For: | Burada F, Nicoli ER, Ciurea ME, Uscatu DC, Ioana M, Gheonea DI. Autophagy in colorectal cancer: An important switch from physiology to pathology. World J Gastrointest Oncol 2015; 7(11): 271-284 [PMID: 26600927 DOI: 10.4251/wjgo.v7.i11.271] |
---|---|
URL: | https://www.wjgnet.com/1948-5204/full/v7/i11/271.htm |
Number | Citing Articles |
1 |
Noémie Legrand, Dan A Dixon, Cyril Sobolewski. Stress granules in colorectal cancer: Current knowledge and potential therapeutic applications. World Journal of Gastroenterology 2020; 26(35): 5223-5247 doi: 10.3748/wjg.v26.i35.5223
|
2 |
Ömer Güllülü, Stephanie Hehlgans, Claus Rödel, Emmanouil Fokas, Franz Rödel. Tumor Suppressor Protein p53 and Inhibitor of Apoptosis Proteins in Colorectal Cancer—A Promising Signaling Network for Therapeutic Interventions. Cancers 2021; 13(4): 624 doi: 10.3390/cancers13040624
|
3 |
Huazhong Xie, Pengfei Qiang, Yao Wang, Fan Xia, Peiqing Liu, Min Li. Discovery and mechanism studies of a novel ATG4B inhibitor Ebselen by drug repurposing and its anti-colorectal cancer effects in mice. Cell & Bioscience 2022; 12(1) doi: 10.1186/s13578-022-00944-x
|
4 |
Huimin Wang, Limin Wang, Limin Cao, Qicheng Zhang, Qianqian Song, Zhaowei Meng, Xiang Wu, Ke Xu. Inhibition of autophagy potentiates the anti‐metastasis effect of phenethyl isothiocyanate through JAK2/STAT3 pathway in lung cancer cells. Molecular Carcinogenesis 2018; 57(4): 522 doi: 10.1002/mc.22777
|
5 |
Francesca Cuomo, Lucia Altucci, Gilda Cobellis. Autophagy Function and Dysfunction: Potential Drugs as Anti-Cancer Therapy. Cancers 2019; 11(10): 1465 doi: 10.3390/cancers11101465
|
6 |
Mohammad Hossein Pourhanifeh, Massoud Vosough, Maryam Mahjoubin-Tehran, Maryam Hashemipour, Majid Nejati, Mohammad Abbasi-Kolli, Amirhossein Sahebkar, Hamed Mirzaei. Autophagy-related microRNAs: Possible regulatory roles and therapeutic potential in and gastrointestinal cancers. Pharmacological Research 2020; 161: 105133 doi: 10.1016/j.phrs.2020.105133
|
7 |
Yanfeng Wang, Jianying Xie, Hao Wang, Haixia Huang, Ping Xie. Beclin‑1 suppresses gastric cancer progression by promoting apoptosis and reducing cell migration. Oncology Letters 2017; doi: 10.3892/ol.2017.7046
|
8 |
Jinhua Zhu, Meihui Liu, Yuanfen Liu, Yiting Zhang, Bing Yang, Wei Zhang. Zoledronic Acid Regulates Autophagy and Induces Apoptosis in Colon Cancer Cell Line CT26. BioMed Research International 2017; 2017: 1 doi: 10.1155/2017/7203584
|
9 |
Dongqing Hu, Yanming Huo, Ye Xue, Haixia Feng, Wei Sun, Huiqi Wang, Jing Wu, Xiaoyan Wang. Clinical application of autophagy proteins as prognostic biomarkers in colorectal cancer: a meta-analysis. Future Oncology 2022; 18(31): 3537 doi: 10.2217/fon-2022-0458
|
10 |
Negin Chaeichi-Tehrani, Gordon A. Ferns, Seyed Mahdi Hassanian, Majid Khazaei, Amir Avan. The Therapeutic Potential of Targeting Autophagy in the Treatment of Cancer. Current Cancer Drug Targets 2021; 21(9): 725 doi: 10.2174/1568009621666210601113144
|
11 |
Liang Liang, Zheng Yang, Qian Deng, Yazhuo Jiang, Yongyi Cheng, Yi Sun, Lei Li. Retracted: miR‐30d‐5p suppresses proliferation and autophagy by targeting ATG5 in renal cell carcinoma. FEBS Open Bio 2021; 11(2): 529 doi: 10.1002/2211-5463.13025
|
12 |
Talal El Zarif, Marcel Yibirin, Diana De Oliveira-Gomes, Marc Machaalani, Rashad Nawfal, Gianfranco Bittar, Hisham F. Bahmad, Nizar Bitar. Overcoming Therapy Resistance in Colon Cancer by Drug Repurposing. Cancers 2022; 14(9): 2105 doi: 10.3390/cancers14092105
|
13 |
Martyna Bednarczyk, Małgorzata Muc-Wierzgoń, Nikola Zmarzły, Celina Kruszniewska-Rajs, Beniamin Grabarek, Agata Kaźmierczak, Bartłomiej Skowronek, Klaudia Simka, Dariusz Waniczek, Katarzyna Walkiewicz, Urszula Mazurek. The Transcriptional Activity of LAMP3 Gene Involved in Autophagocytosis in Colorectal Cancer LAMP3 Expression in Colorectal Cancer. Journal of Biosciences and Medicines 2017; 5(12): 24 doi: 10.4236/jbm.2017.512004
|
14 |
Weige Zhou, Shijing Zhang, Hui-biao Li, Zheyou Cai, Shuting Tang, Li-xia Chen, Jian-ying Lang, Zheng Chen, Xin-lin Chen. Development of Prognostic Indicator Based on Autophagy-Related lncRNA Analysis in Colon Adenocarcinoma. BioMed Research International 2020; 2020: 1 doi: 10.1155/2020/9807918
|
15 |
