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"Soon Ha Kwon"

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"Soon Ha Kwon"

Original Articles

Hepatic neoplasm

Predictive factors of contrast-enhanced ultrasonography for the response to transarterial chemoembolization in hepatocellular carcinoma
Kil Hyo Park, Soon Ha Kwon, Yong Sub Lee, Soung Won Jeong, Jae Young Jang, Sae Hwan Lee, Sang Gyune Kim, Sang-Woo Cha, Young Seok Kim, Young Deok Cho, Hong Soo Kim, Boo Sung Kim, Yong Jae Kim
Clin Mol Hepatol 2015;21(2):158-164.
Published online June 26, 2015
DOI: https://doi.org/10.3350/cmh.2015.21.2.158
Background/Aims

The predictive role of contrast-enhanced ultrasonography (CEUS) before performing transarterial chemoembolization (TACE) has not been determined. We assessed the possible predictive factors of CEUS for the response to TACE.

Methods

Seventeen patients with 18 hepatocellular carcinoma (HCC) underwent TACE. All of the tumors were studied with CEUS before TACE using a second-generation ultrasound contrast agent (SonoVue®, Bracco, Milan, Italy). The tumor response to TACE was classified with a score between 1 and 4 according to the remaining enhancing-tumor percentage based on modified response evaluation criteria in solid tumors (mRECIST): 1, enhancing tumor <25%; 2, 25%≤enhancing tumor<50%; 3, 50%≤enhancing tumor<75%; and 4, enhancing tumor≥75%). A score of 1 was defined as a "good response" to TACE. The predictive factors for the response to TACE were evaluated during CEUS based on the maximum tumor diameter, initial arterial enhancing time, arterial enhancing duration, intensity of arterial enhancement, presence of a hypoenhanced pattern, and the feeding artery to the tumor.

Results

The median tumor size was 3.1 cm. The distribution of tumor response scores after TACE in all tumors was as follows: 1, n=11; 2, n=4; 3, n=2; and 4, n=1. Fifteen tumors showed feeding arteries. The presence of a feeding artery and the tumor size (≤5 cm) were the predictive factors for a good response (P=0.043 and P=0.047, respectively).

Conclusions

The presence of a feeding artery and a tumor size of less than 5 cm were the predictive factors for a good response of HCC to TACE on CEUS.

Citations

Citations to this article as recorded by  Crossref logo
  • A novel stratification scheme combined with internal arteries in CT imaging for guiding postoperative adjuvant transarterial chemoembolization in hepatocellular carcinoma: a retrospective cohort study
    Xinming Li, Xiangjing Liang, Zhipeng Li, Jianye Liang, Zhendong Qi, Liming Zhong, Zhijun Geng, Wen Liang, Xianyue Quan, Changhong Liang, Zaiyi Liu
    International Journal of Surgery.2024; 110(5): 2556.     CrossRef
  • Residual convolutional neural network for predicting response of transarterial chemoembolization in hepatocellular carcinoma from CT imaging
    Jie Peng, Shuai Kang, Zhengyuan Ning, Hangxia Deng, Jingxian Shen, Yikai Xu, Jing Zhang, Wei Zhao, Xinling Li, Wuxing Gong, Jinhua Huang, Li Liu
    European Radiology.2020; 30(1): 413.     CrossRef
  • Contrast-enhanced US for the Interventional Radiologist: Current and Emerging Applications
    Christopher D. Malone, David T. Fetzer, Wayne L. Monsky, Malak Itani, Vincent M. Mellnick, Philip A. Velez, William D. Middleton, Michalakis A. Averkiou, Raja S. Ramaswamy
    RadioGraphics.2020; 40(2): 562.     CrossRef
  • Diagnostic Value of High Frame Rate Contrast-enhanced Ultrasonography and Post-processing Contrast Vector Imaging for Evaluation of Focal Liver Lesions: A Feasibility Study
    Jeongin Yoo, Jeong Min Lee
    Ultrasound in Medicine & Biology.2020; 46(9): 2254.     CrossRef
  • Another Face of Contrast-Enhanced Ultrasonography: A Diagnostic Tool for Cirrhosis
    Soung Won Jeong
    Gut and Liver.2017; 11(1): 9.     CrossRef
  • Focal Liver Lesions: Real‐time 3‐Dimensional Contrast‐Enhanced Ultrasonography Compared With 2‐Dimensional Contrast‐Enhanced Ultrasonography and Magnetic Resonance Imaging
    Jung‐chieh Lee, Kun Yan, San‐kan Lee, Wei Yang, Min‐hua Chen
    Journal of Ultrasound in Medicine.2017; 36(10): 2015.     CrossRef
  • Intraoperative 3D contrast-enhanced ultrasound (CEUS): a prospective study of 50 patients with brain tumours
    Felix Arlt, Claire Chalopin, Andrea Müns, Jürgen Meixensberger, Dirk Lindner
    Acta Neurochirurgica.2016; 158(4): 685.     CrossRef
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Cyclooxygenase-2 and vascular endothelial growth factor in chronic hepatitis, cirrhosis and hepatocellular carcinoma
Soon Ha Kwon, Soung Won Jeong, Jae Young Jang, Ji Eun Lee, Sae Hwan Lee, Sang Gyune Kim, Young Seok Kim, Young Deok Cho, Hong Soo Kim, Boo Sung Kim, So-Young Jin
Korean J Hepatol 2012;18(3):287-294.
Published online September 25, 2012
DOI: https://doi.org/10.3350/cmh.2012.18.3.287
Background/Aims

Cyclooxygenase-2 (COX-2) and vascular endothelial growth factor (VEGF) are up-regulated in hepatocellular carcinoma (HCC). To investigate the levels of COX-2 and VEGF expression in chronic hepatitis (CH), cirrhosis, and HCC.

