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A Potential Therapy Using Engineered Stem Cells Prevented Malignant Melanoma in Cellular and Xenograft Mouse Models |
Jae-Rim Heo, Kyung-A Hwang, Seung U. Kim, Kyung-Chul Choi |
Cancer Research and Treatment. 2019;51(2):797-811. Published online 2018 September 14 DOI: https://doi.org/10.4143/crt.2018.364 |
A Potential Therapy Using Engineered Stem Cells Prevented Malignant Melanoma in Cellular and Xenograft Mouse Models Using personalized immune-humanized xenograft mouse models to predict immune checkpoint responses in malignant melanoma: potential and hurdles Towards identification and targeting of leukemic stem cells and (EPI)genetically distinct subclones using humanized niche xenograft mouse models REVIEW ARTICLE: Cancer stem cells and human malignant melanoma Human amniotic fluid-derived stem cells expressing cytosine deaminase and thymidine kinase inhibits the growth of breast cancer cells in cellular and xenograft mouse models 63. Immunotherapy of Metastatic Melanoma Using Genetically Engineered GD2-Specific T Cells Anti-proliferative Effect of Engineered Neural Stem Cells Expressing Cytosine Deaminase and Interferon-β against Lymph Node–Derived Metastatic Colorectal Adenocarcinoma in Cellular and Xenograft Mouse Models 432. A Novel Cancer Cell Vaccine Using Induced Pluripotent Stem Cells Genetically Engineered To Produce GM-CSF Elicits Substantial Antitumor Immunity in a Syngeneic Mouse Model 730. An Effective Non-Viral Delivery System of Plasmid DNA into Mouse Malignant Melanoma Using of Ultrasound Genetically Engineered Adipose Mesenchymal Stem Cells Using HIV-Based Lentiviral Vectors as Gene Therapy for Autoimmune Diseases |
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