Mito-Tracker Green (线粒体绿色荧光探针)(C1048)

Mito-Tracker Green (线粒体绿色荧光探针)

产品编号: C1048

产品包装:50μg
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50μg

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316.00 10

价格: ¥ 316.00

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产品编号 产品名称 产品包装 产品价格
C1048 Mito-Tracker Green (线粒体绿色荧光探针) 50μg 316.00元

Mito-Tracker Green,也称MitoTracker Green,是一种线粒体(mitochondria)绿色荧光探针,可以用于活细胞线粒体特异性荧光染色。
Mito-Tracker Green为采用Molecular Probes公司的carbocyanine进行了荧光标记的一种Mito-Tracker, 也称Benzoxazolium, 2-[3-[5,6-dichloro-1,3-bis[[4-(chloromethyl)phenyl]methyl]-1,3-dihydro-2H-benzimidazol-2-ylidene]-1-propenyl]-3-methyl-, chloride。分子式为C34H28Cl5N3O,分子量为671.88,CAS number为201860-17-5,可以用作线粒体特异性的荧光探针。和Rhodamine 123或JC-1相比,Mito-Tracker Green对于线粒体的染色不依赖于线粒体膜电位。
Mito-Tracker Green只可以用于对活细胞的染色,细胞经过固定后会导致荧光会消失。Mito-Tracker Green对活细胞的染色效果参考图1。

Mito-Tracker Green (线粒体绿色荧光探针)(C1048)

图1.Mito-Tracker Green(线粒体绿色荧光探针)对于NRK-52E细胞(大鼠肾小管上皮细胞)的染色效果。Mito-Tracker Green染色的NRK-52E细胞其线粒体呈现绿色荧光(图B),Lyso-Tracker Red (C1046)染色的NRK-52E细胞其溶酶体呈现红色荧光(图C),绿色荧光、红色荧光及细胞核蓝色荧光的叠加(merge)效果见图D。其中细胞核使用Hoechst 33342 (C1027)染色。本图仅作参考,实际检测效果会因实验条件、检测仪器等的不同而存在差异。
Mito-Tracker Green最大激发光波长为490nm,最大发射波长为516nm,呈绿色荧光,Mito-Tracker Green的结构式以及激发光谱和发射光谱参考图2。

Mito-Tracker Green (线粒体绿色荧光探针)(C1048)

图2.Mito-Tracker Green的结构式(左)以及激发光谱和发射光谱(右)。

按最终工作浓度为20-200nM计算,可以配制约370-3700ml Mito-Tracker Green工作液。
包装清单:

产品编号 产品名称 包装
C1048 Mito-Tracker Green 50μg
说明书 1份

保存条件:
-20℃避光保存,半年有效。
注意事项:
Mito-Tracker Green可以用于活细胞的线粒体荧光标记,但不适合用于固定细胞的标记。
对于微量的液体,每次使用前先离心数秒钟,使液体充分沉降到管底。
荧光染料均存在淬灭问题,请尽量注意避光,以减缓荧光淬灭。
需自备盖玻片和载玻片(可以向碧云天订购)。
本产品仅限于专业人员的科学研究用,不得用于临床诊断或治疗,不得用于食品或药品,不得存放于普通住宅内。
为了您的安全和健康,请穿实验服并戴一次性手套操作。

使用说明:
1. Mito-Tracker Green储存液的配制:
用无水DMSO(anhydrous dimethylsulfoxide)配制Mito-Tracker Green至终浓度为1mM。配制后可以-20℃或更低温度避光保存。
2. Mito-Tracker Green工作液的配制:
a. 取少量1mM Mito-Tracker Green储存液按照1:5000-1:50000的比例加入到细胞培养液或适当的溶液(例如含钙镁离子的HBSS)中,使最终浓度为20-200nM。例如取1μl Mito-Tracker Green加入到50ml或5ml细胞培养液或适当的溶液(例如含钙镁离子的HBSS)中。混匀后即为Mito-TrackerGreen工作液。 HBSS with Ca2+ & Mg2+ (C0219)可以向碧云天订购。
b. Mito-Tracker Green工作液使用前需37℃预温育。
注:工作液中Mito-Tracker Green的浓度可以根据实际情况进行适当调整。为降低背景,在染色效果可以接受的范围内,建议尽量使用较低浓度的Mito-Tracker Green。
3. 线粒体的荧光标记:
a. 去除细胞培养液,加入步骤2配制好的并37℃预温育的Mito-Tracker Green染色工作液,与细胞37℃共孵育15-45分钟。
b. 去除Mito-Tracker Green染色工作液,加入37℃预温育的新鲜细胞培养液。
c. 随后通常用荧光显微镜或激光共聚焦显微镜进行观察。此时可观察到线粒体呈明亮的强荧光染色。如果染色效果欠佳,可以提高Mito-Tracker Green染色工作液中Mito-Tracker Green的浓度或在推荐的时间范围内适当延长染色时间。

