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Genetic aspects in schizophrenia. Receptoral theories. Metabolic theories

机译:精神分裂症的遗传方面。受体理论。代谢理论

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摘要

Ties between schizophrenia (SCZ) and genetics are undeniably significant issue prone to be discussed in the nowadays psychology. Recent research on this domain focuses more on specific genes and heredity (specifically monozygotic pairs of twins) for diagnosing SCZ, than on environmental influences. SCZ is considered a multifactorial disease, thought to convert from a merger of risk and biological genes and environmental factors that could alter and reshape the trajectory of brain development. On this regard, this review sums up recent and innovative methods of distinguishing schizophrenic features from other mental illnesses in patients, based on chromosomal and genes changes. The term “reverse genetics” is no longer up to date, being replaced with “genome scanning” and “positional cloning”. For many researchers, genome scanning is continuing the reverse of the sensible strategy for detecting various important biological disorders, which may start from the discovery of a protein or any other molecule involved in a biological process, being followed by its gene cloning. Genes being discovered in this manner could become candidate genes for the disease. However, genome scanning occurs through testing each chromosomal segment (or mitochondrial genome) for the counter transmission of the disease.
机译:精神分裂症(SCZ)和遗传学之间的联系是在当今心理学中讨论的不可否认性的问题。最近对该域的研究更加侧重于特定基因和遗传(特别是单卵短对双胞胎),用于诊断SCZ,而不是环境影响。 SCZ被认为是多因素疾病,旨在转换从风险和生物基因的合并和生物基因的合并和环境因素,这些因素可以改变和重塑脑发育的轨迹。在这方面,本综述基于染色体和基因改变了患者中其他精神疾病中的精神分裂症特征的最近和创新方法。术语“反向遗传学”不再是最新的,被“基因组扫描”和“位置克隆”所取代。对于许多研究人员来说,基因组扫描继续反转检测各种重要生物疾病的明智策略,这可能从发现蛋白质或任何其他分子中涉及生物过程中的任何其他分子的策略,然后是其基因克隆。以这种方式发现的基因可能成为疾病的候选基因。然而,通过测试每种染色体段(或线粒体基因组)来进行疾病的反向传播,发生基因组扫描。

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