pollen and Propolis)in Detection and Healing of Damage Induced by Antidiabetic Drug Vildagliptin/Metformin Hydrochloride in Healthy Human Pancreatic Cells:Cytotoxic,Genotoxic and Biochemical Studies
13
作者 ÖzlemÖzdemir ZinetÇöl Ömer Ertürk 《Current Medical Science》 SCIE CAS 2023年第6期1173-1182,共10页
Background and Objective Although drugs are powerful therapeutic agents,they have a range of side effects.These side effects are sometimes cellular and not clinically noticeable.Vildagliptin/metformin hydrochloride is... Background and Objective Although drugs are powerful therapeutic agents,they have a range of side effects.These side effects are sometimes cellular and not clinically noticeable.Vildagliptin/metformin hydrochloride is one of the most widely used oral antidiabetic drugs with two active ingredients.In this study,we investigated its harmful effects on the metabolic activation system in healthy human pancreatic cells“hTERT-HPNE”,and we aimed to improve these harmful effects by natural products.To benefit from the healing effect,we used the unique natural products produced by the bees of the Anzer Plateau in the Eastern Black Sea Region of Turkey.Methods Cytotoxic and genotoxic effects of the drug were investigated by different tests,such as MTT,flow cytometry-apoptosis and comet assays.Anzer honey,pollen and propolis were analyzed by gas chromatography/mass spectrometry(G/C-MS).A total of 19 compounds were detected,constituting 99.9%of the samples.Results The decrease in cell viability at all drug concentrations was statistically significant compared to the negative control(P<0.05).A statistically significant decrease was detected in the apoptosis caused by vildagliptin/metformin hydrochloride with the supplementation of Anzer honey,pollen and propolis in hTERT-HPNE cells(P<0.05).Conclusion This study can contribute to other studies testing the healing properties of natural products against the side effects of oral antidiabetics in human cells.In particular,Anzer honey,pollen and propolis can be used as additional foods to maintain cell viability and improve heal damage and can be evaluated against side effects in other drug studies. 展开更多
关键词 cell viability hTERT-HPNE Anzer bee products drug side effect diabetes mellitus
下载PDF
Assessment of Benchmark Dose in BEAS-2B Cells by Evaluating the Cell Relative Viability with Particulates in Motorcycle Exhaust via the Air-liquid Interface Exposure 被引量:2
14
作者 YU Tao ZHANG Xue Yan +7 位作者 LI Shu Fei ZHOU Yu Mei LI Bin WANG Zhong Xu DAI Yu Fei ADAMSON Sherleen Xue-Fu ZHENG Yu Xin BIN Ping 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2021年第4期272-281,共10页
Objective This study aimed to use an air-liquid interface(ALI)exposure system to simulate the inhalation exposure of motorcycle exhaust particulates(MEPs)and then investigate the benchmark dose(BMD)of MEPs by evaluati... Objective This study aimed to use an air-liquid interface(ALI)exposure system to simulate the inhalation exposure of motorcycle exhaust particulates(MEPs)and then investigate the benchmark dose(BMD)of MEPs by evaluating cell relative viability(CRV)in lung epithelial BEAS-2B cells.Methods The MEPs dose was characterized by measuring the number concentration(NC),surface area concentration(SAC),and mass concentration(MC).BEAS-2B cells were exposed to MEPs at different concentrations via ALI and CRV was determined using Cell Counting Kit(CCK-8)assay.BMD software was applied to calculate BMD and the lower limit of benchmark dose(BMDL)according to Akaike Information Coefficient(AIC),with P-value based on Hill,Linear,Polynomial,and Power model.Results Our results reveal that BMD of NC and SAC were estimated by the best-fitting Hill model,while MC was estimated by Polynomial model.The BMDL for CRV following ALI exposure to MEPs were as follows:364.2#/cm^(3)for NC;0.662×10^(7)nm^(2)/cm^(3)for SAC;and 0.278μg/m^(3)for MC.Conclusion These results indicate that MEPs exposure via ALI system induces a dose-dependent decrease of CRV and provides the potential exposure threshold of MEPs in a lung cell model. 展开更多
