细胞核蛋白抽提试剂盒 细胞浆蛋白提取试剂盒|Protein Extraction Kit

细胞核蛋白抽提试剂盒 细胞浆蛋白提取试剂盒|Protein Extraction Kit

产品说明书

FAQ

COA

已发表文献

产品描述

细胞核蛋白、细胞浆蛋白在细胞研究和蛋白质组学中具有重要意义,因此在体外研究中需要将其从细胞或组织中分离。本试剂盒提供了一种较为简单方便,高效的蛋白抽提方法,其原理是:通过细胞浆蛋白抽提试剂A和B,在低渗透压条件下,使细胞充分膨胀,然后破坏细胞膜,释放出细胞浆蛋白,然后通过离心得到细胞核沉淀。最后通过高盐的细胞核蛋白抽提试剂C抽提得到细胞核蛋白。

本试剂盒1次可对2×106个细胞和30-50 mg组织样品进行抽提,按照该使用量,20126JP50可抽提50个样品,20126JP60可抽提100个样品。

产品组分

组分编号

组分名称

产品编号/规格

20126JP50(50T)

20126JP60(100T)

20126-A

Cytoplasmic Extraction Reagent A 胞浆蛋白抽提试剂A

15 mL

30 mL

20126-B

Cytoplasmic Extraction Reagent B胞浆蛋白抽提试剂B

0.5 mL

1 mL

20126-C

Nuclear Extraction Reagent 胞核蛋白抽提试剂

2.5 mL

5 mL

运输和保存方法

冰袋运输。-20℃保存,1年有效。

注意事项

1)客户需自备PMSF

2)为了您的安全和健康,请穿实验服并戴一次性手套操作。

3)本产品仅作科研用途!

使用方法

将试剂盒各组分溶解后立即放置在冰上,混匀。取适量的胞浆蛋白抽提试剂A(以下统称:试剂A)和胞核蛋白抽提试剂(以下统称:试剂C)备用,在使用前数分钟内加入PMSF,使PMSF的最终浓度为1 mM。

1 细胞样品蛋白的抽提

1)细胞处理

对于贴壁细胞:PBS清洗细胞1次,EDTA溶液消化细胞或用细胞刮子刮下细胞,并用移液器吹打下细胞。离心收集细胞,尽量吸尽上清,留下细胞沉淀备用。

【注】:尽量避免用胰酶消化细胞,以免胰酶降解抽提的目的蛋白。

对于悬浮细胞:离心收集细胞,PBS清洗细胞1次,收集细胞,尽量吸尽上清,留细胞沉淀备用。

2) 每20 µL细胞沉淀加入200 µL含PMSF的试剂A。

【注】:对于2×106个Hela细胞,其细胞沉淀的体积大约为20 µL或40 mg。

3) 最高速剧烈涡旋5 s,完全悬浮分散细胞沉淀。

【注】:如果细胞沉淀没有完全悬浮并分散开,可以适当延长旋涡震荡的时间。

4) 冰浴10-15 min。

5) 加入胞浆蛋白抽提试剂B(以下统称:试剂B)10 µL。最高速剧烈涡旋5 s,冰浴1 min。

6) 最高速剧涡旋5 s,4℃ 12,000-16,000 g离心5 min。

7) 立即吸取上清至一预冷的塑料管中,上清即为抽提得到的细胞浆蛋白。可以立即使用,也可以冻存备用。

【注】:此步千万不要触及沉淀,可以在沉淀上方保留极小体积的上清,以免吸到沉淀。

8) 对于沉淀,完全吸尽残余上清,加入50 µL含PMSF的试剂C。

【注】:此步需完全吸尽上清,否则会带来细胞浆蛋白的污染。

9) 最高速剧烈涡旋15-30 s,把沉淀完全悬浮并分散开。然后放回冰浴中,每隔1-2 min再高速剧烈涡旋15-30 s,共30 min。10)4℃ 12,000-16,000 g离心10 min。

11)立即吸取上清至一预冷的塑料管中,即为抽提得到的细胞核蛋白。可以立即使用,也可以-70℃冻存备用。

2 组织样品的抽提

1)将组织切成非常细小的碎片。根据后续使用量按照20:1的比例混合试剂A和B,并加入PMSF至最终浓度为1 mM,混匀即可配制成组织匀浆液。按照每60 mg组织加入200 µL组织匀浆液的比例混合组织和组织匀浆液,并在玻璃匀浆器内充分匀浆。【注】:匀浆需在冰浴或4℃进行。

