Recio Javier S, Weruaga Eduardo, Gómez Carmela, Valero Jorge, Briñón Jesús G, Alonso José R
Department of Cell Biology and Pathology, Institute for Neuroscience of Castilla y León, Universidad de Salamanca, Salamanca, Spain.
J Neurosci Res. 2007 Aug 15;85(11):2407-21. doi: 10.1002/jnr.21387.
The connections of the main olfactory bulb (OB) of the mouse were studied with iontophoretic injections of biotinylated dextran amine. To sort efferences from mitral cells and tufted cells, the Purkinje cell degeneration (PCD) mouse was used. This mutant animal undergoes a specific neurodegeneration of mitral cells, whereas tufted cells do not degenerate. The unilateral tracer injections used were small and confined largely to the OB of both PCD and control mice at P120. Seven days after tracer injection, the efferences from the OB and the centrifugal afferences from secondary olfactory structures to it were studied. Although there is a large overlap of their target fields, mitral cell axons innervated more caudal regions of the olfactory cortex than tufted cell axons, thus providing definitive evidence of the differential projections of olfactory output neurons. Additionally, an important increase in retrogradely-labeled neurons was detected in the ipsilateral anterior olfactory nucleus of the mutant animals. This was not observed in any other secondary olfactory structure, suggesting a strengthening of the centrifugal input to the OB from that central area after mitral cell loss. Moreover, we recorded a complete loss of bilaterality in the olfactory connections of the PCD mice due to degeneration of the anterior commissure. These results point to an important reorganization of this essential olfactory circuit between the anterior olfactory nucleus and the OB, and hint at a transsynaptic level of plasticity not considered previously in literature.
通过离子电渗法注射生物素化葡聚糖胺,研究了小鼠主嗅球(OB)的连接。为了区分来自二尖瓣细胞和簇状细胞的传出纤维,使用了浦肯野细胞变性(PCD)小鼠。这种突变动物的二尖瓣细胞会发生特定的神经变性,而簇状细胞不会退化。在120日龄时,对PCD小鼠和对照小鼠的单侧示踪剂注射量较小,且主要局限于OB。示踪剂注射7天后,研究了OB的传出纤维以及二级嗅觉结构对其的离心传入纤维。尽管它们的靶场有很大重叠,但二尖瓣细胞轴突比簇状细胞轴突支配嗅觉皮层更靠尾侧的区域,从而为嗅觉输出神经元的不同投射提供了确凿证据。此外,在突变动物的同侧前嗅核中检测到逆行标记神经元显著增加。在任何其他二级嗅觉结构中均未观察到这种情况,这表明二尖瓣细胞丧失后,来自该中央区域的离心输入对OB的增强作用。此外,由于前连合变性,我们记录到PCD小鼠嗅觉连接的双侧性完全丧失。这些结果表明,前嗅核和OB之间这一重要嗅觉回路发生了重要重组,并暗示了文献中先前未考虑到的跨突触可塑性水平。