关键词 Motorcycle exhaust particulates Air-liquid interface Bronchial epithelial cells cell relative viability Dose-dependent effect
下载PDF
Combination of olfactory ensheathing cells and human umbilical cord mesenchymal stem cell-derived exosomes promotes sciatic nerve regeneration 被引量:14
15
作者 Yang Zhang Wen-Tao Wang +2 位作者 Chun-Rong Gong Chao Li Mei Shi 《Neural Regeneration Research》 SCIE CAS CSCD 2020年第10期1903-1911,共9页
Olfactory ensheathing cells(OECs)are promising seed cells for nerve regeneration.However,their application is limited by the hypoxic environment usually present at the site of injury.Exosomes derived from human umbili... Olfactory ensheathing cells(OECs)are promising seed cells for nerve regeneration.However,their application is limited by the hypoxic environment usually present at the site of injury.Exosomes derived from human umbilical cord mesenchymal stem cells have the potential to regulate the pathological processes that occur in response to hypoxia.The ability of OECs to migrate is unknown,especially in hypoxic conditions,and the effect of OECs combined with exosomes on peripheral nerve repair is not clear.Better understanding of these issues will enable the potential of OECs for the treatment of nerve injury to be addressed.In this study,OECs were acquired from the olfactory bulb of Sprague Dawley rats.Human umbilical cord mesenchymal stem cell-derived exosomes(0–400μg/mL)were cultured with OECs for 12–48 hours.After culture with 400μg/mL exosomes for 24 hours,the viability and proliferation of OECs were significantly increased.We observed changes to OECs subjected to hypoxia for 24 hours and treatment with exosomes.Exosomes significantly promoted the survival and migration of OECs in hypoxic conditions,and effectively increased brain-derived neurotrophic factor gene expression,protein levels and secretion.Finally,using a 12 mm left sciatic nerve defect rat model,we confirmed that OECs and exosomes can synergistically promote motor and sensory function of the injured sciatic nerve.These findings show that application of OECs and exosomes can promote nerve regeneration and functional recovery.This study was approved by the Institutional Ethical Committee of the Air Force Medical University,China(approval No.IACUC-20181004)on October 7,2018;and collection and use of human umbilical cord specimens was approved by the Ethics Committee of the Linyi People’s Hospital,China(approval No.30054)on May 20,2019. 展开更多
关键词 brain-derived neurotrophic factor cell migration cell viability functional recovery HYPOXIA nerve regeneration sciatic functional index sciatic nerve injury
下载PDF
Developmental Characteristics and Cinnamic Acid Resistance of Root Border Cells in Cucumber and Figleaf Gourd Seedlings 被引量:12
16
作者 QIAO Yong-xu ZHANG Yong-ping +2 位作者 ZHANG Hong-xin TIAN Yong-qiang GAO Li-hong 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2013年第11期2065-2073,共9页
Root border cells (RBCs) originate from the root tip epidermis and surround the root apices. In this study, we evaluated the developmental characteristics and the roles of RBCs in protection of root apices of cucumb... Root border cells (RBCs) originate from the root tip epidermis and surround the root apices. In this study, we evaluated the developmental characteristics and the roles of RBCs in protection of root apices of cucumber and ifgleaf gourd seedlings from CA toxicity. The formation of RBCs and the emergence of the root tip occurred almost simultaneously in root apices of cucumber and ifgleaf gourd seedlings. CA ranging from 0 to 0.25 mol L-1 inhibited root elongation and decreased root cell viability in the root tip, moreover the inhibitory effects of CA were more signiifcant in the CA-sensitive cucumber than in the CA-tolerant ifgleaf gourd. Removal of RBCs from root tips led to more severe CA induced inhibition of root elongation and decline in root cell viability. Increasing CA levels and treatment time decreased the relative viability of attached and detached RBCs. CA also induced a thicker mucilage layer surrounding attached RBCs of both species. Additionally, a signiifcantly higher relative cell viability of attached RBCs and thicker mucilage layers were observed in ifgleaf gourd. These results suggest that RBCs play an important role in protecting root tips from CA toxicity. 展开更多
