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Interview with Gina Meagher: Living with Type I Diabetes and Celiac Disease

Gina Meagher Celiac Disease DiabetesI met Gina through the Celiac Sprue Association, Denver Chapter 17.  She helped me get involved in volunteering at last years ‘Incredible Edible Gluten-Free Food Fair™!’  She has been part of CSA for several years and is a member of the Board.  She has a lively personality and is willing to share her thoughts with others.  I am so excited that she was willing to sit down with me and talk about her experiences of living with Type I diabetes and Celiac disease.  I hope you enjoy this as much as I did.  The overall message I took away, was that neither Diabetes nor Celiac disease define who Gina is, because she is so much more and has never let either one stop her from living the active life she was meant to have!

Interview

 

Jenn: Hi Gina! It’s great to be with you today and to have the opportunity to get to know you better.  So, tell me…how old were you when you were diagnosed with Type I diabetes?

Gina: I was 17 years old.

Jenn: And how old were you when you were diagnosed with Celiac disease?

Celiac Disease, Diabetes Have Genetic Link

The article below discusses that similar genes are found in people with celiac disease and Type 1 Diabetes.  This supports the findings of a Danish study that showed 12.3% of children with Type 1 Diabetes… 

Vitamin D Deficiency

Sunshine Delivers Free Vitamin D To Everyone.
Sunshine Delivers Free Vitamin D To Everyone.

What Is Vitamin D?

Vitamin D is the principle regulator of calcium homeostasis (balance) in the body.  This “vitamin” is really a prohormone, meaning it acts like a hormone but is not. Vitamin D does, however, contain cholesterol in its molecular structure like steroid hormones.

The physiological importance of vitamin D encompasses much more than the regulation of bone metabolism although this is a mighty function.

Q: How does vitamin D regulate bone metabolism?

A: In regulation of bone metabolism, vitamin D works in three ways: 1) enables active absorption of calcium from the small intestine, 2) enhances reabsortion of calcium by the kidneys that would otherwise be excreted in urine, and 3) plays an active role in skeletal development and bone mineralization. Mineralization gives strength to living bone tissue.

Vitamin D interacts with receptors within cells to effect transcriptional changes in many cell types including those in gut, bone, breast, prostate, brain, skeletal muscle, and the immune system.1

In regards to the essential role of vitamin D in muscle tissue, it has been recently shown that vitamin D regulates both muscle function and structure of primary myofibers.2

Vitamin D is converted in the body to a molecule that is biologically active. The active form is 1,25-dihydroxyvitamin D, usually referred to as vitamin D3. About 80% comes from sun exposure and the remaining from food.

Vitamin D3 is synthesized in the skin from 7-dehydrocholesterol via photochemical reactions requiring UV light (sunlight). That is, light that contains energy from the sun is incorporated into molecules of  7-dehydrocholesterol in the underlying dermis of skin to make this vitamin. This is why inadequate exposure to sunlight contributes to vitamin D deficiency.

Blood concentration of 25(OH)D is the best indicator of vitamin D status. It reflects vitamin D produced in the skin and that obtained from food and supplements and has a fairly long circulating half-life of 15 days.3

What Is Vitamin D Deficiency In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. McCarty DE, Chesson AL Jr, Jain SK, Marino AA. The link between vitamin D metabolism and sleep medicine. Sleep Med Rev. 2014 Aug;18(4):311-9. doi: 10.1016/j.smrv.2013.07.001. []
  2. Girgis CM, Mokbel N, Cha KM, Houweling PJ, Abboud M, Fraser DR, Mason RS, Clifton-Bligh RJ, Gunton JE. The vitamin D receptor (VDR) is expressed in skeletal muscle of male mice and modulates 25-hydroxyvitamin D (25OHD) uptake in myofibers. Endocrinology. 2014 Sep;155(9):3227-37 []
  3. http://ods.od.nih.gov/factsheets/VitaminD-HealthProfessional/ []

Cataracts

Glucose Meter Reading Showing Hypoglycemia. Courtesy Abbott.
Glucose Meter Reading.Courtesy Abbott.

What Is Diabetic Instability?

D iabetic instability, also called brittle diabetes, is poor control of blood sugar characterized by frequent rise (hyperglycemia) and fall (hypoglycemia). These fluctuations can be life-threatening and cause unnecessary complications.

Q: What are complications in diabetes?

A: Complications of diabetes include any/all of the following:

  • Peripheral neuropathy that causes burning, numbness, or tingling in the extremities.
  • Skin infections and ulcers that do not heal and can lead to amputation of toes, feet or legs.
  • Damage to retina that can progress to blindness.
  • Cataracts and glaucoma that impair vision and can cause blindness.
  • Increased susceptibility to serious infections of the genitourinary tract, lung and upper respiratory tract that can become systemic and life-threatening.
  • Kidney disease that can lead to kidney failure.
  • Heart disease that can lead to heart failure.
  • Vascular disease that can lead to stroke.
  • Impaired motility in digestive tract that can lead to dyspepsia and constipation.
  • Pregnancy complications.
  • Shortened life expectancy.

The main causes of brittleness include malabsorption, certain drugs (alcohol, antipsychotics), defective insulin absorption or degradation, defect of hyperglycemic hormones especially glucocorticoid and glucagon, and above all delayed gastric emptying as a result of autonomic neuropathy.1

What Is Diabetic Instability In Celiac Disease and/or Gluten Sensitivity?

Sources:
  1. Vantyghem MC, Press M. Management strategies for brittle diabetes. Ann Endocrinol (Paris). 2006 Sep;67(4):287-96. []

MEDICAL RESEARCH: Vitamin D Deficiency is Associated with Insulin Resistance and ß cell Dysfunction

 

Editor’s note:

In the following medical research study, healthy participants were enrolled to examine the effects of vitamin D on insulin production and use in the body. This research shows that:

1) Vitamin D plays an important role in insulin sensitivity in the body, and deficiency of vitamin D hampers production of insulin hormone by beta cells in the pancreas.

2) People with vitamin D deficiency are at risk for developing type 2 diabetes mellitus. Type 2 diabetes mellitus is characterized by lack of insulin sensitivity in body tissues and inadequate production of insulin hormone in the pancreas.