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Inflammation

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inflammation-post-4What Is Inflammation?

Inflammation is our body’s necessary self-defense response and repair mechanism for these assaults:

1) injuries such as cuts, scrapes, sprains, broken bones, burns, insect bites, toxins; 2) invading organisms such as bacteria; and 3) allergens and food sensitivities such as gluten.

Inflammation can be immediate (acute) or persistent (chronic).

Acute inflammation is marked by increased blood flow, migration of white blood cells, and release of defensive proteins and chemicals to the site of injured tissue. Among these chemicals are free radicals in the immune response to injury that are beneficial yet require the activity of anti-oxidants such as vitamin E and vitamin C to control.

Free radicals are chemical particles containing one or more unpaired electrons, which may be part of the molecule. They cause the molecule to become highly reactive.1

The majority of this response takes place in the first 12 to 24 hours after the assault. The inflammatory process continues until all the damaged tissue or invading germs are removed (usually about 5 days).2

Chronic inflammation is marked by persistence weeks to months or longer after tissue damage. Note: high concentrations of free radicals generated in chronic inflammation may be important causes of damage to cell structures. The defensive activity of anti-oxidants such as vitamin E and vitamin C are required to remove free radicals.

Chronic inflammation increases the risk for systemic diseases such as type II diabetes, obesity, heart disease, high blood pressure, arthritis, osteoporosis, chronic fatigue, migraine, autoimmune disease, and vasculitis which may cause stroke, heart attack or deep vein thrombosis (DVT).

Importantly, chronic inflammation is a risk factor for the onset of cancer.3

Q: Are there blood tests available for detecting inflammation?

A: Yes. Your medical health practitioner can order either or both of the following blood tests that measure the amount of inflammation present although not the source of inflammation. Abnormal is an elevation in blood levels.

  1. C-reactive protein (CRP). This test measure C-reactive proteins that are released into the bloodstream within a few hours of tissue injury or infection. CRPs are cytokines called ‘acute phase reactants,’ meaning first on the scene. The CRP test is also useful to monitor treatment response and flare-ups of chronic inflammatory disease such as vasculitis, systemic lupus, and inflammatory bowel disease.
  2. Erythrocyte sedimentation rate (ESR or sed rate). This test measures the rate of fall of blood cells in a sample tube of blood. An increase in the rate of fall shows inflammation due to an increase of C-reactive proteins in the blood specimen. Alone or with the CRP test, the ESR is especially useful for monitoring inflammation of veins and arteries.

In regards to celiac disease, disappearance of blood antibody levels of tissue transglutaminase IgA (tTG-IgA) indicate that inflammation has also subsided. These antibodies should be checked at 3 months, 6 months if indicated, and one year after diagnosis to monitor healing. On the other hand, raised antibodies indicate that there is definitely ongoing inflammation in the small intestine.

In regards to non-celiac gluten sensitivity, disappearance of blood antibody levels of anti-gliadin IgA and IgG at 3 months, 6 months if indicated, and one year after diagnosis indicate that inflammation has also subsided. On the other hand, raised antibodies indicate that there is definitely ongoing inflammation caused by gluten within the body.

What Is Inflammation In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Ruttkay-Nedecky B, Nejdl L , Gumulec J. The Role of Metallothionein in Oxidative Stress. Int. J. Mol. Sci. 2013, 14(3), 6044-6066; doi:10.3390/ijms14036044. []
  2. Taber’s Cyclopedic Medical Dictionary. 19th ed. F A Davis Company. Philadelphia, PA. []
  3. Brighenti E, Giannone FA, Fornari F, Onofrillo C, Govoni M, Montanaro L, Treré D, Derenzini M. Therapeutic dosages of aspirin counteract the IL-6 induced pro-tumorigenic effects by slowing-down the ribosome biogenesis rate. Oncotarget. 2016 Aug 20. doi: 10.18632/oncotarget.11441. []

Dysbiosis (Intestinal)

What Is Intestinal Dysbiosis? Intestinal dysbiosis is an imbalance of the composition and quantity of microbe populations (called the microbiota), that naturally inhabit our human gut. Dysbiosis causes altered gut immunity, abnormal fermentation of undigested foodstuffs,… 

IgA Deficiency

Red Blood Cell Comparison. Courtesy medindia.com
Red Blood Cell Comparison. Courtesy medindia.com

What Is Iron Deficiency Anemia?

