Iversen Per Ole, Nicolaysen Anne, Hjeltnes Nils, Njå Arild, Benestad Haakon B
Department of Nutrition, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.
Br J Haematol. 2004 Sep;126(6):870-7. doi: 10.1111/j.1365-2141.2004.05085.x.
Patients with a spinal cord injury are at risk of infections and is partly attributed to immobilization. Their lymphocyte-mediated immunity is impaired and the growth of blood progenitor cells is reduced. An adequate immune response depends on granulocytes being mobilized rapidly and activated properly, at the inflammatory site. Possibly this requires a coordinated interaction between the autonomous nervous system and cells within the haematopoietic bone marrow. Granulocyte function in the spinal cord injured has not been evaluated. Although there is evidence that the bone marrow in rodents is innervated, it is uncertain whether human bone marrow is similarly affected. Microscopy and immunolabelling followed by flow cytometry, showed that blood and bone marrow counts of leucocyte subsets were similar in paraplegic, tetraplegic and control subjects (P > 0.05). Neutrophilic migration and oxygen consumption, as well as eosinophil activation, assayed as release of eosinophilic cationic protein or CD69 expression, were not altered after spinal cord injury (P > 0.05). Cryostat sections of human bone marrow biopsies stained positive with glyoxylic acid, indicating the presence of catecholamine-containing nerves in both the patients and the controls. We conclude that terminal differentiation and formation of granulocytes, as well as their functional capacity, do not depend appreciably on supraspinal nervous regulation.
脊髓损伤患者存在感染风险,部分原因是长期固定不动。他们的淋巴细胞介导的免疫功能受损,血液祖细胞的生长减少。充分的免疫反应依赖于粒细胞在炎症部位迅速动员并正确激活。这可能需要自主神经系统与造血骨髓内的细胞之间进行协调相互作用。脊髓损伤患者的粒细胞功能尚未得到评估。虽然有证据表明啮齿动物的骨髓有神经支配,但尚不确定人类骨髓是否也受到类似影响。通过显微镜检查、免疫标记和流式细胞术发现,截瘫、四肢瘫患者和对照组的白细胞亚群的血液和骨髓计数相似(P>0.05)。脊髓损伤后,嗜中性粒细胞迁移和耗氧量以及嗜酸性粒细胞活化(以嗜酸性阳离子蛋白释放或CD69表达来测定)均未改变(P>0.05)。人骨髓活检的低温切片用乙醛酸染色呈阳性,表明患者和对照组中均存在含儿茶酚胺的神经。我们得出结论,粒细胞的终末分化和形成及其功能能力在很大程度上不依赖于脊髓以上的神经调节。