4 surprising ways climate change is hurting your lungs

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What you need to know

  • Climate change is causing weather conditions that are increasingly harmful to our lungs.
  • A recent study found that dangerous events caused by high heat and humidity have become more common.
  • Extreme heat, poor air quality, and intensified allergy seasons brought on by climate change can create respiratory issues and worsen existing lung conditions.

The weather can have unexpected impacts on your lungs’ short and long-term health. Climate change has increased the frequency of “wet bulb” events, which occur in hot weather when high humidity prevents sweat from evaporating and cooling the body.

“These are, in my opinion, one of the scariest byproducts of climate change,” said Maiya May, a science communicator and host of PBS’s Weathered: Earth’s Extremes, in a June video

She emphasized that though wet bulb events have been “relatively rare historically,” they are becoming more common due to climate change.

At the current rate of global warming, much of the world’s population will face wet bulb events within a decade. Here’s what that means for the health of your lungs. 

Extreme heat makes breathing harder 

You may find yourself working to catch your breath in hot weather. That’s because breathing in hot air can cause narrowing of the airways (bronchoconstriction). When airways are tighter, you may start to wheeze, cough, and struggle to breathe, similar to an asthma attack. 

Humidity increases the risk of bronchoconstriction in warm weather, especially for people with existing respiratory conditions like asthma and chronic obstructive pulmonary disease.

High temperature can cause “lung sunburn” 

Similar to how unprotected exposure to the sun damages skin cells and causes sunburn, prolonged exposure to heat and air pollution damages the lungs. “Lung sunburn” occurs when ozone, an air pollutant worsened by heat, causes lung irritation and inflammation.

“It’s not like a direct burn on the lung,” Angela Tin, board member of the Illinois Pollution Control Board, told the Indianapolis Star in 2023, when she led the American Lung Association’s Clean Air Initiative. “It’s high heat causing high ozone and then prolonged exposure can affect the lungs.” 

Warmer temperatures worsen allergies

Climate change has led to higher levels of pollen and longer allergy seasons, contributing to lung irritation and breathing problems. 

“Climate change fuels a perfect storm of conditions that make allergy season worse for people with pollen allergy,” said Kenneth Mendez, president and chief executive officer of the Asthma and Allergy Foundation, in a 2024 statement

“Now, we see both more days of exposure to pollen and higher daily pollen counts leading to more intense, longer-lasting symptoms.”

Around a quarter of adults and a fifth of children in the United States have seasonal allergies, most caused by pollen.

Extreme temperatures worsen existing lung issues 

Many factors intensified by climate change—heat, humidity, pollen, air pollution—can also worsen respiratory diseases like asthma and chronic obstructive pulmonary disease. Extreme heat and pollution can trigger flare-ups of both conditions and worsen symptoms like shortness of breath.

Notably, extreme cold can also trigger lung conditions. Like hot air, cold air can cause irritation and narrowing of the airways. Cold weather is also associated with a rise in respiratory viruses like the cold and flu, which can be particularly dangerous for people with existing lung issues. 

How to keep your lungs safe in the changing climate

Monitor local weather and air quality: The CDC’s HeatRisk tracker allows you to monitor local heat and air quality conditions and offers tips to stay safe based on your zip code. Additionally, AirNow.gov provides real-time air quality alerts through EnviroFlash, an automated email and text message notification system.

Be aware of individual risks: According to the American Lung Association, those who are at increased risk from high heat include “outdoor workers, the elderly, children, pregnant individuals, individuals with pre-existing health conditions (including people with lung disease), people experiencing homelessness, individuals living in manufactured [mobile] homes, and those living in low-income communities.” 

Have a plan to stay cool: Take steps to protect against extreme weather and air quality conditions that can harm your lungs. Stay indoors if possible, and drink plenty of fluids. If you don’t have access to air conditioning, find a cooling station. If you have to go outside, wear loose-fitting and light-colored clothing, stay in the shade, and avoid strenuous physical activities. 

For more information about lung health in any weather, talk to your health care provider.

This article first appeared on Public Good News and is republished here under a Creative Commons Attribution-NoDerivatives 4.0 International License.