Junyan Qu, Cheng Zeng, Tingting Zou, Xu Chen, Xiaolong Yang, Zhenghong Lin. Autophagy Induction by Trichodermic Acid Attenuates Endoplasmic Reticulum Stress-Mediated Apoptosis in Colon Cancer Cells. International Journal of Molecular Sciences 2021; 22(11): 5566 doi: 10.3390/ijms22115566
|
16 |
Xiang-Jun Fan, Yao Wang, Lei Wang, Mingyan Zhu. Salidroside induces apoptosis and autophagy in human colorectal cancer cells through inhibition of PI3K/Akt/mTOR pathway. Oncology Reports 2016; 36(6): 3559 doi: 10.3892/or.2016.5138
|
17 |
Annie Lauzier, Steve Jean. Colorectal Cancer. Methods in Molecular Biology 2018; 1765: 167 doi: 10.1007/978-1-4939-7765-9_10
|
18 |
Yi Wang, Tong Zhao, Chuyue Huang, Fei Liu, Yang Zhang, Desong Kong, Zhimin Fan. Effect and mechanism of Banxia Xiexin decoction in colorectal cancer: A network pharmacology approach. Phytomedicine 2024; 123: 155174 doi: 10.1016/j.phymed.2023.155174
|
19 |
K. A. Garipov, Z. A. Afanaseva, Z. I. Abramova. On the role of autophagy in the progression of differentiated thyroid cancer (literature review). Siberian journal of oncology 2022; 20(6): 134 doi: 10.21294/1814-4861-2021-20-6-134-140
|
20 |
Hao-Ran Qian, Zhao-Qi Shi, He-Pan Zhu, Li-Hu Gu, Xian-Fa Wang, Yi Yang. Interplay between apoptosis and autophagy in colorectal cancer. Oncotarget 2017; 8(37): 62759 doi: 10.18632/oncotarget.18663
|
21 |
Won Young Jang, Mi-Yeon Kim, Jae Youl Cho. Antioxidant, Anti-Inflammatory, Anti-Menopausal, and Anti-Cancer Effects of Lignans and Their Metabolites. International Journal of Molecular Sciences 2022; 23(24): 15482 doi: 10.3390/ijms232415482
|
22 |
Cheng Lei, Bing Zhao, Lin Liu, Xiangyue Zeng, Zhen Yu, Xiyan Wang. Expression and clinical significance of p62 protein in colon cancer. Medicine 2020; 99(3): e18791 doi: 10.1097/MD.0000000000018791
|
23 |
Kathleen A. Boyle, Jonathan Van Wickle, R. Blake Hill, Adriano Marchese, Balaraman Kalyanaraman, Michael B. Dwinell. Mitochondria-targeted drugs stimulate mitophagy and abrogate colon cancer cell proliferation. Journal of Biological Chemistry 2018; 293(38): 14891 doi: 10.1074/jbc.RA117.001469
|
24 |
Sayooj Madhusoodanan, Saurav Panicker, Satish Ramalingam. Cancer Genes. 2023; : 90 doi: 10.2174/9789815080292123010008
|
25 |
Aya Hamdy Abd-EL Aziz, Heba Mohamed Abdallah, Samah Mohamed Awad, Osama EL-Bahr, Ashraf Khalil, Gamal Youssef Abo Riaa. Association of ATG16L1 genetic variant with Helicobacter pylori infection in Egyptian patients with chronic gastritis disease. Frontiers in Laboratory Medicine 2018; 2(4): 134 doi: 10.1016/j.flm.2019.08.001
|
26 |
Camille Ternet, Christina Kiel. Signaling pathways in intestinal homeostasis and colorectal cancer: KRAS at centre stage. Cell Communication and Signaling 2021; 19(1) doi: 10.1186/s12964-021-00712-3
|
27 |
Daneiva Caro, David Rivera, Yanet Ocampo, Klaus Müller, Luis A. Franco. A promising naphthoquinone [8-hydroxy-2-(2-thienylcarbonyl)naphtho[2,3-b]thiophene-4,9-dione] exerts anti-colorectal cancer activity through ferroptosis and inhibition of MAPK signaling pathway based on RNA sequencing. Open Chemistry 2020; 18(1): 1242 doi: 10.1515/chem-2020-0170
|
28 |
Wenhao Weng, Ajay Goel. Curcumin and colorectal cancer: An update and current perspective on this natural medicine. Seminars in Cancer Biology 2022; 80: 73 doi: 10.1016/j.semcancer.2020.02.011
|
29 |
Charlotte Henstra, Jasper van Praagh, Peter Olinga, Anika Nagelkerke. The gastrointestinal microbiota in colorectal cancer cell migration and invasion. Clinical & Experimental Metastasis 2021; 38(6): 495 doi: 10.1007/s10585-021-10130-x
|
30 |
Li Chen, Man He, Meng Zhang, Qiang Sun, Sha Zeng, Hui Zhao, Han Yang, Maolun Liu, Shan Ren, Xianli Meng, Haibo Xu. The Role of non-coding RNAs in colorectal cancer, with a focus on its autophagy. Pharmacology & Therapeutics 2021; 226: 107868 doi: 10.1016/j.pharmthera.2021.107868
|
31 |
Altered Expression of Autophagy-related Genes in Human Colon Cancer. Exploratory Research and Hypothesis in Medicine 2018; doi: 10.14218/ERHM.2018.00007
|
32 |
Evangelos Koustas, Panagiotis Sarantis, Athanassios G Papavassiliou, Michalis V Karamouzis. Upgraded role of autophagy in colorectal carcinomas. World Journal of Gastrointestinal Oncology 2018; 10(11): 367-369 doi: 10.4251/wjgo.v10.i11.367
|
33 |
