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  1. 2.   Recent Advances in the Development of Non-Invasive Imaging Probes for Cancer Immunotherapy
  2. Kazim,Muhammad; Yoo,Euna
  3. Angewandte Chemie (International ed. in English). 2023, Oct 16; e202310694.
  1. 3.   Doubly Strapped Zwitterionic NIR-I and NIR-II Heptamethine Cyanine Dyes for Bioconjugation and Fluorescence Imaging
  2. Li,Donghao; Gamage, Rananjaya S; Oliver, Allen G; Patel,Nimit; Usama, Syed Muhammad; Kalen,Joseph; Schnermann,Martin; Smith, Bradley D
  3. Angewandte Chemie (International ed. in English). 2023, May 10; e202305062.
  1. 4.   Targetable conformationally restricted cyanines enable photon-count limited applications
  2. Eiring, Patrick; McLaughlin, Ryan; Matikonda,Siddharth; Han, Zhongying; Grabenhorst, Lennart; Helmerich, Dominic A; Meub, Mara; Beliu, Gerti; Luciano,Michael; Bandi, Venu; Zijlstra, Niels; Shi, Zhen-Dan; Tarasov,Sergey; Swenson, Rolf; Tinnefeld, Philip; Glembockyte, Viktorija; Cordes, Thorben; Sauer, Markus; Schnermann,Martin
  3. Angewandte Chemie (International ed. in English). 2021, Oct 04;
  1. 5.   Remodelin Is a Cryptic Assay Interference Chemotype That Does Not Inhibit NAT10-Dependent Cytidine Acetylation
  2. Shrimp,Jonathan; Jing,Yihang; Thalalla Gamage,Supuni; Nelson, Kathryn M.; Han, Joseph; Bryson, Keri M.; Montgomery,David; Thomas, Justin M.; Nance,Kellie; Sharma, Sunny; Fox,Stephen; Andresson,Thorkell; Sinclair,Wilson; Wu, Hong; Allali-Hassani, Abdellah; Senisterra, Guillermo; Vedadi, Masoud; Lafontaine, Denis; Dahlin, Jayme L.; Marmorstein, Ronen; Walters, Michael A.; Meier,Jordan
  3. ACS MEDICINAL CHEMISTRY LETTERS. 2021, Jun 10; 12(6): 887-892.
  1. 6.   Covalent Small Molecule Immunomodulators Targeting the Protease Active Site
  2. Kim,Hong-Rae; Tagirasa,Ravichandra; Yoo,Euna
  3. Journal of medicinal chemistry. 2021, May 13; 64(9): 5291-5322.
  1. 7.   Mapping Single Walled Carbon Nanotubes in Photosynthetic Algae by Single-Cell Confocal Raman Microscopy
  2. Orlanducci, Silvia; Fulgenzi,Gianluca; Margonelli, Andrea; Rea, Giuseppina; Antal, Taras K; Lambreva, Maya D
  3. Materials (Basel, Switzerland). 2020, NOV; 13(22): pii: E5121.
  1. 8.   Core remodeling leads to long wavelength fluoro-coumarins
  2. Matikonda,Siddharth; Ivanic,Joseph; Gomez, Miguel; Hammersley, Gabrielle; Schnermann,Martin
  3. CHEMICAL SCIENCE. 2020, JUL 28; 11(28): 7302-7307.
  1. 9.   Protein Engineering in the Ubiquitin System: Tools for Discovery and Beyond
  2. Zhao, Bo; Tsai,Yien Che; Jin, Bo; Wang, Bufan; Wang, Yiyang; Zhou, Han; Carpenter, Tomaya; Weissman,Allan; Yin, Jun
  3. Pharmacological reviews. 2020, Apr; 72(2): 380-413.
  1. 10.   Two-color in situ hybridization of whole-mount mouse embryos
  2. Biris, K. K.; Yamaguchi, T. P.
  3. Methods in molecular biology (Clifton, N.J.). 2014 1092: 17-30.
  1. 11.   HER2-and EGFR-Specific Affiprobes: Novel Recombinant Optical Probes for Cell Imaging
  2. Lyakhov, I.; Zielinski, R.; Kuban, M.; Kramer-Marek, G.; Fisher, R.; Chertov, O.; Bindu, L.; Capala, J.
  3. Chembiochem. 2010, Feb; 11(3): 345-350.
  1. 12.   Semiconductor Nanocrystals in Autophagy Research: Methodology Improvement at Nanosized Scale
