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1 too large and too flexible to lend itself to cocrystallization.
2 inetic factors can play an important role in cocrystallization.
3 ia alone are unreliable in the prediction of cocrystallization.
4 ion of two racemic compounds by preferential cocrystallization.
5 's crystal structure through methods such as cocrystallization.
6 crystals with CD, and the other obtained by cocrystallization.
7 ined with fuel-rich pyrazine-1,4-dioxide via cocrystallization.
8 ty of using pure solvents as matrix to avoid cocrystallization.
9 heir enzyme-bound complexes were obtained by cocrystallization.
10 complex ESA/Dic/Nps, obtained by competitive cocrystallization (2.19 A) and through a displacement ex
12 ows that host-guest interactions and racemic cocrystallization allow for controlling the solid state
13 other interactions can contribute equally to cocrystallization, allowing superlattice formation to be
15 zyme mechanisms and as potential ligands for cocrystallization and as lead structures for development
16 oach to understand the effect of solvents on cocrystallization and codissolution of chemically dissim
17 f lipid extracts, which promotes homogeneous cocrystallization and enables relative quantification by
20 are relevant for understanding the nature of cocrystallization and why some molecules are prolific co
21 tive site has been established by successful cocrystallization and X-ray analysis of potent inhibitor
27 p an affinity purification method and screen cocrystallization conditions for the chemokine receptor
28 demonstrated for a blend of PE and iPP that cocrystallization effects are minimal in solvents such a
29 were formed by direct adsorption rather than cocrystallization, emphasizing the unusually robust natu
33 R ligand-binding domain have been studied by cocrystallization experiments using a coactivator-like p
39 isolate a metastable polymorph formed during cocrystallization in three-dimensional crystallization.
42 l and theoretical analysis revealed that the cocrystallization inhibits the C=N isomerization and pro
51 emic crystallization, a method that involves cocrystallization of a chiral molecule with its mirror i
56 zation mass spectrometry (MALDI-MS) requires cocrystallization of analyte with a large excess of matr
58 e protein-calixarene composites obtained via cocrystallization of commercially available sulfonato-ca
59 evaluate new theoretical models treating the cocrystallization of deformable spheres and to formulate
65 phosphorylation of isocitrate dehydrogenase, cocrystallization of isocitrate dehydrogenase and isocit
66 lly binds to the ESCRT-III subunit Did2, and cocrystallization of Ist1NTD with a Did2 fragment shows
67 proach to search for new chemical series and cocrystallization of key analogues to guide the optimiza
69 tive active food packaging material based on cocrystallization of microbiologically active compounds
76 que TCR-pMHC complexes have been determined, cocrystallization of soluble TCR and pMHC remains a majo
82 alic acid binding site on HN was revealed by cocrystallization of the HN with a thiosialoside Neu5Ac-
88 that the small molecule malonic acid enables cocrystallization of this mixed function oxidase with th
89 2 glutamate (hmGlu2) site was established by cocrystallization of this molecule with the amino termin
91 is to wash matrix/sample spots after peptide cocrystallization on the MALDI plate with deionized wate
93 line ligand-protein complexes were formed by cocrystallization or by the soaking in/soaking out metho
94 e a structure with bound ligand using either cocrystallization or soaking crystals with cysteine reve
95 nd improved complex formation with potential cocrystallization partners such as conformationally sens
96 provides valuable insight for optimizing the cocrystallization process at the nanoscale, where experi
97 r engineering methodology for the continuous cocrystallization process, based on Raman spectra measur
99 uggest that our method may be used to target cocrystallization processes at the molecular scale for i
115 study represents the first application of a cocrystallization to confirm the relative configuration
119 e complex with the inhibitor was obtained by cocrystallization, whereas that with the substrate was o
120 (15) has been resolved into enantiomers via cocrystallization with (-)-N-benzylcinchonidinium chlori
121 lation, and enzymatic digestion, followed by cocrystallization with a MALDI matrix and analysis of th
122 rovide full detailed syntheses, describe its cocrystallization with and behavior at QR2 on a millisec
126 nous HLA-DR/peptide complexes may facilitate cocrystallization with T cell receptors as well as other
127 of two of these inhibitors was determined by cocrystallization with TdT, explaining why these compoun
128 orB likely binds host mitochondrial ATP, and cocrystallization with the ATP analog AMP-PNP suggests t
129 ansition-state analogue inhibitors permitted cocrystallization with the malarial enzyme and refinemen
131 was confirmed by biochemical experiments and cocrystallization with the RORgammat ligand binding doma
133 essing and/or the storage of insulin and its cocrystallization with Zn(2)(+), and 2) these increases