Veronika Skarkova, Vera Kralova, Barbora Vitovcova, Emil Rudolf. Selected Aspects of Chemoresistance Mechanisms in Colorectal Carcinoma—A Focus on Epithelial-to-Mesenchymal Transition, Autophagy, and Apoptosis. Cells 2019; 8(3): 234 doi: 10.3390/cells8030234
|
34 |
Javier Fernández-Mateos, Raquel Seijas-Tamayo, Juan Carlos Adansa Klain, Miguel Pastor Borgoñón, Elisabeth Pérez-Ruiz, Ricard Mesía, Elvira del Barco, Carmen Salvador Coloma, Antonio Rueda Dominguez, Javier Caballero Daroqui, Encarnación Fernández Ruiz, Juan Jesús Cruz-Hernández, Rogelio González-Sarmiento. Analysis of autophagy gene polymorphisms in Spanish patients with head and neck squamous cell carcinoma. Scientific Reports 2017; 7(1) doi: 10.1038/s41598-017-07270-0
|
35 |
Xu Wang, Yuanmin Xu, Ting Li, Bo Chen, Wenqi Yang. Development of prognosis model for colon cancer based on autophagy-related genes. World Journal of Surgical Oncology 2020; 18(1) doi: 10.1186/s12957-020-02061-w
|
36 |
Eglal Mahgoub, Jalal Taneera, Nabil Sulaiman, Maha Saber-Ayad. The role of autophagy in colorectal cancer: Impact on pathogenesis and implications in therapy. Frontiers in Medicine 2022; 9 doi: 10.3389/fmed.2022.959348
|
37 |
Maral Hemmati, Bahman Yousefi, Aisa Bahar, Majid Eslami. Importance of Heme Oxygenase-1 in Gastrointestinal Cancers: Functions, Inductions, Regulations, and Signaling. Journal of Gastrointestinal Cancer 2021; 52(2): 454 doi: 10.1007/s12029-021-00587-0
|
38 |
Simone Patergnani, Sonia Missiroli, Giampaolo Morciano, Mariasole Perrone, Cristina M. Mantovani, Gabriele Anania, Francesco Fiorica, Paolo Pinton, Carlotta Giorgi. Understanding the Role of Autophagy in Cancer Formation and Progression Is a Real Opportunity to Treat and Cure Human Cancers. Cancers 2021; 13(22): 5622 doi: 10.3390/cancers13225622
|
39 |
Panagiotis Tsiakanikas, Panagiotis G. Adamopoulos, Dimitra Tsirba, Pinelopi I. Artemaki, Iordanis N. Papadopoulos, Christos K. Kontos, Andreas Scorilas. High Expression of a tRNAPro Derivative Associates with Poor Survival and Independently Predicts Colorectal Cancer Recurrence. Biomedicines 2022; 10(5): 1120 doi: 10.3390/biomedicines10051120
|
40 |
Sai Samyuktha Bandaru, Gantuya Tserenpil, Sindhusha Veeraballi, Mohammad Nabil Rayad, Neha Merchant, Rajendra Boyilla, Ganji Purnachandra Nagaraju.
The Role of Phytochemicals in the Treatment of Colorectal Cancer
. Onco Therapeutics 2022; 9(1): 35 doi: 10.1615/ForumImmunDisTher.2022044453
|
41 |
Ling Duan, Yang Xia, Chunmei Li, Ning Lan, Xiaoming Hou. Identification of Autophagy-Related LncRNA to Predict the Prognosis of Colorectal Cancer. Frontiers in Genetics 2022; 13 doi: 10.3389/fgene.2022.906900
|
42 |
Jin-xiao Li, Qian Yan, Na Liu, Wen-jiang Zheng, Man Hu, Zhao-min Yu, Yu-dian Zhou, Xiong-wen Wang, Feng-xia Liang, Rui Chen, Antonella Fioravanti. The Prognostic Value of Autophagy‐Related Markers Bclin‐1 and LC‐3 in Colorectal Cancers: A Systematic Review and Meta‐analysis. Evidence-Based Complementary and Alternative Medicine 2020; 2020(1) doi: 10.1155/2020/8475840
|
43 |
Marco Beauséjour, Ariane Boutin, Pierre H. Vachon. Anoikis. 2021; : 95 doi: 10.1007/978-3-030-73856-3_5
|
44 |
Martyna Bednarczyk, Nikola Zmarzły, Beniamin Grabarek, Urszula Mazurek, Małgorzata Muc-Wierzgoń. Genes involved in the regulation of different types of autophagy and their participation in cancer pathogenesis. Oncotarget 2018; 9(76): 34413 doi: 10.18632/oncotarget.26126
|
45 |
Eduardo Cremonese Filippi-Chiela, Michelle S. Viegas, Marcos Paulo Thomé, Andreia Buffon, Marcia R. Wink, Guido Lenz. Modulation of Autophagy by Calcium Signalosome in Human Disease. Molecular Pharmacology 2016; 90(3): 371 doi: 10.1124/mol.116.105171
|
46 |
Michael Lee, Hye-Gyo Kim. Anti-Cancer Strategy Based on Changes in the Role of Autophagy Depending on the Survival Environment and Tumorigenesis Stages. Molecules 2024; 29(21): 5134 doi: 10.3390/molecules29215134
|
47 |
Clément Mazouffre, Sophie Geyl, Aurélie Perraud, Sabrina Blondy, Marie‐Odile Jauberteau, Muriel Mathonnet, Mireille Verdier. Dual inhibition of BDNF/TrkB and autophagy: a promising therapeutic approach for colorectal cancer. Journal of Cellular and Molecular Medicine 2017; 21(10): 2610 doi: 10.1111/jcmm.13181
|
48 |
