For: | Sun L, Wang X. Effects of allicin on both telomerase activity and apoptosis in gastric cancer SGC-7901 cells. World J Gastroenterol 2003; 9(9): 1930-1934 [PMID: 12970878 DOI: 10.3748/wjg.v9.i9.1930] |
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URL: | https://www.wjgnet.com/1007-9327/full/v9/i9/1930.htm |
Number | Citing Articles |
1 |
Atousa Haghi, Haniye Azimi, Roja Rahimi. A Comprehensive Review on Pharmacotherapeutics of Three Phytochemicals, Curcumin, Quercetin, and Allicin, in the Treatment of Gastric Cancer. Journal of Gastrointestinal Cancer 2017; 48(4): 314 doi: 10.1007/s12029-017-9997-7
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2 |
Rania M. Hathout, Abdelkader A. Metwally, Sherweit H. El-Ahmady, Eman S. Metwally, Noha A. Ghonim, Salma A. Bayoumy, Tarek Erfan, Rosaline Ashraf, Maha Fadel, Abdullah I. El-Kholy, John G. Hardy. Dual stimuli-responsive polypyrrole nanoparticles for anticancer therapy. Journal of Drug Delivery Science and Technology 2018; 47: 176 doi: 10.1016/j.jddst.2018.07.002
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3 |
Amancio Carnero, Carmen Blanco-Aparicio, Hiroshi Kondoh, Matilde E. Lleonart, Juan Fernando Martinez-Leal, Chiara Mondello, A.Ivana Scovassi, William H. Bisson, Amedeo Amedei, Rabindra Roy, Jordan Woodrick, Annamaria Colacci, Monica Vaccari, Jayadev Raju, Fahd Al-Mulla, Rabeah Al-Temaimi, Hosni K. Salem, Lorenzo Memeo, Stefano Forte, Neetu Singh, Roslida A. Hamid, Elizabeth P. Ryan, Dustin G. Brown, John Pierce Wise, Sandra S. Wise, Hemad Yasaei. Disruptive chemicals, senescence and immortality. Carcinogenesis 2015; 36(Suppl 1): S19 doi: 10.1093/carcin/bgv029
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4 |
Elena Catanzaro, Donatella Canistro, Valentina Pellicioni, Fabio Vivarelli, Carmela Fimognari. Anticancer potential of allicin: A review. Pharmacological Research 2022; 177: 106118 doi: 10.1016/j.phrs.2022.106118
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5 |
Yun Zhang, Hang-Ping Yao, Fang-Fang Huang, Wei Wu, Yuan Gao, Zuo-Bing Chen, Zhong-Yan Liang, Ting-Bo Liang. Allicin, a major component of garlic, inhibits apoptosis in vital organs in rats with trauma/hemorrhagic shock*. Critical Care Medicine 2008; 36(12): 3226 doi: 10.1097/CCM.0b013e31818f2103
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6 |
Ning Zhao, Wendi Wang, Haoyue Jiang, Zhengkang Qiao, Shiming Sun, Yang Wei, Xinru Xie, Hui Li, Xiuli Bi, Zhe Yang. Natural Products and Gastric Cancer: Cellular Mechanisms and Effects to Change
Cancer Progression. Anti-Cancer Agents in Medicinal Chemistry 2023; 23(13): 1506 doi: 10.2174/1871520623666230407082955
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7 |
Sheng-Xiong Zhang, Wei Liu, Bo Ai, Ling-Ling Sun, Zhe-Sheng Chen, Li-Zhu Lin. Current Advances and Outlook in Gastric Cancer Chemoresistance: A Review. Recent Patents on Anti-Cancer Drug Discovery 2022; 17(1): 26 doi: 10.2174/1574892816666210929165729
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8 |
Bahare Salehi, Paolo Zucca, Ilkay Erdogan Orhan, Elena Azzini, Charles Oluwaseun Adetunji, Soheb Anwar Mohammed, Sanjay K. Banerjee, Farukh Sharopov, Daniela Rigano, Javad Sharifi-Rad, Lorene Armstrong, Miquel Martorell, Antoni Sureda, Natália Martins, Zeliha Selamoğlu, Zaheer Ahmad. Allicin and health: A comprehensive review. Trends in Food Science & Technology 2019; 86: 502 doi: 10.1016/j.tifs.2019.03.003
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9 |
Jack Li-Yang Chen, Jonathan Sperry, Nancy Y. Ip, Margaret A. Brimble. Natural products targeting telomere maintenance. MedChemComm 2011; 2(4): 229 doi: 10.1039/c0md00241k
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10 |
