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首页> 外文期刊>Dental Hypotheses >Nanobacteria in clouds can spread oral pathologic calcifications around the world
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Nanobacteria in clouds can spread oral pathologic calcifications around the world

机译:云中的纳米细菌可以在世界范围内传播口腔病理钙化

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摘要

Introduction: Nanobacteria (calcifying nanoparticles, nanobes) are one of the most controversial issues in contemporary biology. Studies show accumulating evidence on association of nanobacteria with oral pathologic calcifications such as calculus, pulp stone, and salivary gland stones. The Hypothesis: Experiments have shown that nanobacteria are excreted from the body in urine and saliva, lifted from the ground by winds into the cloud, and transit between the high humidity region of the clouds and the relatively dry inter-cloud regions. Remnants of a sticky protein coating that nanobacteria make it act as an extremely efficient cloud condensation nuclei. Following condensation of cloud, nanobacteria return to the earth via rain and snow. Evaluation of the Hypothesis: Transmission of nanobacteria via clouds is not surprising when compared with cosmic transmission of nanobacteria. The apatite mineral layer around the organism serves as a primary defence shield against various seriously life-threatening conditions. A double defence with the apatite layer and an impermeable membrane combined with a very slow metabolism is a likely explanation for the resistance of nanobacteria.
机译:简介:纳米细菌(钙化纳米颗粒,纳米颗粒)是当代生物学中最具争议的问题之一。研究表明,纳米细菌与口腔病理钙化(例如牙结石,牙髓和唾液腺结石)相关的证据越来越多。假设:实验表明,纳米细菌通过尿液和唾液从体内排泄,被风从地面抬升到云中,并在云的高湿度区域和相对干燥的云间区域之间传播。纳米细菌使粘性蛋白涂层的残留物成为极其有效的云凝结核。随着云的凝结,纳米细菌通过雨和雪返回地球。假设的评估:与纳米细菌的宇宙传播相比,纳米细菌通过云的传播并不令人惊讶。生物体周围的磷灰石矿物层可作为抵御各种严重威胁生命的条件的主要防御屏障。磷灰石层和不渗透膜的双重防御以及非常缓慢的新陈代谢可能是纳米细菌耐药性的解释。

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