Roberta Santarelli, Chiara Pompili, Maria Saveria Gilardini Montani, Lorenzo Evangelista, Roberta Gonnella, Mara Cirone. 3,4-Dihydroxyphenylethanol (DPE or Hydroxytyrosol) Counteracts ERK1/2 and mTOR Activation, Pro-Inflammatory Cytokine Release, Autophagy and Mitophagy Reduction Mediated by Benzo[a]pyrene in Primary Human Colonic Epithelial Cells. Pharmaceutics 2022; 14(3): 663 doi: 10.3390/pharmaceutics14030663
|
49 |
Alicja Pakiet, Jarosław Kobiela, Piotr Stepnowski, Tomasz Sledzinski, Adriana Mika. Changes in lipids composition and metabolism in colorectal cancer: a review. Lipids in Health and Disease 2019; 18(1) doi: 10.1186/s12944-019-0977-8
|
50 |
Hui Wang, Yanan Wang, Liu Qian, Xue Wang, Hailiang Gu, Xiaoqiang Dong, Shiqian Huang, Min Jin, Hailiang Ge, Congfeng Xu, Yanyun Zhang. RNF216 contributes to proliferation and migration of colorectal cancer via suppressing BECN1-dependent autophagy. Oncotarget 2016; 7(32): 51174 doi: 10.18632/oncotarget.9433
|
51 |
Isabella Gigante, Valeria Tutino, Valentina De Nunzio, Maria Notarnicola. Colorectal Cancer and Bone Tissue: Fantastic Relations and Where to Find Them. Cancers 2020; 12(8): 2029 doi: 10.3390/cancers12082029
|
52 |
Saeideh Gholamzadeh Khoei, Massoud Saidijam, Razieh Amini, Akram Jalali, Rezvan Najafi. Impact of PIN1 Inhibition on Tumor Progression and Chemotherapy Sensitivity in Colorectal Cancer. Journal of Gastrointestinal Cancer 2022; 53(2): 299 doi: 10.1007/s12029-021-00600-6
|
53 |
Dalia Mohamed Elsayed Alian, Maged W. Helmy, Medhat Haroun, Nermine Moussa. Modulation of autophagy and apoptosis can contribute to the anticancer effect of Abemaciclib/Celecoxib combination in colon cancer cells. Medical Oncology 2024; 41(2) doi: 10.1007/s12032-023-02288-z
|
54 |
Lin Liu, Hai-Jiang Wang, Tao Meng, Cheng Lei, Xin-Hui Yang, Qi-San Wang, Bo Jin, Jin-Feng Zhu. RETRACTED: lncRNA GAS5 Inhibits Cell Migration and Invasion and Promotes Autophagy by Targeting miR-222-3p via the GAS5/PTEN-Signaling Pathway in CRC. Molecular Therapy - Nucleic Acids 2019; 17: 644 doi: 10.1016/j.omtn.2019.06.009
|
55 |
Annie Lauzier, Josiann Normandeau-Guimond, Vanessa Vaillancourt-Lavigueur, Vincent Boivin, Martine Charbonneau, Nathalie Rivard, Michelle S. Scott, Claire M. Dubois, Steve Jean. Colorectal cancer cells respond differentially to autophagy inhibition in vivo. Scientific Reports 2019; 9(1) doi: 10.1038/s41598-019-47659-7
|
56 |
Shuo Chen, Yan Wang, Boxue Wang, Lin Zhang, Yinan Su, Mingyue Xu, Mingqing Zhang, Hassan Ashktorab. A signature based on 11 autophagy genes for prognosis prediction of colorectal cancer. PLOS ONE 2021; 16(10): e0258741 doi: 10.1371/journal.pone.0258741
|
57 |
Pan Wang, Meijing Long, Shijie Zhang, Zhenyun Cheng, Xin Zhao, Fucheng He, Hongchun Liu, Liang Ming. Hypoxia inducible factor-1α regulates autophagy via the p27-E2F1 signaling pathway. Molecular Medicine Reports 2017; 16(2): 2107 doi: 10.3892/mmr.2017.6794
|
58 |
Michael Mikula, Saleh Najjar, Tony El Jabbour, Siddhartha Dalvi, Kavita Umrau, Hua Li, Brandon H. Koo, Hwajeong Lee. Increased Cytoplasmic Yes-associated Protein (YAP) Expression in Mismatch Repair Protein-Proficient Colorectal Cancer With High-grade Tumor Budding and Reduced Autophagy Activity. Applied Immunohistochemistry & Molecular Morphology 2021; 29(4): 305 doi: 10.1097/PAI.0000000000000888
|
59 |
Eleni G. Christodoulou, Hai Yang, Franziska Lademann, Christian Pilarsky, Andreas Beyer, Michael Schroeder. Detection of COPB2 as a KRAS synthetic lethal partner through integration of functional genomics screens. Oncotarget 2017; 8(21): 34283 doi: 10.18632/oncotarget.16079
|
60 |
Wanyun Li, Cong Liu, Zilan Huang, Lei Shi, Chuanqi Zhong, Wenwen Zhou, Peipei Meng, Zhenyu Li, Shengyu Wang, Fanghong Luo, Jianghua Yan, Ting Wu. AKR1B10 negatively regulates autophagy through reducing GAPDH upon glucose starvation in colon cancer. Journal of Cell Science 2021; 134(8) doi: 10.1242/jcs.255273
|
61 |
Su Min Lim, Ezanee Azlina Mohamad Hanif, Siok-Fong Chin. Is targeting autophagy mechanism in cancer a good approach? The possible double-edge sword effect. Cell & Bioscience 2021; 11(1) doi: 10.1186/s13578-021-00570-z
|
62 |
