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  1. 1.   Co-incubation of Short Amphiphilic Peptides with Dicer Substrate RNAs Results in ß-Sheet Fibrils for Enhanced Gene Silencing in Cancer Cells
  2. Gupta, Kshitij; Parlea, Lorena; Puri,Anu; Smith, Katelyn; Puri,Anu; Bergman, Joseph T; Kim, Taejin; Shapiro,Bruce
  3. RNA Nanomed. 2024, Dec; 1(1): 61-78.
  1. 2.   Human Immunodeficiency Virus Type 1 Gag Polyprotein Modulates Membrane Physical Properties like a Surfactant: Potential Implications for Virus Assembly
  2. Denieva, Zaret G; Kuzmin, Peter I; Galimzyanov, Timur R; Datta,Siddhartha; Rein,Alan; Batishchev, Oleg V
  3. ACS Infectious Diseases. 2024, Jun 25;
  1. 3.   Characterization of Cationic Bolaamphiphile Vesicles for siRNA Delivery into Tumors and Brain
  2. Kim, Taejin; Viard,Mathias; Afonin, Kirill A; Gupta, Kshitij; Popov, Mary; Salotti,Jacqueline; Johnson,Peter; Linder, Charles; Heldman, Eliahu; Shapiro,Bruce
  3. Molecular therapy. Nucleic acids. 2020, JUN 5; 20: 359-372.
  1. 4.   Development and Evaluation of Stimuli-Responsive Chimeric Nanostructures
  2. Naziris, Nikolaos; Pippa, Natassa; Stellas, Dimitrios; Chrysostomou, Varvara; Pispas, Stergios; Demetzos, Costas; Libera, Marcin; Trzebicka, Barbara
  3. AAPS PharmSciTech. 2018, Oct; 19(7): 2971-2989.
  1. 5.   Whole genome amplification and sequencing of a Daphnia resting egg
  2. Lack, Justin; Weider, Lawrence J; Jeyasingh, Punidan D
  3. Molecular ecology resources. 2018, Jan; 18(1): 118-127.
  1. 6.   IFITM3 requires an amphipathic helix for antiviral activity
  2. Chesarino, Nicholas M; Compton, Alex; McMichael, Temet M; Kenney, Adam D; Zhang, Lizhi; Soewarna, Victoria; Davis, Matthew; Schwartz, Olivier; Yount, Jacob S
  3. EMBO Reports. 2017, Oct; 18(10): 1740-1751.
  1. 7.   Lipid-Based Nanoparticles as Pharmaceutical Drug Carriers: From Concepts to Clinic
  2. Puri, A.; Loomis, K.; Smith, B.; Lee, J. H.; Yavlovich, A.; Heldman, E.; Blumenthal, R.
  3. Critical Reviews in Therapeutic Drug Carrier Systems. 2009 26(6): 523-580.
  1. 8.   Association of the ABCG2 C421A polymorphism with prostate cancer risk and survival
  2. Gardner, E. R.; Ahlers, C. M.; Shukla, S.; Sissung, T. M.; Ockers, S. B.; Price, D. K.; Hamada, A.; Robey, R. W.; Steinberg, S. M.; Ambudkar, S. V.; Dahut, W. L.; Figg, W. D.
  3. Bju International. 2008 102(11): 1694-1699.
  1. 9.   Differential metabolism of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) in mice humanized for CYP1A1 and CYP1A2
  2. Cheung, C.; Ma, X. C.; Krausz, K. W.; Kimura, S.; Feigenbaum, L.; Dalton, T. P.; Nebert, D. W.; Idle, J. R.; Gonzalez, F. J.
  3. Chemical Research in Toxicology. 2005, SEP; 18(9): 1471-1478.
  1. 10.   Coexposure to ethanol with N-nitrosodimethylamine or 4- (methylnitrosamino)-1-(3-pyridyl)-1-butanone during lactation of rats: Marked increase in O-6-methylguanine-DNA adducts in maternal mammary gland and in suckling lung and kidney
  2. Chhabra, S. K.; Anderson, L. M.; Perella, C.; Desai, D.; Amin, S.; Kyrtopoulos, S. A.; Souliotis, V. L.
  3. Toxicology and Applied Pharmacology. 2000 169(2): 191-200.
  1. 11.   The murine Bin1 gene functions early in myogenesis and defines a new region of synteny between mouse chromosome 18 and human chromosome 2
  2. Mao, N. C.; Steingrimsson, E.; DuHadaway, J.; Wasserman, W.; Ruiz, J. C.; Copeland, N. G.; Jenkins, N. A.; Prendergast, G. C.
  3. Genomics. 1999 56(1): 51-58.
  1. 12.   Cellular Delivery of siRNAs Using Bolaamphiphiles.
  2. Gupta, Kshitij
  3. Methods in molecular biology (Clifton, N.J.). 2017 1632: 187-205.
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