Lanthier Frédéric, Laforge Jessica, Pflieger Jean-François
Université de Montréal, C.P. 6128, Succ. centre-ville, Montréal, QC H3C 3J7, Canada.
IBRO Neurosci Rep. 2023 Jun 17;15:42-49. doi: 10.1016/j.ibneur.2023.06.004. eCollection 2023 Dec.
Marsupials are born very immature yet must be sufficiently autonomous to crawl on the mother's belly, find a teat and attach to it to pursue their development. Sensory inputs are necessary to guide the newborn to a teat and induce attachment. The vestibular system, which perceives gravity and head movements, is one of the senses proposed to guide newborns towards the teats but there are conflicting observations about its functionality at birth (postnatal day (P) 0). To test if the vestibular system of opossum newborns is functional and can influence locomotion, we used two approaches. First, we stimulated the vestibular apparatus in preparations from opossums aged from P1 to P12 and recorded motor responses: at all ages studied, mechanical pressures applied on the vestibular organs induced spinal roots activity whereas head tilts did not induce forelimb muscle contractions. Second, using immunofluorescence, we assessed the presence of Piezo2, a protein involved in mechanotransduction in vestibular hair cells. Piezo2 labeling was scant in the utricular macula at birth, but observed in all vestibular organs at P7, its intensity increasing up to P14; it seemed to stay the same at P21. Our results indicate that neural pathways from the labyrinth to the spinal cord are already in place around birth but that the vestibular organs are too immature to influence motor activity before the end of the second postnatal week in the opossum. It may be the rule in marsupial species that the vestibular system becomes functional only after birth.
有袋类动物出生时非常不成熟,但必须具备足够的自主性,以便能在母亲的腹部爬行,找到乳头并附着其上,从而继续发育。感觉输入对于引导新生儿找到乳头并诱导附着至关重要。前庭系统能够感知重力和头部运动,是被认为引导新生儿找到乳头的感觉系统之一,但关于其在出生时(出生后第0天)的功能存在相互矛盾的观察结果。为了测试负鼠新生儿的前庭系统是否具有功能以及是否会影响运动,我们采用了两种方法。首先,我们在出生后第1天到第12天的负鼠标本中刺激前庭器官,并记录运动反应:在所有研究的年龄段,施加在前庭器官上的机械压力会诱发脊髓神经根活动,而头部倾斜不会诱发前肢肌肉收缩。其次,我们使用免疫荧光法评估了Piezo2的存在情况,Piezo2是一种参与前庭毛细胞机械转导的蛋白质。出生时,Piezo2在椭圆囊斑中的标记很少,但在出生后第7天时在所有前庭器官中都能观察到,其强度一直增加到出生后第14天;在出生后第21天时似乎保持不变。我们的结果表明,从迷路到脊髓的神经通路在出生时就已形成,但在前庭器官在负鼠出生后第二周结束前过于不成熟,无法影响运动活动。前庭系统仅在出生后才开始发挥功能可能是有袋类动物的普遍规律。