Chen Sun, Fu-Jing Wang, Hao-Gang Zhang, Xun-Zheng Xu, Rui-Chun Jia, Lei Yao, Peng-Fei Qiao. miR-34a mediates oxaliplatin resistance of colorectal cancer cells by inhibiting macroautophagy <i>via</i> transforming growth factor-β/Smad4 pathway. World Journal of Gastroenterology 2017; 23(10): 1816-1827 doi: 10.3748/wjg.v23.i10.1816
|
63 |
Jiah Yeom, Seongho Ma, Young-Hee Lim. Oxyresveratrol Induces Autophagy via the ER Stress Signaling Pathway, and Oxyresveratrol-Induced Autophagy Stimulates MUC2 Synthesis in Human Goblet Cells. Antioxidants 2020; 9(3): 214 doi: 10.3390/antiox9030214
|
64 |
Aldona Kasprzak. Autophagy and the Insulin-like Growth Factor (IGF) System in Colonic Cells: Implications for Colorectal Neoplasia. International Journal of Molecular Sciences 2023; 24(4): 3665 doi: 10.3390/ijms24043665
|
65 |
Mohammad Saleh Moulana, Sanya Haiaty, Ahad Bazmani, Roya Shabkhizan, Marziyeh Sadat Moslehian, Fatemeh Sadeghsoltani, Mostafa Mostafazadeh, Mohammad Reza Asadi, Mehdi Talebi, Zahra Jafari, Mohammad Reza Morovati, Mohammad Hosein Farzaei, Reza Rahbarghazi. Tumoricidal properties of thymoquinone on human colorectal adenocarcinoma cells via the modulation of autophagy. BMC Complementary Medicine and Therapies 2024; 24(1) doi: 10.1186/s12906-024-04432-2
|
66 |
Martyna Bednarczyk, Edyta Fatyga, Sylwia Dzięgielewska-Gęsiak, Dariusz Waniczek, Beniamin Grabarek, Nikola Zmarzły, Grażyna Janikowska, Małgorzata Muc-Wierzgoń. The Expression Patterns of BECN1, LAMP2, and PINK1 Genes in Colorectal Cancer Are Potentially Regulated by Micrornas and CpG Islands: An In Silico Study. Journal of Clinical Medicine 2020; 9(12): 4020 doi: 10.3390/jcm9124020
|
67 |
Monika Bhardwaj, Hee Jun Cho, Souren Paul, Rekha Jakhar, Imran Khan, Seon-Jin Lee, Bo-Yeon Kim, Manigandan Krishnan, Tejinder Pal Khaket, Hee Gu Lee, Sun Chul Kang. Vitexin induces apoptosis by suppressing autophagy in multi-drug resistant colorectal cancer cells. Oncotarget 2018; 9(3): 3278 doi: 10.18632/oncotarget.22890
|
68 |
E. Bueno-Martínez, M. Lara-Almunia, C. Rodríguez-Arias, A. Otero-Rodríguez, S. Garfias-Arjona, R. González-Sarmiento. Polymorphisms in autophagy genes are genetic susceptibility factors in glioblastoma development. BMC Cancer 2022; 22(1) doi: 10.1186/s12885-022-09214-y
|
69 |
Ahmed Mostafa Ibrahim Abdelrahman Hassan, Yuxin Zhao, Xiuping Chen, Chengwei He. Blockage of Autophagy for Cancer Therapy: A Comprehensive Review. International Journal of Molecular Sciences 2024; 25(13): 7459 doi: 10.3390/ijms25137459
|
70 |
Ping Ke, Bo-Zong Shao, Zhe-Qi Xu, Xiong-Wen Chen, Chong Liu. Intestinal Autophagy and Its Pharmacological Control in Inflammatory Bowel Disease. Frontiers in Immunology 2017; 7 doi: 10.3389/fimmu.2016.00695
|
71 |
Juan Sainz, Francisco José García-Verdejo, Manuel Martínez-Bueno, Abhishek Kumar, José Manuel Sánchez-Maldonado, Anna Díez-Villanueva, Ludmila Vodičková, Veronika Vymetálková, Vicente Martin Sánchez, Miguel Inacio Da Silva Filho, Belém Sampaio-Marques, Stefanie Brezina, Katja Butterbach, Rob ter Horst, Michael Hoffmeister, Paula Ludovico, Manuel Jurado, Yang Li, Pedro Sánchez-Rovira, Mihai G. Netea, Andrea Gsur, Pavel Vodička, Víctor Moreno, Kari Hemminki, Hermann Brenner, Jenny Chang-Claude, Asta Försti. Polymorphisms within Autophagy-Related Genes Influence the Risk of Developing Colorectal Cancer: A Meta-Analysis of Four Large Cohorts. Cancers 2021; 13(6): 1258 doi: 10.3390/cancers13061258
|
72 |
Zhu‐Jun Zhuang, Fa‐Jing Li, Di Lv, Heng‐Qian Duan, Lin‐Yi Chen, Peng Chen, Zhi‐Qiang Shen, Bo He. Regulation of Autophagy Signaling Pathways by Ginseng Saponins: A Review. Chemistry & Biodiversity 2024; 21(8) doi: 10.1002/cbdv.202400934
|
73 |
Maria Castejón, Adrian Plaza, Jorge Martinez-Romero, Pablo Jose Fernandez-Marcos, Rafael de Cabo, Alberto Diaz-Ruiz. Energy Restriction and Colorectal Cancer: A Call for Additional Research. Nutrients 2020; 12(1): 114 doi: 10.3390/nu12010114
|
74 |
Elmira Roshani-Asl, Behzad Mansori, Ali Mohammadi, Souzan Najafi, Fahima Danesh-Pouya, Yousef Rasmi. Interaction between DNA damage response and autophagy in colorectal cancer. Gene 2020; 730: 144323 doi: 10.1016/j.gene.2019.144323
|
75 |
B Luo, Y Lin, S Jiang, L Huang, H Yao, Q Zhuang, R Zhao, H Liu, C He, Z Lin. Endoplasmic reticulum stress eIF2α–ATF4 pathway-mediated cyclooxygenase-2 induction regulates cadmium-induced autophagy in kidney. Cell Death & Disease 2016; 7(6): e2251 doi: 10.1038/cddis.2016.78