2)匀浆后将匀浆液转移至塑料离心管内,冰浴放置15 min。

3)4℃ 1,500 g离心5 min。把上清转移至一预冷的塑料管中,上清含部分细胞浆蛋白。【注】:吸上清时千万不要触及沉淀。

4)对于上述收集得到的沉淀,已经充分匀浆,但很多细胞仍没有破碎。接下来请参照【细胞样品蛋白抽提】的步骤2)开始操作,即把沉淀当做已经离心收集好的细胞沉淀操作,即可得到细胞浆蛋白和细胞核蛋白。抽提得到的细胞浆蛋白可以和步骤【组织样品抽提】中步骤3)抽提得到的细胞浆蛋白合并备用。

 

HB180913

Q:组织提取蛋白,组织量与提取试剂的比例如何

A:将组织切成非常细小的碎片。根据后续使用量按照20:1的比例混合试剂A和B,并加入PMSF至最终浓度为1 mM,混匀即可配制成组织匀浆液。按照每60 mg组织加入200 µL组织匀浆液的比例混合组织和组织匀浆液对于不超过60mg的组织样品,仅需加入100微升组织匀浆液,并在玻璃匀浆器内充分匀浆

接下来请参照【细胞样品蛋白抽提】的步骤2)开始操作,即把沉淀当做已经离心收集好的细胞沉淀操作。(特别说明:对于起始量为60mg的组织样品,后续直接按照步骤27操作即可;对于起始量不超过60mg的组织样品,后续步骤中的溶液的用量须减半使用)。

对于组织样品,如果每个样品的重量不超过60mg,本试剂盒可以抽提50个样品,如果每个样品为60mg,本试剂盒可以抽提25个样品。

 

