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Crystal Structure Determination of New Antimitotic Agent Bis(p-fluorobenzyl)trisulfide
Authors:Haoyun An  Xiurong Hu  Jianming Gu  Linshen Chen  Weiming Xu  Xiaopeng Mo  Wanhong Xu  Xiaobo Wang  Xiao Xu
Affiliation:(1) ACEA Biosciences, Inc., 6779 Mesa Ridge Road, Suite 100, San Diego, CA 92121, USA;(2) Analytical and Measurement Center of Zhejiang University, 38 Zheda Road, Hangzhou, 310027, China
Abstract:The purpose of this research was to investigate the physical characteristics and crystalline structure of bis(p-fluorobenzyl)trisulfide, a new anti-tumor agent. Methods used included X-ray single crystal diffraction, X-ray powder diffraction (XRPD), Fourier-transform infrared (FT-IR) spectroscopy, differential scanning calorimetric (DSC) and thermogravimetric (TG) analyses. The findings obtained with X-ray single crystal diffraction showed that a monoclinic unit cell was a = 12.266(1) A, b = 4.7757(4) A, c = 25.510(1) A, beta = 104.25(1) degrees ; cell volume = 1,448.4(2) A(3), Z = 4, and space group C2/c. The XRPD studies of the four crystalline samples, obtained by recrystallization from four different solvents, indicated that they had the same diffraction patterns. The diffraction pattern stimulated from the crystal structure data is in excellent agreement with the experimental results. In addition, the identical FT-IR spectra of the four crystalline samples revealed absorption bands corresponding to S-S and C-S stretching as well as the characteristic aromatic substitution. Five percent weight loss at 163.3 degrees C was observed when TG was used to study the decomposition process in the temperature range of 20-200 degrees C. DSC also allowed for the determination of onset temperatures at 60.4(1)-60.7(3) degrees C and peak temperatures at 62.1(3)-62.4(3) degrees C for the four crystalline samples studied. The results verified that the single crystal structure shared the same crystal form with the four crystalline samples investigated.
Keywords:antimitotic agent  fluorapacin  single crystal structure  thermal analysis  XRPD
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