|
76 |
Evangelos Koustas, Michalis V. Karamouzis, Chrysovalantou Mihailidou, Dimitrios Schizas, Athanasios G. Papavassiliou. Co-targeting of EGFR and autophagy signaling is an emerging treatment strategy in metastatic colorectal cancer. Cancer Letters 2017; 396: 94 doi: 10.1016/j.canlet.2017.03.023
|
77 |
Eunbyul Ji, Heejin Lee, Sojin Ahn, Myeongwoo Jung, Sung Hak Lee, Jeong-Hwa Lee, Eun Kyung Lee. Heterogeneous nuclear ribonucleoprotein A1 promotes the expression of autophagy-related protein 6 in human colorectal cancer. Biochemical and Biophysical Research Communications 2019; 513(1): 255 doi: 10.1016/j.bbrc.2019.03.179
|
78 |
Sakine Shirvalilou, Sepideh Khoee, Samideh Khoei, Mohammad Reza Karimi, Elaheh Sadri, Milad Shirvaliloo. Targeted magnetochemotherapy modified by 5-Fu-loaded thermally on/off switching nanoheaters for the eradication of CT26 murine colon cancer by inducing apoptotic and autophagic cell death. Cancer Nanotechnology 2023; 14(1) doi: 10.1186/s12645-023-00164-z
|
79 |
Lei Yu, Miao-Miao Zhang, Ji-Guang Hou. Molecular and cellular pathways in colorectal cancer: apoptosis, autophagy and inflammation as key players. Scandinavian Journal of Gastroenterology 2022; 57(11): 1279 doi: 10.1080/00365521.2022.2088247
|
80 |
Farnaz Ahmadi‐Dehlaghi, Parisa Mohammadi, Elahe Valipour, Pouya Pournaghi, Sarah Kiani, Kamran Mansouri. Autophagy: A challengeable paradox in cancer treatment. Cancer Medicine 2023; 12(10): 11542 doi: 10.1002/cam4.5577
|
81 |
Zhen Dong, Hongjuan Cui. The Autophagy-Lysosomal Pathways and Their Emerging Roles in Modulating Proteostasis in Tumors. Cells 2018; 8(1): 4 doi: 10.3390/cells8010004
|
82 |
Leila Jamali, Hossein Sadeghi, Mohammad‐Reza Ghasemi, Roohollah Mohseni, Ehsan Nazemalhosseini‐Mojarad, Vahid Reza Yassaee, Pegah Larki, Mohammad Reza Zali, Reza Mirfakhraie. Autophagy ATG16L1 rs2241880 impacts the colorectal cancer risk: A case‐control study. Journal of Clinical Laboratory Analysis 2022; 36(1) doi: 10.1002/jcla.24169
|
83 |
Juan Zhang, Dake Chu, Takuji Kawamura, Kiyohito Tanaka, Shuixiang He. GRIM‐19 repressed hypoxia‐induced invasion and EMT of colorectal cancer by repressing autophagy through inactivation of STAT3/HIF‐1α signaling axis. Journal of Cellular Physiology 2019; 234(8): 12800 doi: 10.1002/jcp.27914
|
84 |
Kian Chung Chok, Rhun Yian Koh, Ming Guan Ng, Pei Ying Ng, Soi Moi Chye. Melatonin Induces Autophagy via Reactive Oxygen Species-Mediated Endoplasmic Reticulum Stress Pathway in Colorectal Cancer Cells. Molecules 2021; 26(16): 5038 doi: 10.3390/molecules26165038
|
85 |
Liu Ding, Liu Congwei, Qing Bei, Yang Tao, Wang Ruiguo, Yu Heze, Dou Bo, Li Zhihong. mTOR: An attractive therapeutic target for osteosarcoma?. Oncotarget 2016; 7(31): 50805 doi: 10.18632/oncotarget.9305
|
86 |
Hailei Du, Jiamin Che, Minmin Shi, Lianggang Zhu, Jun Hang, Zhongyuan Chen, Hecheng Li. Beclin 1 expression is associated with the occurrence and development of esophageal squamous cell carcinoma. Oncology Letters 2017; doi: 10.3892/ol.2017.7015
|
87 |
Ferda Kaleağasıoğlu, Doaa M. Ali, Martin R. Berger. Multiple Facets of Autophagy and the Emerging Role of Alkylphosphocholines as Autophagy Modulators. Frontiers in Pharmacology 2020; 11 doi: 10.3389/fphar.2020.00547
|
88 |
Ping Zhang, Yan Wang, Xue‑Rong Liu, Shi‑Ru Hong, Jian Yao. Downregulated Tim‑3 expression is responsible for the incidence and development of colorectal cancer. Oncology Letters 2018; doi: 10.3892/ol.2018.8697
|
89 |
Qiang Yu, Jiajun Ding, Shisen Li, Yunlong Li. Autophagy in cancer immunotherapy: Perspective on immune evasion and cell death interactions. Cancer Letters 2024; 590: 216856 doi: 10.1016/j.canlet.2024.216856
|
90 |
Daiju Tao, Fajing Li, Xiaochao Zhang, Hui Guo, Renhua Yang, Yuan Yang, Li Zhang, Zhiqiang Shen, Jia Teng, Peng Chen, Bo He. 20(R)-ginsenoside Rg3 protects against focal cerebral ischemia‒reperfusion injury by suppressing autophagy via PI3K/Akt/mTOR signaling pathway. Neuropharmacology 2025; 263: 110226 doi: 10.1016/j.neuropharm.2024.110226
|
91 |
Giulia Petroni, Giacomo Bagni, Jessica Iorio, Claudia Duranti, Tiziano Lottini, Matteo Stefanini, Goran Kragol, Andrea Becchetti, Annarosa Arcangeli. Clarithromycin inhibits autophagy in colorectal cancer by regulating the hERG1 potassium channel interaction with PI3K. Cell Death & Disease 2020; 11(3) doi: 10.1038/s41419-020-2349-8
