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Eczema

Eczema is frequently called atopic dermatitis because it was noted to occur in individuals with allergic symptoms, e.g., allergic rhinitis (hay fever) and asthma. The term atopic simply means allergic. Even though eczema was considered to be an allergic problem, allergy seems to be less likely as our understanding of the disease increases. Physicians know that eczema is a very complex disease and contains allergic as well as non-allergic elements in different individuals. As a result, the treatment of every individual may vary.

While the causes of eczema continue to be investigated, certain things are known about the disease. The skin is much more easily irritated than normal skin. Dryness of the skin is a primary component and results in significant itching. Eczema is known as “the itch that rashes”. Itching is made worse by irritants on the skin. Winter months are particularly bothersome because of the dry winter air. Flares in the summer months can occur after exercise because sweat is a significant irritant. Citrus or some vegetables, e.g., tomato, can act as a primary irritant when they touch the skin. Stress in some individuals can affect the skin. While emotional factors may play a role in flaring eczema, they are not considered a primary source of causing the onset of eczema, if it is not already present.

Eczema occurs in about 3% of the population. In about 80% of those individuals, the onset occurs in the first year of life. One-half are free of disease by age 2 years, about one-fourth by the end of adolescence, and the remaining one-fourth will continue to have eczema into adult life. Some individuals do not have the onset of symptoms until adolescence or adulthood.

Treatment is multifaceted and includes lifestyle modification as well as various types of medication. A portion of treatment will be listed in the accompanying tables. Adequate attention to clothing, diet manipulation, and attention to the emotional well-being of the affected patient are very important. It is preferable for a patient with eczema to wear clothing which will not irritate the skin; soft cotton material would be best. The room temperature should be kept moderate with controlled humidity (between 35-50%). Overheating and perspiration should be avoided.

Some investigators believe there is a genetic tendency for eczema with approximately 50% of eczema patients ultimately developing allergic rhinitis and/or asthma. This is compared to about 20% without the presence of eczema. While allergy skin testing and allergy injection treatment are usually helpful in cases of allergic rhinitis and/or asthma, it is generally agreed that this is often not the case with eczema. In some individuals, starting allergy shots for allergic rhinitis and/or asthma may actually result in significant flaring of the eczema.

Prevention

  • Trim fingernails short
  • Cotton gloves at night if needed to decrease scratching
  • Clothing should be double rinsed after washing to remove all residual detergent (irritants)
  • Avoid excessive room temperatures
  • Wear light, non-occlusive clothing (e.g., cotton instead of polyester)
  • Keep the bedroom moderate (cool) and avoid excessive bed clothing
  • Allergen contact or ingestion avoidance (e.g., foods, pets, dust mite) can reduce stimulation of the skin

Treatment

  • Bathing for moisturization, e.g., soaking in tepid water for 30-45 minutes at least once daily and if possible 2-3 times.
  • Within 2 minutes after getting out of the tub, a lubricating cream or ointment should be applied to help hold the moisture in the skin. Examples include Aquaphor, Curel, Moisturel, Eucerin, Keri, Lubriderm, Acid Mantle, Unibase, Vanicream, petrolatum, and chilled Noxzema,etc. Newer medications include Triceram/Certopic, Impruv, Mimyx, Nourica Repair, Cerave, Atopiclair, and Hylira. Some of the newer medications are by prescription only. None of the medications in the above list contain steroids.
  • In general, lotions should be avoided since they contain alcohol which may sting and provide limited moisture.
  • If marked irritation or weeping areas are present, wet wraps with a drying solution (e.g., Burrow’s solution, one tablet mixed in one quart of water is available by prescription) will avoid the stinging or burning sensation that can occur with bathing.
  • Addition of oil or similar substances to the bath water generally has little effect on increasing moisturization.
  • Pat dry with a soft towel; do not “rub” dry since this will remove natural, protective oils from the skin.
  • Showers do not add moisture to the skin and actually remove the protective oils from the skin resulting in increased dryness.
  • Topical steroids are the mainstay of therapy for more severe eczema. Ointments or creams are generally used.
  • Nonsteroidal medications that help the immune system in the skin may be necessary either in addition to or in place of topical steroids if the topical steroids are not adequate for relief. Examples of the nonsteroidal medications are Elidel and Protopic.
  • Antibiotics, topical and/or oral, may be needed if the lesions become infected. An alternative to antibiotics is the use of Clorox baths. One-quarter to one-half cup of Clorox in a full bath provides antibacterial activity that will treat all known bacterial infections. No resistant bacteria to Clorox are known.

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Study finds connection between air pollution and childhood peanut allergies

Exposure to higher levels of air pollution as a baby is linked to having a peanut allergy throughout childhood, according to a new study. And policies aimed at tackling poor air quality could potentially reduce the prevalence and persistence of peanut allergies, it stated.

The research, led by Murdoch Children’s Research Institute (MCRI) and the University of Melbourne, found being exposed to higher levels of air pollution from infancy was associated with increased odds of developing a peanut allergy and having the allergy persist across the first 10 years of life. However, the same association was not seen for egg allergy or eczema.