Bhavana Jodha, Sunita Patel. Nanotechnology Based Delivery of Phytoconstituents and Cosmeceuticals. 2024; : 63 doi: 10.1007/978-981-99-5314-1_3
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11 |
Alyssa A. Sprouse, Catherine E. Steding, Brittney‐Shea Herbert. Pharmaceutical regulation of telomerase and its clinical potential. Journal of Cellular and Molecular Medicine 2012; 16(1): 1 doi: 10.1111/j.1582-4934.2011.01460.x
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12 |
Yinghua Li, Haifeng Gao, Yan Wang, Chaoyang Dai. Investigation the mechanism of the apoptosis induced by lactacystin in gastric cancer cells. Tumor Biology 2015; 36(5): 3465 doi: 10.1007/s13277-014-2982-x
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13 |
Marco Malavolta, Massimo Bracci, Lory Santarelli, Md Abu Sayeed, Elisa Pierpaoli, Robertina Giacconi, Laura Costarelli, Francesco Piacenza, Andrea Basso, Maurizio Cardelli, Mauro Provinciali. Inducers of Senescence, Toxic Compounds, and Senolytics: The Multiple Faces of Nrf2-Activating Phytochemicals in Cancer Adjuvant Therapy. Mediators of Inflammation 2018; 2018: 1 doi: 10.1155/2018/4159013
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14 |
Vitalia V. Kulikova, Elena A. Morozova, Vasiliy S. Koval, Pavel N. Solyev, Tatyana V. Demidkina, Svetlana V. Revtovich. Thiosulfinates: Cytotoxic and Antitumor Activity. Biochemistry (Moscow) 2023; 88(7): 912 doi: 10.1134/S0006297923070052
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15 |
Nora Astrain-Redin, Carmen Sanmartin, Arun K. Sharma, Daniel Plano. From Natural Sources to Synthetic Derivatives: The Allyl Motif as a Powerful Tool for Fragment-Based Design in Cancer Treatment. Journal of Medicinal Chemistry 2023; 66(6): 3703 doi: 10.1021/acs.jmedchem.2c01406
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16 |
Brigitte Czepukojc, Thomas Schneider, Torsten Burkholz, Vincent Jamier, Claus Jacob. Natural compounds as inducers of cell death. 2012; : 293 doi: 10.1007/978-94-007-4575-9_12
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17 |
Masha Prager‐Khoutorsky, Igor Goncharov, Aharon Rabinkov, David Mirelman, Benjamin Geiger, Alexander D. Bershadsky. Allicin inhibits cell polarization, migration and division via its direct effect on microtubules. Cell Motility 2007; 64(5): 321 doi: 10.1002/cm.20185
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18 |
Weitao Jiang, Dong Niu, Lanlan Wei, Guoyong Ye, Lanlan Wang, Hongzhong Liu, Ping Chen, Feng Luo, Bingheng Lu. Controllable actuation of photomechanical bilayer nanocomposites for in vitro cell manipulation. Carbon 2018; 139: 1048 doi: 10.1016/j.carbon.2018.07.074
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19 |
Shereen S.T. Ahmed, John Refaat Fahim, Khayrya A. Youssif, Mohamed N. Amin, Hossam M.H. Abdel-Aziz, Alexander O. Brachmann, Jörn Piel, Usama Ramadan Abdelmohsen, Ashraf Nageeb Elsayed Hamed. Cytotoxic potential of Allium sativum L. roots and their green synthesized nanoparticles supported with metabolomics and molecular docking analyses. South African Journal of Botany 2021; 142: 131 doi: 10.1016/j.sajb.2021.06.020
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20 |
V. V Kulikova, E. A Morozova, V. S Koval, P. N Solyev, T. V Demidkina, S. V Revtovich. Thiosulfinates: cytotoxic and antitumor activity. Биохимия 2023; 88(7): 1123 doi: 10.31857/S0320972523070059
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21 |
Haoli Wang, Jianwen Zhou, Qiong He, Yu Dong, Yanhui Liu. Azidothymidine inhibits cell growth and telomerase activity and induces DNA damage in human esophageal cancer. Molecular Medicine Reports 2017; 15(6): 4055 doi: 10.3892/mmr.2017.6549
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22 |
