Neuroscience Center, University of Helsinki, Viikinkaari 4, P.O.Box 56, 00790, Helsinki, Finland.
Institute of Physics, Kazan Federal University, Kazan Kremlyovskaya 16a, Tatarstan, Russia, 420111.
J Mol Histol. 2019 Jun;50(3):203-216. doi: 10.1007/s10735-019-09818-y. Epub 2019 Mar 22.
Perineuronal net (PNN) is a highly structured portion of the CNS extracellular matrix (ECM) regulating synaptic plasticity and a range of pathologic conditions including posttraumatic regeneration and epilepsy. Here we studied Wisteria floribunda agglutinin-stained histological sections to quantify the PNN size and enrichment of chondroitin sulfates in mouse brain and spinal cord. Somatosensory cortex sections were examined during the period of PNN establishment at postnatal days 14, 21 and 28. The single cell PNN size and the chondroitin sulfate intensity were quantified for all cortex layers and specifically for the cortical layer IV which has the highest density of PNN-positive neurons. We demonstrate that the chondroitin sulfate proteoglycan staining intensity is increased between P14 and P28 while the PNN size remains unchanged. We then addressed posttraumatic changes of the PNN expression in laminae 6 and 7 of cervical spinal cord following hemisection injury. We demonstrate increase of the chondroitin sulfate content at 1.6-1.8 mm rostrally from the injury site and increase of the density of PNN-bearing cells at 0.4-1.2 mm caudally from the injury site. We further demonstrate decrease of the single cell PNN area at 0.2 mm caudally from the injury site suggesting that the PNN ECM takes part in the posttraumatic tissue rearrangement in the spinal cord. Our results demonstrate new insights on the PNN structure dynamics in the developing and posttraumatic CNS.
周围神经毡(PNN)是中枢神经系统细胞外基质(ECM)的一个高度结构化部分,调节突触可塑性和一系列病理状况,包括创伤后再生和癫痫。在这里,我们研究了蔓荆子凝集素染色的组织切片,以定量测量小鼠大脑和脊髓中的 PNN 大小和软骨素硫酸盐的含量。在 PNN 建立的时期,检查了感觉皮层切片,在出生后第 14、21 和 28 天。对所有皮层层进行了单个细胞 PNN 大小和软骨素硫酸盐强度的定量分析,特别是对 PNN 阳性神经元密度最高的皮层 IV 层进行了定量分析。我们证明,在 P14 和 P28 之间,软骨素硫酸蛋白聚糖染色强度增加,而 PNN 大小保持不变。然后,我们研究了颈椎脊髓半切损伤后,6 层和 7 层的 PNN 表达的创伤后变化。我们证明,在损伤部位近端 1.6-1.8mm 处软骨素硫酸盐含量增加,在损伤部位远端 0.4-1.2mm 处 PNN 携带细胞密度增加。我们进一步证明,在损伤部位远端 0.2mm 处单个细胞 PNN 面积减少,这表明 PNN ECM 参与了脊髓的创伤后组织重排。我们的结果为发育中和创伤后中枢神经系统中 PNN 结构动力学提供了新的见解。