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X-ray-Based Techniques to Study the Nano–Bio Interface
Sanchez-Cano, C.Extern* ; Alvarez-Puebla, R. A.Extern* ; Abendroth, J. M.Extern* ; Beck, T.Extern* ; Blick, R.Extern* ; Cao, Y.Extern* ; Caruso, F.Extern* ; Chakraborty, I.Extern* ; Chapman, H. N.CFEL*DESY* ; Chen, C.Extern* ; Cohen, B. E.Extern* ; Coelho Conceicao, A. L.DESY* ; Cormode, D.Extern* ; Cui, D.Extern* ; Dawson, K. A.Extern* ; Falkenberg, G.DESY* ; Fan, C.Extern* ; Feliu, N.Extern* ; Gao, M. ; Gargioni, E.Extern* ; Glüer, C.-C.Extern* ; Gruener, F.CFEL*Extern* ; Hassan, M.Extern* ; Hu, Y.Extern* ; Huang, Y.Extern* ; Huber, S.Extern* ; Huse, N.CFEL*Extern* ; Kang, Y.Extern* ; Khademhosseini, A.Extern* ; Keller, T. F.DESY* ; Körnig, C.CFEL*Extern* ; Kotov, N. A.Extern* ; Koziej, D.Extern* ; Liang, X.-J.Extern* ; Liu, B.Extern* ; Liu, S.Extern* ; Liu, Y.Extern* ; Liu, Z.Extern* ; Liz-Marzán, L. M.Extern* ; Ma, X.Extern* ; Machicote, A.Extern* ; Maison, W.Extern* ; Mancuso, A.Extern*XFEL.EU* ; Megahed, S.Extern* ; Nickel, B.Extern* ; Otto, F.Extern* ; Palencia, C.Extern* ; Pascarelli, S.XFEL.EU* ; Pearson, A.Extern*EMBL* ; Peñate-Medina, O.Extern* ; Qi, B.Extern* ; Raedler, J.Extern* ; Richardson, J. J.Extern* ; Rosenhahn, A.Extern* ; Rothkamm, K.Extern* ; Rübhausen, M.Extern* ; Sanyal, M.Extern* ; Schaak, R. E.Extern* ; Schlemmer, H.-P.Extern* ; Schmidt, M.Extern* ; Schmutzler, O.CFEL*Extern* ; Schotten, T.Extern* ; Schulz, F.Extern* ; Sood, A.Extern* ; Spiers, K.DESY* ; Staufer, T.Extern*CFEL* ; Stemer, D.Extern* ; Stierle, A.DESY* ; Sun, X.Extern* ; Tsakanova, G.Extern* ; Weiss, P. S.Extern* ; Weller, H.Extern* ; Westermeier, F.DESY* ; Xu, M.Extern* ; Yan, H.Extern* ; Zeng, Y.Extern* ; Zhao, Y.Extern* ; Zhao, Y.Extern* ; Zhu, D.Extern* ; Zhu, Y.Extern* ; Parak, W. (Corresponding author)Extern*
2021
Soc.
Washington, DC
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Please use a persistent id in citations: doi:10.1021/acsnano.0c09563 doi:10.3204/PUBDB-2021-01495
Abstract: X-ray-based analytics are routinely applied in many fields, including physics, chemistry, materials science, and engineering. The full potential of such techniques in the life sciences and medicine, however, has not yet been fully exploited. We highlight current and upcoming advances in this direction. We describe different X-ray-based methodologies (including those performed at synchrotron light sources and X-ray free-electron lasers) and their potentials for application to investigate the nano–bio interface. The discussion is predominantly guided by asking how such methods could better help to understand and to improve nanoparticle-based drug delivery, though the concepts also apply to nano–bio interactions in general. We discuss current limitations and how they might be overcome, particularly for future use in vivo.
Contributing Institute(s):
- FS-Photon Science (FS-PS)
- Nanolab (FS-NL)
- FS-CFEL-1 (Group Leader: Henry Chapman) (CFEL-I)
- European XFEL Projekt Team (Eur.XFEL)
- beauftragt von UNI (UNI/CUI)
- PETRA-S (FS-PETRA-S)
- beautragt von UNI/EXP (CFEL-NOVA)
Research Program(s):
- 633 - Life Sciences – Building Blocks of Life: Structure and Function (POF4-633) (POF4-633)
- 6G3 - PETRA III (DESY) (POF4-6G3) (POF4-6G3)
- DFG project G:(GEPRIS)390715994 - EXC 2056: CUI: Tiefe Einblicke in Materie (390715994) (390715994)
- DFG project G:(GEPRIS)194651731 - EXC 1074: Hamburger Zentrum für ultraschnelle Beobachtung (CUI): Struktur, Dynamik und Kontrolle von Materie auf atomarer Skala (194651731) (194651731)
- INDIA-DESY - INDIA-DESY Collaboration (2020_Join2-INDIA-DESY) (2020_Join2-INDIA-DESY)
Experiment(s):
- PETRA Beamline P21.1 (PETRA III)
- DESY NanoLab: Microscopy
Appears in the scientific report
2021
Database coverage:
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; Clarivate Analytics Master Journal List ; Current Contents - Physical, Chemical and Earth Sciences ; Essential Science Indicators ; IF >= 10 ; JCR ; SCOPUS ; Science Citation Index Expanded ; Web of Science Core Collection