Department of Psychiatry & Neuropsychology, School for Mental Health and Neuroscience, Maastricht University, Maastricht, The Netherlands.
Department of Neuroscience, Biomedical Research Institute, Hasselt University, Diepenbeek, Belgium.
Cell Mol Life Sci. 2023 Jun 12;80(7):178. doi: 10.1007/s00018-023-04804-w.
Inhibition of phosphodiesterase 4D (PDE4D) enzymes has been investigated as therapeutic strategy to treat memory problems in Alzheimer's disease (AD). Although PDE4D inhibitors are effective in enhancing memory processes in rodents and humans, severe side effects may hamper their clinical use. PDE4D enzymes comprise different isoforms, which, when targeted specifically, can increase treatment efficacy and safety. The function of PDE4D isoforms in AD and in molecular memory processes per se has remained unresolved. Here, we report the upregulation of specific PDE4D isoforms in transgenic AD mice and hippocampal neurons exposed to amyloid-β. Furthermore, by means of pharmacological inhibition and CRISPR-Cas9 knockdown, we show that the long-form PDE4D3, -D5, -D7, and -D9 isoforms regulate neuronal plasticity and convey resilience against amyloid-β in vitro. These results indicate that isoform-specific, next to non-selective, PDE4D inhibition is efficient in promoting neuroplasticity in an AD context. Therapeutic effects of non-selective PDE4D inhibitors are likely achieved through actions on long isoforms. Future research should identify which long PDE4D isoforms should be specifically targeted in vivo to both improve treatment efficacy and reduce side effects.
抑制磷酸二酯酶 4D(PDE4D)酶已被研究作为治疗阿尔茨海默病(AD)记忆问题的治疗策略。尽管 PDE4D 抑制剂在增强啮齿动物和人类的记忆过程中有效,但严重的副作用可能会阻碍它们的临床应用。PDE4D 酶包含不同的同工型,当靶向特定同工型时,可以提高治疗的疗效和安全性。PDE4D 同工型在 AD 中的功能和分子记忆过程本身仍未得到解决。在这里,我们报告了在转基因 AD 小鼠和暴露于淀粉样蛋白-β的海马神经元中特定 PDE4D 同工型的上调。此外,通过药理学抑制和 CRISPR-Cas9 敲低,我们表明长同工型 PDE4D3、-D5、-D7 和 -D9 调节神经元可塑性,并在体外对淀粉样蛋白-β产生抗逆性。这些结果表明,在 AD 背景下,同工型特异性而非非选择性 PDE4D 抑制在促进神经可塑性方面是有效的。非选择性 PDE4D 抑制剂的治疗效果可能是通过对长同工型的作用来实现的。未来的研究应该确定哪些长的 PDE4D 同工型应该在体内被特异性靶向,以提高治疗效果并减少副作用。