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用花生凝集素结合法证明新生大鼠体感皮层桶状区体表表征的早期发育:大鼠幼崽体内差异发育的证据

Early development of the representation of the body surface in SI cortex barrel field in neonatal rats as demonstrated with peanut agglutinin binding: evidence for differential development within the rattunculus.

作者信息

McCandlish C, Waters R S, Cooper N G

机构信息

Department of Anatomy and Neurobiology, University of Tennessee, College of Medicine, Memphis 38163.

出版信息

Exp Brain Res. 1989;77(2):425-31. doi: 10.1007/BF00275001.

Abstract

Physiological studies have demonstrated a highly organized somatotopic representation of the body surface in SI cortex of rat. This representation is correlated morphologically with the presence of barrel-shaped structures in layer IV. Conventional staining techniques reveal barrels in the latter part of the first postnatal week. Recently, the peroxidase conjugates of lectins, which recognize glycosylated molecules, have been used to study barrel field formation. Con A, for example, has been shown to bind primarily to prospective barrel sides and septa as early as postnatal day 3 (PND-3) in mouse. To date, investigations of SI cortex using the lectin (Arachis hypogaea) peanut agglutinin (PNA) have been confined to the study of the barrel field representation of the face and mystacial vibrissae in the mouse. In the present study we extend these findings to the development of the representation of the entire body surface called the rattunculus. Rats ranging from PND-1 (first 24 h after birth) to PND-12 were anesthetized with Nembutal and perfused with 4% paraformaldehyde and 2% glutaraldehyde in 0.2 M sodium cacodylate buffer. Brains were removed, flattened tangentially, and sectioned on a vibratome at 30-120 microns. Sections were blocked in TRIS-buffered saline (TBS) plus 2% bovine serum albumin and incubated in peanut lectin at 4 degrees C. Following incubation, sections were washed with TBS and processed using peroxidase histochemistry. Lectin binding in the prospective forelimb representation was apparent by PND-5 whereas lectin binding to the prospective face-mystacial vibrissae representation occurred before PND-4. These results suggest that body part representations show individual variations during early pattern formation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

生理学研究表明,大鼠初级体感皮层(SI)中存在高度有序的体表躯体定位表征。这种表征在形态学上与第四层中桶状结构的存在相关。传统染色技术显示,在出生后第一周后期出现桶状结构。最近,可识别糖基化分子的凝集素过氧化物酶缀合物已被用于研究桶状区的形成。例如,早在出生后第3天(PND - 3),刀豆球蛋白A就已被证明主要结合在小鼠未来桶状区的边缘和间隔处。迄今为止,使用凝集素(花生)花生凝集素(PNA)对初级体感皮层的研究仅限于小鼠面部和触须的桶状区表征。在本研究中,我们将这些发现扩展到了称为“小大鼠”的整个体表表征的发育过程。将出生后第1天(出生后最初24小时)到第12天的大鼠用戊巴比妥麻醉,并用0.2M 二甲胂酸钠缓冲液中的4%多聚甲醛和2%戊二醛灌注。取出大脑,沿切线方向展平,并在振动切片机上切成30 - 120微米的切片。切片在含有2%牛血清白蛋白的三羟甲基氨基甲烷缓冲盐水(TBS)中封闭,并在4℃下用花生凝集素孵育。孵育后,切片用TBS洗涤,并使用过氧化物酶组织化学进行处理。在出生后第5天,未来前肢表征中的凝集素结合明显可见,而在出生后第4天之前,凝集素就已结合到未来面部 - 触须表征上。这些结果表明,在早期模式形成过程中,身体各部位的表征存在个体差异。(摘要截取自250字)

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