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GUSTAVE ROUSSY
1er centre de lutte contre le cancer en Europe, 3 000 professionnels mobilisés

Plasticité métabolique en physiopathologie

Responsable
Nazanine Modjtahedi

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Tél. : +33 (0)1 42 11 54 91
E-mail

Frise de présentation (bandeau): 
Plasticité métabolique en physiopathologie

1.    Nedara, K., et al., Relevance of TRIAP1/p53 axis in colon cancer cell proliferation and adaptation to glutamine deprivation. Frontiers in Oncology, 2022. 12.

2.    Lai, H.T., et al., Ca(2+) Transportome and the Interorganelle Communication in Hepatocellular Carcinoma. Cells, 2022. 11(5): p. 815.

3.    Lai, H.T., et al., Insight into the interplay between mitochondria-regulated cell death and energetic metabolism in osteosarcoma. Front Cell Dev Biol, 2022. 10: p. 948097.

4.    Corporeau, C., et al., Harsh intertidal environment enhances metabolism and immunity in oyster (Crassostrea gigas) spat. Mar Environ Res, 2022. 180: p. 105709.

5.    Tellado, M., L.M. Mir, and F. Maglietti, Veterinary Guidelines for Electrochemotherapy of Superficial Tumors. Front Vet Sci, 2022. 9: p. 868989.

6.    Merla, C., et al., Changes in hydration of liposome membranes exposed to nanosecond electric pulses detected by wide-field Coherent anti-Stokes Raman microspectroscopy. Bioelectrochemistry, 2022. 147: p. 108218.

7.    Consales, C., et al., Biological effects of ultrashort electric pulses in a neuroblastoma cell line: the energy density role. Int J Radiat Biol, 2022. 98(1): p. 109-121.

8.    Ichim, G., et al., Keeping Cell Death Alive: An Introduction into the French Cell Death Research Network. Biomolecules, 2022. 12(7): p. 901.

9.    Liu, D., et al., Identification of Small Molecules Inhibiting Cardiomyocyte Necrosis and Apoptosis by Autophagy Induction and Metabolism Reprogramming. Cells, 2022. 11(3): p. 474.

10.    De Angelis, A., et al., Gaps and Challenges in Microdosimetry: Improvements With Realistic Models of Endoplasmic Reticulum. URSI Radio Science Letters, 2022. 4: p. 3.

11.    Hauguel, C., et al., Design, synthesis and biological evaluation of quinoline-2-carbonitrile-based hydroxamic acids as dual tubulin polymerization and histone deacetylases inhibitors. European Journal of Medicinal Chemistry, 2022. 240: p. 114573.

12.    Arena, G., N. Modjtahedi, and R. Kruger, Exploring the contribution of the mitochondrial disulfide relay system to Parkinson's disease: the PINK1/CHCHD4 interplay. Neural Regen Res, 2021. 16(11): p. 2222-2224.

13.    Dickson-Murray, E., et al., The Mia40/CHCHD4 Oxidative Folding System: Redox Regulation and Signaling in the Mitochondrial Intermembrane Space. Antioxidants (Basel), 2021. 10(4): p. 592.

14.    Boutary, S., et al., Squalenoyl siRNA PMP22 nanoparticles are effective in treating mouse models of Charcot-Marie-Tooth disease type 1 A. Commun Biol, 2021. 4(1): p. 317.

15.    Claveau, S., et al., Delivery of siRNA to Ewing Sarcoma Tumor Xenografted on Mice, Using Hydrogenated Detonation Nanodiamonds: Treatment Efficacy and Tissue Distribution. Nanomaterials (Basel), 2020. 10(3).

16.    Liu, D., et al., Multiple analysis of mitochondrial metabolism, autophagy and cell death, in Methods in Cell Biology. 2021, Elsevier. p. 95-112.

17.    Tesse, A., F.M. Andre, and T. Ragot, Aluminum particles generated during millisecond electric pulse application enhance adenovirus-mediated gene transfer in L929 cells. Sci Rep, 2021. 11(1): p. 17725.

18.    Gailliegue, F.N., et al., A Setup for Microscopic Studies of Ultrasounds Effects on Microliters Scale Samples: Analytical, Numerical and Experimental Characterization. Pharmaceutics, 2021. 13(6): p. 847.

19.    Gisbert Roca, F., et al., BDNF-Gene Transfected Schwann Cell-Assisted Axonal Extension and Sprouting on New PLA-PPy Microfiber Substrates. Macromol Biosci, 2021. 21(5): p. e2000391.

20.    Cifra, M., et al., Possible molecular and cellular mechanisms at the basis of atmospheric electromagnetic field bioeffects. Int J Biometeorol, 2021. 65(1): p. 59-67.

21.    Ghorbel, A., et al., Electrophoresis-assisted accumulation of conductive nanoparticles for the enhancement of cell electropermeabilization. Bioelectrochemistry, 2021. 137: p. 107642.

22.    Savoska, S., et al., Toward the creation of an ontology for the coupling of atmospheric electricity with biological systems. Int J Biometeorol, 2021. 65(1): p. 31-44.

23.    Fdez-Arroyabe, P., et al., Glossary on atmospheric electricity and its effects on biology. Int J Biometeorol, 2021. 65(1): p. 5-29.

24.    Reinhardt, C., et al., AIF meets the CHCHD4/Mia40-dependent mitochondrial import pathway. Biochim Biophys Acta Mol Basis Dis, 2020. 1866(6): p. 165746.

25.    Pervaiz, S., et al., Redox signaling in the pathogenesis of human disease and the regulatory role of autophagy. Int Rev Cell Mol Biol, 2020. 352: p. 189-214.

26.    Gauthier, F., et al., Conjugation of Doxorubicin to siRNA Through Disulfide-based Self-immolative Linkers. Molecules, 2020. 25(11).

27.    Meyenberg Cunha-de Padua, M., et al., Evidences of a Direct Relationship between Cellular Fuel Supply and Ciliogenesis Regulated by Hypoxic VDAC1-DeltaC. Cancers (Basel), 2020. 12(11).

28.    Chung, T.H., et al., Cell Electropermeabilisation Enhancement by Non-Thermal-Plasma-Treated PBS. Cancers (Basel), 2020. 12(1).

29.    De Angelis, A., et al., Confocal Microscopy Improves 3D Microdosimetry Applied to Nanoporation Experiments Targeting Endoplasmic Reticulum. Front Bioeng Biotechnol, 2020. 8: p. 552261.

30.    Azan, A., et al., Monitoring the molecular composition of live cells exposed to electric pulses via label-free optical methods. Sci Rep, 2020. 10(1): p. 10471.

31.    Garcia-Sanchez, T., et al., Physiological changes may dominate the electrical properties of liver during reversible electroporation: Measurements and modelling. Bioelectrochemistry, 2020. 136: p. 107627.

32.    Garcia-Sanchez, T., et al., Successful Tumor Electrochemotherapy Using Sine Waves. IEEE Trans Biomed Eng, 2020. 67(4): p. 1040-1049.

33.    Sarnago, H., et al., GaN-Based versatile waveform generator for biomedical applications of electroporation. IEEE Access, 2020. 8: p. 97196-97203.

34.    Ibrahimi, N., et al., A Subnanosecond Pulsed Electric Field System for Studying Cells Electropermeabilization. IEEE Transactions on Plasma Science, 2020. 48(12): p. 4242-4249

 

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