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  1. 1.   Detection of Beta-Glucan Contamination in Nanotechnology-Based Formulations
  2. Neun,Barry; Cedrone,Edward; Potter, Timothy M.; Crist,Rachael; Dobrovolskaia,Marina
  3. Molecules (Basel, Switzerland). 2020, AUG; 25(15):
  1. 2.   Detection of Endotoxin in Nano-formulations Using Limulus Amoebocyte Lysate (LAL) Assays
  2. Neun,Barry; Dobrovolskaia,Marina
  3. Journal of visualized experiments : JoVE. 2019, Jan 30; (143):
  1. 3.   Failure to Confirm XMRV/MLVs in the Blood of Patients with Chronic Fatigue Syndrome: A Multi-Laboratory Study
  2. Simmons, G.; Glynn, S. A.; Komaroff, A. L.; Mikovits, J. A.; Tobler, L. H.; Hackett, J.; Tang, N.; Switzer, W. M.; Heneine, W.; Hewlett, I. K.; Zhao, J. Q.; Lo, S. C.; Alter, H. J.; Linnen, J. M.; Gao, K.; Coffin, J. M.; Kearney, M. F.; Ruscetti, F. W.; Pfost, M. A.; Bethel, J.; Kleinman, S.; Holmberg, J. A.; Busch, M. P.; Blood, X. S. R. W. G.
  3. Science. 2011, Nov; 334(6057): 814-817.
  1. 4.   Recombinant Origin of the Retrovirus XMRV
  2. Paprotka, T.; Delviks-Frankenberry, K. A.; Cingoz, O.; Martinez, A.; Kung, H. J.; Tepper, C. G.; Hu, W. S.; Fivash, M. J.; Coffin, J. M.; Pathak, V. K.
  3. Science. 2011, Jul; 333(6038): 97-101.
  1. 5.   Identification of Replication Competent Murine Gammaretroviruses in Commonly Used Prostate Cancer Cell Lines
  2. Sfanos, K. S.; Aloia, A. L.; Hicks, J. L.; Esopi, D. M.; Steranka, J. P.; Shao, W.; Sanchez-Martinez, S.; Yegnasubramanian, S.; Burns, K. H.; Rein, A.; De Marzo, A. M.
  3. Plos One. 2011, Jun; 6(6): 6.
  1. 6.   DNA fingerprinting of the NCI-60 cell line panel
  2. Lorenzi, P. L.; Reinhold, W. C.; Varma, S.; Hutchinson, A. A.; Pommier, Y.; Chanock, S. J.; Weinstein, J. N.
  3. Molecular Cancer Therapeutics. 2009 8(4): 713-724.
  1. 7.   An activity-dependent assay for ricin and related RNA N-glycosidases based on electrochemiluminescence
  2. Keener, W. K.; Rivera, V. R.; Young, C. C.; Poli, M. A.
  3. Analytical Biochemistry. 2006, Oct; 357(2): 200-207.
  1. 8.   Quality sample collection, handling, and preservation for an effective microbial forensics program
  2. Budowle, B.; Schutzer, S. E.; Burans, J. P.; Beecher, D. J.; Cebula, T. A.; Chakraborty, R.; Cobb, W. T.; Fletcher, J.; Hale, M. L.; Harris, R. B.; Heitkamp, M. A.; Keller, F. P.; Kuske, C.; LeClerc, J. E.; Marrone, B. L.; McKenna, T. S.; Morse, S. A.; Rodriguez, L. L.; Valentine, N. B.; Yadev, J.
  3. Applied and Environmental Microbiology. 2006, Oct; 72(10): 6431-6438.
  1. 9.   High levels of fluctuating asymmetry in populations of Apodemus flavicollis from the most contaminated areas in Chornobyl
  2. Oleksyk, T. K.; Novak, J. M.; Purdue, J. R.; Gashchak, S. P.; Smith, M. H.
  3. Journal of Environmental Radioactivity. 2004 73(1): 1-20.
  1. 10.   Cell culture forensics
  2. O'Brien, S. J.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2001 98(14): 7656-7658.
  1. 11.   Degradable Dump Outer Primers in Merged Tandem (M/T)-Nested Pcr - Low- and Single-Copy Dna Target Amplification
  2. Grace, M. B.; Buzard, G. S.; Hughes, M. R.; Gorelangton, R. E.
  3. Analytical Biochemistry. 1998 263(1): 85-92.
  1. 12.   Detection of Bacterial Contamination in Nanoparticle Formulations by Agar Plate Test
  2. Potter, Tim; Neun, Barry; Ilinskaya, Anna N; Dobrovolskaia, Marina
  3. Methods in molecular biology (Clifton, N.J.). 2018 1682: 19-22.
  1. 13.   Detection of Beta-Glucan Contamination in Nanoparticle Formulations
  2. Neun,Barry; Dobrovolskaia,Marina
  3. Methods in molecular biology (Clifton, N.J.). 2024 2789: 101-108.
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