4.7 Article

Design, synthesis and structure-activity relationship optimization of phenanthridine derivatives as new anti-vitiligo compounds

Journal

BIOORGANIC CHEMISTRY
Volume 119, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bioorg.2021.105582

Keywords

Vitiligo; Phenanthridine alkaloids; Melanogenesis; Wnt; fi-catenin signalling; Axin

Funding

  1. National Natural Science Foundation of China [81773610, 81973212]
  2. Youth Innovation Promotion Association of CAS [2018429]
  3. Key Research and Development Project of Yunnan Province [202003AD150012]
  4. Central Asian Drug Discovery and Development Center of Chinese Academy of Sciences [CAM202103]
  5. Natural Science Foundation of Yunnan [202101AT070169]

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This study explores the potential of activating the Wnt/β-catenin signaling pathway for the treatment of vitiligo through the design and synthesis of compounds. The results suggest that compounds 41 and 43 may be potential candidates for vitiligo treatment.
Humans have been suffering from vitiligo for a long time. Target vitiligo drugs have yet been approved. Acti-vation of Wnt/fi-catenin signalling has potential in the therapeutic use of vitiligo, so exploring new drugs that specifically directly activate Wnt is worthwhile to obtain new anti-vitiligo agents. In this work, two portions design and synthesis were put into effect. firstly, 17 phenanthridine derivatives with C-4 substitutes were designed and synthesized, which compounds 4, 6, 12, 13 served as H-acceptor with protein showed enhance melanogenesis activity; Secondly, 7 hybrid new scaffolds of compounds were designed and synthesized, scaffold hopping compound 36 that aromatic benzene was replaced pyrazole on ring C showed enhance melanogenesis and tyrosinase activity; The last and most important, a comprehensive optimization and SARs of compound 36 were carried out, compounds 41 and 43 shared phenolic hydroxyl or 3-methyl-pyridine substitutes at C-7 po-sition remarkably improved the capacity of melanogenesis and tyrosinase activity. Compound 43 were identified as new anti-vitiligo agents that specifically activate the Wnt/fi-catenin signalling pathway by targeting Axin. Structure-activity relationship analysis implied that H-acceptor substitutions at the C-4 position and phenolic hydroxyl or pyridine substitutions at the C-7 position would improve the activities of the compounds. These findings reveal a new therapeutic strategy for vitiligo, and compounds 41 and 43 may represent potential compounds for vitiligo treatment.

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