Mito-Tracker Green (线粒体绿色荧光探针)(C1048)

相关产品请点击如下按钮:
荧光染色
细胞器荧光探针

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Enhanced highly toxic reactive oxygen species levels from iron oxide core-shell mesoporous silica nanocarrier-mediated Fenton reactions for cancer therapy.
J Mater Chem B. 2018 Oct 7;6(37):5876-5887. (IF 5.344)

71. Guo C,Ma R,Liu X,Xia Y,Niu P,Ma J,Zhou X,Li Y,Sun Z
Silica nanoparticles induced endothelial apoptosis via endoplasmic reticulum stress-mitochondrial apoptotic signaling pathway.
Chemosphere . 2018 Nov;210:183-192. (IF 5.778)

72. Xie X,Wang J,Yan Y,Zhang X,Liu C,Yang J,Hua J
A new mitochondria-targeted ratiometric fluorescent probe based on diketopyrrolopyrrole for imaging endogenous HOCl in living cells.
Analyst . 2018 Nov 19;143(23):5736-5743. (IF 3.978)

73. Liu B,Jin J,Zhang Z,Zuo L,Jiang M,Xie C
Shikonin exerts antitumor activity by causing mitochondrial dysfunction in hepatocellular carcinoma through PKM2-AMPK-PGC1α signaling pathway.
Biochem Cell Biol . 2018 Nov 26. (IF 2.46)

74. Liu SY,Song JY,Fan B,Wang Y,Pan YR,Che L,Sun YJ,Li GY
Resveratrol protects photoreceptors by blocking caspase- and PARP-dependent cell death pathways.
FREE RADICAL BIO MED . 2018 Dec;129:569-581. (IF 6.17)

75. Hasnat M,Yuan Z,Naveed M,Khan A,Raza F,Xu D,Ullah A,Sun L,Zhang L,Jiang Z
Drp1-associated mitochondrial dysfunction and mitochondrial autophagy: a novel mechanism in triptolide-induced hepatotoxicity.
Cell Biol Toxicol . 2018 Dec 13. (IF 6.284)

76. Wu H,You C,Jiao J,Chen F,Sun B,Zhu X
A novel near-infrared triggered dual-targeted nanoplatform for mitochondrial combined photothermal-chemotherapy of cancer in vitro.
Nanotechnology . 2019 Jan 18;30(3):035601. (IF 3.551)

77. Li Z,Li Q,Lv W,Jiang L,Geng C,Yao X,Shi X,Liu Y,Cao J
The interaction of Atg4B and Bcl-2 plays an important role in Cd-induced crosstalk between apoptosis and autophagy through disassociation of Bcl-2-Beclin1 in A549 cells.
FREE RADICAL BIO MED. 2019 Jan;130:576-591. (IF 6.17)

78. Yao X,Zhang J,Jing X,Ye Y,Guo J,Sun K,Guo F
Fibroblast growth factor 18 exerts anti-osteoarthritic effects through PI3K-AKT signaling and mitochondrial fusion and fission.
Pharmacol Res. 2019 Jan;139:314-324. (IF 5.893)

79. Mai CT,Wu MM,Wang CL,Su ZR,Cheng YY,Zhang XJ
Palmatine attenuated dextran sulfate sodium (DSS)-induced colitis via promoting mitophagy-mediated NLRP3 inflammasome inactivation.
Mol Immunol. 2019 Jan;105:76-85. (IF 3.641)

80. Lei P,Tian S,Teng C,Huang L,Liu X,Wang J,Zhang Y,Li B,Shan Y
Sulforaphane Improves Lipid Metabolism by Enhancing Mitochondrial Function and Biogenesis In Vivo and In Vitro.
Mol Nutr Food Res . 2019 Feb;63(4):e1800795. (IF 5.309)