Methods

The immunohistochemical expressions of COX-2 and VEGF were evaluated in tissues from patients with CH (n=95), cirrhosis (n=38), low-grade HCC (LG-HCC; n=6), and high-grade HCC (HG-HCC; n=29).

Results

The COX-2 expression scores in CH, cirrhosis, LG-HCC, and HG-HCC were 3.3±1.9 (mean±SD), 4.2±1.7, 5.5±1.0, and 3.4±2.4, respectively (CH vs. cirrhosis, P=0.016; CH vs. LG-HCC, P=0.008; LG-HCC vs. HG-HCC, P=0.004), and the corresponding VEGF expression scores were 0.9±0.8, 1.5±0.7, 1.8±0.9, and 1.6±1.1 (CH vs. cirrhosis, P<0.001; CH vs. LG-HCC, P=0.011; LG-HCC vs. HG-HCC, P=0.075). Both factors were correlated with the fibrosis stage in CH and cirrhosis (COX-2: r=0.427, P<0.001; VEGF: r=0.491, P<0.001). There was a significant correlation between COX-2 and VEGF in all of the tissue samples (r=0.648, P<0.001), and between high COX-2 and VEGF expression scores and survival (COX-2: P=0.001; VEGF: P<0.001).

Conclusions

The expressions of both COX-2 and VEGF are significantly higher in cirrhosis and LG-HCC than in CH. High COX-2 and high VEGF expressions are associated with a high survival rate.

Citations

Citations to this article as recorded by  Crossref logo
  • Correlation and efficacy of TACE combined with lenvatinib plus PD‐1 inhibitor in the treatment of hepatocellular carcinoma with portal vein tumor thrombus based on immunological features
    Xinhua Zou, Qingyu Xu, Ran You, Guowen Yin
    Cancer Medicine.2023; 12(10): 11315.     CrossRef
  • Intercellular crosstalk of liver sinusoidal endothelial cells in liver fibrosis, cirrhosis and hepatocellular carcinoma
    Hui Li
    Digestive and Liver Disease.2022; 54(5): 598.     CrossRef
  • Altered expression of COX-2 and TNF-a in patients with hepatocellular carcinoma
    Andressa de-Freitas-Alves, Vanessa Dido-Baldissera, Eduardo Cremonese-Filippi-Chiela, Carlos Thadeu Schmidt-Cerski, Paulo Roberto Ott-Fontes, Marilda da-Cruz-Fernandes, Marilene Porawski, Márcia Giovenardi
    Revista Española de Enfermedades Digestivas.2019;[Epub]     CrossRef
  • HBx combined with AFB1 triggers hepatic steatosis via COX‐2‐mediated necrosome formation and mitochondrial dynamics disorder
    Yuan‐Yuan Chen, Yi Lin, Pei‐Yu Han, Shan Jiang, Lin Che, Cheng‐Yong He, Yu‐Chun Lin, Zhong‐Ning Lin
    Journal of Cellular and Molecular Medicine.2019; 23(9): 5920.     CrossRef
  • Fluorescence imaging of hepatocellular carcinoma with a specific probe of COX-2
    Haibo Wang, Chengyong Dong, Keqiu Jiang, Shuangzhe Zhang, Fei Long, Rixin Zhang, Deguang Sun, Rui Liang, Zhenming Gao, Shujuan Shao, Liming Wang
    RSC Advances.2018; 8(2): 994.     CrossRef
  • Hepatic sinusoids in liver injury, inflammation, and fibrosis: new pathophysiological insights
    Thomas Greuter, Vijay H. Shah
    Journal of Gastroenterology.2016; 51(6): 511.     CrossRef
  • Immunohistochemical angiogenic biomarkers in hepatocellular carcinoma and cirrhosis: correlation with pathological features
    Osmar Damasceno Ribeiro, Nathalie Henriques Silva Canedo, Vera Lucia Pannain
    Clinics.2016; 71(11): 639.     CrossRef
  • Liver sinusoidal endothelial cells in hepatic fibrosis
    Laurie D. DeLeve
    Hepatology.2015; 61(5): 1740.     CrossRef
  • Constitutive activation of AMPK α1 in vascular endothelium promotes high‐fat diet‐induced fatty liver injury: role of COX‐2 induction
    Yan Liang, Bosheng Huang, Erfei Song, Bo Bai, Yu Wang
    British Journal of Pharmacology.2014; 171(2): 498.     CrossRef
  • Glycyrrhetinic Acid Suppressed NF-κB Activation in TNF-α-Induced Hepatocytes
    Hong-Jhang Chen, Shih-Pei Kang, I-Jung Lee, Yun-Lian Lin
    Journal of Agricultural and Food Chemistry.2014; 62(3): 618.     CrossRef
  • Meloxicam Executes Its Antitumor Effects against Hepatocellular Carcinoma in COX-2- Dependent and -Independent Pathways
    Xiaofeng Dong, Rui Li, Peng Xiu, Xuesong Dong, Zongzhen Xu, Bo Zhai, Feng Liu, Hongchi Jiang, Xueying Sun, Jie Li, Haiquan Qiao, Diego Calvisi
    PLoS ONE.2014; 9(3): e92864.     CrossRef
  • Epithelial VEGF signaling is required in the mouse liver for proper sinusoid endothelial cell identity and hepatocyte zonation in vivo
    Teagan J. Walter, Ashley E. Cast, Kari A. Huppert, Stacey S. Huppert
    American Journal of Physiology-Gastrointestinal and Liver Physiology.2014; 306(10): G849.     CrossRef
  • 11,557 View
  • 92 Download
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