Forte Giuseppe, Giuffrida Valentina, Scuderi Angelica, Pazzaglia Mariella
Dipartimento Di Psicologia, Sapienza Università Di Rome, 00185 Rome, Italy.
Body and Action Lab, Istituto di Ricovero e Cura a Carattere Scientifico Fondazione Santa Lucia, 00179 Rome, Italy.
Biomedicines. 2022 Jun 10;10(6):1373. doi: 10.3390/biomedicines10061373.
Neuropathic pain (NP) is a common chronic condition that severely affects patients with spinal cord injuries (SCI). It impairs the overall quality of life and is considered difficult to treat. Currently, clinical management of NP is often limited to drug therapy, primarily with opioid analgesics that have limited therapeutic efficacy. The persistence and intractability of NP following SCI and the potential health risks associated with opioids necessitate improved treatment approaches. Nanomedicine has gained increasing attention in recent years for its potential to improve therapeutic efficacy while minimizing toxicity by providing sensitive and targeted treatments that overcome the limitations of conventional pain medications. The current perspective begins with a brief discussion of the pathophysiological mechanisms underlying NP and the current pain treatment for SCI. We discuss the most frequently used nanomaterials in pain diagnosis and treatment as well as recent and ongoing efforts to effectively treat pain by proactively mediating pain signals following SCI. Although nanomedicine is a rapidly growing field, its application to NP in SCI is still limited. Therefore, additional work is required to improve the current treatment of NP following SCI.
神经性疼痛(NP)是一种常见的慢性疾病,严重影响脊髓损伤(SCI)患者。它损害患者的整体生活质量,且被认为难以治疗。目前,NP的临床管理通常局限于药物治疗,主要使用治疗效果有限的阿片类镇痛药。SCI后NP的持续性和难治性以及与阿片类药物相关的潜在健康风险,使得改进治疗方法成为必要。近年来,纳米医学因其通过提供敏感且靶向的治疗来克服传统止痛药物的局限性,从而有可能提高治疗效果并将毒性降至最低而受到越来越多的关注。本文首先简要讨论NP的病理生理机制以及目前对SCI的疼痛治疗方法。我们讨论了在疼痛诊断和治疗中最常用的纳米材料,以及近期和正在进行的通过积极调节SCI后的疼痛信号来有效治疗疼痛的努力。尽管纳米医学是一个快速发展的领域,但其在SCI的NP治疗中的应用仍然有限。因此,需要开展更多工作来改进目前对SCI后NP的治疗。