81. Peng K,Xiao J,Yang L,Ye F,Cao J,Sai Y
Mutual Antagonism of PINK1/Parkin and PGC-1α Contributes to Maintenance of Mitochondrial Homeostasis in Rotenone-Induced Neurotoxicity.
Neurotox Res. 2019 Feb;35(2):331-343. (IF 2.992)

82. Cai J,Yang J,Liu Q,Gong Y,Zhang Y,Zhang Z
Selenium deficiency inhibits myocardial development and differentiation by targeting the mir-215-5p/CTCF axis in chicken.
Metallomics. 2019 Feb 20;11(2):415-428. (IF 3.796)

83. Yao X,Jing X,Guo J,Sun K,Deng Y,Zhang Y,Guo F,Ye Y
Icariin Protects Bone Marrow Mesenchymal Stem Cells Against Iron Overload Induced Dysfunction Through Mitochondrial Fusion and Fission, PI3K/AKT/mTOR and MAPK Pathways.
Front Pharmacol. 2019 Feb 28;10:163. (IF 4.225)

84. Zhang C,Ma C,Zhang L,Zhang L,Zhang F,Ma M,Zheng X,Mao M,Shen T,Zhu D
MiR-449a-5p mediates mitochondrial dysfunction and phenotypic transition by targeting Myc in pulmonary arterial smooth muscle cells.
J MOL MED. 2019 Mar;97(3):409-422. (IF 4.427)

85. Huang L,Chen Q,Yu L,Bai D
Pyropheophorbide-α methyl ester-mediated photodynamic therapy induces apoptosis and inhibits LPS-induced inflammation in RAW264.7 macrophages.
PHOTODIAGN PHOTODYN. 2019 Mar;25:148-156. (IF 2.894)

86. Xu D,Wu L,Jiang X,Yang L,Cheng J,Chen H,Hua R,Geng G,Yang L,Li Q
SIRT2 Inhibition Results in Meiotic Arrest, Mitochondrial Dysfunction, and Disturbance of Redox Homeostasis during Bovine Oocyte Maturation.
Int J Mol Sci. 2019 Mar 18;20(6). pii: E1365. (IF 4.556)

87. Liu J,Zhang X,Chen K,Cheng Y,Liu S,Xia M,Chen Y,Zhu H,Li Z,Cao X
CCR7 Chemokine Receptor-Inducible lnc-Dpf3 Restrains Dendritic Cell Migration by Inhibiting HIF-1α-Mediated Glycolysis.
Immunity. 2019 Mar 19;50(3):600-615.e15. (IF 22.553)

88. Zhang LS,Shen SN,Gao YL,Shi SY,Zhou CX,Mo JX,Xu YK,Lin LG,Gan LS
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Food Funct. 2019 Mar 20;10(3):1288-1294. (IF 4.171)

89. Lu Z,Zhang C,Han C,An Q,Cheng Y,Chen Y,Meng R,Zhang Y,Su J
Plasticizer Bis(2-ethylhexyl) Phthalate Causes Meiosis Defects and Decreases Fertilization Ability of Mouse Oocytes in Vivo.
J AGR FOOD CHEM. 2019 Mar 27;67(12):3459-3468. (IF 4.192)

90. Zhong Y,Zeng L,Deng J,Duan Y,Li F
β-hydroxy-β-methylbutyrate (HMB) improves mitochondrial function in myocytes through pathways involving PPARβ/δ and CDK4.
Nutrition. 2019 Apr;60:217-226. (IF 3.639)

91. Liu M,Zheng M,Cai D,Xie J,Jin Z,Liu H,Liu J
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Food Funct. 2019 Apr 17;10(4):2221-2233. (IF 4.171)

92. Zhou C,Zhao WX,You FT,Geng ZX,Peng HS
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ACS Sens. 2019 Apr 26;4(4):984-991.