Published in the Journal of Allergy and Clinical Immunology, the study is the first to explore the link between air pollution and challenge-proven food allergy over the first decade of life. 

The research involved 5,276 children in Melbourne from the HealthNuts study, recruited at age one and followed-up at four, six and 10 years. The research team used estimates of the annual average concentration of fine particulate matter (PM2.5) and nitrogen dioxide (NO2) at each participant’s residential address at the time of each follow up.

MCRI Associate Professor Rachel Peters said the study found that higher levels of air pollution was a risk factor for the development and persistence of peanut allergies. And this was despite Melbourne having generally good air quality compared to our international counterparts, she said.

“The rise in allergy prevalence has occurred at a similar time to increased urbanization, leading to the belief that environmental factors may be contributing to high allergy rates.

Eczema and food allergy most often develop in infancy. Both immune conditions can naturally resolve over time, but for some they can persist throughout adolescence and into adulthood.”

This is the first study to use an oral food challenge, the gold-standard of food allergy diagnosis, to investigate the relationship between food allergy and air pollution.” ­ Rachel Peters, MCRI Associate Professor  

University of Melbourne’s Dr. Diego Lopez said the co-exposure of peanut allergens in the environment and air pollutants could be increasing the allergy risk.

“Air pollutants have an irritant and inflammatory effect that may boost the immune systems pro-allergic response, potentially triggering the development of food allergies,” he said.

“However, the underlying mechanisms of how air pollution increases the risk of a peanut allergy, and why eczema and egg allergy aren’t impacted in the same way, need to be explored further.” 

Allergic disease is one of Australia’s greatest public health challenges, with one in 10 developing a food allergy in their first year of life. 

Associate Professor Peters said policies aimed at tackling air pollution could potentially reduce the development and persistence of peanut allergy.

“The research highlights the importance of early-life interventions aimed at reducing exposure to air pollution, which could potentially prevent peanut allergies and other poor child health outcomes,” she said.

“Improving city design to support greater air quality regulation, better promoting public transport and switching to non-combustion fuels may help turn the tide on peanut allergy.”

Mae, 8, was diagnosed with peanut, diary and egg allergies at 8 months old after an allergic reaction saw her breakout in hives across her entire body. She has since gone onto have several anaphylaxis reactions.

Her mum, Eleanor Jenkin, said the most severe episode occurred five years ago during a food challenge at The Royal Children’s Hospital to check Mae’s tolerance for adding egg back into her diet.

“She was eating cupcakes as part of the challenge until she started to refuse to eat anymore,” she said. We thought she was just being fussy, but she began vomiting and lost consciousness. It was her first anaphylaxis and while it was scary, she returned to her normal self a few minutes after being given an adrenaline shot.”

Since then, Mae has carried an EpiPen with her at all times.

“We were hopeful she would grow out of the food allergies but now we have come to accept that Mae will be living with serious and ongoing allergies,” Eleanor said.

“Her allergies are always going to be in the back of her mind, influencing the decisions that she makes every time she eats at a restaurant, orders takeaway or goes to a birthday party. As a family we are learning to manage this new normal as best we can.”

Living in Melbourne’s west, Eleanor said the new MCRI research showed why it was important to tackle air pollution.

“There is a whole suite of reasons why we should be addressing air pollution and its link with peanut allergy just adds to that,” she said.

“Multiple factors are behind the allergy epidemic and if higher levels of air pollution are impacting the prevalence and persistence then that’s an important discovery for families.

“We want to see the quality of life improve for children living with allergies as well as fewer children having to go through what Mae has experienced. The more we know about how to prevent allergies the better.” 

The GenV study, tracking the health and wellbeing of Victorians from birth to old age, is also starting to look at the impact of air pollution and climate change on children’s health. GenV has gathered data from more than 120,000 participants, including 48,000 babies.

MCRI researchers are linking information on heat vulnerability with perinatal and child health data from the GenV cohort and are seeking to include temperature extremes and climate related disaster evidence in the future.

Associate Professor Suzanne Mavoa said this would improve our understanding of how climate change impacts the health of children and families, identify those most at risk and test policies and interventions to better protect against severe weather events.

Associate Professor Peters is the National Allergy Centre of Excellence (NACE) Epidemiology Lead and a Centre for Food Allergy Research (CFAR) Associate Investigator. Eleanor is also a member of the NACE Consumer Advisory Group. Both national research bodies are hosted at MCRI to help accelerate allergic disease research across Australia.

Researchers from Monash University, The University of Sydney, Sydney Local Health District, The Royal Children’s Hospital, University of Queensland, Deakin University and the Environment Protection Authority Victoria also contributed to the findings.

Source:

Murdoch Childrens Research Institute

Journal reference:

Lopez, D. J., et al. (2024) Early life air pollution is associated with persistent peanut, but not egg allergy, across the first ten years. Journal of Allergy and Clinical Immunology: In Practice. doi.org/10.1016/j.jaci.2024.08.018.

The post Study finds connection between air pollution and childhood peanut allergies appeared first on Oklahoma Allergy and Asthma Clinic.

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