  2. Seleverstov, O.; Phang, J. M.; Zabirnyk, O.
  3. Autophagy in Mammalian Systems. 2009; 452, Pt B : 277-296.
  1. 13.   Determination of the ex vivo rates of human immunodeficiency virus type 1 reverse transcription by using novel strand-specific amplification analysis
  2. Thomas, D. C.; Voronin, Y. A.; Nikolenko, G. N.; Chen, J. B.; Hu, W. S.; Pathak, V. K.
  3. Journal of Virology. 2007, May; 81(9): 4798-4807.
  1. 14.   Biotinylated biphenyl ketone-containing 2,4-dioxobutanoic acids designed as HIV-1 integrase photoaffinity ligands
  2. Zhao, X. Z.; Semenova, E. A.; Liao, C. Z.; Nicklaus, M.; Pommier, Y.; Burke, T. R.
  3. Bioorganic & Medicinal Chemistry. 2006, Dec; 14(23): 7816-7825.
  1. 15.   Evaluating chemical structure similarity as an indicator of cellular growth inhibition
  2. Wallqvist, A.; Huang, R. L.; Thanki, N.; Covell, D. G.
  3. Journal of Chemical Information and Modeling. 2006, JAN-FEB; 46(1): 430-437.
  1. 16.   Ligand-induced partitioning of human CXCR1 chemokine receptors with lipid raft microenvironments facilitates G-protein-dependent signaling
  2. Jiao, X. M.; Zhang, N.; Xu, X. H.; Oppenheim, J. J.; Jin, T.
  3. Molecular and Cellular Biology. 2005, JUL; 25(13): 5752-5762.
  1. 17.   Elimination of retroviral infectivity by N-ethylmaleimide with preservation of functional envelope glycoproteins
  2. Morcock, D. R.; Thomas, J. A.; Gagliardi, T. D.; Gorelick, R. J.; Roser, J. D.; Chertova, E. N.; Bess, J. W.; Ott, D. E.; Sattentau, Q. J.; Frank, I.; Pope, M.; Lifson, J. D.; Henderson, L. E.; Crise, B. J.
  3. Journal of Virology. 2005, FEB; 79(3): 1533-1542.
  1. 18.   Wortmannin, a widely used phosphoinositide 3-kinase inhibitor, also potently inhibits mammalian polo-like kinase
  2. Liu, Y. S.; Shreder, K. R.; Gai, W. Z.; Corral, S.; Ferris, D. K.; Rosenblum, J. S.
  3. Chemistry & Biology. 2005, JAN; 12(1): 99-107.
  1. 19.   Mapping genomic rearrangements in titi monkeys by chromosome flow sorting and multidirectional in-situ hybridization
  2. Dumas, F.; Bigoni, F.; Stone, G.; Sineo, L.; Stanyon, R.
  3. Chromosome Research. 2005 13(1): 85-96.
  1. 20.   Reciprocal painting between humans, De Brazza's and patas monkeys reveals a major bifurcation in the Cercopithecini phylogenetic tree
  2. Stanyon, R.; Bruening, R.; Stone, G.; Shearin, A.; Bigoni, F.
  3. Cytogenetic and Genome Research. 2005 108(1-3): 175-182.
  1. 21.   The feline major histocompatibility complex is rearranged by an inversion with a breakpoint in the distal class I region
  2. Beck, T. W.; Menninger, J.; Murphy, W. J.; Nash, W. G.; O'Brien, S. J.; Yuhki, N.
  3. Immunogenetics. 2005, JAN; 56(10): 702-709.
  1. 22.   Multi-directional chromosome painting maps homologies between species belonging to three genera of New World monkeys and humans
  2. Stanyon, R.; Bigoni, F.; Slaby, T.; Muller, S.; Stone, G.; Bonvicino, C. R.; Neusser, M.; Seuanez, H. N.
  3. Chromosoma. 2004, DEC; 113(6): 305-315.
  1. 23.   Development and optimization of a binding assay for the XIAP BIR3 domain using fluorescence polarization
  2. Nikolovska-Coleska, Z.; Wang, R. X.; Fang, X. L.; Pan, H. G.; Tomita, Y.; Li, P.; Roller, P. P.; Krajewski, K.; Saito, N. G.; Stuckey, J. A.; Wang, S. M.
  3. Analytical Biochemistry. 2004, SEP 15; 332(2): 261-273.
  1. 24.   Design and synthesis of photoactivatable aryl diketo acid-containing HIV-1 integrase inhibitors as potential affinity probes
  2. Zhang, X. C.; March, C.; Pommier, Y.; Burke, T. R.
  3. Bioorganic & Medicinal Chemistry Letters. 2004, Mar 8; 14(5): 1205-1207.
  1. 25.   Tuning spectral properties of fullerenes by substitutional doping
  2. Xie, R. H.; Bryant, G. W.; Sun, G. Y.; Kar, T.; Chen, Z. F.; Smith, V. H.; Araki, Y.; Tagmatarchis, N.; Shinohara, H.; Ito, O.
  3. Physical Review B. 2004 69(20, Art. No. 201403):
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