关键词 cinnamon acid AUTOTOXICITY root border cells cell viability
下载PDF
Lithium promotes proliferation and suppresses migration of Schwann cells 被引量:4
17
作者 Xiao-Kun Gu Xin-Rui Li +1 位作者 Mei-Ling Lu Hui Xu 《Neural Regeneration Research》 SCIE CAS CSCD 2020年第10期1955-1961,共7页
Schwann cell proliferation,migration and remyelination of regenerating axons contribute to regeneration after peripheral nervous system injury.Lithium promotes remyelination by Schwann cells and improves peripheral ne... Schwann cell proliferation,migration and remyelination of regenerating axons contribute to regeneration after peripheral nervous system injury.Lithium promotes remyelination by Schwann cells and improves peripheral nerve regeneration.However,whether lithium modulates other phenotypes of Schwann cells,especially their proliferation and migration remains elusive.In the current study,primary Schwann cells from rat sciatic nerve stumps were cultured and exposed to 0,5,10,15,or 30 mM lithium chloride(LiCl)for 24 hours.The effects of LiCl on Schwann cell proliferation and migration were examined using the Cell Counting Kit-8,5-ethynyl-2′-deoxyuridine,Transwell and wound healing assays.Cell Counting Kit-8 and 5-ethynyl-2′-deoxyuridine assays showed that 5,10,15,and 30 mM LiCl significantly increased the viability and proliferation rate of Schwann cells.Transwell-based migration assays and wound healing assays showed that 10,15,and 30 mM LiCl suppressed the migratory ability of Schwann cells.Furthermore,the effects of LiCl on the proliferation and migration phenotypes of Schwann cells were mostly dose-dependent.These data indicate that lithium treatment significantly promotes the proliferation and inhibits the migratory ability of Schwann cells.This conclusion will inform strategies to promote the repair and regeneration of peripheral nerves.All of the animal experiments in this study were ethically approved by the Administration Committee of Experimental Animal Center of Nantong University,China(approval No.20170320-017)on March 2,2017. 展开更多
关键词 5-ethynyl-2′-deoxyuridine cell Counting Kit-8 cell viability LITHIUM MIGRATION peripheral nerve PROLIFERATION regeneration Schwann cell wound healing assay
下载PDF
Autophagy occurs within an hour of adenosine triphosphate treatment after nerve cell damage:the neuroprotective effects of adenosine triphosphate against apoptosis 被引量:3
18
作者 Na Lu Baoying Wang +3 位作者 Xiaohui Deng Honggang Zhao Yong Wang Dongliang Li 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第17期1599-1605,共7页
After hypoxia, ischemia, or inflammatory injuries to the central nervous system, the damaged cells release a large amount of adenosine triphosphate, which may cause secondary neuronal death. Autophagy is a form of cel... After hypoxia, ischemia, or inflammatory injuries to the central nervous system, the damaged cells release a large amount of adenosine triphosphate, which may cause secondary neuronal death. Autophagy is a form of cell death that also has neuroprotective effects. Cell Counting Kit assay, monodansylcadaverine staining, flow cytometry, western blotting, and real-time PCR were used to determine the effects of exogenous adenosine triphosphate treatment at different concentrations (2, 4, 6, 8, 10 mmol/L) over time (1, 2, 3, and 6 hours) on the apoptosis and autophagy of SH-SY5Y cells. High concentrations of extracellular adenosine triphosphate induced autophagy and apoptosis of SH-SYSY cells. The enhanced autophagy first appeared, and peaked at 1 hour after treatment with adenosine triphosphate. Cell apoptosis peaked at 3 hours, and persisted through 6 hours. With prolonged exposure to the adenosine triphosphate treatment, the fraction of apoptotic cells increased. These data suggest that the SH-SY5Y neural cells initiated autophagy against apoptosis within an hour of adenosine triphosphate treatment to protect themselves against injury. 展开更多
