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脑和脊髓电刺激对铁及磷酸钙代谢的影响

The Impact of Electrical Stimulation of the Brain and Spinal Cord on Iron and Calcium-Phosphate Metabolism.

作者信息

Sokal Paweł, Świtońska Milena, Kierońska Sara, Rudaś Marcin, Harat Marek

机构信息

Department of Neurosurgery and Neurology, Jan Biziel University Hospital No 2, Ujejskiego 75 Street, 85-168 Bydgoszcz, Poland.

Faculty of Health Science, Collegium Medicum in Bydgoszcz, Nicolaus Copernicus University in Toruń, Jagielonska 13-15 Street, 85-067 Bydgoszcz, Poland.

出版信息

Brain Sci. 2021 Jan 25;11(2):156. doi: 10.3390/brainsci11020156.

Abstract

BACKGROUND

Deep-brain stimulation (DBS) electrically modulates the subcortical brain regions. Under conditions of monopolar cerebral stimulation, electrical current flows between electrode's contacts and an implantable pulse generator, placed in the subclavicular area. Spinal cord stimulation (SCS) delivers an electrical current to the spinal cord. Epidural electrical stimulation is associated with the leakage of current, which can cause a generalized reaction. The aim of our study was to investigate whether the electrical stimulation of the cerebrum and spinal cord could have generalized effects on biochemical parameters.

MATERIALS AND METHODS

A total of 25 patients with Parkinson's disease (PD, = 21) and dystonia ( = 4), who underwent DBS implantation, and 12 patients with chronic pain, who had SCS, received electrical stimulation. The blood levels of selected biochemical parameters were measured before and after overnight stimulation.

RESULTS

After DBS, the mean ± interquartile range (IQR) values for iron (off 15.6 ± 13.53 µmol/L; on: 7.65 ± 10.8 µmol/L; < 0.001), transferrin (off: 2.42 ± 0.88 g/L; on: 1.99 ± 0.59 g/L; < 0.001), transferrin saturation (off: 23.20 ± 14.50%; on: 10.70 ± 11.35%; = 0.001), phosphate (off: 1.04 ± 0.2 mmol/L; on: 0.83 ± 0.2 mmol/L; = 0.007), and total calcium (off: 2.39 ± 0.29 mmol/L; on: 2.27 ± 0.19 mmol/L; = 0.016) were significantly reduced, whereas ferritin (off: 112.00 ± 89.00 ng/mL; on: 150.00 ± 89.00 ng/mL; = 0.003) and C-reactive protein (off: 0.90 ± 19.39 mg/L; on: 60.35 ± 35.91 mg/L; = 0.002) were significantly increased. Among patients with SCS, significant differences were observed for ferritin (off: 35 ± 63 ng/mL; on: 56 ± 62 ng/mL; = 0.013), transferrin (off: 2.70 ± 0.74 g/L; on: 2.49 ± 0.69 g/L; = 0.048), and C-reactive protein (off: 31.00 ± 36.40 mg/L; on: 36.60 ± 62.030 mg/L; = 0.018) before and after electrical stimulation. No significant changes in the examined parameters were observed among patients after thalamotomy and pallidotomy.

CONCLUSIONS

Leaking electric current delivered to the subcortical nuclei of the brain and the dorsal column of the spinal cord exposes the rest of the body to a negative charge. The generalized reaction is associated with an inflammatory response and altered iron and calcium-phosphate metabolism. Alterations in iron metabolism due to electrical stimulation may impact the course of PD. Future research should investigate the influence of electric current and electromagnetic field induced by neurostimulators on human metabolism.

摘要

背景

脑深部电刺激(DBS)通过电刺激调节大脑皮质下区域。在单极脑刺激条件下,电流在电极触点与置于锁骨下区域的植入式脉冲发生器之间流动。脊髓刺激(SCS)将电流传递至脊髓。硬膜外电刺激与电流泄漏有关,这可能会引起全身反应。我们研究的目的是调查大脑和脊髓的电刺激是否会对生化参数产生全身影响。

材料与方法

共有25例帕金森病(PD,n = 21)和肌张力障碍(n = 4)患者接受了DBS植入,12例慢性疼痛患者接受了SCS,均接受了电刺激。在夜间刺激前后测量选定生化参数的血药浓度。

结果

DBS后,铁(刺激前:15.6±13.53μmol/L;刺激后:7.65±10.8μmol/L;P < 0.001)、转铁蛋白(刺激前:2.42±0.88 g/L;刺激后:1.99±0.59 g/L;P < 0.001)、转铁蛋白饱和度(刺激前:23.20±14.50%;刺激后:10.70±11.35%;P = 0.001)、磷酸盐(刺激前:1.04±0.2 mmol/L;刺激后:0.83±0.2 mmol/L;P = 0.007)和总钙(刺激前:2.39±0.29 mmol/L;刺激后:2.27±0.19 mmol/L;P = 0.016)的平均±四分位间距(IQR)值显著降低,而铁蛋白(刺激前:112.00±89.00 ng/mL;刺激后:150.00±89.00 ng/mL;P = 0.003)和C反应蛋白(刺激前:于0.90±19.39 mg/L;刺激后:60.35±35.91 mg/L;P = 0.002)显著升高。在接受SCS的患者中,电刺激前后铁蛋白(刺激前:35±63 ng/mL;刺激后:56±62 ng/mL;P = 0.013)、转铁蛋白(刺激前:2.70±0.74 g/L;刺激后:2.49±0.69 g/L;P = 0.048)和C反应蛋白(刺激前:31.00±36.40 mg/L;刺激后:36.60±62.030 mg/L;P = 0.018)有显著差异。在接受丘脑切开术和苍白球切开术的患者中,未观察到所检查参数的显著变化。

结论

传递至脑皮质下核和脊髓背柱的漏电使身体其他部位暴露于负电荷。全身反应与炎症反应以及铁和钙磷代谢改变有关。电刺激引起的铁代谢改变可能会影响PD的病程。未来的研究应调查神经刺激器产生的电流和电磁场对人体代谢的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fae2/7912219/1f5c05df6e53/brainsci-11-00156-g001.jpg

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