Saleh A. Almatroodi, Mohammed A. Alsahli, Ahmad Almatroudi, Arshad H. Rahmani. Garlic and its Active Compounds: A Potential Candidate in The Prevention of Cancer by Modulating Various Cell Signalling Pathways. Anti-Cancer Agents in Medicinal Chemistry 2019; 19(11): 1314 doi: 10.2174/1871520619666190409100955
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23 |
Talia Miron, Meir Wilchek, Lev Shvidel, Alain Berrebi, Fabian D. Arditti. S-allyl derivatives of 6-mercaptopurine are highly potent drugs against human B-CLL through synergism between 6-mercaptopurine and allicin. Leukemia Research 2012; 36(12): 1536 doi: 10.1016/j.leukres.2012.08.023
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24 |
Seyed Isaac Hashemy, Hamed Amiri, Hossein Hosseini, Farzaneh Sadeghzadeh, Muslem Mohammed Mosa Jaseem, Masoud Homayouni Tabrizi. PEGylated Lecithin–Chitosan–Folic Acid Nanoparticles as Nanocarriers of Allicin for In Vitro Controlled Release and Anticancer Effects. Applied Biochemistry and Biotechnology 2023; 195(7): 4036 doi: 10.1007/s12010-022-04310-y
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25 |
Yinnan Chen, Yanmin Zhang. Functional and mechanistic analysis of telomerase: An antitumor drug target. Pharmacology & Therapeutics 2016; 163: 24 doi: 10.1016/j.pharmthera.2016.03.017
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26 |
Martin C.H. Gruhlke, Ivan Schlembach, Roman Leontiev, Andreas Uebachs, Peter U.G. Gollwitzer, Alexander Weiss, Agnes Delaunay, Michel Toledano, Alan J. Slusarenko. Yap1p, the central regulator of the S. cerevisiae oxidative stress response, is activated by allicin, a natural oxidant and defence substance of garlic. Free Radical Biology and Medicine 2017; 108: 793 doi: 10.1016/j.freeradbiomed.2017.05.004
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27 |
Mahboobeh Akbarizare, Hamideh Ofoghi, Mahnaz Hadizadeh, Alireza Valdiani. Bilateral telomerase-associated impacts of Spirulina platensis extracts: Activation versus inhibition. European Journal of Integrative Medicine 2021; 43: 101303 doi: 10.1016/j.eujim.2021.101303
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28 |
Virginia Lanzotti, Felice Scala, Giuliano Bonanomi. Compounds from Allium species with cytotoxic and antimicrobial activity. Phytochemistry Reviews 2014; 13(4): 769 doi: 10.1007/s11101-014-9366-0
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29 |
Yang Zhou, Xingxuan Li, Wenyu Luo, Junfeng Zhu, Jingwen Zhao, Mengyao Wang, Lixuan Sang, Bing Chang, Bingyuan Wang. Allicin in Digestive System Cancer: From Biological Effects to Clinical Treatment. Frontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.903259
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30 |
Liying ZHANG, Fabao WANG, Xiubao REN. Inhibitory effect of Dendrobium officinale polysaccharide on human gastric cancer cell xenografts in nude mice. Food Science and Technology 2017; 38(1): 78 doi: 10.1590/1678-457x.00917
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31 |
Kathrin Jäger, Michael Walter. Therapeutic Targeting of Telomerase. Genes 2016; 7(7): 39 doi: 10.3390/genes7070039
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32 |
Song Wang, Wen-Wen Yan, Min He, Dan Wei, Zu-Ji Long, Yi-Ming Tao. Aloe emodin inhibits telomerase activity in breast cancer cells: transcriptional and enzymological mechanism. Pharmacological Reports 2020; 72(5): 1383 doi: 10.1007/s43440-020-00062-w
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33 |
Simone Minasi, Francesca Gianno, Hiba Alzoubi, Manila Antonelli, Felice Giangaspero, FrancescaRomana Buttarelli. Mechanisms of telomere maintenance in pediatric brain tumors: Promising targets for therapy – A narrative review. Glioma 2020; 3(3): 105 doi: 10.4103/glioma.glioma_20_20
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34 |
