Search Results - "Jing, Xinming"

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  1. 1

    Role of hypoxia in cancer therapy by regulating the tumor microenvironment by Jing, Xinming, Yang, Fengming, Shao, Chuchu, Wei, Ke, Xie, Mengyan, Shen, Hua, Shu, Yongqian

    Published in Molecular cancer (11-11-2019)
    “…Clinical resistance is a complex phenomenon in major human cancers involving multifactorial mechanisms, and hypoxia is one of the key components that affect…”
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  2. 2

    Exosomal circSHKBP1 promotes gastric cancer progression via regulating the miR-582-3p/HUR/VEGF axis and suppressing HSP90 degradation by Xie, Mengyan, Yu, Tao, Jing, Xinming, Ma, Ling, Fan, Yu, Yang, Fengming, Ma, Pei, Jiang, Huning, Wu, Xi, Shu, Yongqian, Xu, Tongpeng

    Published in Molecular cancer (29-06-2020)
    “…Circular RNAs (circRNAs) play important regulatory roles in the development of various cancers. However, biological functions and the underlying molecular…”
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  3. 3

    The value of miR-155 as a biomarker for the diagnosis and prognosis of lung cancer: a systematic review with meta-analysis by Shao, Chuchu, Yang, Fengming, Qin, Zhiqiang, Jing, Xinming, Shu, Yongqian, Shen, Hua

    Published in BMC cancer (14-11-2019)
    “…Recently, a growing number of studies have reported the coorelation between miR-155 and the diagnosis and prognosis of lung cancer, but results of these…”
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  4. 4

    Loss of miR-26b-5p promotes gastric cancer progression via miR-26b-5p-PDE4B/CDK8-STAT3 feedback loop by Xu, Tingting, Xie, Mengyan, Jing, Xinming, Jiang, Huning, Wu, Xi, Wang, Xinzhu, Shu, Yongqian

    Published in Journal of translational medicine (03-02-2023)
    “…Chronic inflammation is a well-known risk factor for the development of gastric cancer (GC). Nevertheless, the molecular mechanisms underlying…”
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  5. 5

    Identification and verification of hub genes associated with the progression of non-small cell lung cancer by integrated analysis by Mengyan, Xie, Kun, Ding, Xinming, Jing, Yutian, Wei, Yongqian, Shu

    Published in Frontiers in pharmacology (13-09-2022)
    “…Objectives: Lung cancer is one of the most common cancers worldwide and it is the leading cause of cancer-related mortality. Despite the treatment of patients…”
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  6. 6

    Exosome‐transmitted miR‐769‐5p confers cisplatin resistance and progression in gastric cancer by targeting CASP9 and promoting the ubiquitination degradation of p53 by Jing, Xinming, Xie, Mengyan, Ding, Kun, Xu, Tingting, Fang, Yuan, Ma, Pei, Shu, Yongqian

    Published in Clinical and translational medicine (01-05-2022)
    “…Background Cisplatin resistance is the main cause of poor clinical prognosis in patients with gastric cancer (GC). Yet, the exact mechanism underlying…”
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  7. 7

    The Ability of Clinically Relevant Chemotherapeutics to Induce Immunogenic Cell Death in Squamous Cell Carcinoma by He, Zhenjie, Jing, Xinming, Dai, Xiaoyan, Bao, Lingbo, Yang, Xiao, Xiong, Yanli, Li, Mengxia

    Published in Frontiers in bioscience (Landmark. Print) (22-04-2024)
    “…Immunogenic cell death (ICD) is a crucial mechanism for triggering the adaptive immune response in cancer patients. Damage-associated molecular patterns…”
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  8. 8

    LINC00659 cooperated with ALKBH5 to accelerate gastric cancer progression by stabilising JAK1 mRNA in an m6A‐YTHDF2‐dependent manner by Fang, Yuan, Wu, Xi, Gu, Yunru, Shi, Run, Yu, Tao, Pan, Yutian, Zhang, Jingxin, Jing, Xinming, Ma, Pei, Shu, Yongqian

    Published in Clinical and translational medicine (01-03-2023)
    “…Background N6‐methyladenosine (m6A) RNA modification is known as a common epigenetic regulation form in eukaryotic cells. Emerging studies show that m6A in…”
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  9. 9

    Targeting IL8 as a sequential therapy strategy to overcome chemotherapy resistance in advanced gastric cancer by Jiang, Huning, Cui, Jiahua, Chu, Hao, Xu, Tingting, Xie, Mengyan, Jing, Xinming, Xu, Jiali, Zhou, Jianwei, Shu, Yongqian

    Published in Cell death discovery (29-04-2022)
    “…Systemic chemotherapy with multiple drug regimens is the main therapy option for advanced gastric cancer (GC) patients. However, many patients develop relapse…”
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  10. 10

    Proteomic analysis of soybean [Glycine max (L.) Meer.] seeds during imbibition at chilling temperature by Cheng, Libao, Gao, Xuan, Li, Shuyan, Shi, Mengjun, Javeed, Hussain, Jing, Xinming, Yang, Guangxiao, He, Guangyuan

