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Brain Neoplasm | SpringerLink
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CFTR RNA- and DNA-based therapies - ScienceDirect
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The impaired unfolded protein‐premelanosome protein and transient receptor potential channels‐autophagy axes in apoptotic melanocytes in vitiligo - Xie - 2022 - Pigment Cell & Melanoma Research - Wiley Online Library
Cancers | Free Full-Text | Cytoskeletal Dynamics in Epithelial-Mesenchymal Transition: Insights into Therapeutic Targets for Cancer Metastasis
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Brain Neoplasm | SpringerLink
2020 AAN Annual Meeting Science Program by American Academy of Neurology - Issuu
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Cells | Free Full-Text | Ribosomes and Ribosomal Proteins Promote Plasticity and Stemness Induction in Glioma Cells via Reprogramming
Brain Neoplasm | SpringerLink
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The impaired unfolded protein‐premelanosome protein and transient receptor potential channels‐autophagy axes in apoptotic melanocytes in vitiligo - Xie - 2022 - Pigment Cell & Melanoma Research - Wiley Online Library
Cells | Free Full-Text | Ribosomes and Ribosomal Proteins Promote Plasticity and Stemness Induction in Glioma Cells via Reprogramming
Muzeum umění a designu Benešov stojí na rozcestí, směr ukáže audit - Benešovský deník
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Brain Neoplasm | SpringerLink
The impaired unfolded protein‐premelanosome protein and transient receptor potential channels‐autophagy axes in apoptotic melanocytes in vitiligo - Xie - 2022 - Pigment Cell & Melanoma Research - Wiley Online Library
The impaired unfolded protein‐premelanosome protein and transient receptor potential channels‐autophagy axes in apoptotic melanocytes in vitiligo - Xie - 2022 - Pigment Cell & Melanoma Research - Wiley Online Library
Cells | Free Full-Text | Ribosomes and Ribosomal Proteins Promote Plasticity and Stemness Induction in Glioma Cells via Reprogramming
The role of microRNAs in cell death pathways
The impaired unfolded protein‐premelanosome protein and transient receptor potential channels‐autophagy axes in apoptotic melanocytes in vitiligo - Xie - 2022 - Pigment Cell & Melanoma Research - Wiley Online Library