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  • Uric Acid’s Extensive Health Impact (And How To Lower It)

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    Uric Acid’s Extensive Health Impact (And How To Lower It)

    This is Dr. David Perlmutter. He’s a medical doctor, and a Fellow of the American College of Nutrition. He’s a member of the Editorial Board for the Journal of Alzheimer’s Disease, and has been widely published in many other peer-reviewed journals.

    What does he want us to know?

    He wants us to know about the health risks of uric acid (not something popularly talked about so much!), and how to reduce it.

    First: what is it? Uric acid is a substance we make in our own body. However, unlike most substances we make in our body, we have negligible use for it—it’s largely a waste product, usually excreted in urine.

    However, if we get too much, it can build up (and crystallize), becoming such things as kidney stones, or causing painful inflammation if it shows up in the joints, as in gout.

    More seriously (unpleasant as kidney stones and gout may be), this inflammation can have a knock-on effect triggering (or worsening) other inflammatory conditions, ranging from non-alcoholic fatty liver disease, to arthritis, to dementia, and even heart problems. See for example:

    How can we reduce our uric acid levels?

    Uric acid is produced when we metabolize purine nucleotides, which are found in many kinds of food. We can therefore reduce our uric acid levels by reducing our purine intake, as well as things that mess up our liver’s ability to detoxify things. Offsetting the values for confounding variables (such as fiber content, or phytochemicals that mitigate the harm), the worst offenders include…

    Liver-debilitating things:

    • Alcohol (especially beer)
    • High-fructose corn syrup (and other fructose-containing things that aren’t actual fruit)
    • Other refined sugars
    • Wheat / white flour products (this is why beer is worse than wine, for example; it’s a double-vector hit)

    Purine-rich things:

    • Red meats and game
    • Organ meats
    • Oily fish, and seafood (great for some things; not great for this)

    Some beans and legumes are also high in purines, but much like real fruit has a neutral or positive effect on blood sugar health despite its fructose content, the beans and legumes that are high in purines, also contain phytochemicals that help lower uric acid levels, so have a beneficial effect.

    Eggs (consumed in moderation) and tart cherries have a uric-acid lowering effect.

    Water is important for all aspects of health, and doubly important for this.

    Hydrate well!

    Lifestyle matters beyond diet

    The main key here is metabolic health, so Dr. Perlmutter advises the uncontroversial lifestyle choices of moderate exercise and good sleep, as well as (more critically) intermittent fasting. We wrote previously on other things that can benefit liver health:

    How To Unfatty A Fatty Liver

    …in this case, that means the liver gets a break to recuperate (something it’s very good at, but does need to get a chance to do), which means that while you’re not giving it something new to do, it can quickly catch up on any backlog, and then tackle any new things fresh, next time you start eating.

    Want to know more about this from Dr. Perlmutter?

    You might like his article:

    An Integrated Plan for Lowering Uric Acid ← more than we had room for here; he also talks about extra things to include in your diet/supplementation regime for beneficial effects!

    And/or his book:

    Drop Acid: The Surprising New Science of Uric Acid―The Key to Losing Weight, Controlling Blood Sugar, and Achieving Extraordinary Health

    …on which much of today’s main feature was based.

    Take care!

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  • Does fasting dull your mental edge? We crunched the data for the best advice

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    Ever worried that skipping breakfast might leave you foggy at work? Or that intermittent fasting would make you irritable, distracted and less productive?

    Snack food ads warn us that “you’re not you when you’re hungry”, reinforcing a common belief that eating is essential to keep our brains sharp.

    This message is deeply woven into our culture. We’re told constant fuelling is the secret to staying alert and efficient.

    Yet time-restricted eating and intermittent fasting have become hugely popular wellness practices over the past decade. Millions do it for long-term benefits, from weight management to improved metabolic health.

    This raises a pressing question: can we reap the health rewards of fasting without sacrificing our mental edge? To find out, we conducted the most comprehensive review to date of how fasting affects cognitive performance.

    Getty Images

    Why fast in the first place?

    Fasting isn’t just a trendy diet hack. It taps into a biological system honed over millennia to help humans cope with scarcity.

    When we eat regularly, the brain runs mostly on glucose, stored in the body as glycogen. But after about 12 hours without food, those glycogen stores dwindle.

    At that point, the body performs a clever metabolic switch: it begins breaking down fat into ketone bodies (for example, acetoacetate and beta-hydroxybutyrate), which provide an alternative fuel source.

