[1]
Bhat, Z.I.; Kumar, B.; Bansal, S.; Naseem, A.; Tiwari, R.R.; Wahabi, K.; Sharma, G.D.; Rizvi, M.M.A. Association of PARK2 promoter polymorphisms and methylation with colorectal cancer in North Indian population. Gene, 2019, 682, 25-32. [http://dx.doi.org/10.1016/j.gene.2018.10.010]. [PMID: 30296568].
[2]
Jian, Y.S.; Chen, C.W.; Lin, C.A.; Yu, H.P.; Lin, H.Y.; Liao, M.Y.; Wu, S.H.; Lin, Y.F.; Lai, P.S. Hyaluronic acid-nimesulide conjugates as anticancer drugs against CD44-overexpressing HT-29 colorectal cancer in vitro and in vivo. Int. J. Nanomedicine, 2017, 12, 2315-2333. [http://dx.doi.org/10.2147/IJN.S120847]. [PMID: 28392690].
[3]
Chen, W.; Zheng, R.; Zhang, S.; Zhao, P.; Zeng, H.; Zou, X.; He, J. Annual report on status of cancer in China, 2010. Chin. J. Cancer Res., 2014, 26(1), 48-58. [http://dx.doi.org/10.1007/BF02997493]. [PMID: 24653626].
[4]
Chang, Y.T.; Tseng, H.C.; Huang, C.C.; Chen, Y.P.; Chiang, H.C.; Chou, F.P. Relative down-regulation of apoptosis and autophagy genes in colorectal cancer. Eur. J. Clin. Invest., 2011, 41(1), 84-92. [http://dx.doi.org/10.1111/j.1365-2362.2010.02383.x]. [PMID: 20880300].
[5]
Nosher, J.L.; Ahmed, I.; Patel, A.N.; Gendel, V.; Murillo, P.G.; Moss, R.; Jabbour, S.K. Non-operative therapies for colorectal liver metastases. J. Gastrointest. Oncol., 2015, 6(2), 224-240. [https://doi.org/10.3978/j.issn.2078-6891.2014.065]. [PMID: 25830041].
[6]
Li, J.; Hou, N.; Faried, A.; Tsutsumi, S.; Kuwano, H. Inhibition of autophagy augments 5-fluorouracil chemotherapy in human colon cancer in vitro and in vivo model. Eur. J. Cancer, 2010, 46(10), 1900-1909. [http://dx.doi.org/10.1016/j.ejca.2010.02.021]. [PMID: 20231086].
[7]
Longley, D.B.; Allen, W.L.; Johnston, P.G. Drug resistance, predictive markers and pharmacogenomics in colorectal cancer. Biochim. Biophys. Acta, 2006, 1766(2), 184-196. [https://doi.org/10.1016/j.bbcan.2006.08.001]. [PMID: 16973289].
[8]
Su, L.; Xu, G.; Shen, J.; Tuo, Y.; Zhang, X.; Jia, S.; Chen, Z.; Su, X. Anticancer bioactive peptide suppresses human gastric cancer growth through modulation of apoptosis and the cell cycle. Oncol. Rep., 2010, 23(1), 3-9. [https://doi.org/10.3892/or_00000599]. [PMID: 19956858].
[9]
Su, X.; Dong, C.; Zhang, J.; Su, L.; Wang, X.; Cui, H.; Chen, Z. Combination therapy of anti-cancer bioactive peptide with Cisplatin decreases chemotherapy dosing and toxicity to improve the quality of life in xenograft nude mice bearing human gastric cancer. Cell Biosci., 2014, 4(1), 7. [http://dx.doi.org/10.1186/2045-3701-4-7]. [PMID: 24507386].
[10]
Nishimura, J.; Satoh, T.; Fukunaga, M.; Takemoto, H.; Nakata, K.; Ide, Y.; Fukuzaki, T.; Kudo, T.; Miyake, Y.; Yasui, M.; Morita, S.; Sakai, D.; Uemura, M.; Hata, T.; Takemasa, I.; Mizushima, T.; Ohno, Y.; Yamamoto, H.; Sekimoto, M.; Nezu, R.; Doki, Y.; Mori, M. Combination antiemetic therapy with aprepitant/fosaprepitant in patients with colorectal cancer receiving oxaliplatin-based chemotherapy (SENRI trial): A multicentre, randomised, controlled phase 3 trial. Eur. J. Cancer, 2015, 51(10), 1274-1282. [http://dx.doi.org/10.1016/j.ejca.2015.03.024]. [PMID: 25922233].
