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A digital cmos sequential circuit model for bio-cellular adaptive immune response pathway using phagolysosomic digestion: a digital phagocytosis engine

机译:使用吞噬溶酶体消化的生物活性免疫反应途径的数字cmos顺序电路模型:数字吞噬引擎

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Living systems have to constantly counter micro-or- ganisms which seek parasitic existence by extracting nutrition (amino acids) from the host. Phagocytosis is the ingestion of micro-creatures by certain cells of living systems for counter nutrition (breakdown of the micro-creature into basic components) as part of cellular adaptive immune response. These particular cells are called phagocytes, all of which are different types of white blood cells or their derivatives. Phagocytes are activated by certain components of the micro-creatures which act as an antigen, generating an- tibody secretion by the phagocyte. This paper develops a digital CMOS circuit model of phagocytosis: the immune response biochemical pathway of a pha- gocyte. A micro-sequenced model has been developed where the different stages in phagocytosis are modeled as different states clocked by circadian time intervals. The model converts the bio-chemical immune system digestive pathway into a cascade of CMOS multi-step logical transformations from micro-crea- ture ingestion to the secretion of indigestible residuals. This modeling technique leads to the understanding of cellular immune deficiency diseases of living systems in the form of logical (electrical) faults in a circuit.
机译:生命系统必须不断地对付通过从宿主体内提取营养(氨基酸)而寻求寄生生物的微生物。吞噬作用是生命系统的某些细胞摄入微生物以抵抗营养(微生物分解为基本成分),作为细胞适应性免疫反应的一部分。这些特定的细胞称为吞噬细胞,所有这些都是不同类型的白细胞或其衍生物。吞噬细胞被作为抗原的微生物的某些成分激活,从而由吞噬细胞产生抗体分泌。本文开发了吞噬作用的数字CMOS电路模型:吞噬细胞的免疫反应生化途径。已经开发了微测序模型,其中将吞噬作用的不同阶段建模为由昼夜节律间隔记录的不同状态。该模型将生化免疫系统的消化途径转化为从微生物摄入到难消化残留物分泌的一系列CMOS多步逻辑转换。通过这种建模技术,您可以了解电路中逻辑(电气)故障形式的生命系统细胞免疫缺陷疾病。

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