Rejuve Anti Aging offers cutting-edge regenerative therapies designed to restore mobility and relieve foot and ankle pain—without surgery. Our advanced trifecta joint injections, featuring PRP (Platelet-Rich Plasma), Stem Cells, and Exosomes, provide a sophisticated, non-invasive solution for conditions such as plantar fasciitis, Achilles tendon injuries, arthritis, ligament sprains, and joint degeneration.
By harnessing your body’s natural healing power, these innovative treatments stimulate tissue repair and regeneration at the source—rather than just masking pain. Whether you’re an athlete looking to stay active, dealing with chronic foot discomfort, or seeking to maintain peak mobility as you age, Rejuve’s regenerative therapies can help restore strength, flexibility, and function.
Skip the risks and downtime of traditional foot and ankle surgeries. Rejuve Anti Aging offers ultrasound-guided stem cell injections, a precise, image-guided approach using your own Mesenchymal Stem Cells to repair damaged tissues and promote long-term healing. This advanced technique helps you stay on your feet without the complications of invasive procedures.
Rediscover the freedom of pain-free movement. Contact Rejuve Anti Aging today to explore regenerative solutions for your foot and ankle health!
Stem cell therapy: clinically proven to reduce joint pain and improve mobility.
Leveraging the body’s own processes combined with PRP, Stem Cells and Exosomes
Ultrasound guided, highly accurate joint injections without anesthesia or downtime.
Over the past decade, research and publications on the therapeutic application of mesenchymal stem cells (MSCs) for foot and ankle injuries have significantly increased. This expanding body of work highlights the strong interest and continuous advancements in refining and optimizing this innovative treatment approach.
Recent studies have increasingly focused on understanding the precise mechanisms of MSCs, moving beyond their ability to differentiate into various cell types to explore their critical roles in paracrine signaling and immunomodulation. This deeper insight has led to more targeted and effective applications in regenerative medicine for foot and ankle conditions.
The growing number of clinical trials investigating MSC therapy for foot and ankle injuries reflects a dedicated effort to translate promising preclinical findings into real-world benefits for patients suffering from chronic pain, ligament and tendon injuries, osteoarthritis, and other degenerative conditions.
Plast Reconstructive Surg
Chronic Plantar Fasciitis: A Randomized, Crossover Clinical Trial
European Journal of Radiology
Stem Cells in achilles tendinopathy
Foot & Ankle Orthopedics
Contemporary Review: The Use of Mesenchymal Stem Cells in the Foot and Ankle
Research suggests that many common foot and ankle surgeries—such as procedures for tendon repairs, ligament reconstructions, and joint fusions—may not always provide better outcomes than non-surgical treatments. This raises concerns about their true effectiveness in relieving pain and restoring function.
While surgeries may be necessary in severe cases, they are highly invasive and come with significant risks. Prolonged recovery times, extensive rehabilitation, and the potential for accelerated joint degeneration can sometimes lead to more long-term complications rather than lasting relief.
At Rejuve Anti Aging, we offer advanced regenerative therapies, including PRP, Stem Cells, and Exosome treatments, as non-surgical alternatives for foot and ankle conditions. These cutting-edge solutions target the root cause of pain, promote natural healing, and may help you avoid the risks and downtime associated with surgery.
Explore your options before committing to an invasive procedure. Contact Rejuve Anti Aging to learn how regenerative medicine can help you stay active and pain-free!
The fear is real: A sharp pain. A misstep. The fear of rolling your ankle or feeling it give way beneath you. The uncertainty with every step keeps you on edge, making even simple movements feel risky. Imagine missing out on life’s most meaningful moments—watching instead of playing with your kids, hesitating to go for a walk, or turning down invitations because you’re afraid your foot or ankle won’t support you.
For months, the pain, instability, and discomfort have held you back, making everyday activities feel like a challenge. And the looming thought of invasive surgery—with its long recovery and unpredictable results—only adds to the frustration. But what if there was another way?