    This metabolic flexibility, once crucial for our ancestors’ survival, is now being linked to a host of health benefits.

    Some of the most promising effects of fasting come from the way it reshapes processes inside the body. For instance, fasting activates autophagy, a kind of cellular “cleanup crew” that clears away damaged components and recycles them, a process thought to support healthier ageing.

    It also improves insulin sensitivity, allowing the body to manage blood sugar more effectively and lowering the risk of conditions such as type 2 diabetes.

    Beyond that, the metabolic shifts triggered by fasting appear to offer broader protection, helping reduce the likelihood of developing chronic diseases often associated with overeating.

    What the data showed

    These physiological benefits have made fasting attractive. But many hesitate to adopt it out of fear their mental performance will plummet without a steady supply of food.

    To address this, we conducted a meta-analysis, a “study of studies”, looking at all the available experimental research that compared people’s cognitive performance when they were fasting versus when they were fed.

    Our search identified 63 scientific articles, representing 71 independent studies, with a combined sample of 3,484 participants tested on 222 different measures of cognition. The research spanned nearly seven decades, from 1958 to 2025.

    After pooling the data, our conclusion was clear: there was no meaningful difference in cognitive performance between fasted and satiated healthy adults.

    People performed just as well on cognitive tests measuring attention, memory and executive function whether they had eaten recently or not.

    When fasting does matter

    Our analysis did reveal three important factors that can change how fasting affects your mind.

    First, age is key. Adults showed no measurable decline in mental performance when fasting. But children and adolescents did worse on tests when they skipped meals.

    Their developing brains seem more sensitive to fluctuations in energy supply. This reinforces longstanding advice: kids should go to school with a proper breakfast to support learning.

    Timing also seems to make a difference. We found longer fasts were associated with a smaller performance gap between fasted and fed states. This might be due to the metabolic switch to ketones, which can restore a steady supply of energy to the brain as glucose runs out.

    Performance in fasted individuals tended to be worse when tests were conducted later in the day, suggesting fasting might amplify the natural dips in our circadian rhythms.

    The type of test also mattered. When cognitive tasks involved neutral symbols or shapes, fasting participants performed just as well, or sometimes even slightly better.

    But when tasks included food-related cues, fasted participants slipped. Hunger doesn’t create universal brain fog, but it does make us more easily distracted when food is on our minds.

    What this means for you

    For most healthy adults, the findings offer reassurance: you can explore intermittent fasting or other fasting protocols without worrying that your mental sharpness will vanish.

    That said, fasting isn’t a one-size-fits-all practice. Caution is warranted with children and teens, whose brains are still developing and who appear to need regular meals to perform at their best.

    Similarly, if your job requires peak alertness late in the day, or if you’re frequently exposed to tempting food cues, fasting might feel harder to sustain.

    And of course, for certain groups, such as those with medical conditions or special dietary needs, fasting may not be advisable without professional guidance.

    Ultimately, fasting is best seen as a personal tool rather than a universal prescription. And its benefits and challenges will look different from person to person.

    David Moreau, Associate Professor of Psychology, University of Auckland, Waipapa Taumata Rau

    This article is republished from The Conversation under a Creative Commons license. Read the original article.

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  • This 10-Minute Habit Cuts Glucose Spikes by 30% (Everyone Should Do This)

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    Dr. Alex Wibberley explains:

    The steps we need to take

    The trick is: a 10-minute movement break!

    A study (cited in the video) found that a single 45-minute exercise session before sitting produced only a small effect on post-meal glucose spikes, whereas breaking up sitting with 10-minute light walks every 20 minutes reduced post-meal blood sugar spikes by about 30% compared with uninterrupted sitting.

    The problem with prolonged sitting (or rather, one problem of many), is that when you sit for long periods your muscles remain largely inactive, their insulin-independent pathway* shuts down, and glucose control relies mostly on insulin, which can lead to higher and longer-lasting glucose spikes if insulin function is already impaired.

    *contracting muscles can pull glucose from the blood through an insulin-independent pathway triggered simply by muscle activity, meaning movement itself helps clear sugar from the bloodstream.

    In particular, short activity after meals—such as walking for 5–10 minutes, climbing stairs, or moving around the house—can reduce the rise in blood sugar that begins roughly 15–30 minutes after eating.

