J. W. Fredy, J. Scelle, A. Guenet, E. Morel, S. Adam-de-beaumais et al., Cyclodextrin Polyrotaxanes as a Highly Modular Platform for the Development of Imaging Agents, Chemistry - A European Journal, vol.118, issue.35, pp.10915-10920, 2014.
DOI : 10.1002/chem.201403635

URL : https://hal.archives-ouvertes.fr/hal-01178990

E. A. Neal, S. M. Goldup, J. Sauvage, C. Dietrich-buchecker, D. B. Amabilino et al., Chemical consequences of mechanical bonding in catenanes and rotaxanes: isomerism, modification, catalysis and molecular machines for synthesis, Chemical Communications, vol.339, issue.40, pp.5128-5142, 1999.
DOI : 10.1039/c3cc47842d

Z. Zhou, Y. Mondjinou, S. Hyun, A. Kulkarni, Z. Lu et al., -1,4,7,10-Tetraazacyclododecane-1,4,7-triacetic-2-hydroxypropyl-??-cyclodextrin/Pluronic Polyrotaxane as a Long Circulating High Relaxivity MRI Contrast Agent, ACS Applied Materials & Interfaces, vol.7, issue.40, pp.22272-22276, 2015.
DOI : 10.1021/acsami.5b05393

URL : https://hal.archives-ouvertes.fr/hal-00850774

H. Ogino, Relatively high-yield syntheses of rotaxanes. Syntheses and properties of compounds consisting of cyclodextrins threaded by .alpha.,.omega.-diaminoalkanes coordinated to cobalt(III) complexes, Journal of the American Chemical Society, vol.103, issue.5, pp.1303-1304, 1981.
DOI : 10.1021/ja00395a091

J. D. Crowley, S. M. Goldup, A. Lee, D. A. Leigh, R. T. Mcburney et al., Active metal template synthesis of rotaxanes, catenanes and molecular shuttles, Chemical Society Reviews, vol.48, issue.6, pp.1530-1541, 2009.
DOI : 10.1039/b804243h

H. W. Daniell, E. J. Klotz, B. Odell, T. D. Claridge, and H. L. Anderson, Solid-Phase Synthesis of Oligo(phenylene???ethynylene) Rotaxanes, Angewandte Chemie International Edition, vol.60, issue.36, pp.6845-6848, 2007.
DOI : 10.1002/anie.200702349

D. H. Qu, Q. C. Wang, X. Ma, and H. Tian, A [3]Rotaxane with Three Stable States That Responds to Multiple-Inputs and Displays Dual Fluorescence Addresses, Chemistry - A European Journal, vol.40, issue.20, pp.5929-5937, 2005.
DOI : 10.1002/chem.200401313

K. Harata, Structural Aspects of Stereodifferentiation in the Solid State, Chemical Reviews, vol.98, issue.5, pp.1803-1828, 1998.
DOI : 10.1021/cr9700134

T. Lecourt, A. Herault, A. J. Pearce, M. Sollogoub, and P. Sinaÿ, Triisobutylaluminium and Diisobutylaluminium Hydride as Molecular Scalpels: The Regioselective Stripping of Perbenzylated Sugars and Cyclodextrins, Chemistry - A European Journal, vol.10, issue.12, pp.2960-2971, 2004.
DOI : 10.1002/chem.200305683

C. W. Tornøe, C. Christensen, and M. Meldal, Peptidotriazoles on Solid Phase:?? [1,2,3]-Triazoles by Regiospecific Copper(I)-Catalyzed 1,3-Dipolar Cycloadditions of Terminal Alkynes to Azides, The Journal of Organic Chemistry, vol.67, issue.9, pp.3057-3064, 2002.
DOI : 10.1021/jo011148j

S. Guieu and M. Sollogoub, Regiospecific Tandem Azide-Reduction/Deprotection To Afford Versatile Amino Alcohol-Functionalized ??- and ??-Cyclodextrins, Angewandte Chemie International Edition, vol.47, issue.37, pp.7060-7063, 2008.
DOI : 10.1002/anie.200801573

Y. Song, E. K. Kohlmeir, and T. J. Meade, Synthesis of Multimeric MR Contrast Agents for Cellular Imaging, Journal of the American Chemical Society, vol.130, issue.21, pp.6662-6663, 2008.
DOI : 10.1021/ja0777990

Z. Kotková, J. Kotek, D. Jirák, P. Jendelová, V. Herynek et al., Cyclodextrin-Based Bimodal Fluorescence/MRI Contrast Agents: An Efficient Approach to Cellular Imaging, Chemistry - A European Journal, vol.19, issue.33, pp.10094-10102, 2010.
DOI : 10.1002/chem.200903519

H. S. Choi, W. Liu, P. Misra, E. Tanaka, J. P. Zimmer et al., Renal clearance of quantum dots, Nature Biotechnology, vol.361, issue.10, pp.1165-70, 2007.
DOI : 10.1038/nbt1340