93. Qi R,Wang J,Wang Q,Qiu X,Yang F,Liu Z,Huang J
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BBA-MOL CELL BIOL L. 2019 May;1864(5):744-755. (IF 4.519)

94. Sun L,Chen Y,Luo H,Xu M,Meng G,Zhang W
Ca2+/calmodulin-dependent protein kinase II regulation by inhibitor 1 of protein phosphatase 1 alleviates necroptosis in high glucose-induced cardiomyocytes injury.
Biochem Pharmacol. 2019 May;163:194-205. (IF 4.96)

95. Yu X,Hu L,He H,Zhang F,Wang M,Wei W,Xia Z
Y-shaped DNA-Mediated hybrid nanoflowers as efficient gene carriers for fluorescence imaging of tumor-related mRNA in living cells.
Anal Chim Acta. 2019 May 30;1057:114-122. (IF 5.977)

96. Sun Y, Niu Y, Huang H, He B, Ma L, Tu Y, Tran VT, Zeng B, Hu Z.
Mevalonate Diphosphate Decarboxylase MVD/Erg19 Is Required for Ergosterol Biosynthesis, Growth, Sporulation and Stress Tolerance in Aspergillus oryzae.
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97. Zhang L,Ma C,Wang X,He S,Li Q,Zhou Y,Liu Y,Zhang M,Yu X,Zhao X,Li F,Zhu DL
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J Cell Physiol . 2019 Jun;234(6):9255-9263. (IF 5.546)

98. Chen Y,Xiong S,Zhao F,Lu X,Wu B,Yang B
Effect of magnesium on reducing the UV-induced oxidative damage in marrow mesenchymal stem cells.
J Biomed Mater Res A. 2019 Jun;107(6):1253-1263. (IF 3.525)

99. Chu Q,Zhang S,Yu L,Li Y,Liu Y,Ye X,Zheng X
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Int J Biol Macromol. 2019 Jun 1;130:892-902. (IF 5.162)

100. Guo T,Liu T,Sun Y,Liu X,Xiong R,Li H,Li Z,Zhang Z,Tian Z,Tian Y
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Cell Death Dis. 2019 Jun 11;10(6):457. (IF 6.304)

101. Xu C,Qiao L,Ma L,Guo Y,Dou X,Yan S,Zhang B,Roman A
Biogenic selenium nanoparticles synthesized by Lactobacillus casei ATCC 393 alleviate intestinal epithelial barrier dysfunction caused by oxidative stress via Nrf2 signaling-mediated mitochondrial pat
INT J NANOMED. 2019 Jun 18;14:4491-4502. (IF 5.115)

102. Yu J,Zheng J,Lu J,Sun Z,Wang Z,Zhang J
AdipoRon Protects Against Secondary Brain Injury After Intracerebral Hemorrhage via Alleviating Mitochondrial Dysfunction: Possible Involvement of AdipoR1-AMPK-PGC1α Pathway.
Neurochem Res. 2019 Jul;44(7):1678-1689. (IF 3.038)

103. Yuan Y,Chen Y,Peng T,Li L,Zhu W,Liu F,Liu S,An X,Luo R,Cheng J,Liu J,Lu Y
Mitochondrial ROS-induced lysosomal dysfunction impairs autophagic flux and contributes to M1 macrophage polarization in a diabetic condition.
CLIN SCI. 2019 Aug 14;133(15):1759-1777. (IF 5.223)

104. Shan C,Gong YL,Zhuang QQ,Hou YF,Wang SM,Zhu Q,Huang GR,Tao B,Sun LH,Zhao HY,Li ST,Liu JM
Protective effects of β- nicotinamide adenine dinucleotide against motor deficits and dopaminergic neuronal damage in a mouse model of Parkinson’s disease.
PROG NEURO-PSYCHOPH. 2019 Aug 30;94:109670. (IF 4.361)

105. Chen J,Li D,Huo B,Zhang F,Zhao X,Yuan G,Chen D,Song M,Xue J
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MOL PHARMACOL. 2019 Aug 5;16(8):3703-3710. (IF 3.664)

106. Xu D,Jiang X,He H,Liu D,Yang L,Chen H,Wu L,Geng G,Li Q
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Life Sci. 2019 Sep 1;232:116639. (IF 3.647)