At Rejuve Anti Aging, we understand how foot and ankle pain can disrupt your life. That’s why we offer cutting-edge, non-surgical regenerative solutions designed to activate your body’s natural healing process. With advanced treatments like PRP, Stem Cells, and Exosomes, we help restore stability, reduce pain, and get you moving again—without the fear of surgery.
Let us guide you toward a future of strength, confidence, and freedom. Contact Rejuve Anti Aging today to explore non-invasive solutions for your foot and ankle pain!
Ankle osteoarthritis can cause persistent pain, swelling, stiffness, and even difficulty bearing weight. As the condition worsens, it can alter the way you walk, placing extra stress on other parts of the foot and increasing the risk of additional injuries.
When arthritis begins to severely impact your quality of life, traditional medicine often recommends invasive surgical procedures like ankle fusion—which uses screws to permanently limit ankle movement—or ankle joint replacement, a highly complex surgery that replaces part of the intricate ankle joint. Both procedures require extensive downtime, prolonged rehabilitation, and ongoing pain management.
At Rejuve Anti Aging, we offer non-surgical regenerative solutions to help relieve pain, restore function, and promote natural healing—without the risks of surgery. Using advanced treatments like PRP, Stem Cells, and Exosomes, we target the root cause of arthritis, working to slow degeneration and improve joint mobility.
Don’t let ankle osteoarthritis dictate your lifestyle. Explore regenerative alternatives that can help you stay active and pain-free. Contact Rejuve Anti Aging today to learn more!
Your ankles are essential for everyday movement, supporting your body weight and enabling activities like walking, running, and climbing stairs. However, due to the constant stress placed on these joints, they are highly susceptible to injury—especially ligament tears, one of the most common ankle conditions.
Ligaments are strong, fibrous tissues that connect bones within the ankle joint. A ligament tear occurs when excessive force—such as a sudden twist, roll, or impact—stretches or ruptures these tissues. This often happens during sports, falls, or missteps on uneven surfaces, leading to pain, swelling, and instability.
Ankle sprains can weaken ligaments over time, altering your walking pattern and placing extra strain on other foot and ankle structures. If left untreated, incomplete healing can lead to chronic instability, increasing the risk of future injuries and long-term joint degeneration.
While physical therapy and conservative management may help, traditional surgical interventions often require extensive recovery time and come with potential risks. At Rejuve Anti Aging, we offer advanced regenerative treatments like PRP, Stem Cells, and Exosomes to support natural healing, strengthen ligaments, and restore stability—without surgery.
By addressing the root cause of instability and promoting proper tissue repair, our cutting-edge therapies may help you regain mobility and confidence in your ankle function.
Don’t let an ankle injury hold you back. Contact Rejuve Anti Aging today to explore non-surgical solutions for ligament tears and long-term joint health!
The ankle plays a crucial role in supporting your body’s weight and enabling essential movements such as walking, running, and jumping. Its complex structure, including bones, tendons, and ligaments, is designed to provide both stability and mobility. However, injuries such as tendon tears—whether from acute trauma or long-term wear and tear—can cause pain, instability, and limited movement, impacting daily life significantly if not addressed.
If left untreated, tendon injuries can worsen, making even simple tasks difficult. Understanding ankle tendon tears—what causes them, how to identify symptoms, and the best treatment options—can help you make informed decisions for your health and recovery.
Several key tendons in the ankle are responsible for maintaining stability and enabling movement. These tendons connect muscles to bones, allowing the ankle to flex, extend, and rotate smoothly. Key tendons in the ankle include:
Achilles Tendon: The largest tendon, connecting calf muscles to the heel bone, crucial for pushing off during walking, running, and jumping.
Posterior Tibial Tendon: Located inside the ankle, supporting the foot's arch and stabilizing the ankle during walking. Damage can lead to flatfoot and instability.
Peroneal Tendons: Found on the outer ankle, these tendons prevent the foot from rolling outward, essential for balance during lateral movements.
Flexor and Extensor Tendons: These tendons control toe movements—flexors curl the toes downward for grip, while extensors lift the toes upward, enabling smooth motion and preventing the foot from dragging.