[1] Li Z, Wu M, Liu S, et al. Apoptotic vesicles activate autophagy in recipient cells to induce angiogenesis and dental pulp regeneration [published online ahead of print, 2022 May 10]. Mol Ther. 2022;S1525-0016(22)00304-5. doi:10.1016/j.ymthe.2022.05.006(IF:11.454)
[2] Wei Y, Sun H, Zhang S, et al. Multi-walled carbon nanotubes inhibit potential detoxification of dioxin-mediated toxicity by blocking the nuclear translocation of aryl hydrocarbon receptor. J Hazard Mater. 2022;430:128458. doi:10.1016/j.jhazmat.2022.128458(IF:10.588)
[3] Zhao XB, Chen YP, Tan M, et al. Extracellular Matrix Stiffness Regulates DNA Methylation by PKCα-Dependent Nuclear Transport of DNMT3L. Adv Healthc Mater. 2021;10(16):e2100821. doi:10.1002/adhm.202100821(IF:9.933)
[4] Zhong W, Rao Z, Xu J, et al. Defective mitophagy in aged macrophages promotes mitochondrial DNA cytosolic leakage to activate STING signaling during liver sterile inflammation. Aging Cell. 2022;21(6):e13622. doi:10.1111/acel.13622(IF:9.304)
[5] Feng J, Dai W, Mao Y, et al. Simvastatin re-sensitizes hepatocellular carcinoma cells to sorafenib by inhibiting HIF-1α/PPAR-γ/PKM2-mediated glycolysis. J Exp Clin Cancer Res. 2020;39(1):24. Published 2020 Jan 30. doi:10.1186/s13046-020-1528-x(IF:7.068)
[6] Peng X, Guo H, Yuan J, et al. Extracellular vesicles released from hiPSC-derived MSCs attenuate chronic prostatitis/chronic pelvic pain syndrome in rats by immunoregulation. Stem Cell Res Ther. 2021;12(1):198. Published 2021 Mar 20. doi:10.1186/s13287-021-02269-x(IF:6.832)
[7] Weng J, Li S, Lin H, et al. PCDHGA9 represses epithelial-mesenchymal transition and metastatic potential in gastric cancer cells by reducing β-catenin transcriptional activity. Cell Death Dis. 2020;11(3):206. Published 2020 Mar 30. doi:10.1038/s41419-020-2398-z(IF:6.304)
[8] Sun Q, Yuan M, Wang H, et al. PKM2 Is the Target of a Multi-Herb-Combined Decoction During the Inhibition of Gastric Cancer Progression. Front Oncol. 2021;11:767116. Published 2021 Dec 2. doi:10.3389/fonc.2021.767116(IF:6.244)
[9] Sa R, Guo M, Liu D, Guan F. AhR Antagonist Promotes Differentiation of Papillary Thyroid Cancer via Regulating circSH2B3/miR-4640-5P/IGF2BP2 Axis. Front Pharmacol. 2021;12:795386. Published 2021 Dec 23. doi:10.3389/fphar.2021.795386(IF:5.811)
[10] Feng J, Wu L, Ji J, et al. PKM2 is the target of proanthocyanidin B2 during the inhibition of hepatocellular carcinoma. J Exp Clin Cancer Res. 2019;38(1):204. Published 2019 May 17. doi:10.1186/s13046-019-1194-z(IF:5.646)
[11] Weng J, Xiao J, Mi Y, et al. PCDHGA9 acts as a tumor suppressor to induce tumor cell apoptosis and autophagy and inhibit the EMT process in human gastric cancer. Cell Death Dis. 2018;9(2):27. Published 2018 Jan 18. doi:10.1038/s41419-017-0189-y(IF:5.638)
[12] Li Z, Jia Y, Han S, et al. Klf4 Alleviates Lipopolysaccharide-Induced Inflammation by Inducing Expression of MCP-1 Induced Protein 1 to Deubiquitinate TRAF6. Cell Physiol Biochem. 2018;47(6):2278-2290. doi:10.1159/000491538(IF:5.500)
[13] Yang N, Xiong Y, Wang Y, et al. ADAP Y571 Phosphorylation Is Required to Prime STAT3 for Activation in TLR4-Stimulated Macrophages. J Immunol. 2021;206(4):814-826. doi:10.4049/jimmunol.2000569(IF:5.422)
