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  1. 1.   Antisense transcription from lentiviral gene targeting linked to an integrated stress response in colorectal cancer cells
  2. Ha, Taekyu; DiPrima, Michael; Koparde,Vishal; Jailwala,Parthav; Ohnuki, Hidetaka; Feng, Jing-Xin; Palangat, Murali; Larson, Daniel; Tosato, Giovanna
  3. Molecular Therapy. Nucleic Acids. 2022, Jun 14; 28: 877-891.
  1. 2.   Advanced genetic engineering to achieve in vivo targeting of adenovirus utilizing camelid single domain antibody
  2. Lee, Myungeun; Lu, Zhi Hong; Shoemaker, Charles B.; Tremblay, Jacqueline M.; St Croix,Brad; Seaman,Steven; Gonzalez-Pastor, Rebeca; Kashentseva, Elena A.; Dmitriev, Igor P.; Curiel, David T.
  3. Journal of Controlled Release : Official Journal of the Controlled Release Society. 2021, Jun 10; 334: 106-113.
  1. 3.   Adeno-associated viral vector mediated expression of broadly-neutralizing antibodies against HIV - hitting a fast-moving target
  2. Sherpa,Chringma; Le Grice,Stuart
  3. Current HIV research. 2020, Feb 10; 18(2): 114-131.
  1. 4.   Development of Lentiviral Vectors for HIV-1 Gene Therapy with Vif-Resistant APOBEC3G
  2. Frankenberry,Krista; Ackerman, Daniel; Timberlake, Nina D; Hamscher, Maria; Nikolaitchik,Olga; Hu,Wei-Shau; Torbett, Bruce E; Pathak,Vinay
  3. Molecular therapy. Nucleic acids. 2019, Dec 6; 18: 1023-1038.
  1. 5.   Resveratrol trimer enhances gene delivery to hematopoietic stem cells by reducing antiviral restriction at endosomes
  2. Ozog, Stosh; Timberlake, Nina D.; Hermann, Kip; Garijo, Olivia; Haworth, Kevin G.; Shi,Scarlett; Glinkerman, Christopher M.; Schefter, Lauren E.; D'Souza, Saritha; Simpson, Elizabeth; Sghia-Hughes, Gabriella; Carillo, Raymond R.; Boger, Dale L.; Kiem, Hans-Peter; Slukvin, Igor; Ryu, Byoung Y.; Sorrentino, Brian P.; Adair, Jennifer E.; Snyder, Scott A.; Compton,Alex; Torbett, Bruce E.
  3. BLOOD. 2019, OCT 17; 134: 1298-1311.
  1. 6.   Aberrant Clonal Hematopoiesis following Lentiviral Vector Transduction of HSPCs in a Rhesus Macaque
  2. Espinoza, Diego A; Fan, Xing; Yang, Di; Cordes, Stefan F; Truitt, Lauren L; Calvo, Katherine R; Yabe, Idalia M; Demirci, Selami; Hope, Kristin J; Hong, So Gun; Krouse, Allen; Metzger, Mark; Bonifacino, Aylin; Lu, Rong; Uchida, Naoya; Tisdale, John F; Wu,Xiaolin; DeRavin, Suk See; Malech, Harry L; Donahue, Robert E; Wu, Chuanfeng; Dunbar, Cynthia E
  3. Molecular therapy : the journal of the American Society of Gene Therapy. 2019, Jun 5; 27(6): 1074-1086.
  1. 7.   Itaconic acid mediates crosstalk between macrophage metabolism and peritoneal tumors
  2. Weiss, Jonathan; Davies, Luke C.; Karwan, Megan; Ileva, Lilia; Ozaki, Michelle K.; Cheng, Robert; Ridnour, Lisa; Annunziata, Christina M.; Wink, David; McVicar, Daniel
  3. Journal of Clinical Investigation. 2018, Aug 31; 128(9): 3794-3805.
  1. 8.   Expression of complete SIV p27 Gag and HIV gp120 engineered outer domains targeted by broadly neutralizing antibodies in live rubella vectors
  2. Virnik, Konstantin; Nesti, Edmund; Dail, Cody; Hockenbury, Max; Ni, Yisheng; Felber, Barbara; Schief, William R; Berkower, Ira
  3. Vaccine. 2017, May 31; 35(24): 3272-3278.
  1. 9.   Protein delivery using engineered virus-like particles
  2. Kaczmarczyk, S. J.; Sitaraman, K.; Young, H. A.; Hughes, S. H.; Chatterjee, D. K.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2011, Oct; 108(41): 16998-17003.
  1. 10.   Telomerase and primary T cells: biology and immortalization for adoptive immunotherapy
  2. Barsov, E. V.
  3. Immunotherapy. 2011, Mar; 3(3): 407-421.
  1. 11.   Lens epithelium-derived growth factor fusion proteins redirect HIV-1 DNA integration
  2. Ferris, A. L.; Wu, X. L.; Hughes, C. M.; Stewart, C.; Smith, S. J.; Milne, T. A.; Wang, G. G.; Shun, M. C.; Allis, C. D.; Engelman, A.; Hughes, S. H.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2010, Feb 16; 107(7): 3135-3140.
