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  1. 1.   Stealth oxime ether lipid vesicles promote delivery of functional DsiRNA in human lung cancer A549 tumor bearing mouse xenografts
  2. Puri,Anu; Ibrahim, Faisal; O'Reilly Beringhs, André; Isemann, Camryn; Zakrevsky, Paul; Whittenburg, Abigail; Hargrove, Derek; Kanai,Tapan; Dillard, Rebecca S; de Val, Natalia; Nantz, Michael H; Lu, Xiuling; Shapiro,Bruce
  3. Nanomedicine : nanotechnology, biology, and medicine. 2022, Jun 04; 102572.
  1. 2.   Thermotropic effects of PEGylated lipids on the stability of HPPH-encapsulated lipid nanoparticles (LNP)
  2. Kalyanram, Poornima; Puri,Anu; Gupta, Anju
  3. Journal of thermal analysis and calorimetry. 2021, Jun 26; 1-12.
  1. 3.   Role of stealth lipids in nanomedicine-based drug carriers
  2. Rastogi, Mehak; Saha, Ranendra Narayan; Alexander, Amit; Singhvi, Gautam; Puri,Anu; Dubey, Sunil Kumar
  3. Chemistry and Physics of Lipids. 2021, Mar; 235
  1. 4.   Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
  2. Niska-Blakie, Joanna; Gopinathan, Lakshmi; Low, Kia Ngee; Kien, Yang Lay; Goh, Christine M F; Caldez, Matias J; Pfeiffenberger, Elisabeth; Jones, Oliver S; Ong, Chee Bing; Kurochkin, Igor V; Coppola, Vincenzo; Tessarollo,Lino; Choi, Hyungwon; Kanagasundaram, Yoganathan; Eisenhaber, Frank; Maurer-Stroh, Sebastian; Kaldis, Philipp
  3. Cellular and molecular life sciences : CMLS. 2019, Nov 13;
  1. 5.   Functional Expression and Characterization of Human Myristoylated-Arf1 in Nanodisc Membrane Mimetics
  2. Li, Yifei; Soubias,Olivier; Li,Jess; Sun, Shangjin; Randazzo, Paul A.; Byrd,Robert
  3. BIOCHEMISTRY. 2019, MAR 12; 58(10): 1423-1431.
  1. 6.   Impairment of Angiogenesis by Fatty Acid Synthase Inhibition Involves mTOR Malonylation
  2. Bruning, Ulrike; Morales-Rodriguez, Francisco; Kalucka, Joanna; Goveia, Jermaine; Taverna, Federico; Queiroz, Karla C S; Dubois, Charlotte; Cantelmo, Anna Rita; Chen, Rongyuan; Loroch, Stefan; Timmerman, Evy; Caixeta, Vanessa; Bloch, Katarzyna; Conradi, Lena-Christin; Treps, Lucas; Staes, An; Gevaert, Kris; Tee, Andrew; Dewerchin, Mieke; Semenkovich, Clay F; Impens, Francis; Schilling, Birgit; Verdin, Eric; Swinnen, Johannes V; Meier, Jordan; Kulkarni, Rhushikesh A; Sickmann, Albert; Ghesquière, Bart; Schoonjans, Luc; Li, Xuri; Mazzone, Massimiliano; Carmeliet, Peter
  3. Cell Metabolism. 2018, Dec 4; 28(6): 866-880.e15.
  1. 7.   Defective cortex glia plasma membrane structure underlies light-induced epilepsy in cpes mutants
  2. Kunduri, Govind; Turner-Evans, Daniel; Konya, Yutaka; Izumi, Yoshihiro; Nagashima, Kunio; Lockett, Stephen; Holthuis, Joost; Bamba, Takeshi; Acharya, Usha; Acharya, Jairaj
  3. Proceedings of the National Academy of Sciences of the United States of America. 2018, Sep 18; 115(38): E8919-E8928.
  1. 8.   Review of bioactive secondary metabolites from marine bryozoans in the progress of new drugs discovery
  2. Tian, Xiang Rong; Tang, Hai Feng; Tian, Xiao Lin; Hu, Jia Jun; Huang, Li Li; Gustafson, Kirk
  3. Future medicinal chemistry. 2018, Jun; 10(12): 1497-1514.
  1. 9.   Anti-Inflammatory Effects of OxPAPC Involve Endothelial Cell-Mediated Generation of LXA4
  2. Ke, Yunbo; Zebda, Noureddine; Oskolkova, Olga; Afonyushkin, Taras; Berdyshev, Evgeny; Tian, Yufeng; Meng, Fanyong; Sarich, Nicolene; Bochkov, Valery N.; Wang, Jiming; Birukova, Anna A.; Birukov, Konstantin G.
  3. Circulation Research. 2017, Jul 21; 121(3): 244-257.
  1. 10.   Oxime Ether Lipids as Transfection Agents: Assembly and Complexation with siRNA.