[14] Zhang X, Zhang B, Li L, Li X, Zhang J, Chen G. Fermented noni (Morinda citrifolia L.) fruit juice improved oxidative stress and insulin resistance under the synergistic effect of Nrf2/ARE pathway and gut flora in db/db mice and HepG2 cells [published online ahead of print, 2022 Jul 14]. Food Funct. 2022;10.1039/d2fo00595f. doi:10.1039/d2fo00595f(IF:5.396)
[15] Yu Q, Dai W, Ji J, et al. Sodium butyrate inhibits aerobic glycolysis of hepatocellular carcinoma cells via the c-myc/hexokinase 2 pathway. J Cell Mol Med. 2022;26(10):3031-3045. doi:10.1111/jcmm.17322(IF:5.310)
[16] Wang Y, Chen K, Cai Y, et al. Annexin A2 could enhance multidrug resistance by regulating NF-κB signaling pathway in pediatric neuroblastoma. J Exp Clin Cancer Res. 2017;36(1):111. Published 2017 Aug 16. doi:10.1186/s13046-017-0581-6(IF:5.189)
[17] Li T, Xiao G, Tan S, et al. HSF1 Attenuates LPS-Induced Acute Lung Injury in Mice by Suppressing Macrophage Infiltration. Oxid Med Cell Longev. 2020;2020:1936580. Published 2020 Dec 18. doi:10.1155/2020/1936580(IF:5.076)
[18] Yan YL, Huang ZN, Zhu Z, et al. Downregulation of TET1 Promotes Bladder Cancer Cell Proliferation and Invasion by Reducing DNA Hydroxymethylation of AJAP1. Front Oncol. 2020;10:667. Published 2020 May 21. doi:10.3389/fonc.2020.00667(IF:4.848)
[19] Li Z, Han S, Jia Y, et al. MCPIP1 regulates RORα expression to protect against liver injury induced by lipopolysaccharide via modulation of miR-155 [published online ahead of print, 2019 Feb 27]. J Cell Physiol. 2019;10.1002/jcp.28327. doi:10.1002/jcp.28327(IF:4.522)
[20] Zhang Y, Fang Z, Guo X, et al. lncRNA B4GALT1-AS1 promotes colon cancer cell stemness and migration by recruiting YAP to the nucleus and enhancing YAP transcriptional activity. J Cell Physiol. 2019;234(10):18524-18534. doi:10.1002/jcp.28489(IF:4.522)
[21] Han S, Li Z, Ji P, et al. MCPIP1 alleviated lipopolysaccharide-induced liver injury by regulating SIRT1 via modulation of microRNA-9. J Cell Physiol. 2019;234(12):22450-22462. doi:10.1002/jcp.28809(IF:4.522)
[22] Zhang XG, Liu AX, Zhang YX, et al. A diarylheptanoid compound from Alpinia officinarum Hance ameliorates high glucose-induced insulin resistance by regulating PI3K/AKT-Nrf2-GSK3β signaling pathways in HepG2 cells. J Ethnopharmacol. 2022;295:115397. doi:10.1016/j.jep.2022.115397(IF:4.360)
[23] Fan X, Shan X, Jiang S, et al. YAP promotes endothelial barrier repair by repressing STAT3/VEGF signaling. Life Sci. 2020;256:117884. doi:10.1016/j.lfs.2020.117884(IF:3.647)
[24] Han S, Li Z, Han F, et al. ROR alpha protects against LPS-induced inflammation by down-regulating SIRT1/NF-kappa B pathway. Arch Biochem Biophys. 2019;668:1-8. doi:10.1016/j.abb.2019.05.003(IF:3.559)
[25] Xi Z, Hu X, Chen X, et al. Protocatechuic acid exerts protective effects via suppression of the P38/JNK- NF-κB signalling pathway in an experimental mouse model of intracerebral haemorrhage. Eur J Pharmacol. 2019;854:128-138. doi:10.1016/j.ejphar.2019.03.008(IF:3.170)
[26] Zhang Y, Qiao B, Gao F, Wang H, Miao S, Zhao H. Melatonin protects H9c2 cells against ischemia/reperfusion‑induced apoptosis and oxidative stress via activation of the Nrf2 signaling pathway. Mol Med Rep. 2018;18(3):3497-3505. doi:10.3892/mmr.2018.9315(IF:2.952)
[27] Li Y, Qin G, Du J, Yue P, Zhang Y, Hou N. circRNA LDLRAD3 Enhances the Malignant Behaviors of NSCLC Cells via the miR-20a-5p-SLC7A5 Axis Activating the mTORC1 Signaling Pathway. J Healthc Eng. 2022;2022:2373580. Published 2022 Jan 6. doi:10.1155/2022/2373580(IF:2.682)