[11]
Zhu, Y.L.; Lou, J.; Guo, J.Y.; Huang, Z.; Lv, S.W. A meta analysis of cetuximab plus oxaliplatin based chemotherapy regimen for metastatic colorectal cancer. Indian J. Cancer, 2014, 51(Suppl. 3), e113-e116. [http://dx.doi.org/10.4103/0019-509X.154101]. [PMID: 25818736].
[12]
Li, X.; Wu, H.; Ouyang, X.; Zhang, B.; Su, X. New bioactive peptide reduces the toxicity of chemotherapy drugs and increases drug sensitivity. Oncol. Rep., 2017, 38(1), 129-140. [http://dx.doi.org/10.3892/or.2017.5674]. [PMID: 28560442].
[13]
Stacul, F.; Bertolotto, M.; De Gobbis, F.; Calderan, L.; Cioffi, V.; Romano, A.; Zanconati, F.; Cova, M.A.U.S.U.S. colour-Doppler US and fine-needle aspiration biopsy in the diagnosis of thyroid nodules. Radiol. Med. (Torino), 2007, 112(5), 751-762. [http://dx.doi.org/10.1007/s11547-007-0178-9]. [PMID: 17657415].
[14]
Jin, Z.; El-Deiry, W.S. Overview of cell death signaling pathways. Cancer Biol. Ther., 2005, 4(2), 139-163. [http://dx.doi.org/10.4161/cbt.4.2.1508]. [PMID: 15725726].
[15]
Mustapha, N.; Pinon, A.; Limami, Y.; Simon, A.; Ghedira, K.; Hennebelle, T.; Chekir-Ghedira, L. Chekir- hedira, L. Crataegus azarolus leaves induce anti-proliferative activity, cell cycle arrest and apoptosis in human HT-29 and HCT-116 colorectal cancer cells. J. Cell. Biochem., 2016, 117(5), 1262-1272. [http://dx.doi.org/10.1002/jcb.25416]. [PMID: 26495895].
[16]
Mariño, G.; Niso-Santano, M.; Baehrecke, E.H.; Kroemer, G. Self-consumption: The interplay of autophagy and apoptosis. Nat. Rev. Mol. Cell Biol., 2014, 15(2), 81-94. [http://dx.doi.org/10.1038/nrm3735]. [PMID: 24401948].
[17]
Shimizu, S.; Yoshida, T.; Tsujioka, M.; Arakawa, S. Autophagic cell death and cancer. Int. J. Mol. Sci., 2014, 15(2), 3145-3153. [http://dx.doi.org/10.3390/ijms15023145]. [PMID: 24566140].
[18]
Kim, E.J.; Park, S.Y.; Lee, J.Y.; Park, J.H.Y. Fucoidan present in brown algae induces apoptosis of human colon cancer cells. BMC Gastroenterol., 2010, 10, 96. [http://dx.doi.org/10.1186/1471-230X-10-96]. [PMID: 20727207].
[19]
Xing, Z.; Yu, L.; Li, X.; Su, X. Anticancer bioactive peptide-3 inhibits human gastric cancer growth by targeting miR-338-5p. Cell Biosci., 2016, 6, 53. [http://dx.doi.org/10.1186/s13578-016-0112-8]. [PMID: 27688872].
[20]
Kelly, C.; Cassidy, J. Chemotherapy in metastatic colorectal cancer. Surg. Oncol., 2007, 16(1), 65-70. [http://dx.doi.org/10.1016/j.suronc.2007.04.006]. [PMID: 17521906].
[21]
Marx, A.; Ströbel, P.; Badve, S.S.; Chalabreysse, L.; Chan, J.K.; Chen, G.; de Leval, L.; Detterbeck, F.; Girard, N.; Huang, J.; Kurrer, M.O.; Lauriola, L.; Marino, M.; Matsuno, Y.; Molina, T.J.; Mukai, K.; Nicholson, A.G.; Nonaka, D.; Rieker, R.; Rosai, J.; Ruffini, E.; Travis, W.D. ITMIG consensus statement on the use of the WHO histological classification of thymoma and thymic carcinoma: Refined definitions, histological criteria, and reporting. J. Thorac. Oncol., 2014, 9(5), 596-611. [http://dx.doi.org/10.1097/JTO.0000000000000154]. [PMID: 24722150].
[22]
Yu, L.; Yang, L.; An, W.; Su, X. Anticancer bioactive peptide-3 inhibits human gastric cancer growth by suppressing gastric cancer stem cells. J. Cell. Biochem., 2014, 115(4), 697-711. [http://dx.doi.org/10.1002/jcb.24711]. [PMID: 24214799].