Postnatal expression of Cat-315-positive perineuronal nets in the SAMP10 mouse primary somatosensory cortex

IF 2.9 Q3 NEUROSCIENCES IBRO Neuroscience Reports Pub Date : 2025-06-01 Epub Date: 2025-01-18 DOI:10.1016/j.ibneur.2025.01.012
Hiroshi Ueno , Yu Takahashi , Sachiko Mori , Eriko Kitano , Shinji Murakami , Kenta Wani , Yosuke Matsumoto , Motoi Okamoto , Takeshi Ishihara
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Abstract

Perineuronal nets (PNNs) form at the end of the critical period of plasticity in the mouse primary somatosensory cortex. PNNs are said to have functions that control neuroplasticity and provide neuroprotection. However, it is not clear which molecules in PNNs have these functions. We have previously reported that Cat-315-positive molecules were not expressed in the PNNs of the senescence-accelerated model (SAM)P10 strain model mice at 12 months of age. To confirm whether the loss of Cat-315-positive molecules occurred early in life in SAMP10 mice, we examined Cat-315-positive PNNs in the primary somatosensory cortex during postnatal development. This research helps to elucidate the function of PNNs and the mechanism of cognitive decline associated with ageing. To confirm whether Cat-315-positive PNNs changed in an age-dependent manner in SAMP10 mice, we examined the primary somatosensory cortex at 21, 28, and 56 days after birth. We compared these results with those of senescence-accelerated mouse-resistant (SAMR) mice. In SAMP10 mice, Cat-315-positive PNNs were expressed in the primary somatosensory cortex early after birth, but their expression was significantly lower than that in SAMR1 mice. Many other molecules that calibrated the PNN were unchanged between SAMP10 and SAMR1 mice. This study revealed that the expression of the Cat-315 epitope was decreased in the primary somatosensory cortex of SAMP10 mice during postnatal development. SAMP10 mice have had histological abnormalities in their brains since early life. Furthermore, using SAMP10 will be useful in elucidating the mechanism of age-related abnormalities in brain function as well as in elucidating the function and structure of PNNs.
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出生后cat -315阳性神经网络在SAMP10小鼠初级体感觉皮层中的表达
小鼠初级体感觉皮层可塑性关键期结束时,周围神经元网(PNNs)形成。pnn据说具有控制神经可塑性和提供神经保护的功能。然而,目前尚不清楚pnn中的哪些分子具有这些功能。我们之前报道过,在衰老加速模型(SAM)P10品系模型小鼠12月龄时,cat -315阳性分子在pnn中不表达。为了确认cat -315阳性分子的丢失是否发生在SAMP10小鼠的生命早期,我们在出生后发育期间检测了初级体感觉皮层中cat -315阳性的PNNs。本研究有助于阐明pnn的功能及其与衰老相关的认知能力下降的机制。为了确认cat -315阳性pnn是否在SAMP10小鼠中以年龄依赖的方式发生变化,我们在出生后21、28和56天检测了初级体感觉皮层。我们将这些结果与抗衰老加速小鼠(SAMR)的结果进行了比较。在SAMP10小鼠中,cat -315阳性PNNs在出生后早期在初级体感觉皮层中表达,但其表达量明显低于SAMR1小鼠。许多其他校准PNN的分子在SAMP10和SAMR1小鼠之间没有变化。本研究发现,在SAMP10小鼠的出生后发育过程中,Cat-315表位的表达减少。SAMP10小鼠在幼年时大脑中就存在组织学异常。此外,使用SAMP10将有助于阐明与年龄相关的脑功能异常的机制,以及阐明pnn的功能和结构。
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来源期刊
IBRO Neuroscience Reports
IBRO Neuroscience Reports Neuroscience-Neuroscience (all)
CiteScore
2.80
自引率
0.00%
发文量
99
审稿时长
14 weeks
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