用生物物理方法理解生命和癌症

Nuri Faruk Aykan
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摘要

背景 从生物学的角度来看,生命的特征可分为细胞组织、平衡、新陈代谢、生长、繁殖和遗传、对刺激的反应和对环境的适应。从物理学的角度来看,生物体是高度有序、复杂、热力学开放的系统;它们处于非平衡阶段。根据热力学第二定律,宇宙中的每个系统都会自发地走向无序。最大熵意味着热力学平衡,也意味着死亡。今天,癌症是一个重大的全球健康问题,尽管我们对致癌的认识有了爆炸性的发展,但 "抗癌战争 "仍未取得胜利。 目的 基于当前的生物物理方法,研究生命与癌症的关系,并揭示新的范式。 材料与amp; 方法 在 PubMed 上进行了一次系统的文献检索,以查找关于用热力学方法理解生命和癌症的出版物,没有语言限制。此外,还参考了已发现研究的参考文献目录。 结果 生物体交换熵,并从外部环境中获取信息。信息可以作为记忆储存起来。生命是一种涌现,就像由正确模块组成的艺术。相反,癌症是一种由错误模块组成的疾病。癌症至少在一定时期内是一种混沌疾病,不可能从健康的功能组织单元中产生。下层的混沌可能与上层的熵增加有关。 结论 生物混沌控制是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Biophysical Approach to Understand Life and Cancer

Background

From the perspective of biology, the characteristics of life can be categorized as cellular organizations, homeostasis, metabolism, growth, reproduction and heredity, response to stimuli and adaptation to the environment. From the perspective of physics, living organisms are highly ordered, complex, thermodynamically open systems; they are in non-equilibrium phase. According to the second law of thermodynamics, every system in the universe is going to the disorder spontaneously. Maximum entropy signifies a thermodynamic equilibrium which means the death. Today, cancer is a major global health problem and despite the explosive development of our knowledge about the carcinogenesis the “war on cancer” has not yet been won.

Aims

To examine life and cancer together based on current biophysical approach and to shed light on new paradigms.

Materials & Methods

A systematic literature search for publications on a thermodynamic approach to understand life and cancer was conducted in PubMed without language restrictions. The reference lists of identified studies were also used as additional knowledge.

Results

Living organisms exchange entropy and they gain information from the external environment. Information can be stored as memory. Life is a category of emergence like art composed from correct modules. On the contrary, cancer is the emergence of a disease formed by incorrect modules. Cancer is a chaotic disease at least for a limited period and cannot arise from healthy functional tissue units. Chaos of the lower level may be associated with the entropy increase of upper level.

Conclusions

Biologic chaos control is possible.

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Issue Information Biophysical Approach to Understand Life and Cancer Considerations for the Use of the DNA Damage Marker γ-H2AX in Disease Modeling, Detection, Diagnosis, and Prognosis From Hyperinsulinemia to Cancer Progression: How Diminishing Glucose Storage Capacity Fuels Insulin Resistance Issue Information
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