In 2024, therapy made headlines when a woman’s diabetes, thought untreatable, was reversed. Could this be the long-awaited cure?

This article explores how therapy can help with type 1 and type 2 diabetes, backed by clinical trials, expert insights, and real-world outcomes. Stick around to uncover how this revolutionary therapy could change your life—or the life of someone you love.

Table of Contents

  1. Therapy for Type 1 Diabetes: Success Rate
  2. Therapy for Type 2 Diabetes: Success Rate
  3. Can Therapy Cure Diabetes Mellitus?
  4. How Therapy Works for Diabetes
  5. Benefits of Therapy for Diabetes
  6. Cell Types Used to Treat Diabetes
  7. Therapy Procedure
  8. Risks and Side Effects of Therapy for Diabetes
  9. FAQ
  10. Key Takeaways

Therapy for Type 1 Diabetes: Success Rate

 therapy for type 1 diabetes success rate

therapy is redefining possibilities for type 1 diabetes, a condition long believed to be incurable. Clinical trials now show that treatments can restore production, improve blood sugar control, and even eliminate the need for injections.

Clinical trial results

👉 Restoring production

-derived islet cells successfully reactivated the ability to produce in patients whose bodies had stopped making it. 

  • In one trial, all patients who received a infusion began producing within 3 months.
  • A patient with no detectable production before therapy showed measurable levels post-treatment, indicating the pancreas was functioning again.

👉 Improved blood sugar control
Glycated hemoglobin (HbA1c) is a key marker of long-term blood sugar control; the American Diabetes Association (ADA) recommends levels below 7%. In the study, most patients reached this target, a significant improvement from dangerous levels before treatment.

👉 Reduced or eliminated use
11 out of 12 patients reduced their reliance on injections, with some becoming fully -independent. One patient reduced daily use by 91% within 90 days.

Groundbreaking success story

In 2024, for the first time in history, scientists managed to reverse a patient’s type 1 diabetes with the help of -derived beta cells.

👉 Sustained independence. Within 2.5 months, the patient no longer needed injections. At 1 year, she maintained -free status.

👉 Dramatic blood sugar improvement. Before treatment, the patient’s blood sugar stayed within a healthy range only 43% of the time. Four months after therapy, this soared to 96%, meaning her blood sugar was stable nearly all the time.

👉 Improved glucose metabolism. The patient’s glycated hemoglobin levels (an indicator of glucose control) reached non-diabetic levels.

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Therapy for Type 2 Diabetes: Success Rate

 therapy for type 2 diabetes success rate

Type 2 diabetes, associated with resistance and pancreatic decline, has traditionally been managed through medications. However, therapy can potentially restore the human body’s ability to regulate blood sugar naturally. Recent studies demonstrate independence and long-term improvements in pancreatic function.

Clinical trial results

👉 Improved blood sugar control
In a review of clinical trials, 70% of patients with type II diabetes showed significant improvements in glucose levels after mesenchymal transplantation. These improvements persisted throughout the 12-month follow-up period.

👉 C-peptide levels stabilized
C-peptide levels—a marker of production—remained in the normal range for 12 months after a single dose. This means the pancreas was restored to a more normal function, reducing the need for external .

Groundbreaking case study

A remarkable case from Shanghai showcases the potential of therapy to effectively "cure" type II diabetes. A man with 25 years of diabetes underwent a treatment after experiencing declining pancreatic function and relying on daily injections.

  • The patient achieved independence within 11 weeks.
  • Over the next year, the patient gradually discontinued oral diabetes medications.

Follow-up exams confirmed restored pancreatic function and normal kidney function, suggesting a long-term cure for type 2 diabetes.

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Can Therapy Cure Diabetes Mellitus?

In some recent individual cases, therapy has effectively cured diabetes mellitus. Patients have regained production, achieved independence, and maintained normal glucose levels. However, these cases are exceptional and still under study.

Although not a guaranteed cure, therapy can significantly improve blood sugar control and reduce reliance on .

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How Therapy Works for Diabetes

are the body’s building blocks. They are special human cells that can:

  • transform into other cell types, including -producing beta cells;
  • repair and regenerate damaged tissues;
  • self-renew, making copies of themselves indefinitely and ensuring a steady supply of new cells.

Unlike other cells in your body, which have fixed roles, can adapt to become whatever the body needs. therapy for diabetes works by:

1️⃣ Replacing damaged -producing beta cells

Diabetes mellitus occurs when the pancreas doesn’t produce enough (type 1) or the body can’t use effectively (type 2). is the hormone that helps regulate glucose levels.

can be transformed into islet beta cells, which are responsible for producing . These new beta cells replace the damaged or non-functioning ones.

2️⃣ Regulating blood sugar levels

The newly created islet beta cells begin producing , helping the body:

  • stabilize glucose levels;
  • reduce or eliminate the need for injections.

