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Participation of CCL1 in Snail-Positive Fibroblasts in Colorectal Cancer Contribute to 5-Fluorouracil/Paclitaxel Chemoresistance
Ziqian Li, Kaying Chan, Yifei Qi, Linlin Lu, Fen Ning, Mengling Wu, Haifang Wang, Yuan Wang, Shaohui Cai, Jun Du
Cancer Research and Treatment. 2018;50(3):894-907.   Published online 2017 September 18    DOI: https://doi.org/10.4143/crt.2017.356

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Participation of CCL1 in Snail-Positive Fibroblasts in Colorectal Cancer Contribute to 5-Fluorouracil/Paclitaxel Chemoresistance
Cancer Research and Treatment. 2018;50(3):894-907   Crossref logo
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Tu1987 microRNA-150 As a Chemoresistance Factor to 5-Fluorouracil Inhibit Proliferation and Apoptosis in Colorectal Cancer
Gastroenterology. 2015;148(4):S-953   Crossref logo
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Irinotecan in 5-Fluorouracil—Refractory Colorectal Cancer
Clinical Colorectal Cancer. 2002;2(2):102-103   Crossref logo
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Clinical Colorectal Cancer: “Ode to 5-Fluorouracil”
Clinical Colorectal Cancer. 2007;6(9):609   Crossref logo
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Inhibiting 5-Fluorouracil Breakdown: A Broken Down Approach to 5-Fluorouracil Modulation
Clinical Colorectal Cancer. 2002;2(1):51-52   Crossref logo
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Instructions for Participation in Printed Activity
Clinical Colorectal Cancer. 2010;9:S51-S52   Crossref logo
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Can Eniluracil Improve 5-Fluorouracil Therapy?
Clinical Colorectal Cancer. 2002;2(1):53   Crossref logo
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Dihydopyrimidine Dehydrogenase: A Critical Molecular Biomarker for 5-Fluorouracil Toxicity
Clinical Colorectal Cancer. 2004;4(3):150   Crossref logo
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124 Addition of oxaliplatin (L-OHP®) to chronomodulated (CM) 5-fluorouracil (5-FU) and folinic acid (FA) for reversal of acquired chemoresistance in patients with advance colorectal cancer (ACC)
European Journal of Cancer. 1995;31:S29   Crossref logo
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53BP1 loss induces chemoresistance of colorectal cancer cells to 5-fluorouracil by inhibiting the ATM–CHK2–P53 pathway
Journal of Cancer Research and Clinical Oncology. 2016;143(3):419-431   Crossref logo
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