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Inflammation, aging, and cancer: tumoricidal versus tumorigenesis of immunity: a common denominator mapping chronic diseases.

机译:炎症,衰老和癌症:免疫力与肿瘤发生力的对比:映射慢性疾病的共同点。

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摘要

Acute inflammation is a highly regulated defense mechanism of immune system possessing two well-balanced and biologically opposing arms termed apoptosis ('Yin') and wound healing ('Yang') processes. Unresolved or chronic inflammation (oxidative stress) is perhaps the loss of balance between 'Yin' and 'Yang' that would induce co-expression of exaggerated or 'mismatched' apoptotic and wound healing factors in the microenvironment of tissues ('immune meltdown'). Unresolved inflammation could initiate the genesis of many age-associated chronic illnesses such as autoimmune and neurodegenerative diseases or tumors/cancers. In this perspective 'birds' eye' view of major interrelated co-morbidity risk factors that participate in biological shifts of growth-arresting ('tumoricidal') or growth-promoting ('tumorigenic') properties of immune cells and the genesis of chronic inflammatory diseases and cancer will be discussed. Persistent inflammation is perhaps a common denominator in the genesis of nearly all age-associated health problems or cancer. Future challenging opportunities for diagnosis, prevention, and/or therapy of chronic illnesses will require an integrated understanding and identification of developmental phases of inflammation-induced immune dysfunction and age-associated hormonal and physiological readjustments of organ systems. Designing suitable cohort studies to establish the oxido-redox status of adults may prove to be an effective strategy in assessing individual's health toward developing personal medicine for healthy aging.
机译:急性炎症是免疫系统的高度调节防御机制,具有两个非常平衡且生物学上相对的臂,称为凋亡(“阴”)和伤口愈合(“阳”)过程。未解决的或慢性的炎症(氧化应激)可能是“阴”和“阳”之间失去平衡,这会在组织的微环境中诱导过度表达或“失配”的凋亡和伤口愈合因子的共表达(“免疫融化”) 。无法解决的炎症可能会引发许多与年龄相关的慢性疾病的发生,例如自身免疫和神经退行性疾病或肿瘤/癌症。从这个角度来看,“鸟”式观点涉及参与免疫细胞的生长停滞(“致癌”)或促生长(“致瘤”)特性的生物学转变以及慢性炎症的起源的主要相互关联的合并症危险因素。将讨论疾病和癌症。持续性炎症可能是几乎所有与年龄相关的健康问题或癌症的起源中的共同点。未来诊断,预防和/或治疗慢性疾病的挑战性机遇将需要对炎症诱导的免疫功能障碍的发展阶段以及与年龄相关的器官系统的激素和生理学调整的发展阶段进行全面的了解和鉴定。设计合适的队列研究以建立成人的氧化还原状态可能被证明是评估个人健康状况的有效策略,以开发用于健康衰老的个人药物。

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