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5篇 您的检索式:作者名="ZHAO Lanjun"
    题名 作者 年代 出处 被引量
1Pu- erh tea inhibits tumor cell growth by down-regulating mutant p53 显示文摘ZHAO Lanjun JIA Shuting TANG Wenru 2011International Journal of Molecular Sci- ences2011,12,11:1
2Digital twins in smart farming:An autoware-based simulator for autonomous agricultural vehicles显示文摘Digital twins can improve the level of control over physical entities and help manage complex systems by integrating a range of technologies.The autonomous agricultural machine has shown revolutionary effects on labor reduction and utilization rate in field works.Autonomous vehicles in precision agriculture have the potential to improve competitiveness compared to current crop production methods and have become a research hotspot.However,the development time and resources required in experiments have limited the research in this area.Simulation tools in unmanned farming that are required to enable more efficient,reliable,and safe autonomy are increasingly demanding.Inspired by the recent development of an open-source virtual simulation platform,this study proposed an autoware-based simulator to evaluate the performance of agricultural machine guidance based on digital twins.Oblique photogrammetry using drones is used to construct threedimensional maps of fields at the same scale as reality.A communication format suitable for agricultural machines was developed for data input and output,along with an inter-node communication methodology.The conversion,publishing,and maintenance of multiple coordinate systems were completed based on ROS(Robot Operating System).Coverage path planning was performed using hybrid curves based on Bézier curves,and it was tested in both a simulation environment and actual fields with the aid of Pure Pursuit algorithms and PID controllers.Xin Zhao Wanli Wang Long Wen Zhibo Chen Sixian Wu Kun Zhou Mengyao Sun Lanjun Xu Bingbing Hu Caicong Wu 2023International Journal of Agricultural and Biological Engineering2023,16,4:0
3SUMOylation-triggered ALIX activation modulates extracellular vesicles circTLCD4-RWDD3 to promote lymphatic metastasis of non-small cell lung cancer显示文摘Lymph node(LN)metastasis is one of the predominant metastatic routes of non-small cell lung cancer(NSCLC)and is considered as a leading cause for the unsatisfactory prognosis of patients.Although lymphangiogenesis is well-recognized as a crucial process in mediating LN metastasis,the regulatory mechanism involving lymphangiogenesis and LN metastasis in NSCLC remains unclear.In this study,we employed high-throughput sequencing to identify a novel circular RNA(circRNA),circTLCD4-RWDD3,which was significantly upregulated in extracellular vesicles(EVs)from LN metastatic NSCLC and was positively associated with deteriorated OS and DFS of patients with NSCLC from multicenter clinical cohort.Downregulating the expression of EV-packaged circTLCD4-RWDD3 inhibited lymphangiogenesis and LN metastasis of NSCLC both in vitro and in vivo.Mechanically,circTLCD4-RWDD3 physically interacted with hnRNPA2B1 and mediated the SUMO2 modification at K108 residue of hnRNPA2B1 by upregulating UBC9.Subsequently,circTLCD4-RWDD3-induced SUMOylated hnRNPA2B1 was recognized by the SUMO interaction motif(SIM)of ALIX and activated ALIX to recruit ESCRT-III,thereby facilitating the sorting of circTLCD4-RWDD3 into NSCLC cell-derived EVs.Moreover,EV-packaged circTLCD4-RWDD3 was internalized by lymphatic endothelial cells to activate the transcription of PROX1,resulting in the lymphangiogenesis and LN metastasis of NSCLC.Importantly,blocking EV-mediated transmission of circTLCD4-RWDD3 via mutating SIM in ALIX or K108 residue of hnRNPA2B1 inhibited the lymphangiogenesis and LN metastasis of NSCLC in vivo.Our findings reveal a precise mechanism underlying SUMOylated hnRNPA2B1-induced EV packaging of circTLCD4-RWDD3 in facilitating LN metastasis of NSCLC,suggesting that EV-packaged circTLCD4-RWDD3 could be a potential therapeutic target against LN metastatic NSCLC.Xiayao Diao Chao Guo Hanhao Zheng Ke Zhao Yuming Luo Mingjie An Yan Lin Jiancheng Chen Yuanlong Li Yuting Li Xuehan Gao Jiaqi Zhang Mengxin Zhou Wenliang Bai Lei Liu Guige Wang Lanjun Zhang Xiaotian He Rusi Zhang Zhihua Li Changhao Chen Shanqing Li 2023Signal Transduction and Targeted Therapy2023,8,12:0