|
92 |
Helle Samdal, Malin A. Sandmoe, Lene C. Olsen, Elaf A. H. Jarallah, Therese S. Høiem, Svanhild A. Schønberg, Caroline H. H. Pettersen. Basal level of autophagy and MAP1LC3B‐II as potential biomarkers for DHA‐induced cytotoxicity in colorectal cancer cells. The FEBS Journal 2018; 285(13): 2446 doi: 10.1111/febs.14488
|
93 |
Yanping Wu, Li Tang, Baikui Wang, Qiming Sun, Pengwei Zhao, Weifen Li. The role of autophagy in maintaining intestinal mucosal barrier. Journal of Cellular Physiology 2019; 234(11): 19406 doi: 10.1002/jcp.28722
|
94 |
Hsin-Wu Lai, James Cheng-Chung Wei, Hung-Chang Hung, Chun-Che Lin. Adenine Inhibits the Growth of Colon Cancer Cells via AMP-Activated Protein Kinase Mediated Autophagy. Evidence-Based Complementary and Alternative Medicine 2019; 2019: 1 doi: 10.1155/2019/9151070
|
95 |
Ehsan Gharib, Gilles A. Robichaud. From Crypts to Cancer: A Holistic Perspective on Colorectal Carcinogenesis and Therapeutic Strategies. International Journal of Molecular Sciences 2024; 25(17): 9463 doi: 10.3390/ijms25179463
|
96 |
Shaista Manzoor, Jibran Sualeh Muhammad, Azzam A. Maghazachi, Qutayba Hamid. Autophagy: A Versatile Player in the Progression of Colorectal Cancer and Drug Resistance. Frontiers in Oncology 2022; 12 doi: 10.3389/fonc.2022.924290
|
97 |
Hong Zhao, Maopeng Yang, Bin Zhao. Beclin 1 and LC3 as predictive biomarkers for metastatic colorectal carcinoma. Oncotarget 2017; 8(35): 59058 doi: 10.18632/oncotarget.19939
|
98 |
Jinyu Xiang, Wenjing Gong, Jiannan Liu, Huijuan Zhang, Ming Li, Rujian Wang, Yaodong Lv, Ping Sun. Identification of DLL3-related genes affecting the prognosis of patients with colon adenocarcinoma. Frontiers in Genetics 2023; 14 doi: 10.3389/fgene.2023.1098190
|
99 |
Andrew E. Teschendorff, Ning Wang. Improved detection of tumor suppressor events in single-cell RNA-Seq data. npj Genomic Medicine 2020; 5(1) doi: 10.1038/s41525-020-00151-y
|
100 |
Pallab Chakraborty. Contrasting Role of Autophagy in Different Types of Cancer. Biomedical and Biotechnology Research Journal (BBRJ) 2021; 5(3): 260 doi: 10.4103/bbrj.bbrj_123_21
|
101 |
Haiqing Guo, Wei Lin, Xiangying Zhang, Xiaohui Zhang, Zhongjie Hu, Liying Li, Zhongping Duan, Jing Zhang, Feng Ren. Kaempferol induces hepatocellular carcinoma cell death via endoplasmic reticulum stress-CHOP-autophagy signaling pathway. Oncotarget 2017; 8(47): 82207 doi: 10.18632/oncotarget.19200
|
102 |
Heba A. Hassan, Naglaa M. Ammar, Ahmed Serag, Olfat G. Shaker, Abdel Nasser El Gendy, Abdel-Hamid Z. Abdel-Hamid. Metabolomics driven analysis of obesity-linked colorectal cancer patients via GC-MS and chemometrics: A pilot study. Microchemical Journal 2020; 155: 104742 doi: 10.1016/j.microc.2020.104742
|
103 |
Evangelos Koustas, Athanasios G. Papavassiliou, Michalis V. Karamouzis, Vladimir Trajkovic. The role of autophagy in the treatment of BRAF mutant colorectal carcinomas differs based on microsatellite instability status. PLOS ONE 2018; 13(11): e0207227 doi: 10.1371/journal.pone.0207227
|
104 |
Samantha N Devenport, Yatrik M Shah. Functions and Implications of Autophagy in Colon Cancer. Cells 2019; 8(11): 1349 doi: 10.3390/cells8111349
|
105 |
Wynn Thein, Wah Wah Po, Won Seok Choi, Uy Dong Sohn. Autophagy and Digestive Disorders: Advances in Understanding and Therapeutic Approaches. Biomolecules & Therapeutics 2021; 29(4): 353 doi: 10.4062/biomolther.2021.086
|
106 |
Hau-Lun Huang, Wei-Ching Chen, Hui-Ping Hsu, Chien-Yu Cho, Yu-Hsuan Hung, Chih-Yang Wang, Ming-Derg Lai. Silencing of argininosuccinate lyase inhibits colorectal cancer formation. Oncology Reports 2017; 37(1): 163 doi: 10.3892/or.2016.5221
|
107 |
Valdenizia R. Silva, Sara P. Neves, Luciano de S. Santos, Rosane B. Dias, Daniel P. Bezerra. Challenges and Therapeutic Opportunities of Autophagy in Cancer Therapy. Cancers 2020; 12(11): 3461 doi: 10.3390/cancers12113461
|
108 |
Shalini Mani, Geeta Swargiary, Sakshi Tyagi, Manisha Singh, Niraj Kumar Jha, Keshav K. Singh. Nanotherapeutic approaches to target mitochondria in cancer. Life Sciences 2021; 281: 119773 doi: 10.1016/j.lfs.2021.119773
|
109 |