107. Cheng Y,Zhang J,Wu T,Jiang X,Jia H,Qing S,An Q,Zhang Y,Su J
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108. Hu Q, Zhao F, Fan M, He C, Yang X, Huang Z, Fu Z.
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109. Jingjing An,Yu Zhou,Mengjun Zhang,Yunzhen Xie,Sujie Ke,Libin Liu,Xiaodong Pan,Zhou Chen
Exenatide Alleviates Mitochondrial Dysfunction and Cognitive Impairment in the 5×FAD Mouse Model of Alzheimer’s Disease
Behav Brain Res. 2019 Sep 16;370:111932.;doi: 10.1016/j.bbr.2019.111932. (IF 2.977)

110. Liu Z,Ren F,Zhang H,Yuan Q,Jiang Z,Liu H,Sun Q,Li Z
Boosting often overlooked long wavelength emissions of rare-earth nanoparticles for NIR-II fluorescence imaging of orthotopic glioblastoma.
Biomaterials. 2019 Oct;219:119364. (IF 10.317)

111. Liu H,Liu Z,Lu T,Zhang L,Cheng J,Fu X,Hou Y
Toxic effects of 1-(N-methyl-N-nitrosamino)-1-(3-pyridinyl)-4-butanal on the maturation and subsequent development of murine oocyte.
ECOTOX ENVIRON SAFE. 2019 Oct 15;181:370-380. (IF 4.872)

112. Ren KD,Liu WN,Tian J,Zhang YY,Peng JJ,Zhang D,Li NS,Yang J,Peng J,Luo XJ
Mitochondrial E3 ubiquitin ligase 1 promotes brain injury by disturbing mitochondrial dynamics in a rat model of ischemic stroke.
Eur J Pharmacol. 2019 Oct 15;861:172617. (IF 3.263)

113. Guan L,Che Z,Meng X,Yu Y,Li M,Yu Z,Shi H,Yang D,Yu M
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J Cell Mol Med. 2019 Nov;23(11):7830-7843. (IF 4.486)

114. Liu Y,Zhong Y,Tian W,Lan F,Kang J,Pang H,Hou H,Li D
An autophagy-dependent cell death of MDA-MB-231 cells triggered by a novel Rhein derivative 4F.
ANTI-CANCER DRUG. 2019 Nov;30(10):1038-1047. (IF 2.26)

115. Zhao M,Gao Y,Ye S,Ding J,Wang A,Li P,Shi H
A light-up near-infrared probe with aggregation-induced emission characteristics for highly sensitive detection of alkaline phosphatase.
Analyst. 2019 Nov 7;144(21):6262-6269. (IF 3.978)

116. Tianshu Wu,Xue Liang,Keyu He,Tingting Wei,Yan Wang,Lingyue Zou,Changcun Bai,Na Liu,Ting Zhang,Yuying Xue,Meng Tang
The Role of NLRP3 Inflammasome Activation in the Neuroinflammatory Responses to Ag 2 Se Quantum Dots in Microglia
Nanoscale. 2019 Nov 21;11(43):20820-20836.;doi: 10.1039/c9nr06778g. (IF 6.895)

117. Ren L,Han F,Xuan L,Lv Y,Gong L,Yan Y,Wan Z,Guo L,Liu H,Xu B,Sun Y,Yang S,Liu L
Clusterin ameliorates endothelial dysfunction in diabetes by suppressing mitochondrial fragmentation.
FREE RADICAL BIO MED. 2019 Dec;145:357-373. (IF 6.17)

118. Chen P,Zhong J,Ye J,He Y,Liang Z,Cheng Y,Zheng J,Chen H,Chen C
miR-324-5p protects against oxidative stress-induced endothelial progenitor cell injury by targeting Mtfr1.
J Cell Physiol. 2019 Dec;234(12):22082-22092. (IF 5.546)

119. Fan JH, Fan GL, Yuan P, Deng FA, Liu LS, Zhou X, Yu XY, Cheng H, Li SY.
A Theranostic Nanoprobe for Hypoxia Imaging and Photodynamic Tumor Therapy.
Front Chem. 2019 Dec 20;7:868. (IF 3.693)

120. Dong C,Tu W,He M,Fu J,Kobayashi A,Konishi T,Shao C
Role of Endoplasmic Reticulum and Mitochondrion in Proton Microbeam Radiation-Induced Bystander Effect.
Radiat Res. 2020 Jan;193(1):63-72. (IF 2.657)