Sook-Young Park, Seong-Jun Cho, Hak-chul Kwon, Kang-Ro Lee, Dong-Kwon Rhee, Suhkneung Pyo. Caspase-independent cell death by allicin in human epithelial carcinoma cells: involvement of PKA. Cancer Letters 2005; 224(1): 123 doi: 10.1016/j.canlet.2004.10.009
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35 |
Kumar Ganesan, Baojun Xu. Telomerase Inhibitors from Natural Products and Their Anticancer Potential. International Journal of Molecular Sciences 2017; 19(1): 13 doi: 10.3390/ijms19010013
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36 |
Jianhui Zhuang, Yu Li, Yufen Chi. Role of p38 MAPK activation and mitochondrial cytochrome-c release in allicin-induced apoptosis in SK-N-SH cells. Anti-Cancer Drugs 2016; 27(4): 312 doi: 10.1097/CAD.0000000000000340
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37 |
Vivek D. Savairam, Neha A. Patil, Shrikant R. Borate, Mahesh M. Ghaisas, Rajkumar V. Shete. Allicin: A review of its important pharmacological activities. Pharmacological Research - Modern Chinese Medicine 2023; 8: 100283 doi: 10.1016/j.prmcm.2023.100283
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38 |
Martin C.H. Gruhlke, Haike Antelmann, Jörg Bernhardt, Veronika Kloubert, Lothar Rink, Alan J. Slusarenko. The human allicin-proteome: S-thioallylation of proteins by the garlic defence substance allicin and its biological effects. Free Radical Biology and Medicine 2019; 131: 144 doi: 10.1016/j.freeradbiomed.2018.11.022
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39 |
Wamidh H. Talib, Sally Atawneh, Areen Nabil Shakhatreh, Ghyda’a Nabil Shakhatreh, Islam Subhi Rasheed aljarrah, Reem Ali Hamed, Doaa Adel banyyounes, Intisar Hadi Al-Yasari. Anticancer potential of garlic bioactive constituents: Allicin, Z-ajoene, and organosulfur compounds. Pharmacia 2024; 71: 1 doi: 10.3897/pharmacia.71.e114556
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40 |
Seong-Jun Cho, Dong-Kwon Rhee, Suhkneung Pyo. Allicin, a major component of garlic, inhibits apoptosis of macrophage in a depleted nutritional state. Nutrition 2006; 22(11-12): 1177 doi: 10.1016/j.nut.2006.08.011
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41 |
Zhanfang Guo, Yanjiao Zhang. RETRACTED: Allicin promotes autophagy and ferroptosis in esophageal squamous cell carcinoma by activating AMPK/mTOR signaling. Heliyon 2022; 8(10) doi: 10.1016/j.heliyon.2022.e11005
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42 |
Arijit Mondal, Sabyasachi Banerjee, Sankhadip Bose, Sujayita Mazumder, Rebecca A. Haber, Mohammad Hosein Farzaei, Anupam Bishayee. Garlic constituents for cancer prevention and therapy: From phytochemistry to novel formulations. Pharmacological Research 2022; 175: 105837 doi: 10.1016/j.phrs.2021.105837
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43 |
Wamidh H. Talib, Media Mohammed Baban, Aya O. Azzam, Jenan J. Issa, Alaa Y. Ali, Alia Kh. AlSuwais, Sana Allala, Lina T. AL Kury. Allicin and Cancer Hallmarks. Molecules 2024; 29(6): 1320 doi: 10.3390/molecules29061320
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44 |
Zhanfang Guo, Yanjiao Zhang. Allicin Promotes Autophagy and Ferroptosis in Esophageal Squamous Cell Carcinoma by Activating AMPK/mTOR Signaling. SSRN Electronic Journal 2022; doi: 10.2139/ssrn.4149242
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45 |
Xing Chen, Wen‐Jian Tang, Jing Bo Shi, Ming Ming Liu, Xin‐Hua Liu. Therapeutic strategies for targeting telomerase in cancer. Medicinal Research Reviews 2020; 40(2): 532 doi: 10.1002/med.21626
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46 |
Joseph Berei, Adam Eckburg, Edward Miliavski, Austin D. Anderson, Rachel J. Miller, Joshua Dein, Allison M. Giuffre, Diana Tang, Shreya Deb, Kavya Sri Racherla, Meet Patel, Monica Saravana Vela, Neelu Puri. Potential Telomere-Related Pharmacological Targets. Current Topics in Medicinal Chemistry 2020; 20(6): 458 doi: 10.2174/1568026620666200109114339
