Targeting microRNAs as a promising anti-cancer therapeutic strategy against traffic-related air pollution-mediated lung cancer.

IF 7.7 2区 医学 Q1 ONCOLOGY
Cancer and Metastasis Reviews Pub Date : 2024-06-01 Epub Date: 2023-11-01 DOI:10.1007/s10555-023-10142-x
Hamed Kazemi Shariat Panahi, Mona Dehhaghi, Gilles J Guillemin, Wanxi Peng, Mortaza Aghbashlo, Meisam Tabatabaei
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引用次数: 0

Abstract

Air pollutants are increasingly emitted into the atmosphere because of the high dependency of humans on fossil-derived fuels. Wind speed and direction assisted high dispersibility and uncontrolled nature of air pollution across geo-/demographical borders, making it one of the major global concerns. Besides climate change, air pollution has been found to be associated with various diseases, such as cancer. Lung cancer, which is the world's most common type of cancer, has been found to be associated with traffic-related air pollution. Research and political efforts have been taken to explore green/renewable energy sources. However, these efforts at the current intensity cannot cope with the increasing need for fossil fuels. More specifically, political tensions such as the Russian-Ukraine war, economic tension (e.g., China-USA economic tensions), and other issues (e.g., pandemic, higher inflation rate, and poverty) significantly hindered phasing out fossil fuels. In this context, an increasing global population will be exposed to traffic-related air pollution, which justifies the current uptrend in the number of lung cancer patients. To combat this health burden, novel treatments with higher efficiency and specificity must be designed. One of the potential "life changer" options is microRNA (miRNA)-based therapy to target the expression of oncogenic genes. That said, this review discusses the association of traffic-related air pollution with lung cancer, the changes in indigenous miRNAs in the body during lung cancer, and the current status of miRNA therapeutics for lung cancer treatment. We believe that the article will significantly appeal to a broad readership of oncologists, environmentalists, and those who work in the field of (bio)energy. It may also gain the policymakers' attention to establish better health policies and regulations about air pollution, for example, by promoting (bio)fuel exploration, production, and consumption.

Abstract Image

靶向微小RNA是一种很有前途的抗癌治疗策略,用于治疗交通相关的空气污染介导的肺癌癌症。
由于人类高度依赖化石燃料,空气污染物越来越多地排放到大气中。风速和风向有助于空气污染在地理/人口边界上的高度分散性和不受控制的性质,使其成为全球关注的主要问题之一。除了气候变化,空气污染还被发现与各种疾病有关,如癌症。癌症是世界上最常见的癌症,已被发现与交通相关的空气污染有关。已经进行了研究和政治努力来探索绿色/可再生能源。然而,以目前的强度进行的这些努力无法满足对化石燃料日益增长的需求。更具体地说,俄乌战争等政治紧张局势、经济紧张局势(如中美经济紧张局势)和其他问题(如疫情、高通胀率和贫困)严重阻碍了逐步淘汰化石燃料。在这种情况下,越来越多的全球人口将面临与交通相关的空气污染,这证明了目前癌症患者人数的上升趋势。为了对抗这种健康负担,必须设计出具有更高效率和特异性的新型治疗方法。潜在的“生命改变者”选择之一是基于微小RNA(miRNA)的治疗,以靶向致癌基因的表达。也就是说,这篇综述讨论了交通相关的空气污染与癌症的关系,癌症期间体内固有miRNA的变化,以及miRNA治疗癌症的现状。我们相信,这篇文章将极大地吸引肿瘤学家、环保主义者和(生物)能源领域工作人员的广大读者。它还可能引起决策者的注意,制定更好的空气污染卫生政策和法规,例如,通过促进(生物)燃料的勘探、生产和消费。
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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来源期刊
CiteScore
17.00
自引率
0.00%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Contemporary biomedical research is on the threshold of an era in which physiological and pathological processes can be analyzed in increasingly precise and mechanistic terms.The transformation of biology from a largely descriptive, phenomenological discipline to one in which the regulatory principles can be understood and manipulated with predictability brings a new dimension to the study of cancer and the search for effective therapeutic modalities for this disease. Cancer and Metastasis Reviews provides a forum for critical review and discussion of these challenging developments. A major function of the journal is to review some of the more important and interesting recent developments in the biology and treatment of malignant disease, as well as to highlight new and promising directions, be they technological or conceptual. Contributors are encouraged to review their personal work and be speculative.
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