121. Xiaoyan Wang,Zhufeng Chen,Xuemei Fan,Wei Li,Jiaqi Qu,Chuan Dong,Zhixue Wang,Zhenwei Ji,Yang Li
Inhibition of DNM1L and mitochondrial fission attenuates inflammatory response in fibroblast-like synoviocytes of rheumatoid arthritis
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122. Sen Wei,Tianming Qiu,Xiaofeng Yao,Ningning Wang,Liping Jiang,Xue Jia,Ye Tao,Zhidong Wang,Pei Pei,Jingyuan Zhang,Yuhan Zhu,Guang Yang,Xiaofang Liu,Shuang Liu,Xiance Sun
Arsenic induces pancreatic dysfunction and ferroptosis via mitochondrial ROS-autophagy-lysosomal pathway
J Hazard Mater. 2020 Feb 15;384:121390.;doi: 10.1016/j.jhazmat.2019.121390. (IF 9.038)

123. Xue Tian,Hong Liao,Min Wang,Lingyan Feng,Wensheng Fu,Lianzhe Hu
Highly sensitive chemiluminescent sensing of intracellular Al 3+ based on the phosphatase mimetic activity of cerium oxide nanoparticles
Biosens Bioelectron. 2020 Mar 15;152:112027.;doi: 10.1016/j.bios.2020.112027. (IF 10.257)

124. Peng Chen,Xuejie Li,Ruonan Zhang,Shuiping Liu,Yu Xiang,Mingming Zhang,Xiaying Chen,Ting Pan,Lili Yan,Jiao Feng,Ting Duan,Da Wang,Bi Chen,Ting Jin,Wengang Wang,Liuxi Chen,Xingxing Huang,Wenzheng Zhang,Yitian Sun,Guohua Li,Lingpan Kong,Xiaohui Chen,Yongqiang Li,Zuyi Yang,Qin Zhang,Lvjia Zhuo,Xinbing Sui,Tian Xie
Combinative treatment of β-elemene and cetuximab is sensitive to KRAS mutant colorectal cancer cells by inducing ferroptosis and inhibiting epithelial-mesenchymal transformation
Theranostics. 2020 Apr 6;10(11):5107-5119.;doi: 10.7150/thno.44705. (IF 8.579)

125. Wei Xue,Xin Wang,Hong Tang,Fanfan Sun,Huaqing Zhu,Dake Huang,Liuyi Dong
Vitexin attenuates myocardial ischemia/reperfusion injury in rats by regulating mitochondrial dysfunction induced by mitochondrial dynamics imbalance
Biomed Pharmacother. 2020 Apr;124:109849.;doi: 10.1016/j.biopha.2020.109849. (IF 4.545)

126. Shengju Yang,Mengting Xu,Guoliang Meng,Yan Lu
SIRT3 deficiency delays diabetic skin wound healing via oxidative stress and necroptosis enhancement
J Cell Mol Med. 2020 Apr;24(8):4415-4427.;doi: 10.1111/jcmm.15100. (IF 4.486)

127. Jia H,Jia C,An Q,Cheng Y,Jiang X,Xu Y,Zhao R,Peng W,Zhang Y,Su J
Ochratoxin A exposure causes meiotic failure and oocyte deterioration in mice.
Theriogenology. 2020 May;148:236-248. (IF 2.094)

128. Xu-Shun Jiang,Xue-Mei Chen,Wei Hua,Jun-Ling He,Ting Liu,Xun-Jia Li,Jiang-Min Wan,Hua Gan,Xiao-Gang Du
PINK1/Parkin mediated mitophagy ameliorates palmitic acid-induced apoptosis through reducing mitochondrial ROS production in podocytes
BIOCHEM BIOPH RES CO. 2020 May 14;525(4):954-961.;doi: 10.1016/j.bbrc.2020.02.170. (IF 2.985)

129. Xilu Hu,Ting Huang,Hong Liao,Lianzhe Hu,Min Wang
The phosphatase-like activity of zirconium oxide nanoparticles and their application in near-infrared intracellular imaging
J Mater Chem B. 2020 May 27;8(20):4428-4433.;doi: 10.1039/d0tb00450b. (IF 5.344)

130. Jue Tu,Liqun Deng,Yun Ling,Keyan Zhu,Yueqin Cai,Dejun Wang,Zhaowei Cai
Transcriptome profiling reveals multiple pathways responsible for the beneficial metabolic effects of Smilax glabra flavonoids in mouse 3T3-L1 adipocytes
Biomed Pharmacother. 2020 May;125:110011.;doi: 10.1016/j.biopha.2020.110011. (IF 4.545)

