scholarly journals Suppression of Type 1 Insulin-like Growth Factor Receptor Expression by Small Interfering RNA Inhibits A549 Human Lung Cancer Cell Invasion in vitro and Metastasis in Xenograft Nude Mice

2007 ◽  
Vol 39 (2) ◽  
pp. 137-147 ◽  
Author(s):  
Jianfang QIAN ◽  
Aiqiang DONG ◽  
Minjian KONG ◽  
Zhiyuan MA ◽  
Junqiang FAN ◽  
...  
1996 ◽  
Vol 14 (4) ◽  
pp. 351-357 ◽  
Author(s):  
Xin-Hai Pei ◽  
Yoichi Nakanishi ◽  
Koichi Takayama ◽  
Jun Yatsunami ◽  
Feng Bai ◽  
...  

2020 ◽  
Vol 5 (2) ◽  
pp. 164-170
Author(s):  
Deepak P. Kardile ◽  
Mrunal K. Shirsat

In the present study, dihydrobenzimidazole thiopyranooxazinone derivatives were efficiently synthesized, which were further characterized and authenticated by means of TLC and different spectral analysis such as IR and 1H NMR. The synthesized compounds DPK2d2 to DPK2d8 were screened for their in vitro antimicrobial, antitubercular and anticancer activities. The results showed that the titled compounds DPK3d1, DPK3d2 and DPK3d4 exhibited potent antimicrobial activity, shows a broadspectrum activity against Bacillus subtilis, Escherichia coli (antibacterial) and Aspergillus niger (antifungal) as compared to ciprofloxacin and fluconazole, respectively. Compounds DPK3d1, DPK3d3 and DPK3d5 exhibited potent antitubercular activities against Mycobacterium tuberculosis as compared to pyrazinamide, ciprofloxacin and streptomycin. Compounds DPK3d3, DPK3d4 and DPK3d5 showed highly potent cytotoxic activity against human lung cancer cell line (A549) as compared to adriamycin. In silico molecular docking studies shown that all the ligands highest binding affinity range -6.7 to -8.7 for selected 1CB4 PDB of superoxide dismutase, which recognized that ligands having antioxidant activity.


2016 ◽  
Vol 12 (2) ◽  
pp. 1380-1386 ◽  
Author(s):  
Shulong Jiang ◽  
Yebo Gao ◽  
Wei Hou ◽  
Rui Liu ◽  
Xin Qi ◽  
...  

2010 ◽  
Vol 67 (3) ◽  
pp. 637-646 ◽  
Author(s):  
Hua Cheng ◽  
She-Juan An ◽  
Xu-Chao Zhang ◽  
Song Dong ◽  
Yi-Fang Zhang ◽  
...  

2014 ◽  
Vol 67 (1) ◽  
pp. 156-166 ◽  
Author(s):  
Syed Rakashanda ◽  
Asif Khurshid Qazi ◽  
Rabiya Majeed ◽  
Syed Mubashir Andrabi ◽  
Abid Hamid ◽  
...  

2009 ◽  
Vol 4 (2) ◽  
pp. 97-104 ◽  
Author(s):  
Salvatore Zavarella ◽  
Mitsutoshi Nakada ◽  
Shawn Belverud ◽  
Salvatore J. Coniglio ◽  
Amanda Chan ◽  
...  

Object Medulloblastomas are the most common malignant brain tumors in children. These tumors are highly invasive, and patients harboring these lesions are frequently diagnosed with distant spread. In this study, the authors investigated the role of Rac1, a member of the Rho family of small guanosine triphosphatases, in medulloblastoma invasion. Methods Three established medulloblastoma cell lines were used: DAOY, UW-228, and ONS-76. Specific depletion of Rac1 protein was accomplished by transient transfection of small interfering RNA. Cell invasion through extracellular matrix (Matrigel) was quantified using a transwell migration assay. Mitogen activated protein kinase activation was determined using phospho-MAP kinase–specific antibodies, and inhibition of MAP kinase pathways was achieved by specific small molecule inhibitors. Localization of Rac1 and its expression levels were determined by immunohistochemical analysis using a Rac1-specific antibody, and Rac1 activation was qualitatively assessed by Rac1 plasma membrane association. Results Small interfering RNA–mediated depletion of Rac1 strongly inhibited medulloblastoma cell invasion. Although depletion of Rac1 inhibited the proliferation of UW-228 cells, and of ONS-76 cells to a lesser extent, it stimulated the proliferation of DAOY cells. Depletion of Rac1 also inhibited the activation of the ERK and JNK MAP kinase pathways, and inhibition of either pathway diminished invasion and proliferation. Immunohistochemical analysis demonstrated that the Rac1 protein was overexpressed in all medulloblastoma tumors examined, and indicated that Rac1 was hyperactive in 6 of 25 tumors. Conclusions The authors' data show that Rac1 is necessary for the invasive behavior of medulloblastoma cells in vitro, and plays a variable role in medulloblastoma cell proliferation. In addition, these results indicate that Rac1 stimulates medulloblastoma invasion by activating the ERK and JNK pathways. The authors suggest that Rac1 and signaling elements controlled by this guanosine triphosphatase may serve as novel targets for therapeutic intervention in malignant medulloblastomas.


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