Applications of Bioisosteres in the Design of Biologically Active Compounds

被引:73
|
作者
Meanwell, Nicholas A. [1 ]
机构
[1] Baruch S Blumberg Inst, Doylestown, PA 18902 USA
关键词
VIRUS NS3/4A PROTEASE; II RECEPTOR ANTAGONISTS; POTENT INHIBITORS; CRYSTAL-STRUCTURE; NEXT-GENERATION; HIGHLY POTENT; MOLECULAR MODIFICATION; CHEMICAL-REACTIVITY; MEDICINAL CHEMISTRY; PROPERTY PROFILES;
D O I
10.1021/acs.jafc.3c00765
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The design of bioisosteres represents a creative and productive approach to improve a molecule, including by enhancing potency, addressing pharmacokinetic challenges, reducing off-target liabilities, and productively modulating physicochemical properties. Bioisosterism is a principle exploited in the design of bioactive compounds of interest to both medicinal and agricultural chemists, and in this review, we provide a synopsis of applications where this kind of molecular editing has proved to be advantageous in molecule optimization. The examples selected for discussion focus on bioisosteres of carboxylic acids, applications of fluorine and fluorinated motifs in compound design, some applications of the sulfoximine functionality, the design of bioisosteres of drug-H2O complexes, and the design of bioisosteres of the phenyl ring.
引用
收藏
页码:18087 / 18122
页数:36
相关论文
共 50 条
  • [22] Benzimidazoles: A biologically active compounds
    Salahuddin
    Shaharyar, Mohammad
    Mazumder, Avijit
    ARABIAN JOURNAL OF CHEMISTRY, 2017, 10 : S157 - S173
  • [23] INTUITION AND COMPUTER-ASSISTANCE IN THE DESIGN OF BIOLOGICALLY-ACTIVE COMPOUNDS
    BARTLETT, PA
    LAURI, G
    MORGAN, BP
    ETZKORN, FA
    GUO, T
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1993, : 202 - 202
  • [24] DESIGN OF A BIOLOGICALLY INSPIRED ACTIVE VISUAL COMMUNICATION STRATEGY FOR ROBOTIC APPLICATIONS
    Cochran, Bryan
    Bras, Bert
    PROCEEDINGS OF ASME 2023 INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, IDETC-CIE2023, VOL 6, 2023,
  • [25] Recent advances in asymmetric catalysis. Synthetic applications to biologically active compounds
    Genet, JP
    Marinetti, A
    Ratovelomanana-Vidal, V
    PURE AND APPLIED CHEMISTRY, 2001, 73 (02) : 299 - 303
  • [26] A concise review of applications of micellar liquid chromatography to study biologically active compounds
    Stepnik, Katarzyna E.
    BIOMEDICAL CHROMATOGRAPHY, 2017, 31 (01)
  • [27] Enhanced accumulation of biologically active compounds in lichens with potential functional food applications
    Baczewska, I.
    Hawrylak-Nowak, B.
    Ozimek, E.
    Seczyk, L.
    Dresler, S.
    FOOD CHEMISTRY, 2024, 458
  • [28] CLASSIFICATION OF BIOLOGICALLY-ACTIVE COMPOUNDS
    FRUMIN, GT
    KHIMIKO-FARMATSEVTICHESKII ZHURNAL, 1983, 17 (07): : 822 - 827
  • [29] Biologically active compounds from Climacoptera
    Eskalieva, BK
    Akhmed, A
    Burasheva, GS
    Abilov, ZA
    Akhmad, VU
    CHEMISTRY OF NATURAL COMPOUNDS, 2004, 40 (01) : 87 - 88
  • [30] Asymmetric synthesis of biologically active compounds
    Kagan, H
    ACTUALITE CHIMIQUE, 2003, (11-12): : 10 - 14