Department of Anesthesiology University of California, San Diego, San Diego CA, 92103, USA.
Department of Anesthesiology University of California, San Diego, San Diego CA, 92103, USA.
Best Pract Res Clin Anaesthesiol. 2023 Jun;37(2):243-265. doi: 10.1016/j.bpa.2023.04.003. Epub 2023 Apr 14.
Activation of neuraxial nociceptive linkages leads to a high level of encoding of the message that is transmitted to the brain and that can initiate a pain state with its attendant emotive covariates. As we review here, the encoding of this message is subject to a profound regulation by pharmacological targeting of dorsal root ganglion and dorsal horn systems. Though first shown with the robust and selective modulation by spinal opiates, subsequent work has revealed the pharmacological and biological complexity of these neuraxial systems and points to several regulatory targets. Novel therapeutic delivery platforms, such as viral transfection, antisense and targeted neurotoxins, point to disease-modifying approaches that can selectively address the acute and chronic pain phenotype. Further developments are called for in delivery devices to enhance local distribution and to minimize concentration gradients, as frequently occurs with the poorly mixed intrathecal space. The field has advanced remarkably since the mid-1970s, but these advances must always address the issues of safety and tolerability of neuraxial therapy.
脊神经伤害性连接的激活会导致信息的高水平编码,这些信息被传递到大脑,并可能引发伴有伴随情感变化的疼痛状态。正如我们在这里回顾的那样,这种信息的编码受到背根神经节和背角系统的药物靶向的深刻调节。虽然最初是通过脊髓阿片类药物的强大和选择性调节来显示,但随后的工作揭示了这些脊神经系统的药理学和生物学复杂性,并指出了几个调节靶点。新型治疗性递药平台,如病毒转染、反义寡核苷酸和靶向神经毒素,为疾病修饰方法指明了方向,这些方法可以选择性地解决急性和慢性疼痛表型。需要进一步开发递药装置来增强局部分布并最小化浓度梯度,因为这在椎管内空间中经常发生,而椎管内空间混合很差。自 20 世纪 70 年代中期以来,该领域取得了显著进展,但这些进展必须始终解决脊神经治疗的安全性和耐受性问题。