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  • charge-density researchmedicinal chemistrydrug designinvariomHansen–Coppens multipole modelquantum theory of atoms in molecules  (1)
  • International Union of Crystallography (IUCr)  (1)
  • Periodicals Archive Online (PAO)
  • American Association of Petroleum Geologists (AAPG)
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  • 1925-1929
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  • International Union of Crystallography (IUCr)  (1)
  • Periodicals Archive Online (PAO)
  • American Association of Petroleum Geologists (AAPG)
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  • 2010-2014  (1)
  • 1980-1984
  • 1925-1929
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    International Union of Crystallography (IUCr)
    In: IUCrJ
    Publication Date: 2014-11-12
    Description: This article reviews efforts in accurate experimental charge-density studies with relevance to medicinal chemistry. Initially, classical charge-density studies that measure electron density distribution via least-squares refinement of aspherical-atom population parameters are summarized. Next, interaction density is discussed as an idealized situation resembling drug–receptor interactions. Scattering-factor databases play an increasing role in charge-density research, and they can be applied both to small-molecule and macromolecular structures in refinement and analysis; software development facilitates their use. Therefore combining both of these complementary branches of X-ray crystallography is recommended, and examples are given where such a combination already proved useful. On the side of the experiment, new pixel detectors are allowing rapid measurements, thereby enabling both high-throughput small-molecule studies and macromolecular structure determination to higher resolutions. Currently, the most ambitious studies compute intermolecular interaction energies of drug–receptor complexes, and it is recommended that future studies benefit from recent method developments. Selected new developments in theoretical charge-density studies are discussed with emphasis on its symbiotic relation to crystallography.
    Keywords: charge-density researchmedicinal chemistrydrug designinvariomHansen–Coppens multipole modelquantum theory of atoms in molecules
    Electronic ISSN: 2052-2525
    Topics: Geosciences , Physics
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