In successful cases, these beta cells work just like natural pancreatic cells, responding to blood sugar changes and releasing the right amount of .

3️⃣ Reducing resistance

In type 2 diabetes, the body often becomes resistant to , making it harder for cells to absorb glucose. release anti-inflammatory molecules and growth factors that repair damaged tissues and improve how cells respond to .

4️⃣ Repairing pancreatic function

Since have regenerative properties, they can repair damaged tissues in the pancreas. This can restore the organ’s natural ability to produce over time.

5️⃣ Modulating the immune sy

For type 1 diabetes, where immune cells attack -producing beta cells, certain types of (like mesenchymal ) can help regulate the immune sy response. This protects the newly introduced beta cells from being destroyed again.

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Benefits of Therapy for Diabetes

benefits of  therapy for diabetes

👍 Restoring natural production. Unlike medications or injections that only manage blood sugar levels, therapy renews production by replacing damaged beta cells.

👍 Achieving independence. Patients may reduce their intake by 91%-100% after therapy. 

👍 A long-term solution. therapy offers lasting benefits, with studies showing stable production and blood sugar control maintained for at least 12 months after treatment.

👍 A minimally invasive approach. Compared to pancreas transplants, which require major surgery and lifelong immunosuppressants, therapy is far less invasive. Treatments typically involve injections, require minimal recovery, and present fewer risks.

👍 Targeting the root cause. While other treatments address symptoms, therapy tackles the underlying issues—repairing the pancreas and restoring its ability to regulate blood sugar naturally.

Cell Types Used to Treat Diabetes

therapy uses different types, each with unique strengths, for treating diabetes mellitus:

1️⃣ Embryonic (ESCs)

Human embryonic are highly versatile because they can transform into any cell type, including -producing beta cells. They can replicate indefinitely, offering a renewable source for treatment. 

Although embryonic are typically taken from discarded embryos after failed attempts, their origin may raise ethical concerns in some patients. Their use also involves a higher risk of an immune response.

2️⃣ Induced pluripotent (iPSCs)

iPSCs are adult cells reprogrammed to act like ESCs, avoiding ethical issues. Because they can be made from a patient’s own cells, the risk of immune rejection is minimal. However, creating these cells is complex and costly, and their stability during treatment remains a challenge.

🌟 iPSCs were used in the groundbreaking case where doctors successfully reversed a woman’s type 1 diabetes mellitus.

3️⃣ Mesenchymal (MSCs)

Mesenchymal are a type of adult found in , fat, and umbilical cords. They are easy to harvest and expand in the lab. These multipotent cells can repair damaged pancreatic tissues, reduce inflammation, support islet cell function, and improve sensitivity. They also regulate the immune sy, helping protect new -producing cells from immune attack.

Compare each type’s pros and cons in the table below:

Cell Type

Pros

Cons

Embryonic

• Can develop into any cell type, including beta cells.

• Unlimited replication.

• Raises ethical concerns.

• May require immunosuppressive drugs.

• Small risk of uncontrolled growth.

Induced pluripotent

• Avoids ethical issues. 

• Reduced rejection risk. 

• Successfully used in reversing diabetes mellitus.

• Costly and complex production.

• Stability issues.

Mesenchymal

• Easily sourced from , fat, or umbilical cords.

• Repairs tissues, reduces inflammation, and regulates the immune sy.

• Limited ability to transform into -producing cells.

• Effects may require repeated treatments.

Therapy Procedure

1️⃣ collection
can come from a donor (through a bank) or from the patient’s own tissues, such as or fat. Doctors extract by inserting a needle into the pelvic bone. On the other hand, fat tissue can be collected through liposuction. Both procedures are low-impact and cause minor discomfort.

2️⃣ preparation
After collection, the undergo processing in a laboratory. They are separated and cultured in a controlled environment to grow and multiply.

Embryonic or induced pluripotent (iPSCs) can be transformed into -producing beta cells before injection.

3️⃣ Administration
can be introduced into the body through:

  • Subcutaneous injection. Doctors inject under the skin, often near the abdominal area, so that they can reach the pancreas.
  • Intravenous (IV) infusion. This method delivers directly into the bloodstream, enabling them to travel to the pancreas and other areas requiring repair.

4️⃣ Monitoring and recovery
Patients are monitored after the procedure to ensure the cells function as expected. Doctors track improvements in production and blood sugar control. The treatment requires little to no downtime, with most patients resuming normal activities within a day.

🤔 When can I await the results? Improvements can appear within weeks to a few months. Specifically, reductions in use may take 2–3 months to achieve.

Risks and Side Effects of Therapy for Diabetes

According to studies, therapy is generally safe, with most side effects being mild and temporary. Some studies report the following side effects:

  • Injection or infusion reactions. Mild redness, swelling, or discomfort, resolving within a few days.
  • Temporary gastrointestinal issues. Abdominal distension and loss of appetite, lasting 4–8 weeks and relieved with medication.
  • Mild weight loss. Some patients reported a restorable weight loss (around 5% of body weight).
  • Nausea and vomiting. Rarely observed in some studies, mild and temporary.
  • Hypoglycemia. Low blood sugar levels were noted in rare cases, likely due to improved production.