产品描述

细胞核蛋白、细胞浆蛋白在细胞研究和蛋白质组学中具有重要意义,因此在体外研究中需要将其从细胞或组织中分离。本试剂盒提供了一种较为简单方便,高效的蛋白抽提方法,其原理是:通过细胞浆蛋白抽提试剂A和B,在低渗透压条件下,使细胞充分膨胀,然后破坏细胞膜,释放出细胞浆蛋白,然后通过离心得到细胞核沉淀。最后通过高盐的细胞核蛋白抽提试剂C抽提得到细胞核蛋白。

本试剂盒1次可对2×106个细胞和30-50 mg组织样品进行抽提,按照该使用量,20126JP50可抽提50个样品,20126JP60可抽提100个样品。

产品组分

组分编号

组分名称

产品编号/规格

20126JP50(50T)

20126JP60(100T)

20126-A

Cytoplasmic Extraction Reagent A 胞浆蛋白抽提试剂A

15 mL

30 mL

20126-B

Cytoplasmic Extraction Reagent B胞浆蛋白抽提试剂B

0.5 mL

1 mL

20126-C

Nuclear Extraction Reagent 胞核蛋白抽提试剂

2.5 mL

5 mL

运输和保存方法

冰袋运输。-20℃保存,1年有效。

注意事项

1)客户需自备PMSF

2)为了您的安全和健康,请穿实验服并戴一次性手套操作。

3)本产品仅作科研用途!