4A Study of Molecular Resection Margins for Esophageal Squamous Cell Carcinoma Using Large Pathologic Sections显示文摘OBJECTIVE It has been shown that application of molecular biological techniques to surgical margins of some cancers could predict risk of local recurrence. However, the optimal length of surgical resection with tumor-free surgical margins for esophageal squamous cell carcinoma (ES-CC) is unknown. This study was conducted to evaluate the optimal length of surgical resection for ESCC with molecularly tumor-free surgical margins marked by p53 and Ki67. METHODS Surgical specimens from 70 patients with ESCC were collected for study. The lengths of the upper margin, tumor, and lower margin of every specimen were measured during the operation. Each specimen was divided into three large pathologic sections, stained with H&E and immunohistochemically for p53 and Ki67, and examined microscopically. The lengths of the upper and lower resection ends were measured for p53 and Ki67 positive expression. The actual surgical lengths were calculated by the principle of rational shrinkage. RESULTS All surgical margins were histologically tumor-free, while the positive rates of p53 and Ki67 were 66% and 54%. The positive rates of p53 and Ki67 in the upper resection end were 17% and 20%. The mean lengths of the upper resection end showing p53 and Ki67 positive expression were 1.08±1.12 cm and 1.64±1.01 cm, and the maximum lengths were 3.73 cm and 3.26 cm. The positive rates of p53 and Ki67 in the lower resection end were 20% and 23%. The mean lengths of the lower resection end of p53 and Ki67 with positive expression were 1.11±1.15 cm and 1.34±0.94 cm, and the maximum lengths were 3.73 cm and 3.61 cm. CONCLUSION The optimal length of surgical resection with molecularly tumor-free surgical margins of ESCC is not more than 5 cm.Guowei Ma Xu Zhang JunyeWang Qiuliang Wu Hao Long Peng Lin Jianhua Fu Richard Malthaner Meiqing Zhao Lanjun Zhang Zhesheng Wen Tiehua Rong 2006Chinese Journal of Clinical Oncology2006,3,5:0
5Ectopic Overexpression of EuCHIT30.7 Improves Nicotiana tabacum Resistance to Powdery Mildew显示文摘Various strains of powdery mildew(PM),a notorious plant fungal disease,are prevalent and pose a significant threat to plant health.To control PM,transgenic technology can be used to cultivate more resistant plant varieties.In the present study,we utilized the rapid amplification of cDNA ends(RACE)technique to clone the full-length cDNA sequence of the EuCHIT30.7 gene to explore plant genes with disease resistance functions.Bioinformatics analysis revealed that this gene belongs to the GH18 family and is classified as a class III chitinase.The EuCHIT30.7 gene is expressed throughout the Eucommia ulmoides plant,with the most abundant expression in male flowers.Subcellular localization analysis indicated that the protein encoded by this gene was detected within both the cell membrane and cytoplasm.Upon PM inoculation,overexpression of EuCHIT30.7 in tobacco plants led to a significantly reduced relative lesion area and a decreased spore count compared to both wild-type and empty vector control plants.Activities of the protective enzymes,namely,peroxidase(POD),superoxide dismutase(SOD),catalase(CAT),and phenylalaninammo-nialyase(PAL),in tobacco plants overexpressing EuCHIT30.7 were significantly greater than those in wild-type and empty vector tobacco plants.Furthermore,the rate of increase in malondialdehyde(MDA)content was significantly lower in tobacco plants expressing EuCHIT30.7 compared to control tobacco plants.In EuCHIT30.7 transgenic tobacco,the expression of pathogen-related protein genes,namely,PR2,PR5,PR1a,PDF1.2,and MLP423,along with the tobacco PM negative regulatory gene,MLO2,were significantly higher compared to control tobacco plants.These findings suggested that EuCHIT30.7 significantly enhances the resistance of tobacco to PM.Lanjun Li Degang Zhao 2023Phyton-International Journal of Experimental Botany2023,92,11:0
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