Title card for Sugar Is Turning Your Tissues to Glass, The Pained Brain Chapter 6, showing Dr. Padda

September 12, 2026

Diabetes and joint pain

Diabetes and Joint Pain: How Sugar Stiffens Tendons and Nerve Tunnels

by - Dr. Gurpreet Singh Padda, MD, MBA, MHP

Diabetes and joint pain usually get filed as two separate problems, one for the hormone doctor and one for the bone doctor. The collagen in your tendons does not respect that filing system. Sugar bonds to it directly. And it starts doing so years before anyone writes the word diabetes in a chart.

That is the ground covered in Chapter 6 of The Pained Brain, the video above, from the book by Dr. Gurpreet Singh Padda, MD, MBA, MHP, and Dr. KrisJay Fucanan, MD. This page spends less time on the chemistry. It spends more on what it means when your hand, shoulder or Achilles tendon starts failing. And it covers what to ask before the next injection or operation.

The pattern most charts miss

Picture a woman in her fifties. A trigger finger, injected. Carpal tunnel, released. Now a frozen shoulder, explained as bad luck. Her A1c is 6.1, which the chart labels prediabetes and nobody acts on. She is a composite, and she is common: three diagnoses, three specialists, one untreated cause.

The system that produced her is not evil. It is split into silos. The hand surgeon is paid to release the hand. The hormone doctor does not see her until the number crosses a line. And the cheapest calories in the grocery store are the ones that bond to collagen fastest. In 1,209 young adults aged 20 to 30, drinking high-fructose corn syrup drinks five or more times a week went with three times the odds of already having arthritis. The data are a one-time snapshot and the cause is unproven. But the pattern fits the chemistry.

How does sugar make tendons and joints stiff?

Collagen is a rope whose strands slide a little every time a tendon stretches or a disc takes a load. Glucose sticks to those strands with no enzyme needed. Over months and years, that bond matures into advanced glycation end products. The worst of them are cross-links, permanent bridges bolting two strands together. A rope that cannot slide cannot absorb energy. It stiffens, and stiff tissue under load tears instead of giving.

How much builds up depends on two things: sugar exposure and how long the protein lives. Skin collagen has a half-life of about 15 years. Cartilage collagen has a half-life of 117 years. So the surface of your knee is basically the one you were born with, holding every cross-link it has ever collected. The molecular detail is laid out in our explainer on AGEs and stiff, painful tissue.

Here is a wrinkle worth knowing. When human Achilles tendons are tested on a bench, the amount of sugar damage chemists can measure tracks stiffness poorly. Messy collagen tracks it well. In living people, the A1c predicts stiffness better than any single lab test. The likeliest reading is that sugar damages the rope in more ways than the lab can count.

How early does diabetes affect tendons and joints?

In 55 people aged 45 to 70, diabetes came with 55 percent more pentosidine (a sugar-damage marker) in skin collagen. It came with an Achilles tendon 54 percent stiffer. And it made no difference whether the diabetes was called well controlled. In another group, type 2 diabetes was controlled by their doctors’ standard. Yet tendon stiffness still tracked A1c at a correlation of 0.610.

Below the line it still shows. In 5,856 Copenhagen residents followed three years, an A1c in the prediabetes range carried about three times the risk of a lower-limb (leg or foot) tendon injury bad enough for the hospital. Across 31 studies, tendon disease was 3.67 times as common in diabetes. A frozen shoulder is five times as likely in diabetes. And 30 percent of people who show up with one turn out to have diabetes.

Does high blood sugar cause carpal tunnel and trigger finger?

Every tunnel a nerve passes through is walled with collagen. Stiffen and thicken that wall and the nerve runs out of room. Trigger finger, carpal tunnel and Dupuytren’s contracture are usually treated as three unrelated strokes of bad luck. One study compared 2,250 people with trigger finger with 398,495 without. Trigger finger carried 9.59 times the odds of carpal tunnel and 4.89 times the odds of Dupuytren’s.

