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一个基于临床病例的假说:分泌型免疫球蛋白A作为一种电子晶体管,在胃肠道管腔的吸收过程中控制分子的选择或排斥。

A clinical case-based hypothesis: secretory IgA operates as an electronic transistor controlling the selection or rejection of molecules in the absorption process in the lumen of gastrointestinal tract.

作者信息

Zamm Alfred V

机构信息

Retired, Malibu, CA, USA.

出版信息

Clin Exp Gastroenterol. 2013 Sep 16;6:177-84. doi: 10.2147/CEG.S47772. eCollection 2013.

Abstract

There is a clinical correlation between (1) an allergic patient's ability to resist the development of symptoms that would have resulted from an allergenic challenge, (2) the magnitude of geomagnetism at a geographic site, and (3) the amount of solar energy falling on that site. It is suggested that the digestive membrane has an electronic gatekeeper that "decides" electronically which molecules to allow or not allow to pass on to the absorptive surface. The unique bipolar structure of secretory immunoglobulin A (IgA), having a central secretory piece and the resultant unique electronic function of this polarized molecule, allows it to function as an electronic transistor, producing an electronic gatekeeper in the form of an electronic sieve.

摘要

(1)过敏患者抵抗因过敏原激发而产生症状的能力、(2)某地理位置的地磁强度以及(3)该地点接收的太阳能量之间存在临床关联。有人提出,消化膜有一个电子“守门人”,它通过电子方式“决定”允许哪些分子通过,哪些分子不允许通过到达吸收表面。分泌型免疫球蛋白A(IgA)独特的双极结构,具有一个中央分泌片段以及该极化分子由此产生的独特电子功能,使其能够充当电子晶体管,以电子筛的形式产生一个电子“守门人”。

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