A proposed crystal structure of lifitegrast sesquihydrate Form A, (C29H24Cl2N2O7S)2(H2O)3

被引:0
作者
Kaduk, James A. [1 ,2 ]
Rost, Megan M. [3 ]
Dosen, Anja [3 ]
Blanton, Thomas N. [3 ]
机构
[1] IIT, 3101 S Dearborn St, Chicago, IL 60616 USA
[2] North Cent Coll, 131 S Loomis St, Naperville, IL 60540 USA
[3] ICDD, 12 Campus Blvd, Newtown Sq, PA 19073 USA
关键词
lifitegrast; Xiidra; crystal structure; Rietveld refinement; density functional theory; DENSITY;
D O I
10.1017/S0885715624000459
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
A proposed crystal structure of lifitegrast Form A has been derived using synchrotron X-ray powder diffraction data and optimized using density functional theory techniques. Lifitegrast sesquihydrate Form A crystallizes in space group P2(1) (#4) with a = 18.2526(4), b = 5.15219(6), c = 30.1962(6) & Aring;, beta = 90.8670(19), V = 2839.35(7) & Aring;(3), and Z = 4 at 295 K. The crystal structure consists of discrete lifitegrast molecules linked by hydrogen bonds among carboxylic acid groups, carbonyl groups, and water molecules into a three-dimensional framework. The water molecules occur in clusters. Each water molecule acts as a donor in two O-H & ctdot;O hydrogen bonds, and as an acceptor. One water molecule acts as an acceptor in a water-water O-H & ctdot;O hydrogen bond, and all three water molecules are acceptors in C-H & ctdot;O hydrogen bonds. Each carboxylic acid group acts as a donor in a strong discrete O-H & ctdot;O hydrogen bond; one to a water molecule and the other to a carbonyl group. The amino groups both form N-H & ctdot;O hydrogen bonds to carbonyl groups. The powder pattern has been submitted to ICDD (R) for inclusion in the Powder Diffraction File (TM) (PDF (R)).
引用
收藏
页码:275 / 282
页数:8
相关论文
共 31 条
[1]   EXPO2013: a kit of tools for phasing crystal structures from powder data [J].
Altomare, Angela ;
Cuocci, Corrado ;
Giacovazzo, Carmelo ;
Moliterni, Anna ;
Rizzi, Rosanna ;
Corriero, Nicola ;
Falcicchio, Aurelia .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 2013, 46 :1231-1235
[2]   STATE-OF-THE-ART HIGH-RESOLUTION POWDER X-RAY DIFFRACTION (HRPXRD) ILLUSTRATED WITH RIETVELD STRUCTURE REFINEMENT OF QUARTZ, SODALITE, TREMOLITE, AND MEIONITE [J].
Antao, Sytle M. ;
Hassan, Ishmael ;
Wang, Jun ;
Lee, Peter L. ;
Toby, Brian H. .
CANADIAN MINERALOGIST, 2008, 46 (06) :1501-1509
[3]   PreDICT: a graphical user interface to the DICVOL14 indexing software program for powder diffraction data [J].
Blanton, Justin R. ;
Papoular, Robert J. ;
Louer, Daniel .
POWDER DIFFRACTION, 2019, 34 (03) :233-241
[4]  
BRAVAIS A., 1866, ETUDES CRISTALLOGRAP
[5]   Retrieval of crystallographically-derived molecular geometry information [J].
Bruno, IJ ;
Cole, JC ;
Kessler, M ;
Luo, J ;
Motherwell, WDS ;
Purkis, LH ;
Smith, BR ;
Taylor, R ;
Cooper, RI ;
Harris, SE ;
Orpen, AG .
JOURNAL OF CHEMICAL INFORMATION AND COMPUTER SCIENCES, 2004, 44 (06) :2133-2144
[6]  
Burnier J., 2013, U.S. Patent, Patent No. [US8,367,701B2, 8367701]
[7]  
Dassault Systmes, 2023, BIOVIA Materials Studio 2024
[8]  
Donnay JDH, 1937, AM MINERAL, V22, P446
[9]   CRYSTAL23: A Program for Computational Solid State Physics and Chemistry [J].
Erba, Alessandro ;
Desmarais, Jacques K. ;
Casassa, Silvia ;
Civalleri, Bartolomeo ;
Dona, Lorenzo ;
Bush, Ian J. ;
Searle, Barry ;
Maschio, Lorenzo ;
Edith-Daga, Loredana ;
Cossard, Alessandro ;
Ribaldone, Chiara ;
Ascrizzi, Eleonora ;
Marana, Naiara L. ;
Flament, Jean-Pierre ;
Kirtman, Bernard .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2022, :6891-6932
[10]  
Friedel G., 1907, B SOC FR MINERAL CR, V20, P326, DOI DOI 10.3406/BULMI.1907.2820