The strongest evidence on cause comes from genetics. About 379,700 Europeans were studied using gene variants that set a person’s A1c for life. That design sidesteps most diet and lifestyle effects. Each 10 millimoles per mole of higher A1c from genes raised the odds of carpal tunnel 1.20-fold and frozen shoulder 1.50-fold. Some people are born with a GCK mutation that keeps fasting glucose mildly high from birth. They had 7.16 times the odds of a frozen shoulder. That design cannot say whether lowering glucose now reverses the risk. It does say the sugar came first.

A simple check: press your palms together. If the fingers will not lie flat against each other, that is the prayer sign. It is part of a stiff-hand syndrome found in 66 percent of 1,217 people after about 30 years of type 1 diabetes.

More than glue: the pain signal

Sugar damage also inflames. The body has a receptor for these products. When they bind it, the cell switches on inflammation signals. The most direct route to pain runs through methylglyoxal, a reactive fragment that sugar breaks into. In people with diabetes, a blood level above 600 nanomolar separated painful from painless nerve damage. In mice, the molecule changed the Nav1.8 sodium channel so the pain nerve fired more easily. A Danish group with early, well-treated type 2 diabetes did not find the blood link, and the cause-and-effect work is in animals. The human pattern holds anyway: more sugar damage, more nerve damage, more arthritis, more trapped nerves.

Can an injection or surgery fix diabetic joint pain?

I do releases and injections, and I will keep doing them, because a trapped nerve needs the pressure off now. But sugar-damaged tissue shows its limits after the procedure. Carpal tunnel release eases symptoms in people with diabetes as well as in anyone else. Yet sensory nerve signal speed (sensory conduction) recovers 4.31 meters per second less. A rotator cuff repair tore again in 40.0 percent of patients with an A1c of 7 or above, against 14.6 percent of people without diabetes. None of that argues against the operation. It argues for repairing the terrain around it.

The steroid has its own sugar bill. A standard 40-milligram triamcinolone shot into a knee of someone with diabetes raised average daily glucose by 37.1 milligrams per deciliter for three days. About half those hours were above 180. Three days of that sugar is three more days of collagen damage. So in our practice an injection is a bridge. It is the fewest doses that keep someone moving, with glucose and insulin known going in. It is never a standing appointment every three months. And no drug has broken a glucosepane cross-link in a living person. Both the drug to block it and the drug to break it failed in trials.

Can you reverse sugar damage in tendons and joints?

You cannot dissolve cross-links you already carry. You can stop adding new ones. In the landmark type 1 diabetes trial, people assigned to tight glucose control had measurably less sugar damage in their skin collagen years later. The levers are the sugar, the insulin behind it, and the heat of the pan.

The pan matters because dry heat runs the same chemistry outside your body. Across 549 foods, broiling, roasting and frying raised these sugar-damage products 10- to 100-fold. Broiled chicken carried 5,828 units per 100 grams, against 1,124 when boiled. An hour in lemon juice or vinegar before cooking cut formation by more than half. The payoff is insulin. A year on a low-AGE diet took HOMA-IR from 3.1 to 1.9 in obese adults with metabolic syndrome. On the usual diet it drifted from 2.9 to 3.6. No trial has tested that diet against pain yet. But the mechanism and the insulin data point the same way. And a practice does not wait for a trial nobody is paying for.

The insulin half of this story is the hormone nobody measured. The oil half is why fish oil alone rarely fixes joint pain. The first brain’s role in collagen repair is covered in Collagen Is the Wall, Not the Paint. For each study behind these figures, including what it cannot prove, request the Chapter 6 Deep Dive to hand your physician. Collagen repair also runs on the hours between midnight and dawn. That is where the broken master clock picks up.

Frequently asked questions

Can prediabetes cause tendon and joint problems?