    Note: if you spend 5–10 minutes clearing up the dinner-things walking back-and-to between kitchen and dining room, that’s it covered already! But time yourself once or twice, to see if it really does take that long, or if it just feels like it 😉 See if there are some other post-dinner chores you might build into the following few minutes, to enjoy the full benefit (and perhaps a cleaner/tidier house, as a bonus)!

    For more on all of this, enjoy:

    Click Here If The Embedded Video Doesn’t Load Automatically!

    Want to learn more?

    You might also like:

    The Japanese Health Initiative That Lowers Blood Sugars

    Take care!

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  • Artichoke vs Edamame – Which is Healthier?

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    Our Verdict

    When comparing artichoke to edamame, we picked the edamame.

    Why?

    Artichoke is great, but edamame is better by most metrics:

    In terms of macros, artichoke has slightly more carbs and fiber, while edamame has a lot more protein; the scale of difference makes this first round a win for edamame.

    In the category of vitamins, artichoke has slightly more of vitamins B3 and C, while edamame has a lot more of vitamins B1, B2, B5, B6, B7, B9, E, and K, winning easily.

    Looking at minerals, artichoke is not higher in any minerals, while edamame has more calcium, copper, iron, magnesium, manganese, phosphorus, potassium, and zinc, sweeping another round for edamame.

    Adding up the sections makes for a very clear overall win for edamame, but by all means do enjoy either or both, as diversity is best!

    Want to learn more?

    You might like:

    Why You Can’t Skimp On Amino Acids ← edamame is a good source of all essential amino acids

    Enjoy!

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  • How (And Why) To Do Foot-Rolling

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    Foot rolling isn’t just for pain relief—it helps rewire nerve connections, improve balance, and support overall well-being.

    There are some things to bear in mind if you want to benefit, though:

    On the ball

    With the ball underfoot, roll the ball back and forth and in small circles for a couple of minutes, and:

    • if you find a tender spot, press there and roll for about 15 seconds before continuing
    • if doing this while seated, lean forwards slightly to apply your weight to it at the correct angle
    • if you can, do it while standing though, as this will enable you to get the full benefits of not just the foot pressure, but also the improvement to your balance and stabilization muscles

    Because of the nerve connections, this can (especially if you use a massage ball, the kind with many small blunt spikes) also engage your parasympathetic nervous system, thus activating your relaxation response, which means lowered cortisol levels, improved digestion and healing, and various other “rest and digest” benefits that one doesn’t get while in fight-or-flight mode or even in neutral.

    For more on this plus a visual demonstration, enjoy:

    Click Here If The Embedded Video Doesn’t Load Automatically!

    Want to learn more?

    You might also like:

    The Vagus Nerve (And How You Can Make Use Of It) ← the vagus nerve doesn’t go all the way down to the feet itself, of course, but the message will get up to the vagus nerve anyway

    Take care!

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  • What you need to know about H5N1 bird flu

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    On May 30, the Centers for Disease Control and Prevention reported that a Michigan dairy worker tested positive for H5N1 bird flu. It was the fourth person to test positive for H5N1 in the United States, following another recent case in Michigan, an April case in Texas, and an initial case in Colorado in 2022

    H5N1 bird flu has been spreading among bird species in the U.S. since 2021, killing millions of wild birds and poultry. In late March 2024, H5N1 bird flu was found in cows for the first time, causing an outbreak in dairy cows across several states. 

    U.S. public health officials and researchers are particularly concerned about this outbreak because the virus has infected cows and other mammals and has spread from a cow to a human for the first time. 

    This bird flu strain has shown to not only make wild mammals, including marine mammals and bears, very sick but to also cause high rates of death among species, says Jane Sykes, professor of small animal medicine at the University of California, Davis, School of Veterinary Medicine. 

    “And now that it has been found in cattle, [it] raises particular concern for spread to all the animal species, including people,” adds Sykes.

    Even though the risk for human infection is low and there has never been human-to-human transmission of H5N1, there are several actions you can take to stay protected. Read on to learn more about H5N1 bird flu and the current outbreak. 

    What is H5N1? 

    H5N1 is a type of influenza virus that most commonly affects birds, causing them severe respiratory illness and death. 

    The H5N1 strain first emerged in China in the 1990s, and it has continued to spread around the world since then. In 1997, the virus spread from animals to humans in Hong Kong for the first time, infecting 18 people, six of whom died. 

