Department for Sustainable Development and Ecological Transition, University of Piemonte Orientale (UPO), 13100 Vercelli, Italy.
Department of Clinical and Biological Sciences, University of Turin, 10043 Turin, Italy.
Int J Mol Sci. 2024 Apr 27;25(9):4790. doi: 10.3390/ijms25094790.
Neuropathy affects 7-10% of the general population and is caused by a lesion or disease of the somatosensory system. The limitations of current therapies highlight the necessity of a new innovative approach to treating neuropathic pain (NP) based on the close correlation between oxidative stress, inflammatory process, and antioxidant action. The advantageous outcomes of a novel combination composed of Hop extract, Propolis, Ginkgo Biloba, Vitamin B, and palmitoylethanolamide (PEA) used as a treatment was evaluated in this study. To assess the absorption and biodistribution of the combination, its bioavailability was first examined in a 3D intestinal barrier model that replicated intestinal absorption. Further, a 3D nerve tissue model was developed to study the biological impacts of the combination during the essential pathways involved in NP. Our findings show that the combination could cross the intestinal barrier and reach the peripheral nervous system, where it modulates the oxidative stress, inflammation levels, and myelination mechanism (increased NRG, MPZ, ERB, and p75 levels) under Schwann cells damaging. This study proves the effectiveness of Ginkgo Biloba, Propolis, Hop extract, Vitamin B, and PEA in avoiding nerve damage and suggests a potential alternative nutraceutical treatment for NP and neuropathies.
神经病学影响 7-10%的普通人群,由躯体感觉系统的损伤或疾病引起。目前治疗方法的局限性突出表明,需要采用一种新的创新方法来治疗神经病理性疼痛 (NP),这种方法基于氧化应激、炎症过程和抗氧化作用之间的密切相关性。本研究评估了由啤酒花提取物、蜂胶、银杏叶、维生素 B 和棕榈酸乙醇酰胺 (PEA)组成的新型组合作为治疗方法的有利效果。为了评估该组合的吸收和分布,首先在复制肠道吸收的 3D 肠屏障模型中检查了其生物利用度。此外,还开发了 3D 神经组织模型,以研究组合在 NP 涉及的基本途径中对神经的生物学影响。我们的研究结果表明,该组合可以穿过肠屏障并到达周围神经系统,在那里它可以调节氧化应激、炎症水平和髓鞘形成机制(增加 NRG、MPZ、ERB 和 p75 水平),而不会对施旺细胞造成损伤。这项研究证明了银杏叶、蜂胶、啤酒花提取物、维生素 B 和 PEA 在避免神经损伤方面的有效性,并为 NP 和神经病变提供了一种潜在的替代营养治疗方法。