Gut health has been associated mainly with digestion, but scientists now know its influence extends much further. Your gut is home to trillions of microorganisms that play a vital role in everything from nutrient absorption to immune function. More recently, researchers have uncovered an important link between the gut and the respiratory system, known as the gut lung axis, highlighting how the health of your gut may also influence your lungs.
In this article, we'll explore what is the gut lung axis, how it works, the connection between gut health and lungs, and lifestyle habits for supporting a healthy microbiome.
What Is the Gut-Lung Axis?
If you've ever wondered what is the gut lung axis, the answer lies in the body's remarkable ability to communicate between organs. The gut-lung axis is a two-way communication network linking the digestive tract and the lungs through the immune system, the bloodstream and the millions of beneficial microorganisms that make up the gut microbiome. Rather than working independently, these systems constantly exchange signals that help regulate immune responses throughout the body.
Your gut microbiome consists of trillions of bacteria, fungi and other microorganisms, many of which play beneficial roles in maintaining health. These microbes produce compounds called microbial metabolites, including short-chain fatty acids, which help communicate with immune cells and influence how the body responds to inflammation. A healthy and diverse community of gut bacteria is thought to contribute to balanced immune function, while reduced microbial diversity—often called dysbiosis—may affect this communication.
Interestingly, the relationship works both ways. Just as the gut can influence the lungs, respiratory illnesses may also affect the gut microbiome. Researchers have observed changes in gut bacteria following some lung infections, suggesting that immune signalling travels in both directions along the gut lung axis. Although scientists are still uncovering exactly how these interactions work, it's becoming increasingly clear that maintaining a healthy gut microbiome may benefit more than just digestion.
How Your Gut Microbiome Supports Your Immune System
Your gut is often described as the centre of immune health, and for good reason. Around 70% of the body's immune cells are associated with the gastrointestinal tract, where they constantly interact with the microorganisms that make up your gut microbiome. This close relationship allows your body to recognise potential threats while maintaining tolerance towards beneficial microbes and harmless substances like food.
Beneficial Gut Bacteria Help Train Your Immune System
Beneficial bacteria do much more than assist with digestion. From early in life, they help educate the immune system by teaching it when to respond and when to remain calm. This balanced response is essential because an overactive immune system can contribute to unnecessary inflammation, while an underactive one may struggle to respond effectively to invading pathogens.
A healthy microbiome also competes with less desirable microorganisms for space and nutrients, helping maintain a balanced gut environment. The greater the diversity of beneficial bacteria, the more resilient your gut ecosystem tends to be.
Short-Chain Fatty Acids: Small Compounds with a Big Role
As beneficial bacteria ferment dietary fibre, they produce compounds known as Short-Chain Fatty Acids (SCFAs), including butyrate, acetate and propionate. These naturally occurring compounds provide energy for the cells lining the colon and play an important role in maintaining gut health.
Research suggests that SCFAs also help regulate immune activity and support communication between the gut and other parts of the body, including the lungs. While studies are ongoing, these microbial metabolites are considered one of the key messengers involved in the gut lung axis microbiome.
A Healthy Gut Barrier Supports Overall Wellbeing
The lining of your digestive tract acts as a protective barrier, allowing nutrients to enter the bloodstream while helping keep unwanted substances out. Beneficial bacteria, together with the mucus lining of the gut and specialised immune cells, all contribute to maintaining this barrier.
Diet and lifestyle factors, including adequate fibre intake, can help support a healthy gut environment and normal digestive function. A comprehensive formula like P3 Gut Builder, that includes prebiotics, probiotics and postbiotics may provide broader support for the gut microbiome than probiotics alone.
Supporting a Balanced Inflammatory Response
Inflammation is a normal part of the immune response, helping the body repair itself and defend against infection. However, it's equally important that inflammation is well regulated once the threat has passed.
