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Autophagy, ISSN 1554-8635, 10/2014, Volume 2, Issue 1, pp. 39 - 46
Journal Article
Autophagy, ISSN 1554-8635, 10/2014, Volume 6, Issue 3, pp. 366 - 377
Journal Article
Journal Article
Current medicinal chemistry, ISSN 0929-8673, 2017, Volume 24, Issue 13, pp. 1321 - 1331
Journal Article
Archives of toxicology, ISSN 0340-5761, 2/2018, Volume 92, Issue 2, pp. 729 - 744
Estradiol-17β-d-glucuronide (E17G), through the activation of different signaling proteins, induces acute endocytic internalization of canalicular transporters... 
Biomedicine, general | Biomedicine | Environmental Health | Abcc2 | Occupational Medicine/Industrial Medicine | IGF-1 receptor | ABC transporters | Pharmacology/Toxicology | Abcb11 | Cholestasis | Life Sciences & Biomedicine | Toxicology | Science & Technology | ATP Binding Cassette Transporter, Subfamily B, Member 11 - metabolism | Receptor, IGF Type 1 - metabolism | Estradiol - analogs & derivatives | Cholestasis - metabolism | Rats, Wistar | Receptors, G-Protein-Coupled - metabolism | Signal Transduction | Cells, Cultured | Rats | Phosphatidylinositol 3-Kinases - metabolism | Tyrphostins - pharmacology | Hepatocytes - metabolism | Cholestasis - chemically induced | Endocytosis | Animals | Estradiol - toxicity | Liver - drug effects | RNA Interference | Wortmannin - pharmacology | ATP-Binding Cassette Transporters - metabolism | Female | Proto-Oncogene Proteins c-akt - metabolism | Hepatocytes - drug effects | Salts | Liver | Gallbladder diseases | 17β-Estradiol | AKT protein | Insulin-like growth factors | Normality | Kinases | Estradiol | Proteins | Signal transduction | Rodents | Protein-tyrosine kinase receptors | Localization | Protein-tyrosine kinase | Tyrosine | Excretion | Multidrug resistance | siRNA | Insulin | Substrates | 1-Phosphatidylinositol 3-kinase | Sex hormones | Signaling | Wortmannin | Internalization | Transporter | Bile | Index Medicus
Journal Article
Acta biomaterialia, ISSN 1742-7061, 04/2019, Volume 89, pp. 300 - 312
[Display omitted] Autophagy plays a key role in the stress response of tumor cells, which contributes to cancer cell survival and resistance to chemotherapy by... 
Drug delivery | Click chemistry | Micelles aggregation | Combined therapy | Autophagy inhibition | Engineering | Materials Science | Technology | Engineering, Biomedical | Materials Science, Biomaterials | Science & Technology | Neoplasms - metabolism | Doxorubicin - chemistry | Mammary Neoplasms, Experimental - metabolism | Autophagy - drug effects | Doxorubicin - pharmacokinetics | Drug Carriers - chemistry | Drug Carriers - pharmacology | Neoplasms - drug therapy | Animals | Wortmannin - pharmacology | Micelles | Mammary Neoplasms, Experimental - pathology | Cell Line, Tumor | Female | Drug Carriers - pharmacokinetics | Mice | Mice, Inbred BALB C | Wortmannin - pharmacokinetics | Neoplasms - pathology | Wortmannin - chemistry | Doxorubicin - pharmacology | Mammary Neoplasms, Experimental - drug therapy | Drugs | Immunohistochemistry | Drug delivery systems | Anthracyclines | Melanoma | Permeability | Vehicles | Proteins | Chemotherapy | Drug therapy | Pharmaceutical industry | Tumors | Cancer | Catalysts | Toxicity | Fluorescence | Phagosomes | Cytotoxicity | Agglomeration | Retention | Autophagy | Cancer therapies | Doxorubicin | Accumulation | Western blotting | Anticancer properties | Nanoparticles | Time dependence | Inhibition | Fluorescence resonance energy transfer | Chemical synthesis | Alkynes | Hazardous materials | Cell survival | Adjustment | Tumor cells | Chemical reactions | Breast cancer | Substrates | Organic chemistry | Cycloaddition | Transmission electron microscopy | Inhibitors | Wortmannin | Strategy | Antitumor activity | Combined treatment | Energy transfer | Phagocytosis | Cellular stress response | Index Medicus
Journal Article