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Annals of oncology, ISSN 0923-7534, 12/2012, Volume 23, Issue 12, pp. 3069 - 3074
Journal Article
Biochemical pharmacology, ISSN 0006-2952, 08/2014, Volume 90, Issue 3, pp. 212 - 225
PI3K/Akt/NF-κB pathway | Oroxylin A | CXCL12/CXCR4 axis | K562/ADM | Reversal effect | Life Sciences & Biomedicine | Pharmacology & Pharmacy | Science & Technology | Doxorubicin - therapeutic use | Antineoplastic Combined Chemotherapy Protocols - administration & dosage | Antibiotics, Antineoplastic - pharmacology | Apoptosis - drug effects | Humans | Antibiotics, Antineoplastic - adverse effects | Antineoplastic Combined Chemotherapy Protocols - adverse effects | Neoplasm Proteins - antagonists & inhibitors | Flavonoids - adverse effects | Neoplasm Proteins - metabolism | Flavonoids - therapeutic use | Antineoplastic Combined Chemotherapy Protocols - pharmacology | Antineoplastic Agents, Phytogenic - administration & dosage | RNA Interference | Female | Receptors, CXCR4 - genetics | Flavonoids - pharmacology | Antineoplastic Agents, Phytogenic - therapeutic use | Neoplasm Proteins - genetics | Leukemia, Myeloid, Chronic-Phase - metabolism | Phosphatidylinositol 3-Kinase - metabolism | Antineoplastic Agents, Phytogenic - adverse effects | Doxorubicin - administration & dosage | Receptors, CXCR4 - antagonists & inhibitors | Leukemia, Myeloid, Chronic-Phase - drug therapy | Random Allocation | Receptors, CXCR4 - metabolism | Antibiotics, Antineoplastic - administration & dosage | Phosphatidylinositol 3-Kinase - chemistry | Xenograft Model Antitumor Assays | Animals | Chemokine CXCL12 - metabolism | Antibiotics, Antineoplastic - therapeutic use | Neoplasm Proteins - agonists | Signal Transduction - drug effects | Antineoplastic Combined Chemotherapy Protocols - therapeutic use | Mice, Nude | Cell Line, Tumor | Receptors, CXCR4 - agonists | Mice | Antineoplastic Agents, Phytogenic - pharmacology | Doxorubicin - adverse effects | Doxorubicin - pharmacology | Drug Resistance, Neoplasm - drug effects | Anthracyclines | Index Medicus
Journal Article
Biochemistry (Easton), ISSN 0006-2960, 02/2017, Volume 56, Issue 6, pp. 805 - 808
Life Sciences & Biomedicine | Biochemistry & Molecular Biology | Science & Technology | Azabicyclo Compounds - pharmacology | Phosphotransferases (Carboxyl Group Acceptor) - genetics | Antibiotics, Antineoplastic - pharmacology | Substrate Specificity | Antineoplastic Agents, Alkylating - pharmacology | Phosphotransferases (Carboxyl Group Acceptor) - metabolism | Amino-Acid N-Acetyltransferase - metabolism | Azabicyclo Compounds - chemistry | Azabicyclo Compounds - metabolism | Pyrrolidines - pharmacology | Streptomyces - metabolism | Peptides - metabolism | Antibiotics, Antineoplastic - chemistry | Drug Design | Pyrrolidines - metabolism | Molecular Structure | Acetylation | Dipeptides - metabolism | Antineoplastic Agents, Alkylating - chemistry | Naphthalenes - metabolism | Naphthalenes - chemistry | Recombinant Proteins - metabolism | Biocatalysis | Peptides - chemistry | Dipeptides - pharmacology | Bacterial Proteins - genetics | Amino-Acid N-Acetyltransferase - genetics | Aldehyde Oxidoreductases - genetics | Dipeptides - chemistry | Gene Knockout Techniques | Pyrrolidines - chemistry | Acetyl Coenzyme A - metabolism | Aldehyde Oxidoreductases - metabolism | Naphthalenes - pharmacology | Peptides - pharmacology | Bacterial Proteins - metabolism | Streptomyces - enzymology | Glutamic Acid - metabolism | Mutation | Antibiotics, Antineoplastic - metabolism | Antineoplastic Agents, Alkylating - metabolism | Usage | Biosynthesis | Research | Chemical properties | Pyrrole | Antineoplastic antibiotics | Index Medicus
Journal Article
Cancer chemotherapy and pharmacology, ISSN 0344-5704, 7/2013, Volume 72, Issue 1, pp. 127 - 138
Medicine & Public Health | Drug distribution | Tumor microenvironment | Normal tissues | Oncology | Cancer Research | Topotecan | Pharmacology/Toxicology | Mitoxantrone | Doxorubicin | Pharmacology & Pharmacy | Life Sciences & Biomedicine | Science & Technology | Biological and medical sciences | Medical sciences | Antineoplastic agents | Pharmacology. Drug treatments | Doxorubicin - blood | Neoplasms - metabolism | Topoisomerase I Inhibitors - metabolism | Liver - pathology | Kidney - blood supply | Kidney - pathology | Humans | Topotecan - metabolism | Antibiotics, Antineoplastic - blood | Coronary Vessels - metabolism | Neovascularization, Pathologic - pathology | Antineoplastic Agents - metabolism | Tissue Distribution | Kidney - metabolism | Liver - drug effects | Myocardium - metabolism | Female | Antineoplastic Agents - pharmacokinetics | Doxorubicin - metabolism | Topotecan - blood | Antibiotics, Antineoplastic - pharmacokinetics | Topoisomerase I Inhibitors - pharmacokinetics | Coronary Vessels - drug effects | Coronary Vessels - pathology | Kidney - drug effects | Mitoxantrone - metabolism | Mitoxantrone - blood | Liver - metabolism | Myocardium - pathology | Neoplasms - blood supply | Doxorubicin - pharmacokinetics | Neoplasms - drug therapy | Xenograft Model Antitumor Assays | Animals | Mice, Nude | Neovascularization, Pathologic - drug therapy | Topotecan - pharmacokinetics | Antineoplastic Agents - blood | Cell Line, Tumor | Mice | Neovascularization, Pathologic - metabolism | Mitoxantrone - pharmacokinetics | Topoisomerase I Inhibitors - blood | Antibiotics, Antineoplastic - metabolism | Neoplasms - pathology | Anthracyclines | Care and treatment | Drug wholesalers | Analysis | Fluorescence | Tumors | Cancer | Index Medicus | Antitumor agents
Journal Article
Biochemical pharmacology, ISSN 0006-2952, 09/2017, Volume 140, pp. 16 - 27
mTOR | Esophageal squamous cell carcinoma | Rapamycin | Akt | Oridonin | Life Sciences & Biomedicine | Pharmacology & Pharmacy | Science & Technology | Antibiotics, Antineoplastic - pharmacology | Apoptosis - drug effects | Carcinoma, Squamous Cell - metabolism | Carcinoma, Squamous Cell - pathology | Humans | Antibiotics, Antineoplastic - adverse effects | Antineoplastic Combined Chemotherapy Protocols - adverse effects | Diterpenes, Kaurane - adverse effects | Antineoplastic Combined Chemotherapy Protocols - pharmacology | Diterpenes, Kaurane - therapeutic use | Esophageal Neoplasms - pathology | Antibiotics, Antineoplastic - chemistry | Protein Processing, Post-Translational - drug effects | Esophageal Neoplasms - metabolism | Female | Phosphorylation - drug effects | Antineoplastic Agents, Phytogenic - therapeutic use | Proto-Oncogene Proteins c-akt - metabolism | Sirolimus - adverse effects | Antineoplastic Agents, Phytogenic - adverse effects | Esophageal Squamous Cell Carcinoma | Diterpenes, Kaurane - pharmacology | Sirolimus - therapeutic use | Specific Pathogen-Free Organisms | Ribosomal Protein S6 Kinases, 70-kDa - metabolism | Random Allocation | Sirolimus - pharmacology | Sirolimus - agonists | Drug Synergism | Xenograft Model Antitumor Assays | Animals | Carcinoma, Squamous Cell - drug therapy | Antibiotics, Antineoplastic - therapeutic use | Signal Transduction - drug effects | Tumor Burden - drug effects | Antineoplastic Combined Chemotherapy Protocols - therapeutic use | Mice, Nude | Cell Line, Tumor | Feedback, Physiological - drug effects | Cell Proliferation - drug effects | Antineoplastic Agents, Phytogenic - pharmacology | Esophageal Neoplasms - drug therapy | Proto-Oncogene Proteins c-akt - antagonists & inhibitors | Prevention | Squamous cell carcinoma | Analysis | Dimethyl sulfoxide | Medicine, Chinese | Drug discovery | Protein kinases | Esophageal cancer | Cancer | Index Medicus
Journal Article
Journal Article
Journal of controlled release, ISSN 0168-3659, 2010, Volume 141, Issue 2, pp. 183 - 192
Brain glioma-bearing rats | Dual-targeting | Blood-brain barrier | Survival | Daunorubicin liposomes modified with MAN and TF | Pharmacology & Pharmacy | Physical Sciences | Chemistry | Life Sciences & Biomedicine | Chemistry, Multidisciplinary | Science & Technology | Pharmaceutical technology. Pharmaceutical industry | Biological and medical sciences | Medical sciences | General pharmacology | Pharmacology. Drug treatments | Capillary Permeability | Antibiotics, Antineoplastic - pharmacology | Aniline Compounds - metabolism | Brain Neoplasms - pathology | Cell Membrane Permeability | Daunorubicin - pharmacology | Male | Mannosides - chemistry | Brain Neoplasms - metabolism | Drug Carriers | Glioma - metabolism | Flow Cytometry | Antibiotics, Antineoplastic - chemistry | Biological Transport | Time Factors | Glioma - pathology | Daunorubicin - metabolism | Spheroids, Cellular | Daunorubicin - administration & dosage | Rats | Brain Neoplasms - drug therapy | Rats, Sprague-Dawley | Chemistry, Pharmaceutical | Daunorubicin - chemistry | Blood-Brain Barrier - metabolism | Antibiotics, Antineoplastic - administration & dosage | Microscopy, Confocal | Animals | Transferrin - chemistry | Cell Line, Tumor | Cell Proliferation - drug effects | Mannosides - metabolism | Mice | Aniline Compounds - chemistry | Liposomes | Antibiotics, Antineoplastic - metabolism | Transferrin - metabolism | Glioma - drug therapy | Chemotherapy | Daunorubicin | Biomimetics | Gliomas | Analysis | Brain tumors | Health aspects | Cancer | Index Medicus
Journal Article
Cell (Cambridge), ISSN 0092-8674, 03/2017, Volume 169, Issue 1, pp. 132 - 147.e16
Journal Article