    Since 2020, the H5N1 strain has caused “an unprecedented number of deaths in wild birds and poultry in many countries,” according to the World Health Organization

    Even though bird flu is rare in humans, an H5N1 infection can cause mild to severe illness and can be fatal in some cases. It can cause eye infection, upper respiratory symptoms, and pneumonia. 

    What do we know about the 2024 human cases of H5N1 in the U.S.?

    The Michigan worker who tested positive for H5N1 in late May is a dairy worker who was exposed to infected livestock. They were the first to experience respiratory symptoms—including a cough without a fever—during the current outbreak. They were given an antiviral and the CDC says their symptoms are resolving.

    The Michigan farm worker who tested positive earlier in May only experienced eye-related symptoms and has already recovered. And the dairy worker who tested positive for the virus in Texas in April only experienced eye redness as well, was treated with an antiviral medication for the flu, and is recovering. 

    Is H5N1 bird flu in the milk we consume?

    The Food and Drug Administration has found traces of H5N1 bird flu virus in raw or unpasteurized milk. However, pasteurized milk is safe to drink. 

    Pasteurization, the process of heating milk to high temperatures to kill harmful bacteria (which the majority of commercially sold milk goes through), deactivates the virus. In 20 percent of pasteurized milk samples, the FDA found small, inactive (not live nor infectious) traces of the virus, but these fragments do not make pasteurized milk dangerous.

    In a recent Infectious Diseases Society of America briefing, Dr. Maximo Brito, a professor at the University of Illinois College of Medicine, said that it’s important for people to avoid “drinking unpasteurized or raw milk [because] there are other diseases, not only influenza, that could be transmitted by drinking unpasteurized milk.” 

    What can I do to prevent bird flu?

    While the risk of H5N1 infection in humans is low, people with exposure to infected animals (like farmworkers) are most at risk. But there are several actions you can take to stay protected. 

    One of the most important things, according to Sykes, is taking the usual precautions we’ve taken with COVID-19 and other respiratory viruses, including frequent handwashing, especially before eating. 

    “Handwashing and mask-wearing [are important], just as we learned from the pandemic,” Sykes adds. “And it’s not wearing a mask at all times, but thinking about high-risk situations, like when you’re indoors in a crowded environment, where transmission of respiratory viruses is much more likely to occur.” 

    There are other steps you can take to prevent H5N1, according to the CDC:

    • Avoid direct contact with sick or dead animals, including wild birds and poultry.
    • Don’t touch surfaces that may have been contaminated with animal poop, saliva, or mucus. 
    • Cook poultry and eggs to an internal temperature of 165 degrees Fahrenheit to kill any bacteria or virus, including H5N1. Generally, avoid eating undercooked food. 
    • Avoid consuming unpasteurized or raw milk or products like cheeses made with raw milk. 
    • Avoid eating uncooked or undercooked food.
    • Poultry and livestock farmers and workers and bird flock owners should wear masks and other personal protective equipment “when in direct or close physical contact with sick birds, livestock, or other animals; carcasses; feces; litter; raw milk; or surfaces and water that might be contaminated with animal excretions from potentially or confirmed infected birds, livestock, or other animals.” (The CDC has more recommendations for this population here.)

    Is there a vaccine for H5N1?

    The CDC said there are two candidate H5N1 vaccines ready to be made and distributed in case the virus starts to spread from person to person, and the country is now moving forward with plans to produce millions of vaccine doses.

    The FDA has approved several bird flu vaccines since 2007. The U.S. has flu vaccines in stockpile through the National Pre-Pandemic Influenza Vaccine Stockpile program, which allows for quick response as strains of the flu virus evolve.  

    Could this outbreak become a pandemic?

    Scientists and researchers are concerned about the possibility of H5N1 spreading among people and causing a pandemic. “Right now, the risk is low, but as time goes on, the potential for mutation to cause widespread human infection increases,” says Sykes. 

    “I think this virus jumping into cows has shown the urgency to keep tracking [H5N1] a lot more closely now,” Peter Halfmann, research associate professor at the University of Wisconsin-Madison’s Influenza Research Institute tells PGN. “We have our eyes on surveillance now. … We’re keeping a much closer eye, so it’s not going to take us by surprise.”

    This article first appeared on Public Good News and is republished here under a Creative Commons license.

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