131. Yujia Yuan,Lan Li,Lingling Zhu,Fei Liu,Xi Tang,Guangneng Liao,Jingping Liu,Jingqiu Cheng,Younan Chen,Yanrong Lu
Mesenchymal stem cells elicit macrophages into M2 phenotype via improving transcription factor EB-mediated autophagy to alleviate diabetic nephropathy
Stem Cells. 2020 May;38(5):639-652.;doi: 10.1002/stem.3144. (IF 6.022)

132. Na Chen,Xiaofeng Tang,Zhaoyang Ye,Shanshan Wang,Xianjin Xiao
Methylmercury disrupts autophagic flux by inhibiting autophagosome-lysosome fusion in mouse germ cells
ECOTOX ENVIRON SAFE. 2020 Jul 15;198:110667.;doi: 10.1016/j.ecoenv.2020.110667. (IF 4.872)

133. Yujing Zhang,Huanfeng Bian,Yu Ma,Yuanyuan Xiao,Fang Xiao
Cr(VI)-induced overactive mitophagy contributes to mitochondrial loss and cytotoxicity in L02 hepatocytes
Biochem J. 2020 Jul 31;477(14):2607-2619.;doi: 10.1042/BCJ20200262. (IF 4.097)

134. Xing-Hua Wang,Shen Yin,Xiang-Hong Ou,Shi-Ming Luo
Increase of mitochondria surrounding spindle causes mouse oocytes arrested at metaphase I stage
BIOCHEM BIOPH RES CO. 2020 Jul 5;527(4):1043-1049.;doi: 10.1016/j.bbrc.2020.05.037. (IF 2.985)

135. Fanchu Zeng,Huan Qin,Liming Liu,Haocai Chang,Qun Chen,Linghua Wu,Le Zhang,Zhujun Wu,Da Xing
Photoacoustic-immune therapy with a multi-purpose black phosphorus-based nanoparticle
Nano Res. 2020 Aug 29;1-13.;doi: 10.1007/s12274-020-3028-x. (IF 8.183)

136. Xuan Wang,Zhiguo Li,Zeyun Gao,Qiujuan Li,Liping Jiang,Chengyan Geng,Xiaofeng Yao,Xiaoxia Shi,Yong Liu,Jun Cao
Cadmium induces cell growth in A549 and HELF cells via autophagy-dependent glycolysis
Toxicol In Vitro. 2020 Aug;66:104834.;doi: 10.1016/j.tiv.2020.104834. (IF 2.959)

137. Dandan Luo,Meijie Zhang,Xiaohui Su,Luna Liu,Xinli Zhou,Xiujuan Zhang,Dongmei Zheng,Chunxiao Yu,Qingbo Guan
High fat diet impairs spermatogenesis by regulating glucose and lipid metabolism in Sertoli cells
Life Sci. 2020 Sep 15;257:118028.;doi: 10.1016/j.lfs.2020.118028. (IF 3.647)

138. Ranyue Ren,Jiachao Guo,Jia Shi,Yong Tian,Mengwei Li,Hao Kang
PKM2 regulates angiogenesis of VR-EPCs through modulating glycolysis, mitochondrial fission, and fusion
J Cell Physiol. 2020 Sep;235(9):6204-6217.;doi: 10.1002/jcp.29549. (IF 5.546)

139. Xiuge Gao,Xiangchun Ruan,Hui Ji,Lin Peng,Yawei Qiu,Dan Yang,Xinhao Song,Chunlei Ji,Dawei Guo,Shanxiang Jiang
Maduramicin triggers methuosis-like cell death in primary chicken myocardial cells
Toxicol Lett. 2020 Oct 15;333:105-114.;doi: 10.1016/j.toxlet.2020.07.025. (IF 3.569)

140. Yun Yang,Yang Zhang,Jufang Gao,Wenping Xu,Zhiping Xu,Zhong Li,Jiagao Cheng,Liming Tao
Pyrethrum extract induces oxidative DNA damage and AMPK/mTOR-mediated autophagy in SH-SY5Y cells
Sci Total Environ. 2020 Oct 20;740:139925.;doi: 10.1016/j.scitotenv.2020.139925. (IF 6.551)