I ron deficiency anemia is a blood cell disorder that is characterized by formation of small, pale red blood cells, causing tissue hypoxia. Hypoxia is the inability to meet the demands of the body for oxygen.

Q: Why do small, pale red blood cells cause tissue hypoxia?

A: Small, pale red blood cells (erythrocytes) cause tissue hypoxia because they are not able, as do normal erythrocytes, to pick up adequate oxygen from the lungs and carry it to cells that use oxygen.

Red blood cell production and function are dependent on a sufficient level of iron in the body and also the ability to use available iron to make hemoglobin in red blood cells.

Hemoglobin is a protein that binds oxygen in red blood cells to be carried by the bloodstream to cells throughout the body. In iron deficiency anemia,  hemoglobin in females is below 12.5g/dl (normal range is 12.5 to 16g/dl) and in males it is below 13.5g/dl (normal range is 13.5 to 17.5g/dl).

Iron must be obtained from the diet, since the body cannot make it, but there are various factors that can interfere with absorption and use in the body, causing anemia. Iron absorption from the gut first requires ionization, or gaining a positive electrical charge, in the strongly acidic environment of stomach juice. Ionized iron, only, can be absorbed in the duodenum, which receives the acidic contents of the stomach before it is neutralized further along.

Dietary iron can be heme or non-heme depending on the food source. Heme iron obtained only from animal food sources is absorbed into the bloodstream by active transport across the brush border (microvilli) which cover the multitudinous villi of the small intestinal lining.

Non-heme iron obtained from plants must bind with apoprotein after entering the enterocyte (surface cell of small intestinal lining) to be ferried to the underlying basolateral membrane and exited by active transport into the bloodstream.

Frequently, chronic anemia due to iron deficiency is accompanied by increased platelets, and this thrombocytosis resolves with iron repletion (normal iron level). Conversely, in severe iron deficiency anemia, patients may have thrombocytopenia (low platelets), which also resolves with iron therapy.1

What Is Iron Deficiency Anemia In Celiac Disease and/or Gluten Sensitivity?

Sources:

  1. Koury M and Rhodes M. How to approach chronic anemia. Hematology Am Soc Hematol Educ Program. 2012;2012:183-90. doi: 10.1182/asheducation-2012.1.183. []

Interview with Genevieve Fraser: Growing up with a Peanut Allergy

Gluten Free Works Author Jennifer Leeson


Working with people diagnosed with food allergies and Celiac disease has opened my eyes to the world around me.
Prior to this, the only person I knew with severe food allergies was a younger cousin of mine whom I spend very little time with.  But, when you start paying attention, you figure out there are many people living with food allergies, Celiac disease or other food related intolerances or restrictions.

Peanut Allergy GenevieveOne day, I came into work and a co-worker, Genevieve  Fraser, asked if I was the one with the food allergy therapist magnet on my car. When I said yes, she informed me that she has an anaphylactic allergy to peanuts, and has since she was very young.  Suddenly, it was in my awareness that I had been bringing peanut butter to work almost every day that I am in that office, not even realizing my office neighbor, just across the hall, has to carry an Epipen everywhere she goes because of peanuts!  Boy did that get my attention!

I didn’t stop bringing peanut butter to work at first, but I noticed I felt nervous and worried every time I did, so I finally stopped bringing it.  However, I noticed being concerned about others using her office when she was not around, and wondering if people were taking peanuts in there.  I finally decided that I should learn more about what it is like living as an adult with a severe anaphylactic food allergy, rather than just going off what I read and my own assumptions.

When I asked Genevieve if I could do a feature interview on her, she was so great and willing to share her story. I have to say, this interview was so informative, empowering, emotional, and motivating, that it really helped put some aspects of living with life threatening food allergies into perspective.  Genevieve not only survived her childhood, despite bullying and being different, but has gone on to complete her college degree and is working on her master’s.  She has dedicated herself to helping others overcome challenging obstacles in their lives so that they can live a full life, despite whatever challenges they might be facing.  I hope you enjoy this interview as much as I did!