Scientists call for urgent action to prevent immune-mediated illnesses caused by climate change and biodiversity loss
Scientists call for urgent action to prevent immune-mediated illnesses caused by climate change and biodiversity loss EurekAlert
Climate Change and Immune-Mediated Diseases: A Call for Urgent Action
The ecosystems we live in don’t work the way they used to — and that’s bad for our health. Climate change, pollution, and falling biodiversity are all damaging our immune systems. The lack of positive environmental exposures to build the strength of our immune systems, and the increasing negative exposures which attack those systems, are combining to cause a dramatic rise in immune-mediated diseases like asthma and cancer. Measures to protect against this could have a very powerful return on investment: an estimated $1 spent on climate change mitigation saves $3 on healthcare costs. A global team of researchers writing in Frontiers in Science call for urgent action to safeguard a healthy future.
“Increased emission of pollutants has led to fundamental changes in our environment,” said first author Prof Ioana Agache of the Transilvania University of Brasov, Romania, and co-chair of the European Academy of Allergy & Clinical Immunology’s Guidelines on Environmental Science for Allergy and Asthma. “From an evolutionary perspective, the immune system is constantly molded to respond to the environment and maintain health; however, the recent changes have been too rapid for our immune system to adequately adapt.”
Planetary Health is Preventive Health
The effects of anthropogenic climate change and pollution on our bodies are complex, but a crucial factor is the damage they inflict on our immune systems. These develop over time in response to environmental factors — positive or negative.
- Being exposed to toxic pollutants damages the epithelial barrier, leading to immune dysregulation, which leads to autoimmune disorders and cancer.
- A lack of exposure to suitable biodiversity means that immune systems are not properly calibrated, driving up the rates of allergies and asthma.
- Rising temperatures alter pollen seasons, so that the season starts earlier and lasts longer, and that the pollen released provokes stronger allergic reactions, increasing the prevalence and severity of pollen allergies.
Climate change is increasing the frequency and severity of natural disasters, with significant secondary health impacts. Higher temperatures increase the probability of wildfires, which release air particulate matter and other pollutants. These pollutants can spread for hundreds of kilometers and linger long after the fire has been put out, contributing to immune dysregulation and worsening a range of health issues. They also contribute to global warming, increasing the probability of future wildfires.
“As a physician-scientist, I have seen first-hand how air pollution from wildfires affect respiratory health,” said Prof Kari Nadeau of Harvard University, senior author. “I have also seen the impact of lengthening pollen season and increased pollen allergenicity on allergies and asthma.”
These impacts fall most heavily on the most vulnerable members of society. An inadequate diet, a lack of access to the natural environment, and a lack of safe, clean housing all increase the chances of developing immune-mediated diseases. Measures to fight the health impacts of climate change must explicitly include equity, to ensure a global recovery from a global threat.
Adapt and Mitigate
The scientists call for a two-pronged approach: adapt to climate change by improving diets, housing, access to nature and agricultural practices, and mitigate its impact by cutting emissions, improving air quality, and fostering environmental biodiversity. To take effective action, however, we need data to inform new measures and track the progress of existing ones.
Agache and colleagues focus on three key data initiatives: biomarkers, economic models, and data science techniques. Biomarkers will track immune-mediated diseases like cancer caused by air pollution, while new economic models can quantify the harm done by climate change and the cost benefits of remedial action. Meanwhile, data scientists are developing new approaches for unraveling the multifactorial influences of our altered environment on our immune systems.
“The impacts of climate change are complex, with multifaceted effects,” said Dr Vanitha Sampath of Harvard University, author. “AI can assist with the convergence and analysis of disparate datasets to identify threats and inform remediation.”
“It is clear that planetary health and human health are interconnected,” concluded Nadeau. “I hope by sharing current knowledge on how our actions adversely affect planetary and human health, and some of the actions we can take to adapt to and mitigate these changes, we can empower individual citizens as well as local, national, and international organizations to work towards a better future.”
Journal
Frontiers in Science
Method of Research
Literature review
Subject of Research
Not applicable
Article Title
Immune-mediated disease caused by climate change-associated environmental hazards: mitigation and adaptation
Article Publication Date
4-Apr-2024
COI Statement
CA is chair of the European Academy of Allergy and Clinical Immunology Guidelines on Environmental Science in Allergic diseases and Asthma and is Editor-in-Chief of Allergy. JB is a Physician Member of the California Air Resources Board a component agency of Cal/EPA. CS
SDGs, Targets, and Indicators Analysis
1. Which SDGs are addressed or connected to the issues highlighted in the article?
- SDG 3: Good Health and Well-being
- SDG 13: Climate Action
- SDG 15: Life on Land
The article discusses the impact of climate change, pollution, and falling biodiversity on our immune systems and the rise of immune-mediated diseases. This connects to SDG 3, which focuses on ensuring healthy lives and promoting well-being for all at all ages. Additionally, the article emphasizes the need for climate change mitigation and adaptation measures, which aligns with SDG 13 on climate action. The importance of biodiversity is also highlighted, linking to SDG 15, which aims to protect, restore, and promote sustainable use of terrestrial ecosystems.
2. What specific targets under those SDGs can be identified based on the article’s content?
- SDG 3.9: By 2030, substantially reduce the number of deaths and illnesses from hazardous chemicals and air, water, and soil pollution and contamination.
- SDG 13.2: Integrate climate change measures into national policies, strategies, and planning.
- SDG 15.1: By 2020, ensure the conservation, restoration, and sustainable use of terrestrial and inland freshwater ecosystems and their services.
The article highlights the need to address hazardous chemicals and air pollution to reduce immune-mediated diseases, aligning with SDG 3.9. It also emphasizes the integration of climate change measures into policies and planning, supporting SDG 13.2. Additionally, the importance of conserving and restoring terrestrial ecosystems is emphasized, which relates to SDG 15.1.
3. Are there any indicators mentioned or implied in the article that can be used to measure progress towards the identified targets?
- Indicator for SDG 3.9: Number of deaths and illnesses attributed to hazardous chemicals and air, water, and soil pollution and contamination.
- Indicator for SDG 13.2: Extent of integration of climate change measures into national policies, strategies, and planning.
- Indicator for SDG 15.1: Proportion of important sites for terrestrial and freshwater biodiversity that are covered by protected areas.
The article does not explicitly mention specific indicators, but the identified targets can be measured using the indicators mentioned above. These indicators provide a quantitative way to track progress towards reducing deaths and illnesses from pollution (SDG 3.9), integrating climate change measures into policies (SDG 13.2), and conserving terrestrial and freshwater biodiversity (SDG 15.1).
4. Table: SDGs, Targets, and Indicators
SDGs | Targets | Indicators |
---|---|---|
SDG 3: Good Health and Well-being | 3.9: By 2030, substantially reduce the number of deaths and illnesses from hazardous chemicals and air, water, and soil pollution and contamination. | Number of deaths and illnesses attributed to hazardous chemicals and air, water, and soil pollution and contamination. |
SDG 13: Climate Action | 13.2: Integrate climate change measures into national policies, strategies, and planning. | Extent of integration of climate change measures into national policies, strategies, and planning. |
SDG 15: Life on Land | 15.1: By 2020, ensure the conservation, restoration, and sustainable use of terrestrial and inland freshwater ecosystems and their services. | Proportion of important sites for terrestrial and freshwater biodiversity that are covered by protected areas. |
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Source: eurekalert.org
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