Yudian Zhao, Sujin Si, Yangguang Ren, Xing Wu, Zihao Zhang, Yixiang Tian, Jing Li, Yijie Li, Meng Hou, Xueyang Yao, Zhaoheng Xu, Ruirui Jiang, Xiangtao Kang, Yujie Gong, Qiang Li, Yadong Tian. Marine red yeast supplementation improves laying performance by regulating small intestinal homeostasis in aging chickens. Animal Nutrition 2024; 18: 177 doi: 10.1016/j.aninu.2024.04.022
|
110 |
Qian Feng, Haojia Wang, Jiaying Pang, Liyan Ji, Jiada Han, Ying Wang, Xiaoxiao Qi, Zhongqiu Liu, Linlin Lu. Prevention of Wogonin on Colorectal Cancer Tumorigenesis by Regulating p53 Nuclear Translocation. Frontiers in Pharmacology 2018; 9 doi: 10.3389/fphar.2018.01356
|
111 |
Dan Liao, Tong Li, Caiguo Ye, Liuyan Zeng, Huahui Li, Xingxiang Pu, Congcong Ding, Zhiwei He, Guo‑Liang Huang. miR‑221 inhibits autophagy and targets TP53INP1 in colorectal cancer cells. Experimental and Therapeutic Medicine 2017; doi: 10.3892/etm.2017.5522
|
112 |
Jia Nie, Di Wang, MingJian Li. The crosstalk between autophagy and myeloid-derived suppressor cell responses in cancer. Clinical and Translational Oncology 2023; 25(10): 2832 doi: 10.1007/s12094-023-03160-2
|
113 |
Andresa Borges Soares, Elizabeth Ferreira Martinez, Patricia Fernandes Avila Ribeiro, Icleia Siqueira Barreto, Maria Cássia Aguiar, Cristiane Furuse, Marcelo Sperandio, Victor Angelo Montalli, Ney Soares de Araújo, Vera Cavalcanti de Araújo. Factors that may influence polymorphous low-grade adenocarcinoma growth. Virchows Archiv 2017; 470(4): 437 doi: 10.1007/s00428-017-2085-3
|
114 |
Zhewen Zhang, Zhuan Liu, Jing Chen, Juan Yi, Juan Cheng, Wangqing Dun, Hulai Wei. Resveratrol induces autophagic apoptosis via the lysosomal cathepsin D pathway in human drug‑resistant K562/ADM leukemia cells. Experimental and Therapeutic Medicine 2018; doi: 10.3892/etm.2018.5742
|
115 |
Evangelos Koustas, Panagiotis Sarantis, Georgia Kyriakopoulou, Athanasios G. Papavassiliou, Michalis V. Karamouzis. The Interplay of Autophagy and Tumor Microenvironment in Colorectal Cancer—Ways of Enhancing Immunotherapy Action. Cancers 2019; 11(4): 533 doi: 10.3390/cancers11040533
|
116 |
Györgyi Műzes, Ferenc Sipos. Inflammasomes Are Influenced by Epigenetic and Autophagy Mechanisms in Colorectal Cancer Signaling. International Journal of Molecular Sciences 2024; 25(11): 6167 doi: 10.3390/ijms25116167
|
117 |
Marwa Said Abd Allah, Heba Mohammed Rashad. Significance of Beclin-1, hypoxia-inducible factor-1α, and nuclear factor-κB/p65 expression in colorectal carcinoma. Egyptian Journal of Pathology 2017; 37(2): 274 doi: 10.1097/01.XEJ.0000526547.25292
|
118 |
Yang Yang, Mingyang Feng, LiangLiang Bai, Mengxi Zhang, Kexun Zhou, Weiting Liao, Wanting Lei, Nan Zhang, Jiaxing Huang, Qiu Li. The Effects of Autophagy-Related Genes and lncRNAs in Therapy and Prognosis of Colorectal Cancer. Frontiers in Oncology 2021; 11 doi: 10.3389/fonc.2021.582040
|
119 |
Evangelos Koustas, Panagiotis Sarantis, Stamatios Theoharis, Angelica A. Saetta, Ilenia Chatziandreou, Georgia Kyriakopoulou, Ioanna Giannopoulou, Maria Michelli, Dimitrios Schizas, Athanasios G. Papavassiliou, Michalis V. Karamouzis. Autophagy-related Proteins as a Prognostic Factor of Patients With Colorectal Cancer. American Journal of Clinical Oncology 2019; 42(10): 767 doi: 10.1097/COC.0000000000000592
|
120 |
Takanori Inoue, Yoshito Hayashi, Yoshiki Tsujii, Shunsuke Yoshii, Akihiko Sakatani, Keiichi Kimura, Ryotaro Uema, Minoru Kato, Hirotsugu Saiki, Shinichiro Shinzaki, Hideki Iijima, Tetsuo Takehara. Suppression of autophagy promotes fibroblast activation in p53-deficient colorectal cancer cells. Scientific Reports 2021; 11(1) doi: 10.1038/s41598-021-98865-1
|
121 |
Yangyang Dong, Zhibin Lin, Wenbing Zou, Yan Liu, Huiyang Qian. Effect of survivin-antisense oligonucleotide (ASODN) nano gene-carrier on apoptotic cycle and cyclooxygenase-2 (COX-2) expression in rectal cancer cells. Materials Express 2022; 12(3): 480 doi: 10.1166/mex.2022.2171
|
122 |
Yang Pan, Zhiqiang Zhao, Juan Li, Jinsong Li, Yue Luo, Weiyuxin Li, Wanbang You, Yujun Zhang, Zhonghan Li, Jian Yang, Zhi-Xiong Jim Xiao, Yang Wang. Nuclear Beclin 1 Destabilizes Retinoblastoma Protein to Promote Cell Cycle Progression and Colorectal Cancer Growth. Cancers 2022; 14(19): 4735 doi: 10.3390/cancers14194735
|