使用方法

将试剂盒各组分溶解后立即放置在冰上,混匀。取适量的胞浆蛋白抽提试剂A(以下统称:试剂A)和胞核蛋白抽提试剂(以下统称:试剂C)备用,在使用前数分钟内加入PMSF,使PMSF的最终浓度为1 mM。

1 细胞样品蛋白的抽提

1)细胞处理

对于贴壁细胞:PBS清洗细胞1次,EDTA溶液消化细胞或用细胞刮子刮下细胞,并用移液器吹打下细胞。离心收集细胞,尽量吸尽上清,留下细胞沉淀备用。

【注】:尽量避免用胰酶消化细胞,以免胰酶降解抽提的目的蛋白。

对于悬浮细胞:离心收集细胞,PBS清洗细胞1次,收集细胞,尽量吸尽上清,留细胞沉淀备用。

2) 每20 µL细胞沉淀加入200 µL含PMSF的试剂A。

【注】:对于2×106个Hela细胞,其细胞沉淀的体积大约为20 µL或40 mg。

3) 最高速剧烈涡旋5 s,完全悬浮分散细胞沉淀。

【注】:如果细胞沉淀没有完全悬浮并分散开,可以适当延长旋涡震荡的时间。

4) 冰浴10-15 min。

5) 加入胞浆蛋白抽提试剂B(以下统称:试剂B)10 µL。最高速剧烈涡旋5 s,冰浴1 min。

6) 最高速剧涡旋5 s,4℃ 12,000-16,000 g离心5 min。

7) 立即吸取上清至一预冷的塑料管中,上清即为抽提得到的细胞浆蛋白。可以立即使用,也可以冻存备用。

【注】:此步千万不要触及沉淀,可以在沉淀上方保留极小体积的上清,以免吸到沉淀。

8) 对于沉淀,完全吸尽残余上清,加入50 µL含PMSF的试剂C。

【注】:此步需完全吸尽上清,否则会带来细胞浆蛋白的污染。

9) 最高速剧烈涡旋15-30 s,把沉淀完全悬浮并分散开。然后放回冰浴中,每隔1-2 min再高速剧烈涡旋15-30 s,共30 min。10)4℃ 12,000-16,000 g离心10 min。

11)立即吸取上清至一预冷的塑料管中,即为抽提得到的细胞核蛋白。可以立即使用,也可以-70℃冻存备用。

2 组织样品的抽提

1)将组织切成非常细小的碎片。根据后续使用量按照20:1的比例混合试剂A和B,并加入PMSF至最终浓度为1 mM,混匀即可配制成组织匀浆液。按照每60 mg组织加入200 µL组织匀浆液的比例混合组织和组织匀浆液,并在玻璃匀浆器内充分匀浆。【注】:匀浆需在冰浴或4℃进行。

2)匀浆后将匀浆液转移至塑料离心管内,冰浴放置15 min。

3)4℃ 1,500 g离心5 min。把上清转移至一预冷的塑料管中,上清含部分细胞浆蛋白。【注】:吸上清时千万不要触及沉淀。

4)对于上述收集得到的沉淀,已经充分匀浆,但很多细胞仍没有破碎。接下来请参照【细胞样品蛋白抽提】的步骤2)开始操作,即把沉淀当做已经离心收集好的细胞沉淀操作,即可得到细胞浆蛋白和细胞核蛋白。抽提得到的细胞浆蛋白可以和步骤【组织样品抽提】中步骤3)抽提得到的细胞浆蛋白合并备用。

 

HB180913

Q:组织提取蛋白,组织量与提取试剂的比例如何

A:将组织切成非常细小的碎片。根据后续使用量按照20:1的比例混合试剂A和B,并加入PMSF至最终浓度为1 mM,混匀即可配制成组织匀浆液。按照每60 mg组织加入200 µL组织匀浆液的比例混合组织和组织匀浆液对于不超过60mg的组织样品,仅需加入100微升组织匀浆液,并在玻璃匀浆器内充分匀浆

接下来请参照【细胞样品蛋白抽提】的步骤2)开始操作,即把沉淀当做已经离心收集好的细胞沉淀操作。(特别说明:对于起始量为60mg的组织样品,后续直接按照步骤27操作即可;对于起始量不超过60mg的组织样品,后续步骤中的溶液的用量须减半使用)。

对于组织样品,如果每个样品的重量不超过60mg,本试剂盒可以抽提50个样品,如果每个样品为60mg,本试剂盒可以抽提25个样品。

 

