COPD

Stem Cell Therapy for COPD

Are you feeling a little numbness in your limbs? Or even when just standing up, you seem to have a hard time balancing yourself. If that’s the case, you have come to the right place where we combine multiple sclerosis and stem cell treatments into a regenerative solution for our clients.
Stem cells can help repair lung tissue damaged by COPD. They can also reduce inflammation that restricts airflow. Our therapy uses stem cells from FDA-licensed stem cell banks to stimulate regeneration and lasting relief.
With stem cell treatment, many COPD patients breathe easier again. They regain the ability to engage in daily activities without debilitating shortness of breath. The benefits can be long-lasting, giving you your life back.
If COPD has you gasping for air, it’s time to explore stem cell therapy. This innovative approach taps into your body’s own healing powers. It can potentially restore lung function and improve your breathing.
Don’t wait while COPD slowly robs you of your active lifestyle. Contact us today to see if you qualify for stem cell treatment. We’re ready to help you breathe freely and fully again.
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What is Stem Cell Therapy?

Stem cells have the remarkable ability to repair and regenerate damaged tissues in your body. For COPD, stem cells are harvested from umbilical cord tissues that have a high concentration of stem cells. The stem cells are injected into injured or degenerating structures in your spine, discs, nerves, ligaments, or muscles.
Stem cell therapy may regenerate lung tissue and reduce inflammation in COPD patients. Stem cells can replace damaged epithelial cells that line the lungs’ air sacs. This helps restore lung capacity and function. Stem cells also curb inflammation, opening constricted airways.

Stem Cell Treatment for COPD: How Does it Help?

Stem cell therapy is an exciting new option for treating multiple sclerosis (MS) and managing symptoms through several key mechanisms:

01

Reduces Inflammation

Stem cells release anti-inflammatory molecules that calm the chronic lung inflammation in COPD. This opens up constricted airways.

02

Regenerates Lung Tissue

Stem cells can differentiate into healthy lung cells, replacing those lost to COPD. This helps restore lung capacity.

03

Repairs Lung Damage

Stem cells can migrate to damaged areas in the lungs and stimulate the healing of destroyed lung tissue. This improves oxygen exchange.

04

Reduces Mucus Production

Stem cells help reduce excess mucus secretion that clogs airways in COPD patients. This makes breathing and coughing easier.

05

Suppresses Immune Imbalance

Stem cells help re-balance the immune system activity that drives COPD progression. This slows lung deterioration.

06

Promotes Vascular Growth

Stem cells support new blood vessel development to improve circulation and healing in the lungs.

07

Enhances Lung Function

By reducing inflammation, regenerating tissue, and repairing damage, stem cell therapy improves lung function and breathlessness.

08

Slows Disease Progression

Stem cells may decelerate the advancement of COPD by treating underlying causes and damage.

09

Improves Quality of Life

Patients report better endurance, less dependence on oxygen, and expanded abilities to stay active after stem cell therapy.

The Process of Stem Cell Therapy for COPD

Our in-office procedure for stem cell therapy for COPD typically goes like this:

We use umbilical cord tissues that have a high concentration of stem cells.

These tissues are obtained from FDA-licensed tissue banks.

The stem cells are processed and concentrated within a few minutes.

Guided by imaging, the stem cells are injected into the damaged areas of your body.

The full procedure takes about an hour.

Patients can resume normal activities within a few weeks after the treatment.

Maximum improvement occurs after 1-2 months as the stem cells reduce scar tissue, grow new blood vessels, and regenerate damaged organs.

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FAQs about Stem Cell Therapy for COPD

Absolutely! Stem cell research has made big advances in finding ways to use stem cells to reduce inflammation, repair lung damage, and improve breathing in people with COPD. Early results are showing much promise.
No, it doesn’t make your lungs bigger. But what it can do is help regenerate healthy lung tissue to replace areas damaged by COPD. This helps restore lung capacity and function that may have been lost.
Many patients report breathing much easier after stem cell therapy! They have less shortness of breath doing everyday activities. The anti-inflammatory effects open up airways while regenerated tissue improves oxygen exchange.
There is no evidence that stem cell therapy harms the lungs or other organs. In fact, by reducing inflammation and repairing damage, stem cells aim to protect and preserve organs from further COPD deterioration.
Stem cell therapy provides benefits that last for years in many COPD patients. It aims to address underlying causes, not just temporarily relieve symptoms. More research is still needed, but the goal is for it to be a long-lasting solution.
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Key Benefits of Stem Cell treatment for COPD

COPD leaves you gasping for air, but stem cell therapy could help you breathe easily again. This innovative treatment taps into natural healing to bring lasting relief. Potential benefits of stem cell therapy for COPD include:

Reduces chronic lung inflammation

Regenerates damaged lung tissue

Repairs areas of destroyed lung

Restores lung capacity and function

Opens constricted airways

Reduces coughing and excess mucus

Enables deeper, freer breathing

Reduces dependence on oxygen

Allows greater physical activity

Slows down COPD progression

It avoids risky surgery and drugs

Mild side effects and excellent safety

Improved quality of life for years

It helps you stay active and independent

Other Benefits of Stem Cell Therapy

While this page has focused on stem cell treatment for COPD, these incredible cells have many other regenerative uses throughout the body. Here are some of the examples:

01

Healing the Heart with Stem Cells

Stem cell therapy is emerging as a promising treatment option for various heart conditions. Stem cells can be injected into damaged areas of the heart muscle to:

02

Rebuilding Injured Rotator Cuffs

For torn rotator cuff tendons in the shoulder, stem cells can encourage healing by:

03

Restoring Mobility from Hip Issues

Stem cells injected into arthritic hip joints or damaged cartilage and bone can:

04

Promoting Healing of Sports Injuries

Stem cells can help the body repair itself after sports injuries like ACL/MCL tears, damaged cartilage, muscle strains, or fractures. Stem cell therapy benefits include:

05

Improving Function in Osteoarthritic Joints

For joints damaged by osteoarthritis, stem cell injections can:

06

Speeding Recovery from Fractures

Stem cells injected near the fracture site can:

07

Reducing Degeneration in Joints, Discs, Tendons

Stem cells slow degeneration by:

Contact Us

Schedule your Stem Cell Therapy for COPD

Is COPD making it hard to keep up with life? Do simple tasks leave you wheezing and gasping for breath? We know how debilitating COPD can be, robbing you of an active lifestyle. But stem cell therapy may help you reclaim it!
Stem cells can reduce lung inflammation, regenerate damaged tissue, and restore lung function in COPD patients. Imagine hiking your favorite trail, playing with your grandkids, or working in your garden again without getting winded. Stem cell treatment utilizes your body’s own healing abilities to target COPD’s destruction.
Don’t wait while COPD slowly progresses. Call us today to learn more about stem cell therapy for COPD. We stay current on the latest regenerative medicine breakthroughs and can advise if you may benefit. With customized care, we can develop a plan to help you breathe easier again. You deserve to engage in life fully – COPD doesn’t have to hold you back.
Call now, and let’s discuss your options for stem cell treatment. The future looks bright for regenerating lung capacity and improving COPD symptoms. We’re here to listen and help you breathe freely once again.
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