A diverse gut microbiome appears to play a role in supporting this balance by influencing immune signalling throughout the body. Although researchers continue to study these complex interactions, maintaining a healthy microbiome is increasingly recognised as one of the foundations of long-term immune health.

Can Gut Health Affect Your Lungs?
Although the gut and lungs are located in different parts of the body, research suggests they're more connected than we once thought. Through the gut lung axis, beneficial gut bacteria communicate with immune cells that circulate throughout the body, including those that help protect the respiratory tract. This ongoing communication may influence how the immune system responds to everyday environmental challenges, making the gut an important part of overall respiratory wellbeing.
One of the key areas researchers are exploring is the relationship between gut microbiome diversity and lung health. Studies suggest that a diverse microbiome is associated with more balanced immune responses, while reduced microbial diversity may be linked to increased inflammation.
Scientists are also investigating how microbial metabolites, such as short-chain fatty acids, travel through the bloodstream and influence immune activity in the lungs. While this research is promising, it's still developing, and more high-quality human studies are needed to better understand these mechanisms.
The gut lung axis asthma connection has also become an area of growing interest. Early research indicates that the composition of the gut microbiome, particularly during infancy and early childhood, may influence immune development and could play a role in respiratory conditions such as asthma.
Researchers are also exploring how gut health may affect recovery from seasonal illnesses and support respiratory wellbeing through normal immune function. While these findings are encouraging, they should be viewed as part of an emerging field rather than evidence of cause and effect.
Lifestyle Habits That Support the Gut-Lung Axis
Supporting the gut lung axis doesn't rely on a single food or supplement. Instead, it's about creating daily habits that encourage a healthy and diverse gut microbiome. Many of the same lifestyle choices that benefit digestive health can also help support normal immune function and overall wellbeing.
Eat More Fibre
Dietary fibre is one of the most important nutrients for your gut microbiome because it provides fuel for beneficial bacteria. As these bacteria ferment fibre, they produce short-chain fatty acids that help maintain gut health and support communication between the gut and the immune system. Aim to include a variety of fibre-rich foods such as vegetables, fruit, legumes, whole grains, nuts and seeds each day.
Include Fermented Foods
Fermented foods can introduce beneficial microorganisms and support microbial diversity as part of a balanced diet. Foods such as yoghurt with live cultures, kefir, kimchi, sauerkraut and miso are popular choices that can complement an overall gut-friendly eating pattern.
Exercise Regularly
Regular physical activity has been associated with greater gut microbiome diversity and improved overall health. You don't need intense workouts to experience the benefits—even moderate activities like walking, swimming or cycling can support both digestive and respiratory health when performed consistently.
Prioritise Quality Sleep
Sleep plays an essential role in immune regulation and recovery. Poor or inconsistent sleep may affect both the gut microbiome and immune function over time. Establishing a regular sleep routine and aiming for seven to nine hours of quality sleep each night can help support your overall health.
Manage Stress
Chronic stress doesn't just affect your mood—it can also influence the gut microbiome through what's known as the gut-brain axis. Finding healthy ways to manage stress, whether through mindfulness, exercise, spending time outdoors or connecting with others, may have positive effects on both gut health and immune resilience.
Avoid Unnecessary Antibiotics
Antibiotics are invaluable when prescribed for bacterial infections, but they can also reduce populations of beneficial gut bacteria. It's important to use antibiotics only when recommended by a healthcare professional and follow their advice on supporting your gut during and after treatment.
Don't Smoke
Smoking is well known for its harmful effects on lung health, but it may also alter the composition of the gut microbiome and contribute to inflammation throughout the body. Quitting smoking is one of the most effective steps you can take to support both your respiratory system and your gut.
Can Probiotics Help Support the Gut-Lung Axis?

As interest in the gut lung axis microbiome continues to grow, researchers are also investigating whether probiotics may play a role in supporting immune and respiratory health. While some studies have reported encouraging findings, it's important to remember that not all probiotics are the same. Different strains perform different functions, and results seen with one strain can't automatically be applied to another. Current evidence suggests that probiotics may help support a healthy gut microbiome, but more research is needed to understand how specific strains influence the gut-lung axis and respiratory wellbeing.