  2. Puri, Anu; Zampino, Serena; Viard, Mathias; Shapiro, Bruce
  3. Methods in molecular biology (Clifton, N.J.). 2017 1632: 241-253.
  1. 11.   Farnesylated and methylated KRAS4b: high yield production of protein suitable for biophysical studies of prenylated protein-lipid interactions
  2. Gillette, W. K.; Esposito, D.; Abreu Blanco, M.; Alexander, P.; Bindu, L.; Bittner, C.; Chertov, O.; Frank, P. H.; Grose, C.; Jones, J. E.; Meng, Z.; Perkins, S.; Van, Q.; Ghirlando, R.; Fivash, M.; Nissley, D. V.; McCormick, F.; Holderfield, M.; Stephen, A. G.
  3. Scientific Reports. 2015 5: 15916.
  1. 12.   Ceramide Transfer Protein and Cancer
  2. Scheffer, L.; Raghavendra, P. R.; Ma, J. J.; Acharya, J. K.
  3. Anti-cancer agents in medicinal chemistry. 2011, Nov; 11(9): 904-910.
  1. 13.   Quantitative Analysis of Phospholipids Using Nanostructured Laser Desorption Ionization Targets
  2. Colantonio, S.; Simpson, J. T.; Fisher, R. J.; Yavlovich, A.; Belanger, J. M.; Puri, A.; Blumenthal, R.
  3. Lipids. 2011, May; 46(5): 469-477.
  1. 14.   A novel class of photo-triggerable liposomes containing DPPC:DC8,9PC as vehicles for delivery of doxorubcin to cells
  2. Yavlovich, A.; Singh, A.; Blumenthal, R.; Puri, A.
  3. Biochimica Et Biophysica Acta-Biomembranes. 2011, Jan; 1808(1): 117-126.
  1. 15.   Multivalent dendrimeric compounds containing carbohydrates expressed on immune cells inhibit infection by primary isolates of HIV-1
  2. Borges, A. R.; Wieczorek, L.; Johnson, B.; Benesi, A. J.; Brown, B. K.; Kensinger, R. D.; Krebs, F. C.; Wigdahl, B.; Blumenthal, R.; Puri, A.; McCutchan, F. E.; Birx, D. L.; Polonis, V. R.; Schengrund, C. L.
  3. Virology. 2010, Dec; 408(1): 80-88.
  1. 16.   Quantitation of ceramide phosphorylethanolamines containing saturated and unsaturated sphingoid base cores
  2. Masood, M. A.; Yuan, C. Q.; Acharya, J. K.; Veenstra, T. D.; Blonder, J.
  3. Analytical Biochemistry. 2010, May 15; 400(2): 259-269.
  1. 17.   The Role of Lipids in Retrovirus Replication
  2. Waheed, A. A.; Freed, E. O.
  3. Viruses-Basel. 2010, May; 2(5): 1146-1180.
  1. 18.   Cell-nonautonomous function of ceramidase in photoreceptor homeostasis
  2. Acharya, J. K.; Dasgupta, U.; Rawat, S. S.; Yuan, C. Q.; Sanxaridis, P. D.; Yonamine, I.; Karim, P.; Nagashima, K.; Brodsky, M. H.; Tsunoda, S.; Acharya, U.
  3. Neuron. 2008 57(1): 69-79.
  1. 19.   Self-assembly and lipid interactions of diacylglycerol lactone derivatives studied at the air/water interface
  2. Philosof-Mazor, L.; Volinsky, R.; Comin, M. J.; Lewin, N. E.; Kedei, N.; Blumberg, P. M.; Marquez, V. E.; Jelinek, R.
  3. Langmuir. 2008 24(19): 11043-11052.
  1. 21.   Rapid distribution of liposomal short-chain ceramide in vitro and in vivo
  2. Zolnik, B. S.; Stern, S. T.; Kaiser, J. M.; Heakal, Y.; Clogston, J. D.; Kester, M.; McNeil, S. E.
  3. Drug Metabolism and Disposition. 2008 36(8): 1709-1715.
  1. 22.   Ceramide transfer protein function is essential for normal oxidative stress response and lifespan
  2. Rao, R. P.; Yuan, C.; Allegood, J. C.; Rawat, S. S.; Edwards, M. B.; Wang, X.; Merrill, A. H.; Acharya, J. K.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2007, Jul; 104(27): 11364-11369.
  1. 23.   Sphingolipids, cholesterol, and HIV-1: A paradigm in viral fusion
  2. Rawat, S. S.; Viard, M.; Gallo, S. A.; Blumenthal, R.; Puri, A.
  3. Glycoconjugate Journal. 2006, MAY; 23(3-4): 189-197.
  1. 24.   Sphingolipids: Modulators of HIV-1 infection and pathogenesis
  2. Rawat, S. S.; Johnson, B. T.; Puri, A.
  3. Bioscience Reports. 2005, OCT; 25(5-6): 329-343.
  1. 25.   Enzymes of sphingolipid metabolism in Drosophila melanogaster
  2. Acharya, U.; Acharya, J. K.
  3. Cellular and Molecular Life Sciences. 2005, JAN; 62(2): 128-142.
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