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完整人半月板沿纵轴内伤害感受器的神经支配:半定量组织学评估及临床意义。

Innervation of nociceptors in intact human menisci along the longitudinal axis: semi-quantitative histological evaluation and clinical implications.

机构信息

Department of Orthopaedic Surgery, West China Hospital, Sichuan University, Chengdu, People's Republic of China, 610041.

West China School of Public Health, Sichuan University, Chengdu, China.

出版信息

BMC Musculoskelet Disord. 2019 Jul 22;20(1):338. doi: 10.1186/s12891-019-2706-x.

Abstract

BACKGROUND

The mechanism of pain after meniscus injury remains unknown. After injury, some individuals suffered from acute pain, while others suffer from delayed pain. A precise nociceptor distribution pattern may provide the answer to this question.

METHODS

Twenty-two intact menisci (paired medial and lateral menisci) were obtained from 11 patients with a mean age of 28.45 years. All menisci were sectioned into five parts: the anterior horn, anterior body, middle body, posterior body, and posterior horn. Two paired menisci were stained by a modified gold chloride method. All other specimens were stained by H&E staining and were subjected to immunohistochemical staining to detect substance-P (SP). Under a microscope, measurements were made in 10 consecutive visual areas at 400x magnification. SP-positive fibres were determined using a three-grade scale, and the mean number of SP-positive fibres was assessed.

RESULTS

Nerve fibres and nociceptors stained by H&E and modified gold chloride were found mainly in the vascular outer third of the menisci as observed under a microscope; the positive area was wider in the anterior and posterior horns. There were more SP+ fibres in the anterior horn and posterior horn than in the anterior body, middle body, or posterior body (p < 0.05). Regarding the bodies, the mean number of substance-P fibres was greater in the anterior body or posterior body than in the middle area (p < 0.05). No significant differences were found between the number of substance-P nerve fibres in the anterior horn vs the posterior horn or in the anterior body vs the posterior body of all menisci (p > 0.05). No significant differences were observed in the same location between the paired medial and lateral menisci in all areas of the menisci (p > 0.05).

CONCLUSION

The density of nociceptors decreased along the longitudinal axis of the meniscus from both horns to the middle part of the body, which may guide future diagnostic methods and rehabilitation protocols.

摘要

背景

半月板损伤后疼痛的机制尚不清楚。受伤后,一些人会立即感到疼痛,而另一些人则会延迟疼痛。精确的伤害感受器分布模式可能会提供答案。

方法

从 11 名平均年龄为 28.45 岁的患者中获得了 22 个完整的半月板(内侧和外侧半月板配对)。所有半月板均分为五部分:前角、前体、中体、后体和后角。用改良氯化金法对两个配对的半月板进行染色。所有其他标本均用 H&E 染色,并进行免疫组织化学染色以检测 P 物质(SP)。在显微镜下,在 400x 放大倍数下,在 10 个连续的视觉区域进行测量。使用三级评分标准确定 SP 阳性纤维,并评估 SP 阳性纤维的平均数量。

结果

用 H&E 和改良氯化金染色的神经纤维和伤害感受器主要在半月板的血管外三分之一处被观察到;在前角和后角中阳性区域更宽。前角和后角中的 SP+纤维比前体、中体或后体多(p<0.05)。就身体而言,前体或后体中的物质-P 纤维数量多于中间区域(p<0.05)。在前角和后角之间或在所有半月板的前体和后体之间,物质-P 神经纤维的数量没有显著差异(p>0.05)。在半月板的所有区域中,同一位置的配对内侧和外侧半月板之间没有观察到显著差异(p>0.05)。

结论

伤害感受器的密度从半月板的两个角到体部的中间部分沿着半月板的纵轴逐渐降低,这可能指导未来的诊断方法和康复方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a28f/6647164/1c578a1628ee/12891_2019_2706_Fig1_HTML.jpg

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