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Asthma at School

Role of the Teacher

Identify the high-risk students with asthma:

  • Previous life-threatening episodes
  • Three or more emergency room visits in one year
  • Prior hospitalizations within one year
  • History of non-adherence to asthma treatment regimen
  • Recurrent nighttime asthma requiring medications
  • Know the early warning signs
  • Have a copy of the students Asthma Action Plan in your classroom
  • Understand the student may feel tired, different from other students, anxious
    about easy access to medications, embarrassed about asthma, worried about
    activities that induce asthma

Asthma Facts

  • Asthma is the most common chronic disease of children
  • There are approximately 22 million people in the USA diagnosed with asthma
  • Asthma is the leading cause of school absenteeism in the United States
  • Children with uncontrolled asthma miss approximately 14 days of school per year
  • Asthma education is a vital component of asthma management
  • Asthma specialists (Allergist, Pulmonologist) are needed to care for mild
    persistent, moderate persistent and severe persistent asthma
  • If properly managed, people with asthma can live a happy, healthy, active life

Early Warning Signs

  • Low peak flows
  • Chronic cough (especially at night)
  • itchy, scratchy, sore throat
  • headache, stopped up head, sneezing
  • shortness of breath with exertion restlessness, more irritable,
    or at even rest
  • dark circles under the eyes
  • restlessness, more irritable
  • increased fatigue
  • tired, itchy watery, glassy eyes

Asthma Action Plan

An action plan is a treatment plan for worsening asthma. The action plan adjusts to the severity of symptoms so that students can control their asthma. People with asthma should have a treatment and management plan developed by their health care team. An Asthma Action Plan is a special road map to know how to take care of asthma each day.

When peak flow rates are:

Green Zone
  • Everything is all "go"
  • 80% or more of what your peak flow rate should be
Yellow Zone
  • Caution
  • 60 to 80% of what your peak flow rate should be
Red Zone
  • Medical emergency - peak flow rates are less than 50% of what it should be

Peak Flow Monitoring

A peak flow meter is a device that measures how well air moves in and out of the lungs. During an asthma episode, the airways become inflamed and narrowed. Many people who take asthma medicine daily use a peak flow meter several times a day.

How to Use the Peak Flow Meter

  • Set the marker to the bottom of the numeric scale.
  • Take a deep breath. Be sure you are standing up.
  • Place your lips tight around the mouthpiece.
  • Talk a big deep breath in.
  • Blow as hard and fast as possible. Blast the air out fast!
  • Note the final position of the marker. This is your peak flow rate.

Inhalers

Metered dose inhaler:

This is a small canister that contains the medication you need to control your asthma or relieve bronchospasms during an asthma episode (Advair HFA, Symbicort, ProAir HFA, Xopenex HFA, Albuterol HFA, Flovent HFA, Q-Var HFA, etc.). Proper inhaler technique must be performed to efficiently receive the medicine.

  1. Shake inhaler and place in your spacer. You may need to remove the inhaler from the canister if your spacer requires no case.
  2. Take 2 or 3 slow and deep warm up breaths.
  3. Sit up straight and be sure you are holding your head looking straight ahead.
  4. Slowly exhale.
  5. Place inhaler in your mouth, and then spray one spray.
  6. Slowly breathe in and hold your breath at least 10 seconds.
  7. Remove the spacer from your mouth and slowly exhale.
  8. Properly place spacer back into your mouth and slowly breathe in again.
  9. Hold your breath at least 10 seconds then slowly exhale.
  10. Wait 1 to 3 minutes and repeat as ordered by your doctor. (Be sure to shake your inhaler again!) Rinse your mouth after using anti-inflammatory medications.

Dry powdered inhalers:

This is medication that is in powder form. (Advair Diskus, Pulmicort Flexhaler, Asmanex, etc.)

  1. Breathe out slowly.
  2. Put your mouth on the mouthpiece.
  3. Take a big deep breath in real fast.
  4. Hold your breath for 10 seconds.
  5. Blow out slowly.

Recent News

SuperUser Account
/ Categories: News

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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