Amelioration of functional and histopathological consequences after spinal cord injury through phosphodiesterase 4D (PDE4D) inhibition

IF 8.3 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY ACS Applied Materials & Interfaces Pub Date : 2024-07-01 DOI:10.1016/j.neurot.2024.e00372
Melissa Schepers , Sven Hendrix , Femke Mussen , Elise van Breedam , Peter Ponsaerts , Stefanie Lemmens , Niels Hellings , Roberta Ricciarelli , Ernesto Fedele , Olga Bruno , Chiara Brullo , Jos Prickaerts , Jana Van Broeckhoven , Tim Vanmierlo
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Abstract

Spinal cord injury (SCI) is a life-changing event that severely impacts the patient's quality of life. Modulating neuroinflammation, which exacerbates the primary injury, and stimulating neuro-regenerative repair mechanisms are key strategies to improve functional recovery. Cyclic adenosine monophosphate (cAMP) is a second messenger crucially involved in both processes. Following SCI, intracellular levels of cAMP are known to decrease over time. Therefore, preventing cAMP degradation represents a promising strategy to suppress inflammation while stimulating regeneration. Intracellular cAMP levels are controlled by its hydrolyzing enzymes phosphodiesterases (PDEs). The PDE4 family is most abundantly expressed in the central nervous system (CNS) and its inhibition has been shown to be therapeutically relevant for managing SCI pathology. Unfortunately, the use of full PDE4 inhibitors at therapeutic doses is associated with severe emetic side effects, hampering their translation toward clinical applications. Therefore, in this study, we evaluated the effect of inhibiting specific PDE4 subtypes (PDE4B and PDE4D) on inflammatory and regenerative processes following SCI, as inhibitors selective for these subtypes have been demonstrated to be well-tolerated. We reveal that administration of the PDE4D inhibitor Gebr32a, even when starting 2 dpi, but not the PDE4B inhibitor A33, improved functional as well as histopathological outcomes after SCI, comparable to results obtained with the full PDE4 inhibitor roflumilast. Furthermore, using a luminescent human iPSC-derived neurospheroid model, we show that PDE4D inhibition stabilizes neural viability by preventing apoptosis and stimulating neuronal differentiation. These findings strongly suggest that specific PDE4D inhibition offers a novel therapeutic approach for SCI.

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通过抑制磷酸二酯酶 4D (PDE4D) 改善脊髓损伤后的功能和组织病理学后果。
脊髓损伤(SCI)是一种改变生命的事件,严重影响患者的生活质量。调节会加重原发性损伤的神经炎症和刺激神经再生修复机制是改善功能恢复的关键策略。单磷酸环磷酸腺苷(cAMP)是一种第二信使,在这两个过程中起着至关重要的作用。已知 SCI 后,细胞内的 cAMP 水平会随着时间的推移而降低。因此,防止 cAMP 降解是抑制炎症同时刺激再生的有效策略。细胞内的 cAMP 水平受磷酸二酯酶(PDEs)水解酶的控制。PDE4 家族在中枢神经系统(CNS)中的表达最为丰富,抑制 PDE4 对控制 SCI 病理具有治疗意义。遗憾的是,使用治疗剂量的全 PDE4 抑制剂会产生严重的催吐副作用,阻碍了其临床应用。因此,在本研究中,我们评估了抑制特定 PDE4 亚型(PDE4B 和 PDE4D)对 SCI 后炎症和再生过程的影响,因为这些亚型的选择性抑制剂已被证明具有良好的耐受性。我们发现,服用 PDE4D 抑制剂 Gebr32a(即使从 2 dpi 开始服用)而非 PDE4B 抑制剂 A33,可改善 SCI 后的功能和组织病理学结果,与服用全 PDE4 抑制剂罗氟司特的结果相当。此外,我们使用发光的人类 iPSC 衍生神经球模型表明,PDE4D 抑制剂可通过防止细胞凋亡和刺激神经元分化来稳定神经活力。这些发现有力地表明,特异性 PDE4D 抑制为 SCI 提供了一种新的治疗方法。
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来源期刊
ACS Applied Materials & Interfaces
ACS Applied Materials & Interfaces 工程技术-材料科学:综合
CiteScore
16.00
自引率
6.30%
发文量
4978
审稿时长
1.8 months
期刊介绍: ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.
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