141. Xiao-Ying Zhu,Wen Liu,Hai-Tao Liang,Ling Tang,Ping Zou,Yong You,Xiao-Jian Zhu
AICAR and Decitabine Enhance the Sensitivity of K562 Cells to Imatinib by Promoting Mitochondrial Activity
Curr Med Sci. 2020 Oct;40(5):871-878.;doi: 10.1007/s11596-020-2266-1. (IF 1.273)

142. Shichen Xu,Xian Cheng,Liying Wu,Jiangxia Zheng,Xiaowen Wang,Jing Wu,Huixin Yu,Jiandong Bao,Li Zhang
Capsaicin induces mitochondrial dysfunction and apoptosis in anaplastic thyroid carcinoma cells via TRPV1-mediated mitochondrial calcium overload
Cell Signal. 2020 Nov;75:109733.;doi: 10.1016/j.cellsig.2020.109733. (IF 3.968)

143. Qian Chai,Jiajing Miao,Meili Liu,Ziying Zhang,Ziang Meng,Weihua Wu
SGLT1 knockdown prevents glucose fluctuation-induced apoptosis of cardiomyocytes through attenuating oxidative stress and mitochondrial dysfunction
Biochem Cell Biol. 2020 Dec 1.;doi: 10.1139/bcb-2020-0491. (IF 2.46)

144. Shiyuan Huang,Xiaona Wang,Jiale Yu,Yu Tian,Chenkai Yang,Yang Chen,Hua Chen,Hongshan Ge
LonP1 regulates mitochondrial network remodeling through the PINK1/Parkin pathway during myoblast differentiation
AM J PHYSIOL-CELL PH. 2020 Dec 1;319(6):C1020-C1028.;doi: 10.1152/ajpcell.00589.2019. (IF 3.485)

145. Xiaoyu Zhang,Tianyu Zhai,Zhenyu Hei,Di Zhou,Longyang Jin,Chao Han,Jiandong Wang
Effects of Platycodin D on apoptosis, migration, invasion and cell cycle arrest of gallbladder cancer cells
Oncol Lett. 2020 Dec;20(6):311.;doi: 10.3892/ol.2020.12174. (IF 2.311)

146. Xingzhi Jing,Ting Du,Xiaoxia Yang,Weimin Zhang,Guodong Wang,Xiaoyang Liu,Tao Li,Zhensong Jiang
Desferoxamine protects against glucocorticoid-induced osteonecrosis of the femoral head via activating HIF-1α expression
J Cell Physiol. 2020 Dec;235(12):9864-9875.;doi: 10.1002/jcp.29799. (IF 5.546)

147. Ting Yu,Enze Zheng,Yanping Li,Yuqi Li,Jun Xia,Qiuying Ding,Zhengping Hou,Xiong Z Ruan,Lei Zhao,Yaxi Chen
Src-mediated Tyr353 phosphorylation of IP3R1 promotes its stability and causes apoptosis in palmitic acid-treated hepatocytes
Exp Cell Res. 2021 Feb 15;399(2):112438.;doi: 10.1016/j.yexcr.2020.112438. (IF 3.383)

148. Wei Chen,Yang Lu,Dongwen Hu,Jianling Mo,Jingdan Ni
Black mulberry (Morus nigra L.) polysaccharide ameliorates palmitate-induced lipotoxicity in hepatocytes by activating Nrf2 signaling pathway
Int J Biol Macromol. 2021 Mar 1;172:394-407.;doi: 10.1016/j.ijbiomac.2021.01.059. (IF 5.162)

149. Jiahua Zheng,Shaochai Wei,Tingting Xiao,Guanwu Li
LC3B/p62-mediated mitophagy protects A549 cells from resveratrol-induced apoptosis
Life Sci. 2021 Apr 15;271:119139.;doi: 10.1016/j.lfs.2021.119139. (IF 3.647)

150. Yifei Le,Haiping Shen,Zhen Yang,Dezhao Lu,Cui Wang
Comprehensive analysis of organophosphorus flame retardant-induced mitochondrial abnormalities: Potential role in lipid accumulation
Environ Pollut. 2021 Apr 1;274:116541.;doi: 10.1016/j.envpol.2021.116541. (IF 6.792)