Instituto Argentino de Ozonoterapia (IAOT), Ciudad Autonoma de Buenos Aires C1425ASG, Argentina.
Int J Mol Sci. 2023 Mar 31;24(7):6538. doi: 10.3390/ijms24076538.
Degeneration of the intervertebral disc is one of the most frequent causes of lumbar pain, and it puts an extreme strain on worldwide healthcare systems. Finding a solution for this disease is an important challenge as current surgical and conservative treatments fail to bring a short-term or long-term solution to the problem. Medical ozone has yielded excellent results in intervertebral disc pathology. When it comes to extruded disc herniation, ozone is the only etiological treatment because it stimulates the immune system to absorb the herniated portion of the nucleus pulposus, thus resolving discal extrusion. This work aims to examine the biomolecular mechanisms that lead to intervertebral disc degeneration while highlighting the significance of oxidative stress and chronic inflammation. Considering that ozone is a regulator of oxidative stress and, therefore, of inflammation, we assert that medical ozone could modulate this process and obtain inflammatory stage macrophages (M1) to switch to the repair phase (M2). Consequently, the ozone would be a therapeutic resource that would work on the etiology of the disease as an epigenetic regulator that would help repair the intervertebral space.
椎间盘退变是腰痛最常见的原因之一,给全球的医疗体系带来了巨大的压力。寻找这种疾病的解决方案是一项重要的挑战,因为目前的手术和保守治疗都不能为这个问题提供短期或长期的解决方案。医用臭氧在椎间盘病变方面取得了优异的效果。对于突出型椎间盘脱出,臭氧是唯一的病因治疗方法,因为它能刺激免疫系统吸收脱出的髓核部分,从而解决椎间盘脱出的问题。本研究旨在探讨导致椎间盘退变的生物分子机制,强调氧化应激和慢性炎症的重要性。鉴于臭氧是氧化应激的调节剂,也是炎症的调节剂,我们认为医用臭氧可以调节这个过程,使炎症期的巨噬细胞(M1)向修复期(M2)转变。因此,臭氧将成为一种治疗资源,作为一种表观遗传调节剂,作用于疾病的病因,帮助修复椎间盘间隙。