  1. 12.   Retrovirus gene therapy for X-linked chronic granulomatous disease can achieve stable long-term correction of oxidase activity in peripheral blood neutrophils
  2. Kang, E. M.; Choi, U.; Theobald, N.; Linton, G.; Priel, D. A. L.; Kuhns, D.; Malech, H. L.
  3. Blood. 2010, Jan; 115(4): 783-791.
  1. 13.   Frequency and spectrum of genomic integration of recombinant adeno-associated virus serotype 8 vector in neonatal mouse liver
  2. Inagaki, K.; Piao, C. C.; Kotchey, N. M.; Wu, X. L.; Nakai, H.
  3. Journal of Virology. 2008 82(19): 9513-9524.
  1. 14.   Large-scale, saturating insertional mutagenesis of the mouse genome
  2. Gragerov, A.; Horie, K.; Pavlova, M.; Madisen, L.; Zeng, H.; Gragerova, G.; Rhode, A.; Dolka, I.; Roth, P.; Ebbert, A.; Moe, S.; Navas, C.; Finn, E.; Bergmann, J.; Vassilatis, D. K.; Pavlakis, G. N.; Gaitanaris, G. A.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2007, Sep; 104(36): 14406-14411.
  1. 15.   Transduction of rhesus macaque hematopoietic stem and progenitor cells with avian sarcoma and leukosis viral vectors
  2. Hu, J. Q.; Ferris, A.; Larochelle, A.; Krouse, A. E.; Metzger, M. E.; Donahue, R. E.; Hughes, S. H.; Dunbar, C. E.
  3. Human Gene Therapy. 2007, Aug; 18(8): 691-700.
  1. 16.   Efficiency of human immunodeficiency virus type 1 postentry infection processes: Evidence against disproportionate numbers of defective virions
  2. Thomas, J. A.; Ott, D. E.; Gorelick, R. J.
  3. Journal of Virology. 2007, Apr; 81(8): 4367-4370.
  1. 17.   Antiretroviral potential of human tripartite motif-5 and related proteins
  2. Zhang, F. W.; Hatziioannou, T.; Perez-Caballero, D.; Derse, D.; Bieniasz, P. D.
  3. Virology. 2006, Sep; 353(2): 396-409.
  1. 18.   Lsh is involved in de novo methylation of DNA
  2. Zhu, H. M.; Geiman, T. M.; Xi, S. C.; Jiang, Q.; Schmidtmann, A.; Chen, T. P.; Li, E.; Muegge, K.
  3. Embo Journal. 2006, JAN 25; 25(2): 335-345.
  1. 19.   Avian sarcoma leukosis virus (ASLV) derived retroviral vectors efficiently transduce CD34+cells and have a distinct integration profile in the rhesus macaque transplantation model
  2. Hu, J. Q.; Ferris, A.; Hughes, S.; Dunbar, C. E.
  3. Blood. 2005, NOV 16; 106(11, Part 1): 375A, Abstract 1290-375A, Abstract 1290.
  1. 20.   Alternate polypurine tracts (PPTs) affect the Rous sarcoma virus RNase H cleavage specificity and reveal a preferential cleavage following a GA dinucleotide sequence at the PPT-U3 junction
  2. Chang, K. W.; Julias, J. G.; Alvord, W. G.; Oh, J.; Hughes, S. H.
  3. Journal of Virology. 2005, NOV; 79(21): 13694-13704.
  1. 21.   Effect of posttranscriptional regulatory elements on transgene expression and virus production in the context of retrovirus vectors
  2. Hlavaty, J.; Schittmayer, M.; Stracke, A.; Jandl, G.; Knapp, E.; Felber, B. K.; Salmons, B.; Gunzburg, W. H.; Renner, M.
  3. Virology. 2005, OCT 10; 341(1): 1-11.
  1. 22.   Recurrent retroviral vector integration at the Mds1/Evi1 locus in nonhuman primate hematopoietic cells
  2. Calmels, B.; Ferguson, C.; Laukkanen, M. O.; Adler, R.; Faulhaber, M.; Kim, H. J.; Sellers, S.; Hematti, P.; Schmidt, M.; von Kalle, C.; Akagi, K.; Donahue, R. E.; Dunbar, C. E.
  3. Blood. 2005, OCT 1; 106(7): 2530-2533.
  1. 23.   IL-3 induces inhibitor of DNA-binding protein-1 in hemopoietic progenitor cells and promotes myeloid cell development
  2. Leeanansaksiri, W.; Wang, H.; Gooya, J. M.; Renn, K.; Abshari, M.; Tsai, S.; Keller, J. R.
  3. Journal of Immunology. 2005, JUN 1; 174(11): 7014-7021.
  1. 24.   Ex vivo expanded murine bone marrow cells with a multiple cytokine cocktail retain long-term hematopoietic reconstitution potentials
  2. Yang, Q. E.; Fong, S. E.; Li, K. G.; Gonda, M. A.; Tobin, G. J.
  3. Medical Science Monitor. 2005, JUN; 11(6): BR154-BR161.
  1. 25.   Picolinic acid- or desferrioxamine-inducible autocrine activation of macrophages engineered to produce IFN gamma: an approach for gene therapy
  2. Pastorino, S.; Carta, L.; Puppo, M.; Melillo, G.; Bosco, M. C.; Varesio, L.
  3. Gene Therapy. 2004 11(6): 560-568.
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