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Imagine being fourteen years old and being told that eating is part of the problem.
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You're desperately thin, you're hungry, weak, your body's wasting away, and the treatment keeping you alive is essentially controlled starvation.
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That was the reality of severe type one diabetes before insulin therapy.
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In nineteen twenty two, a Canadian teenager named Leonard Thompson was hospitalized at Toronto General Hospital.
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He had diabetes.
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And at that time, the diagnosis could be devastating.
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Doctors had learned that restricting carbohydrates and calories could sometimes prolong life.
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Some patients were placed on extraordinarily restrictive diets.
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But think about what that meant.
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The child was already losing weight because his body couldn't properly use or store fuels, and medicine's best option was often to restrict the fuel coming in.
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It might buy time it couldn't replace what was missing.
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Leonard was extremely ill.
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Then on january eleventh, nineteen twenty two, he received an injection of pancreatic extract developed through the work of Frederick Banting, Charles Best, and their colleagues.
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And it wasn't the miracle moment we sometimes hear in the simplified version of the story.
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That first extraction was impure.
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The response wasn't good enough, and Leonard developed a local reaction.
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A biochemist named James Collip worked on improving the purification.
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They tried again later that month.
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This time Leonard's glucose fell substantially.
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His glycosuria, which is basically glucose in urine, it's never supposed to be in urine, but that's something that's common when you have diabetes.
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Anyway, this number improved and the treatment did not produce the same severe local reaction.
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Suddenly, medicine had something it had never had before, a way to replace the missing signal.
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And I want you to notice something important.
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Insulin didn't magically remove diabetes.
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Lena's beta cells hadn't suddenly returned.
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What changed was that physicians could now provide from outside the body something his body could no longer provide adequately for itself.
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That distinction matters because even today you'll hear type 1 diabetes discussed as though insulin is simply a medicine that lowers blood sugar.
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It is more profound than that.
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Fat metabolism changes, protein metabolism changes, ketone production changes, and electrolytes as well as water balance change too.
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The entire metabolic state begins shifting.
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Eventually, we're going to go inside the physiology and understand why a person can have an enormous amount of glucose in the bloodstream, and yet metabolically parts of the body are behaving as though they're starving.
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It's one of the great paradoxes of diabetes.
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But Leonard's story gives us something else, perspective.
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Today we have insulin pens, pumps, continuous glucose monitors, rapid acting insulin analogs, long acting analogs, algorithms that can communicate with pumps, and we're going to understand all of them.
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But none of that makes sense until we understand how extraordinarily the original discovery was.
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Because barely more than a century ago, type 1 diabetes could turn food into an enemy and starvation into treatment.
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Then insulin changed the story.
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But there's another mystery here.
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Banting and best didn't simply wake up one morning and decide the pancreas must contain a diabetes hormone.
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People had been following clues for decades, and one of the strangest clues was sitting somewhere nobody expected to find the answer in the urine.