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47 |
Haitao Zhu, Zhichao Zheng, Jianjun Zhang, Xiaoping Liu, Yang Liu, Wei Yang, Yong Liu, Tao Zhang, Yan Zhao, Yanqing Liu, Xiaohui Su, Xiaohu Gu. Anticancer effect of 2,7-dihydroxy-3-methylanthraquinone on human gastric cancer SGC-7901 cellsin vitroandin vivo. Pharmaceutical Biology 2016; 54(2): 285 doi: 10.3109/13880209.2015.1033563
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48 |
Vida Celeste Rosas‐González, Martha Cecilia Téllez‐Bañuelos, Georgina Hernández‐Flores, Alejandro Bravo‐Cuellar, Adriana Aguilar-Lemarroy, Luis Felipe Jave‐Suárez, Jesse Haramati, Fabiola Solorzano‐Ibarra, Pablo Cesar Ortiz‐Lazareno. Differential effects of alliin and allicin on apoptosis and senescence in luminal A and triple‐negative breast cancer: Caspase, ΔΨm, and pro‐apoptotic gene involvement. Fundamental & Clinical Pharmacology 2020; 34(6): 671 doi: 10.1111/fcp.12559
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49 |
Talia Miron, Meir Wilchek, Ayala Sharp, Yoshihito Nakagawa, Makoto Naoi, Yoshinori Nozawa, Yukihiro Akao. Allicin inhibits cell growth and induces apoptosis through the mitochondrial pathway in HL60 and U937 cells. The Journal of Nutritional Biochemistry 2008; 19(8): 524 doi: 10.1016/j.jnutbio.2007.06.009
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50 |
Wamidh H. Talib, Safa Daoud, Asma Ismail Mahmod, Reem Ali Hamed, Dima Awajan, Sara Feras Abuarab, Lena Hisham Odeh, Samar Khater, Lina T. Al Kury. Plants as a Source of Anticancer Agents: From Bench to Bedside. Molecules 2022; 27(15): 4818 doi: 10.3390/molecules27154818
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51 |
Cong-Jun Wang, Chao Wang, Jiang Han, Yong-Kun Wang, Lin Tang, Dong-Wei Shen, Yi Zhao, Rong-Hua Xu, Hui Zhang. Effect of combined treatment with recombinant interleukin-2 and allicin on pancreatic cancer. Molecular Biology Reports 2013; 40(12): 6579 doi: 10.1007/s11033-013-2766-1
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52 |
Ariane Roseblade, Alison Ung, Mary Bebawy. Synthesis and in vitro biological evaluation of thiosulfinate derivatives for the treatment of human multidrug-resistant breast cancer. Acta Pharmacologica Sinica 2017; 38(10): 1353 doi: 10.1038/aps.2016.170
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53 |
Krishnamurthy Nakuluri, Gowru Srivani. Phytochemicals Targeting Tumor Microenvironment in Gastrointestinal Cancers. 2020; : 83 doi: 10.1007/978-3-030-48405-7_4
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54 |
Jaber Haj Ali, Michael Walter. Combining old and new concepts in targeting telomerase for cancer therapy: transient, immediate, complete and combinatory attack (TICCA). Cancer Cell International 2023; 23(1) doi: 10.1186/s12935-023-03041-2
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55 |
Bahareh Mohammadi Jobani, Nowruz Najafzadeh, Mohammad Mazani, Mohsen Arzanlou, Mohammad Mohammadzadeh Vardin. Molecular mechanism and cytotoxicity of allicin and all-trans retinoic acid against CD44+ versus CD117+ melanoma cells. Phytomedicine 2018; 48: 161 doi: 10.1016/j.phymed.2018.05.013
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56 |
Mahshad Sarvizadeh, Omid Hasanpour, Zari Naderi Ghale-Noie, Samaneh Mollazadeh, Mohammad Rezaei, Hossein Pourghadamyari, Mohammadjaber Masoud Khooy, Michael Aschner, Haroon Khan, Nima Rezaei, Layla Shojaie, Hamed Mirzaei. Allicin and Digestive System Cancers: From Chemical Structure to Its Therapeutic Opportunities. Frontiers in Oncology 2021; 11 doi: 10.3389/fonc.2021.650256
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