关键词 nerve regeneration neurons adenosine triphosphate SH-SY5Y cells AUTOPHAGY APOPTOSIS cell culture monodansylcadaverine flow cytometry cell viability Bcl-2 Bax Beclin 1 neuronal damage NSFC grant neural regeneration
下载PDF
Effects of different concentrations of tetramethylpyrazine,an active constituent of Chinese herb, on human corneal epithelial cell damaged by hydrogen peroxide 被引量:2
19
作者 Na Li Xin-Guo Deng +2 位作者 Shi-Hua Zhang Mei-Feng He Dong-Qing Zhao 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2014年第6期947-951,共5页
AIM: To discuss the effects of different concentrations of tetramethylpyrazine(TMP), an active constituent of Chinese herb, on damaged Shandong human corneal epithelial cell(SDHCEC) induced by hydrogen peroxide.METHOD... AIM: To discuss the effects of different concentrations of tetramethylpyrazine(TMP), an active constituent of Chinese herb, on damaged Shandong human corneal epithelial cell(SDHCEC) induced by hydrogen peroxide.METHODS: We detected the combined effects of TMP with concentrations ranging from 4 mg/m L to 0.03 mg/m L and 800 μM hydrogen peroxide on SDHCEC. The methyl thiazolyl tetrazolium(MTT) assay was processed at 3, 6and 12 h separately while the detection of cell apoptosis at 6h only by flow cytometry.RESULTS: The viability of SDHCEC with 0.5 mg/m L,0.25 mg/m L, 0.125 mg/m L and 0.06 mg/m L TMP joint with800 μM hydrogen peroxide at 3h and 6h was significantly higher than that with 800 μM hydrogen peroxide only, P 【0.05. However, except 0.25 mg/m L, TMP with other concentrations joint with 800 μM hydrogen peroxide at12 h could not significantly inhibit decreased SDHCEC viability induced by 800 μM hydrogen peroxide. At 12 h,TMP of 0.5 mg/m L, 0.25 mg/m L, 0.125 mg/m L and 0.06 mg/m L could significantly inhibit SDHCEC early apoptosis induced by 800 μM hydrogen peroxide, most remarkable at 0.25 mg/m L TMP, P 【0.05.CONCLUSION: Our results suggested that hydrogen peroxide can induce apoptosis related damage to SDHCEC. TMP can protect SDHCEC from the damage,and the protective effects may be associated with its anti-apoptosis mechanism. 展开更多
关键词 human corneal epithelial cell cell viability APOPTOSIS hydrogen peroxide
下载PDF
Effects of Cryoprotective Agents on the Bovine Articular Chondrocyte Viability 被引量:1
20
作者 X.Xu Z.F.Cui 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2002年第2期109-112,共4页
Cryopreservation is the process of choice for long term preservation of cells and tissues. In this study, the effects of cryoprotective agents, dimethyl sulfoxide(DMSO), glycerol and 1,2 propanediol on the bovine art... Cryopreservation is the process of choice for long term preservation of cells and tissues. In this study, the effects of cryoprotective agents, dimethyl sulfoxide(DMSO), glycerol and 1,2 propanediol on the bovine articular chondrocyte viability were examined experimentally. The CPA was added at the concentrations of 0 6, 0 9, 1 2 and 1 5 mol/L and at 4 ℃ and 37 ℃ and removed at 37 ℃ in one step. CPA stepwise addition and removal at 0 6 and 1 2 mol/L and at 37 ℃ was also tested as an alternative protocol. Cell volume excursion during DMSO addition and removal was estimated and correlated well with cell survival rates. Solution makeup affects cell survival rate and a stepwise protocol can improve the cell survival rates significantly. 展开更多
关键词 Cryoprotective agent CHONDROCYTE cell viability CARTILAGE
下载PDF
上一页 1 2 4 下一页 到第
使用帮助 返回顶部