If you're considering a probiotic, look for products manufactured to high quality standards with transparent ingredient lists and evidence-based formulations. Alternatively, a comprehensive formula that includes prebiotics, probiotics and postbiotics may provide broader support for the gut microbiome than probiotics alone.
For example, P3 Gut Builder combines all three in a carefully controlled slow-fermentation process and features Meluka's proprietary Lactobacillus rhamnosus Beebiotic MAP01® strain, developed through years of research to help support a healthy and diverse gut microbiome. While no probiotic can prevent or treat illness, maintaining a healthy microbiome can be a valuable part of supporting your overall immune health and wellbeing.
Looking After Your Gut Supports Your Overall Wellbeing
The connection between the gut and the lungs is a fascinating area of research that continues to evolve. While scientists are still uncovering exactly how the gut lung axis works, current evidence suggests that the health of your gut microbiome plays an important role in supporting normal immune function and may also influence respiratory wellbeing. This growing understanding reinforces that looking after your gut isn't just about digestion—it's part of maintaining your overall health.
Frequently Asked Questions
What foods are best for supporting the gut-lung axis?
A diet rich in plant-based foods provides the fibre your gut bacteria need to thrive. Aim to eat a variety of vegetables, fruit, whole grains, legumes, nuts and seeds, and consider including fermented foods such as yoghurt, kefir, kimchi and sauerkraut. Eating a diverse range of foods helps encourage a more diverse gut microbiome.
Can antibiotics affect the gut microbiome?
Yes. While antibiotics are important for treating bacterial infections, they can also reduce beneficial gut bacteria. This temporary change to the microbiome may take time to recover from, which is why antibiotics should only be used when prescribed by a healthcare professional.
Is there a link between the gut-lung axis and asthma?
Researchers are actively studying the gut lung axis asthma connection. Early evidence suggests that the composition of the gut microbiome may influence immune development and inflammatory responses associated with asthma, particularly early in life. While these findings are promising, more clinical research is needed before firm conclusions can be drawn.
What is the gut-lung axis?
The gut lung axis is the two-way communication network between the gut microbiome, the immune system and the lungs. Beneficial gut bacteria produce compounds that influence immune signalling throughout the body, while changes in lung health may also affect the gut microbiome.
Can acid reflux from poor gut health cause coughing?
Yes, acid reflux can sometimes trigger a chronic cough when stomach acid irritates the throat or airways. While gut health and digestion may influence reflux symptoms, a persistent cough should always be assessed by a healthcare professional to determine the underlying cause.
Can digestive problems affect your breathing?
Some digestive conditions, such as acid reflux or severe abdominal bloating, can make breathing feel uncomfortable or contribute to coughing in some people. This is different from the gut-lung axis, which describes how the gut microbiome and lungs communicate through the immune system.
Does improving gut health help you recover from seasonal illnesses?
A healthy gut microbiome supports normal immune function, which plays an important role in recovery and overall wellbeing. While improving gut health isn't a treatment for seasonal illnesses, maintaining a balanced diet, healthy lifestyle and diverse microbiome may help support your body's natural immune responses.
References
- Dang, A. T., & Marsland, B. J. (2019). Microbes, metabolites, and the gut–lung axis. Mucosal Immunology, 12(4), 843–850. Monash University research page
- PubMed – PMID 42052832. View on PubMed
- Budden, K. F., Gellatly, S. L., Wood, D. L., Cooper, M. A., Morrison, M., Hugenholtz, P., & Hansbro, P. M. (2016). Emerging pathogenic links between microbiota and the gut-lung axis. Nature Reviews Microbiology, 15(1), 55–63. University of Queensland – UQ eSpace
- Wikipedia contributors. Short-chain fatty acid. Wikipedia. Wikipedia – Short-chain fatty acids