✅ No tumor formation or severe graft-related complications were reported in studies.

💚 The best way to minimize risks associated with -derived therapies is to choose a reputable clinic with experienced professionals. Bookimed works exclusively with verified medical centers and can help you find a trusted clinic that fits your budget.

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FAQ

Is there a cure for diabetes?

While diabetes has long been considered incurable, therapy has changed the conversation. In recent cases, patients with type 1 and type 2 diabetes have achieved significant milestones, including independence and restored blood sugar control.

These successes don’t yet represent a universal cure, but they may mean the possibility of a long-term solution for some diabetic patients.

How does therapy compare to traditional diabetes treatments?

Traditional treatments like therapy and oral medications focus on managing symptoms and maintaining blood sugar levels. These approaches require lifelong adherence and constant monitoring. Patients with type 1 diabetes and severe obesity may resort to costly and invasive procedures like bariatric surgery.

treatment, on the other hand, addresses the root cause by restoring production and regulating blood sugar naturally. It offers the possibility of independence, freeing patients from the burdens of daily injections and long-term medication.

Is therapy FDA-approved for diabetes?

therapy for treating diabetes has not yet received full FDA approval in the United States. However, some treatments, such as islet transplantation therapy, have been approved for specific cases with severe complications.

In countries like Mexico, Turkey, and Thailand, approved therapies are more widely available for diabetes treatment. These regions have less restrictive regulations, allowing patients to access therapies that are still in the experimental phase elsewhere. Patients interested in therapy can explore treatment options in these countries as long as they choose a reputable clinic licensed to use .

How much does therapy for diabetes cost?

The cost of therapy for diabetes varies significantly depending on the country, the type and number of used, and the clinic’s expertise. 

In the United States, a single dose of can cost around $99,000

On the other hand, countries where therapies are more widespread offer far more affordable options, which often include additional perks like accommodation and transportation.

Compare costs across the most prominent destinations in this table:

Country

Cost 

United States

$99,000

Mexico

$4,500-$25,000

Turkey

$7,500-$15,000

Thailand

$17,000-$60,000

Poland

$10,000-$11,000

Ukraine

$8,000-$15,000

Where can I get treatment for diabetes?

Guided by its Ranking Policy, Bookimed has selected the top 5 clinics around the world for diabetes treatment. Check out these healthcare providers with a perfect balance of expertise, certifications, and patient outcomes:

Clinic Name

Location

Details

ID Clinic Bangkok

Bangkok, Thailand

Uses mesenchymal from rigorously screened umbilical cord donors.

Liv Hospital Ulus

Istanbul, Turkey

Certified by the Turkish Ministry of Health, uses mesenchymal for treating diabetes.

Memorial Şişli Hospital

Istanbul, Turkey

The largest multidisciplinary medical center in Istanbul, Turkey’s first JCI-accredited hospital.

R3 Life Wellness Center

Bangkok, Thailand

Certified by the Thai Therapy Association and the American Board of Anti-Aging and Regenerative Medicine (ABAARM), collaborates with global banks.

MER Clinic Cancun

Cancún, Mexico

Led by Dr. Adriana Gudiño, a regenerative medicine specialist with 16+ years of experience and 200+ successful cases.

Medical Center Juventa

Playa del Carmen, Mexico

A regenerative medicine clinic with its own bank and laboratory. Offers a diabetes treatment package using 100 million and exosomes.

If you’re unsure about your options, leave a request on Bookimed, and a dedicated medical coordinator will help you find the best fit for your condition and budget.

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Key Takeaways

👉 Success in type 1 diabetes. Clinical trials show that therapy can restore production. 11 out of 12 patients reduced or eliminated use, and one patient achieved a 91% reduction within 90 days.

👉 Success in type 2 diabetes. In clinical trials, 70% of patients experienced improved blood sugar control lasting at least 12 months. Restored C-peptide levels indicated normalized pancreatic function.

👉 Promise for a cure. In 2024, case studies revealed that diabetes might be closer to a cure than ever. Patients with both type 1 and type 2 diabetes became -independent after treatment and have stayed -free.

👉 Safe and minimally invasive. therapy is generally well-tolerated, with mild side effects such as injection site reactions or gastrointestinal discomfort. Compared to surgeries like pancreas transplantation, it is significantly less invasive.

👉 Global accessibility. treatment for diabetes is still under FDA review in the US and can cost around $99,000 per dose. However, therapies cost significantly less in countries like Mexico ($4,500-$25,000), Turkey ($7,500-$15,000), and Thailand ($17,000-$60,000) due to broader approval, government support, and competitive markets.

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