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Cited by in CrossRef
For: Li W, Ji YH, Li CX, Liu ZY, Li N, Fang L, Chang J, Tan J. Evaluation of therapeutic effectiveness of 131I-antiEGFR-BSA-PCL in a mouse model of colorectal cancer. World J Gastroenterol 2016; 22(14): 3758-3768 [PMID: 27076760 DOI: 10.3748/wjg.v22.i14.3758]
URL: https://www.wjgnet.com/2307-8960/full/v22/i14/3758.htm
Number Citing Articles
1
Jingmei Gao, Lei Fang, Danyang Sun, Yiming Shen, Yiming Hu, Ning Li, Jin Chang, Wei Li, Jian Tan. 131I-labeled and DOX-loaded multifunctional nanoliposomes for radiotherapy and chemotherapy in brain gliomasBrain Research 2020; 1739: 145218 doi: 10.1016/j.brainres.2016.12.014
2
Pedro Cruz-Nova, Blanca Ocampo-García, Dayan Andrea Carrión-Estrada, Paola Briseño-Diaz, Guillermina Ferro-Flores, Nallely Jiménez-Mancilla, José Correa-Basurto, Martiniano Bello, Libia Vega-Loyo, María del Rocío Thompson-Bonilla, Rosaura Hernández-Rivas, Miguel Vargas. 131I-C19 Iodide Radioisotope and Synthetic I-C19 Compounds as K-Ras4B–PDE6δ Inhibitors: A Novel Approach against Colorectal Cancer—Biological Characterization, Biokinetics and DosimetryMolecules 2022; 27(17): 5446 doi: 10.3390/molecules27175446
3
Rachel Marion-Letellier, Pierre Bohn, Romain Modzelewski, Pierre Vera, Moutaz Aziz, Charlène Guérin, Guillaume Savoye, Céline Savoye-Collet. SPECT-computed tomography in rats with TNBS-induced colitis: A first step toward functional imagingWorld Journal of Gastroenterology 2017; 23(2): 216-223 doi: 10.3748/wjg.v23.i2.216
4
S. Avvakumova, L. Pandolfi, E. Soprano, L. Moretto, M. Bellini, E. Galbiati, M. A. Rizzuto, M. Colombo, R. Allevi, F. Corsi, A. Sánchez Iglesias, D. Prosperi. Does conjugation strategy matter? Cetuximab-conjugated gold nanocages for targeting triple-negative breast cancer cellsNanoscale Advances 2019; 1(9): 3626 doi: 10.1039/C9NA00241C
5
Ruiguo Zhang, Yueqian Zhang, Jian Tan, Hanjie Wang, Guizhi Zhang, Ning Li, Zhaowei Meng, Fuhai Zhang, Jin Chang, Renfei Wang. Antitumor Effect of 131I-Labeled Anti-VEGFR2 Targeted Mesoporous Silica Nanoparticles in Anaplastic Thyroid CancerNanoscale Research Letters 2019; 14(1) doi: 10.1186/s11671-019-2924-z
6
Marina Guimarães Carvalho Machado, Maria Alice de Oliveira, Raquel Silva Araújo, Vanessa Carla Furtado Mosqueira. Smart Nanomaterials for Bioencapsulation2022; : 197 doi: 10.1016/B978-0-323-91229-7.00007-6
7
Hanieh Abbasi, Nadereh Rahbar, Maryam Kouchak, Parna Khalil Dezfuli, Somayeh Handali. Functionalized liposomes as drug nanocarriers for active targeted cancer therapy: a systematic reviewJournal of Liposome Research 2022; 32(2): 195 doi: 10.1080/08982104.2021.1903035
8
Qingming Wang, Lei Yang, Hui Ding, Xuanrong Chen, Hua Wang, Xinhui Tang. Synthesis, X-ray crystal structure, DNA/protein binding and cytotoxicity studies of five α-aminophosphonate N-derivativesBioorganic Chemistry 2016; 69: 132 doi: 10.1016/j.bioorg.2016.10.007
9
Y. L. Chen, Q.-M. Wang. Synthesis and Structure of α-Aminophosphate and Its Interaction with DNA/BSAJournal of Applied Spectroscopy 2019; 86(5): 955 doi: 10.1007/s10812-019-00921-2
10
Guosheng Song, Liang Cheng, Yu Chao, Kai Yang, Zhuang Liu. Emerging Nanotechnology and Advanced Materials for Cancer Radiation TherapyAdvanced Materials 2017; 29(32) doi: 10.1002/adma.201700996
11
Pedro Cruz-Nova, Alejandra Ancira-Cortez, Guillermina Ferro-Flores, Blanca Ocampo-García, Brenda Gibbens-Bandala. Controlled-Release Nanosystems with a Dual Function of Targeted Therapy and Radiotherapy in Colorectal CancerPharmaceutics 2022; 14(5): 1095 doi: 10.3390/pharmaceutics14051095