[1] Li Z, Wu M, Liu S, et al. Apoptotic vesicles activate autophagy in recipient cells to induce angiogenesis and dental pulp regeneration [published online ahead of print, 2022 May 10]. Mol Ther. 2022;S1525-0016(22)00304-5. doi:10.1016/j.ymthe.2022.05.006(IF:11.454)
[2] Wei Y, Sun H, Zhang S, et al. Multi-walled carbon nanotubes inhibit potential detoxification of dioxin-mediated toxicity by blocking the nuclear translocation of aryl hydrocarbon receptor. J Hazard Mater. 2022;430:128458. doi:10.1016/j.jhazmat.2022.128458(IF:10.588)
[3] Zhao XB, Chen YP, Tan M, et al. Extracellular Matrix Stiffness Regulates DNA Methylation by PKCα-Dependent Nuclear Transport of DNMT3L. Adv Healthc Mater. 2021;10(16):e2100821. doi:10.1002/adhm.202100821(IF:9.933)
[4] Zhong W, Rao Z, Xu J, et al. Defective mitophagy in aged macrophages promotes mitochondrial DNA cytosolic leakage to activate STING signaling during liver sterile inflammation. Aging Cell. 2022;21(6):e13622. doi:10.1111/acel.13622(IF:9.304)
[5] Feng J, Dai W, Mao Y, et al. Simvastatin re-sensitizes hepatocellular carcinoma cells to sorafenib by inhibiting HIF-1α/PPAR-γ/PKM2-mediated glycolysis. J Exp Clin Cancer Res. 2020;39(1):24. Published 2020 Jan 30. doi:10.1186/s13046-020-1528-x(IF:7.068)
[6] Peng X, Guo H, Yuan J, et al. Extracellular vesicles released from hiPSC-derived MSCs attenuate chronic prostatitis/chronic pelvic pain syndrome in rats by immunoregulation. Stem Cell Res Ther. 2021;12(1):198. Published 2021 Mar 20. doi:10.1186/s13287-021-02269-x(IF:6.832)
[7] Weng J, Li S, Lin H, et al. PCDHGA9 represses epithelial-mesenchymal transition and metastatic potential in gastric cancer cells by reducing β-catenin transcriptional activity. Cell Death Dis. 2020;11(3):206. Published 2020 Mar 30. doi:10.1038/s41419-020-2398-z(IF:6.304)
[8] Sun Q, Yuan M, Wang H, et al. PKM2 Is the Target of a Multi-Herb-Combined Decoction During the Inhibition of Gastric Cancer Progression. Front Oncol. 2021;11:767116. Published 2021 Dec 2. doi:10.3389/fonc.2021.767116(IF:6.244)
[9] Sa R, Guo M, Liu D, Guan F. AhR Antagonist Promotes Differentiation of Papillary Thyroid Cancer via Regulating circSH2B3/miR-4640-5P/IGF2BP2 Axis. Front Pharmacol. 2021;12:795386. Published 2021 Dec 23. doi:10.3389/fphar.2021.795386(IF:5.811)
[10] Feng J, Wu L, Ji J, et al. PKM2 is the target of proanthocyanidin B2 during the inhibition of hepatocellular carcinoma. J Exp Clin Cancer Res. 2019;38(1):204. Published 2019 May 17. doi:10.1186/s13046-019-1194-z(IF:5.646)
[11] Weng J, Xiao J, Mi Y, et al. PCDHGA9 acts as a tumor suppressor to induce tumor cell apoptosis and autophagy and inhibit the EMT process in human gastric cancer. Cell Death Dis. 2018;9(2):27. Published 2018 Jan 18. doi:10.1038/s41419-017-0189-y(IF:5.638)
[12] Li Z, Jia Y, Han S, et al. Klf4 Alleviates Lipopolysaccharide-Induced Inflammation by Inducing Expression of MCP-1 Induced Protein 1 to Deubiquitinate TRAF6. Cell Physiol Biochem. 2018;47(6):2278-2290. doi:10.1159/000491538(IF:5.500)
[13] Yang N, Xiong Y, Wang Y, et al. ADAP Y571 Phosphorylation Is Required to Prime STAT3 for Activation in TLR4-Stimulated Macrophages. J Immunol. 2021;206(4):814-826. doi:10.4049/jimmunol.2000569(IF:5.422)
[14] Zhang X, Zhang B, Li L, Li X, Zhang J, Chen G. Fermented noni (Morinda citrifolia L.) fruit juice improved oxidative stress and insulin resistance under the synergistic effect of Nrf2/ARE pathway and gut flora in db/db mice and HepG2 cells [published online ahead of print, 2022 Jul 14]. Food Funct. 2022;10.1039/d2fo00595f. doi:10.1039/d2fo00595f(IF:5.396)
[15] Yu Q, Dai W, Ji J, et al. Sodium butyrate inhibits aerobic glycolysis of hepatocellular carcinoma cells via the c-myc/hexokinase 2 pathway. J Cell Mol Med. 2022;26(10):3031-3045. doi:10.1111/jcmm.17322(IF:5.310)
[16] Wang Y, Chen K, Cai Y, et al. Annexin A2 could enhance multidrug resistance by regulating NF-κB signaling pathway in pediatric neuroblastoma. J Exp Clin Cancer Res. 2017;36(1):111. Published 2017 Aug 16. doi:10.1186/s13046-017-0581-6(IF:5.189)
[17] Li T, Xiao G, Tan S, et al. HSF1 Attenuates LPS-Induced Acute Lung Injury in Mice by Suppressing Macrophage Infiltration. Oxid Med Cell Longev. 2020;2020:1936580. Published 2020 Dec 18. doi:10.1155/2020/1936580(IF:5.076)
[18] Yan YL, Huang ZN, Zhu Z, et al. Downregulation of TET1 Promotes Bladder Cancer Cell Proliferation and Invasion by Reducing DNA Hydroxymethylation of AJAP1. Front Oncol. 2020;10:667. Published 2020 May 21. doi:10.3389/fonc.2020.00667(IF:4.848)
[19] Li Z, Han S, Jia Y, et al. MCPIP1 regulates RORα expression to protect against liver injury induced by lipopolysaccharide via modulation of miR-155 [published online ahead of print, 2019 Feb 27]. J Cell Physiol. 2019;10.1002/jcp.28327. doi:10.1002/jcp.28327(IF:4.522)
[20] Zhang Y, Fang Z, Guo X, et al. lncRNA B4GALT1-AS1 promotes colon cancer cell stemness and migration by recruiting YAP to the nucleus and enhancing YAP transcriptional activity. J Cell Physiol. 2019;234(10):18524-18534. doi:10.1002/jcp.28489(IF:4.522)
[21] Han S, Li Z, Ji P, et al. MCPIP1 alleviated lipopolysaccharide-induced liver injury by regulating SIRT1 via modulation of microRNA-9. J Cell Physiol. 2019;234(12):22450-22462. doi:10.1002/jcp.28809(IF:4.522)
[22] Zhang XG, Liu AX, Zhang YX, et al. A diarylheptanoid compound from Alpinia officinarum Hance ameliorates high glucose-induced insulin resistance by regulating PI3K/AKT-Nrf2-GSK3β signaling pathways in HepG2 cells. J Ethnopharmacol. 2022;295:115397. doi:10.1016/j.jep.2022.115397(IF:4.360)
[23] Fan X, Shan X, Jiang S, et al. YAP promotes endothelial barrier repair by repressing STAT3/VEGF signaling. Life Sci. 2020;256:117884. doi:10.1016/j.lfs.2020.117884(IF:3.647)
[24] Han S, Li Z, Han F, et al. ROR alpha protects against LPS-induced inflammation by down-regulating SIRT1/NF-kappa B pathway. Arch Biochem Biophys. 2019;668:1-8. doi:10.1016/j.abb.2019.05.003(IF:3.559)
[25] Xi Z, Hu X, Chen X, et al. Protocatechuic acid exerts protective effects via suppression of the P38/JNK- NF-κB signalling pathway in an experimental mouse model of intracerebral haemorrhage. Eur J Pharmacol. 2019;854:128-138. doi:10.1016/j.ejphar.2019.03.008(IF:3.170)
[26] Zhang Y, Qiao B, Gao F, Wang H, Miao S, Zhao H. Melatonin protects H9c2 cells against ischemia/reperfusion‑induced apoptosis and oxidative stress via activation of the Nrf2 signaling pathway. Mol Med Rep. 2018;18(3):3497-3505. doi:10.3892/mmr.2018.9315(IF:2.952)
[27] Li Y, Qin G, Du J, Yue P, Zhang Y, Hou N. circRNA LDLRAD3 Enhances the Malignant Behaviors of NSCLC Cells via the miR-20a-5p-SLC7A5 Axis Activating the mTORC1 Signaling Pathway. J Healthc Eng. 2022;2022:2373580. Published 2022 Jan 6. doi:10.1155/2022/2373580(IF:2.682)