    Published in Molecular breeding (01-06-2010)
    “…Many of the world's important crops such as soybean are now widely distributed, beyond their original zones of natural selection and chilling temperature is…”
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  11. 11

    Mitochondrial damage in the soybean seed axis during imbibition at chilling temperatures by Yin, G.(Chinese Academy of Sciences, Beijing (China). Inst. of Botany), Sun, H, Xin, X, Qin, G, Liang, Z, Jing, X

    Published in Plant and cell physiology (01-07-2009)
    “…The development of mitochondria during seed germination is essential for plant growth. However, the developmental process is still poorly understood…”
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  12. 12

    GMCHI, cloned from soybean [Glycine max (L.) Meer.], enhances survival in transgenic Arabidopsis under abiotic stress by Cheng, Libao, Huan, Shutao, Sheng, Yaodi, Hua, Xuejun, Shu, Qingyan, Song, Songquan, Jing, Xinming

    Published in Plant cell reports (2009)
    “…Plants respond to cold stress by modifying the expression of a battery of cold-responsive genes. Using cDNA-AFLP techniques, GMCHI (G lycine m ax…”
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  13. 13
  14. 14

    Circular RNA Circ_0000119 promotes gastric cancer progression via circ_0000119/miR-502-5p/MTBP axis by Xie, Mengyan, Gu, Yunru, Xu, Tingting, Jing, Xinming, Shu, Yongqian

    Published in Gene (25-05-2024)
    “…•Circ_0000119 is an exonic circular RNA deriving from protein-coding locus MAN1A2.•Circ_0000119 promotes gastric cancer cells proliferation and migration in…”
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  15. 15

    miR‐942 promotes tumor migration, invasion, and angiogenesis by regulating EMT via BARX2 in non‐small‐cell lung cancer by Yang, Fengming, Shao, Chuchu, Wei, Ke, Jing, Xinming, Qin, Zhiqiang, Shi, Yuenian, Shu, Yongqian, Shen, Hua

    Published in Journal of cellular physiology (01-12-2019)
    “…Epithelial–mesenchymal transition (EMT) has an important function in cancer. Recently, microRNAs have been reported to be involved in EMT by regulating target…”
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  16. 16

    APE1 controls DICER1 expression in NSCLC through miR-33a and miR-130b by Antoniali, Giulia, Dalla, Emiliano, Mangiapane, Giovanna, Zhao, Xiaolong, Jing, Xinming, Cheng, Yi, De Sanctis, Veronica, Ayyildiz, Dilara, Piazza, Silvano, Li, Mengxia, Tell, Gianluca

    “…Increasing evidence suggests different, not completely understood roles of microRNA biogenesis in the development and progression of lung cancer. The…”
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  17. 17

    Crosstalk between Environmental Inflammatory Stimuli and Non-Coding RNA in Cancer Occurrence and Development by Xu, Tingting, Xie, Mengyan, Jing, Xinming, Cui, Jiahua, Wu, Xi, Shu, Yongqian

    Published in Cancers (02-09-2021)
    “…There is a clear relationship between inflammatory response and different stages of tumor development. Common inflammation-related carcinogens include viruses,…”
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  18. 18

    Retracted : miR‐942 promotes tumor migration, invasion, and angiogenesis by regulating EMT via BARX2 in non‐small‐cell lung cancer by Yang, Fengming, Shao, Chuchu, Wei, Ke, Jing, Xinming, Qin, Zhiqiang, Shi, Yuenian, Shu, Yongqian, Shen, Hua

    Published in Journal of cellular physiology (01-12-2019)
    “…Abstract Epithelial–mesenchymal transition (EMT) has an important function in cancer. Recently, microRNAs have been reported to be involved in EMT by…”
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  19. 19

    LINC00659 cooperated with ALKBH5 to accelerate gastric cancer progression by stabilising JAK1 mRNA in an m 6 A-YTHDF2-dependent manner by Fang, Yuan, Wu, Xi, Gu, Yunru, Shi, Run, Yu, Tao, Pan, Yutian, Zhang, Jingxin, Jing, Xinming, Ma, Pei, Shu, Yongqian

    Published in Clinical and translational medicine (01-03-2023)
    “…N6-methyladenosine (m A) RNA modification is known as a common epigenetic regulation form in eukaryotic cells. Emerging studies show that m A in noncoding RNAs…”
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  20. 20

    LINC00659 cooperated with ALKBH5 to accelerate gastric cancer progression by stabilising JAK1 mRNA in an m6 A-YTHDF2-dependent manner by Fang, Yuan, Wu, Xi, Gu, Yunru, Shi, Run, Yu, Tao, Pan, Yutian, Zhang, Jingxin, Jing, Xinming, Ma, Pei, Shu, Yongqian

    Published in Clinical and translational medicine (01-03-2023)
    “…BACKGROUNDN6-methyladenosine (m6 A) RNA modification is known as a common epigenetic regulation form in eukaryotic cells. Emerging studies show that m6 A in…”
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    Journal Article