It can show up there first. One study looked at 158 adults with no diabetes and no metabolic syndrome. Those with an A1c in the prediabetes range had poorer Achilles collagen on MRI and walked more slowly. In 5,856 adults, a prediabetes A1c carried about three times the risk of a lower-limb (leg or foot) tendon injury treated in the hospital. Collagen does not wait for a diagnosis. Insulin resistance comes years before diabetes, and a glucose test can miss it.

Is a frozen shoulder linked to diabetes?

Strongly. Pooled across 18 studies, frozen shoulder was five times as likely in diabetes. It affected 13.4 percent of people with diabetes. And 30 percent of people arriving with a frozen shoulder had diabetes. Genetic data show a higher lifelong A1c raises the odds. A frozen shoulder is a reason to check A1c and fasting insulin, not a reason to shrug. How high insulin makes you hurt.

Why do trigger finger, carpal tunnel and Dupuytren’s happen together?

They share a material. Tendon sheaths, the carpal ligament and the palm’s fascia are all collagen, and sugar stiffens all of them. People with trigger finger had 9.59 times the odds of carpal tunnel and 4.89 times the odds of Dupuytren’s. Dupuytren’s itself affects 31 percent of people with diabetes, against 14 percent without. What high sugar does to the nerves themselves.

Does a cortisone shot raise blood sugar?

Yes, and the rise can last days. One study had 33 people with knee arthritis and type 2 diabetes wear glucose monitors. One standard triamcinolone shot raised average daily glucose 37.1 milligrams per deciliter over three days. Across the published reports, every study showed a rise, some peaking near 500. That is a reason to know your glucose going in and to use the fewest doses that work. What type 2 diabetes remission does to chronic pain.

Does cooking method change how much glycation you eat?

A great deal. Dry heat raised sugar-damage products 10- to 100-fold across 549 foods. Poached or steamed chicken carried less than a quarter of what roasted chicken did. Soaking in lemon juice or vinegar for an hour cut formation by more than half. What that reliably changes in trials is insulin resistance, not the store already in your skin. Treating metabolic disease at the dietary root cause.

Read the stiffness as a metabolic finding

If your hand, shoulder or tendon keeps failing and nobody has checked your A1c and insulin, start there. We repair the terrain so the procedure has tissue that can hold.

Request an appointment, or call or text us.

Sources

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  2. Skovgaard, D., Siersma, V. D., Klausen, S. B., Visnes, H., Haukenes, I., Bang, C. W., Bager, P., Grävare Silbernagel, K., Gaida, J., Magnusson, S. P., Kjaer, M., & Couppé, C. (2021). Chronic hyperglycemia, hypercholesterolemia, and metabolic syndrome are associated with risk of tendon injury. Scandinavian Journal of Medicine & Science in Sports, 31(9), 1822–1831. https://doi.org/10.1111/sms.13984
  3. Zreik, N. H., Malik, R. A., & Charalambous, C. P. (2016). Adhesive capsulitis of the shoulder and diabetes: a meta-analysis of prevalence. Muscles, Ligaments and Tendons Journal, 6(1), 26–34. https://doi.org/10.11138/mltj/2016.6.1.026
  4. Green, H. D., Burden, E., Chen, J., Evans, J., Patel, K., Wood, A. R., Beaumont, R. N., Tyrrell, J., Frayling, T. M., Hattersley, A. T., Oram, R. A., Bowden, J., Barroso, I., Smith, C., & Weedon, M. N. (2024). Hyperglycaemia is a causal risk factor for upper limb pathologies. International Journal of Epidemiology, 53(1), dyad187. https://doi.org/10.1093/ije/dyad187
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  9. Uribarri, J., Woodruff, S., Goodman, S., Cai, W., Chen, X., Pyzik, R., Yong, A., Striker, G. E., & Vlassara, H. (2010). Advanced glycation end products in foods and a practical guide to their reduction in the diet. Journal of the American Dietetic Association, 110(6), 911-16.e12. https://doi.org/10.1016/j.jada.2010.03.018
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Dr. Gurpreet Singh Padda, MD, MBA, MHP

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