Diphyllin is a naturally occurring lignan comprised of an aryl naphthalene lactone scaffold that demonstrates beneficial biological activities in disease models of cancer, obesity, and viral infection. A target of diphyllin and naturally occurring derivatives is the vacuolar ATPase (V-ATPase) complex. Although diphyllin-related natural products are active with in vitro models for viral entry, the potencies and unknown pharmacokinetic properties limit well-designed in vivo evaluations. Previous studies demonstrated that diphyllin derivatives have the utility of blocking the Ebola virus cell entry pathway. However, diphyllin shows limited potency and poor oral bioavailability in mice. An avenue to improve the potency was used in a new library of synthetic derivatives of diphyllin. Diphyllin derivatives exploiting ether linkages at the 4-position with one-to-three carbon spacers to an oxygen or nitrogen atom provided compounds with EC(50) values ranging from 7 to 600Â nM potency and selectivity up to >500 against Ebola virus in infection assays. These relative potencies are reflected in the Ebola virus infection of primary macrophages, a cell type involved in early pathogenesis. A target engagement study reveals that reducing the ATPV0a2 protein expression enhanced the potency of diphyllin derivatives to block EBOV entry, consistent with effects on the endosomal V-ATPase function. Despite the substantial enhancement of antiviral potencies, limitations were identified, including rapid clearance predicted by in vitro microsome stability assays. However, compounds with similar or improved half-lives relative to diphyllin demonstrated improved pharmacokinetic profiles in vivo. Importantly, these derivatives displayed suitable plasma levels using oral administration, establishing the feasibility of in vivo antiviral testing.
Evaluation of potency and metabolic stability of diphyllin-derived Vacuolar-ATPase inhibitors.
对二氢吡啶衍生的液泡ATPase抑制剂的效力和代谢稳定性进行评价
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作者:Sanford Laura M, Keiser Patrick, Fujii Naoaki, Woods Hannah, Zhang Charlie, Xu Zhuangyan, Mahajani Nivedita S, Cortés Julián González, Plescia Caroline B, Knipp Gregory, Stahelin Robert V, Davey Robert, Davisson Vincent Jo
| 期刊: | European Journal of Medicinal Chemistry | 影响因子: | 5.900 |
| 时间: | 2024 | 起止号: | 2024 Sep 5; 275:116537 |
| doi: | 10.1016/j.ejmech.2024.116537 | 研究方向: | 代谢 |
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