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LDL Is Under Control—So Why Is Heart Risk Still High? Solving the Lipoprotein(a) Puzzle

Lipoprotein(a) screening in diabetes showing a blood test, glucose meter, heart, and artery to illustrate residual cardiovascular risk.

For many people with diabetes, lowering LDL cholesterol is a major part of preventing heart attack and stroke. Yet an important clinical puzzle remains. Why do some patients experience cardiovascular events even after LDL reaches recommended targets? Growing evidence points toward lipoprotein(a), or Lp(a), as one possible piece of that …

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Could a Stool Test Predict Your Patient’s Best Diabetes Medication?

Stool sample testing for gut biomarkers in diabetes to explore personalized medication response and precision diabetes treatment.

Could a stool sample someday help clinicians choose a diabetes medication before writing the prescription? Emerging research into gut biomarkers in diabetes is moving that possibility closer to clinical reality. Rather than simply cataloging which bacteria live in the intestine, researchers are examining microbial genes, stool-derived metabolites, and functional signatures …

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Can AI and Digital Pathology Detect Diabetic Kidney Disease Earlier?

Artificial intelligence analyzing a digital kidney biopsy slide for early detection and classification of diabetic kidney disease in a pathology laboratory.

Artificial intelligence is rapidly changing how healthcare professionals diagnose disease. But can computers identify kidney damage before it becomes obvious under a microscope? Researchers believe the answer may be yes. The combination of digital pathology, artificial intelligence, and diabetic kidney disease research is opening new opportunities to identify microscopic kidney …

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The Return of Aldose Reductase Inhibitors: Could an Old Idea Finally Pay Off?

A hand holding a diabetes medication tablet in front of an anatomical heart illustration with diabetic complication icons representing the nerves, retina, kidneys, and polyol pathway research.

Diabetes care has advanced dramatically over the past decade. While therapies such as GLP-1 receptor agonists and SGLT2 inhibitors have transformed glucose management and cardiovascular outcomes, many patients continue to develop long-term complications. Could an older therapeutic target finally provide the missing piece? Interest in aldose reductase inhibitors for diabetes …

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Your LDL Is Normal—So Why Is Your Heart Risk Still High?

Illustration of cholesterol plaque building inside an artery alongside a blood lipid test, highlighting remnant cholesterol as a hidden cardiovascular risk factor in people with diabetes despite normal LDL cholesterol.

For years, lowering LDL cholesterol has been the cornerstone of preventing heart disease in people with diabetes. Statins and other cholesterol-lowering therapies have dramatically reduced cardiovascular events. Yet many patients continue to experience heart attacks, strokes, or other cardiovascular complications despite reaching recommended LDL cholesterol goals. Why does this happen? …

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Could This Heart Scan Detect Diabetes Damage Before Symptoms Appear?

Cardiologist reviewing speckle-tracking echocardiography showing global longitudinal strain analysis for early diabetic cardiomyopathy detection.

Heart disease remains the leading cause of illness and death among people with diabetes. However, one of the most concerning complications, diabetic cardiomyopathy, often develops quietly for years before symptoms emerge. During this silent phase, routine echocardiograms frequently show a normal ejection fraction, creating a false sense of reassurance. Fortunately, …

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Why Cardiologists Are Looking Beyond Traditional SGLT2 Therapy

Medical illustration showing the heart, kidneys, and intestines connected by dual SGLT1 and SGLT2 inhibition pathways to represent improved glucose control and heart failure protection.

The treatment landscape for type 2 diabetes has changed dramatically over the past decade. While selective SGLT2 inhibitors have become a cornerstone of diabetes management because of their proven cardiovascular and kidney benefits, researchers are now exploring the added potential of dual SGLT1/2 inhibitor therapy for people with diabetes. By …

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Could We Predict Diabetic Neuropathy Years Before Symptoms Begin?

Illustration of IgG glycosylation biomarkers, laboratory blood analysis, and peripheral nerves representing early detection of diabetic neuropathy in people with diabetes.

Early detection has always been one of the biggest challenges in diabetes care. What if doctors could identify patients at high risk for diabetic neuropathy or kidney disease years before symptoms developed? That possibility is driving exciting new research into IgG glycosylation in diabetes, an emerging area that examines subtle …

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Diabetic Eye Disease May Start Years Before Your Eye Exam Finds It

Patient undergoing advanced retinal imaging with OCT scan displaying early retinal changes associated with diabetic eye disease before visible diabetic retinopathy.

Diabetes affects far more than blood sugar. In fact, the earliest stages of diabetic retinal disease may begin years before an eye doctor can see the classic signs of diabetic retinopathy during a routine examination. Imagine a smoke detector that alerts you before you ever see flames. That is the …

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A Newly Discovered Form of Cell Death May Explain Why Diabetes Causes So Many Complications

Scientific illustration showing ferroptosis, an iron-dependent form of cell death, contributing to diabetic complications affecting the kidneys, eyes, nerves, and heart.

Diabetes is known for raising blood sugar levels, but its long-term complications often have the greatest impact on health. Kidney disease, vision loss, nerve damage, and cardiovascular disease affect millions of people living with diabetes. For years, researchers focused on inflammation, oxidative stress, and poor circulation to explain these complications. …

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