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Journal Article
Journal Article
Journal of nanobiotechnology, ISSN 1477-3155, 2007, Volume 5, Issue 1, pp. 3 - 3
...Authors: Savita Bisht [1]; Georg Feldmann [1]; Sheetal Soni [3]; Rajani Ravi [2]; Collins Karikar [1]; Amarnath Maitra [3]; Anirban Maitra (corresponding... 
Turmeric | Care and treatment | Research | Health aspects | Apoptosis | Cancer
Journal Article
Journal Article
Journal of clinical oncology, ISSN 1527-7755, 2011, Volume 29, Issue 34, pp. 4548 - 4554
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2010, Volume 107, Issue 5, pp. 2037 - 2042
As the result of genetic alterations and tumor hypoxia, many cancer cells avidly take up glucose and generate lactate through lactate dehydrogenase A (LDHA) f... 
Lactates | Oxidative stress | Cell growth | Cellular metabolism | Cell death | Cell lines | Hypoxia | Lymphoma | Tumors | Cancer | Glycolysis | Xenograft models | Redox stress | Pancreatic cancer | xenograft models | redox stress | STRATEGY | MULTIDISCIPLINARY SCIENCES | glycolysis | lymphoma | CELL METABOLISM | CANCER | pancreatic cancer | THERAPY | GENE | RESPIRATION | AEROBIC GLYCOLYSIS | RESPONSE ELEMENTS | GROWTH | EXPRESSION | Neoplasm Transplantation | RNA, Small Interfering - genetics | Humans | Male | Transplantation, Heterologous | Glycolysis - drug effects | Neoplasms, Experimental - pathology | Adenosine Triphosphate - metabolism | Neoplasms, Experimental - genetics | Female | Cell Death - drug effects | Isoenzymes - genetics | Enzyme Inhibitors - pharmacology | Antioxidants - pharmacology | Mice, SCID | Naphthalenes - pharmacology | Animals | L-Lactate Dehydrogenase - genetics | Mice, Nude | Acetylcysteine - pharmacology | Cell Line, Tumor | Mice | Neoplasms, Experimental - metabolism | Oxidative Stress - drug effects | L-Lactate Dehydrogenase - antagonists & inhibitors | Neoplasms, Experimental - drug therapy | Energy Metabolism - drug effects | Isoenzymes - antagonists & inhibitors | Xenotransplantation | Causes of | Lactate dehydrogenase | Development and progression | Models | Lymphomas | Properties | Observations | Biological Sciences
Journal Article
Current drug discovery technologies, ISSN 1570-1638, 09/2009, Volume 6, Issue 3, pp. 192 - 199
Curcumin, a polyphenolic compound derived from the dietary spice turmeric, possesses diverse pharmacologic effects including anti-inflammatory, anti-oxidant,... 
Polymeric nanoparticle | Curcumin | Bioavailability | Nanocurcumin | Cancer
Journal Article
Nature communications, ISSN 2041-1723, 2019, Volume 10, Issue 1, pp. 254 - 13
Journal Article
Cancer Biology & Therapy, ISSN 1555-8576, 2014, Volume 11, Issue 5, pp. 464 - 473
Curcumin is a polyphenolic compound derived from the Indian spice turmeric. We used nanoparticle-encapsulated curcumin to treat medulloblastoma and... 
Binding | Proteins | Landes | Calcium | Bioscience | Biology | Cell | Cycle | Cancer | Organogenesis | Hedgehog | Medulloblastoma | Nanocurcumin | Glioblastoma | IGF | Curcumin | NanoCurc | NEURAL PROGENITORS | SIGNALING PATHWAYS | ACTIVATION | nanocurcumin | medulloblastoma | PANCREATIC-CANCER | nanoCurc (TM) | MEDULLOBLASTOMA CELLS | INSULIN | glioblastoma | hedgehog | ONCOLOGY | FACTOR-I RECEPTOR | NF-KAPPA-B | EXPRESSION | GLIOBLASTOMA CELLS | curcumin | Apoptosis - drug effects | Neoplastic Stem Cells - drug effects | Curcumin - chemistry | Humans | Nanocapsules | Receptors, Notch - genetics | Glycoproteins - drug effects | Antineoplastic Agents - administration & dosage | Curcumin - administration & dosage | Hedgehog Proteins - genetics | Medulloblastoma - pathology | Glioblastoma - metabolism | Antineoplastic Agents - pharmacology | Polymers | Neoplastic Stem Cells - physiology | Tumor Stem Cell Assay | Curcumin - pharmacology | Hedgehog Proteins - analysis | STAT3 Transcription Factor - analysis | Medulloblastoma - metabolism | Antigens, CD - drug effects | Antineoplastic Agents - chemistry | Down-Regulation - drug effects | AC133 Antigen | Peptides - drug effects | Receptors, Notch - analysis | Mitosis - drug effects | Signal Transduction - drug effects | Glioblastoma - pathology | Somatomedins - genetics | Cell Line, Tumor | Cell Proliferation - drug effects | Glioblastoma - drug therapy | Medulloblastoma - drug therapy | nanoCurc | Research Paper
Journal Article
by Kim, Min-Sik and Pinto, Sneha M and Getnet, Derese and Nirujogi, Raja Sekhar and Manda, Srikanth S and Chaerkady, Raghothama and Madugundu, Anil K and Kelkar, Dhanashree S and Isserlin, Ruth and Jain, Shobhit and Thomas, Joji K and Muthusamy, Babylakshmi and Leal-Rojas, Pamela and Kumar, Praveen and Sahasrabuddhe, Nandini A and Balakrishnan, Lavanya and Advani, Jayshree and George, Bijesh and Renuse, Santosh and Selvan, Lakshmi Dhevi N and Patil, Arun H and Nanjappa, Vishalakshi and Radhakrishnan, Aneesha and Prasad, Samarjeet and Subbannayya, Tejaswini and Raju, Rajesh and Kumar, Manish and Sreenivasamurthy, Sreelakshmi K and Marimuthu, Arivusudar and Sathe, Gajanan J and Chavan, Sandip and Datta, Keshava K and Subbannayya, Yashwanth and Sahu, Apeksha and Yelamanchi, Soujanya D and Jayaram, Savita and Rajagopalan, Pavithra and Sharma, Jyoti and Murthy, Krishna R and Syed, Nazia and Goel, Renu and Khan, Aafaque A and Ahmad, Sartaj and Dey, Gourav and Mudgal, Keshav and Chatterjee, Aditi and Huang, Tai-Chung and Zhong, Jun and Wu, Xinyan and Shaw, Patrick G and Freed, Donald and Zahari, Muhammad S and Mukherjee, Kanchan K and Shankar, Subramanian and Mahadevan, Anita and Lam, Henry and Mitchell, Christopher J and Shankar, Susarla Krishna and Satishchandra, Parthasarathy and Schroeder, John T and Sirdeshmukh, Ravi and Maitra, Anirban and Leach, Steven D and Drake, Charles G and Halushka, Marc K and Prasad, T. S. Keshava and Hruban, Ralph H and Kerr, Candace L and Bader, Gary D and Iacobuzio-Donahue, Christine A and Gowda, Harsha and Pandey, Akhilesh
Nature (London), ISSN 1476-4687, 2014, Volume 509, Issue 7502, pp. 575 - 581
Journal Article
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2011, Volume 331, Issue 6021, pp. 1199 - 1203
Journal Article