When functioning properly, these tendons allow seamless movement. But injuries to any of these can lead to pain and instability, making it difficult to walk, run, or perform basic tasks.
Surgery is often considered for severe tendon injuries, but many ankle tendon tears can heal without the need for invasive procedures. Studies suggest that surgery may not be more effective than immobilizing and bracing the ankle for a few weeks. Plus, surgery comes with its own set of risks.
For instance, Achilles tendon injuries—often resulting from trauma or overuse—are frequently treated surgically. However, this option carries significant risks, such as complications like infections, nerve disturbances, and post-operative pain, with a complication rate of 1 in 10 patients. Recovery time can also be lengthy, given the invasive nature of the procedure.
Similarly, surgical repair of lateral ankle tendons for chronic instability has a reported failure rate of 8.4% and a complication rate of 17.6%. These statistics highlight the potential drawbacks of traditional surgery, reinforcing the need for non-invasive alternatives.
At Rejuve Anti Aging, we offer innovative, non-surgical regenerative treatments for ankle tendon injuries, using your body's natural healing agents. The Regenexx approach promotes recovery and enhances function by harnessing the body’s healing powers, reducing the need for surgery and medications like opioids.
Our procedure is minimally invasive and uses precise image-guided injections of your body’s healing agents (such as PRP, Stem Cells, and Exosomes) directly into the damaged area. This treatment helps promote healing and tissue regeneration in tendon injuries, including Achilles tendon strains and tears.
Unlike traditional surgery, which involves significant recovery and extended use of pain medications, the Regenexx treatment has minimal downtime, with many patients returning to daily activities faster and with less reliance on pain relief.
Don’t let an ankle tendon injury slow you down. Explore how Rejuve Anti Aging’s regenerative solutions can support your recovery—without surgery. Contact us today to learn more!
The human body is designed to heal itself. Your body’s natural goal is repair and regeneration. A simple example is when you get a cut—your body stops the bleeding, forms a scab, and sends healing cells to close the wound.
This self-healing ability is constantly at work, even when you can’t see it. Your body is always scanning for damage and sending repair cells where they’re needed. However, certain factors influence how effectively your body can heal, including:
Even with a healthy lifestyle—eating well, exercising, and getting enough rest—there are times when your body needs extra support. That’s where regenerative therapies at Rejuve Anti Aging can help. Our advanced treatments, including stem cell therapy and PRF, work with your body’s natural healing processes to restore function, reduce pain, and promote long-term wellness.
AND THAT’S WHERE REJUVE ANTI AGING CAN HELP!
Modern medicine often relies on medications that only mask pain rather than promoting true healing. Too many people are prescribed surgeries that may not effectively resolve their pain or the underlying problem.
Surgery itself is highly invasive—requiring tools that seem better suited for a construction site than the human body. That’s why it’s called surgical reconstruction. Recovery can take months or even years, and in many cases, the joint never fully feels or functions as it once did.
Joint replacement surgery introduces foreign materials into the body, which can create long-term issues. Just like your body reacts to a splinter—trying to push it out—your immune system may respond to implants with inflammation and pain, as it doesn’t recognize them as part of its natural structure.
At Rejuve Anti Aging, our regenerative therapies work with your body’s natural healing abilities. Using cutting-edge techniques, we concentrate and precisely deliver your body’s own regenerative cells to areas in need of repair, helping to restore function and reduce pain—without surgery. This approach, known as regenerative orthopedic medicine, has helped thousands regain mobility and live more active, pain-free lives.
120 participant results measured in 1-month follow ups following mesenchymal stem cell injections, compared to baseline.
Up to 76% Average Function Regained and Overall Pain Improvement
Mesenchymal Stem Cells (MSCs) are undifferentiated cells capable of developing into diverse cell lineages. These cells maintain the capacity for self-renewal and are highly responsive to their surrounding environment. Upon receiving specific signals, they commit to differentiation pathways, transforming into specialized cells like skin, muscle, cartilage, tendon, bone, or red blood cells. Augmenting the availability of stem cells at a site of injury or damage can significantly promote optimal tissue regeneration by ensuring an ample supply of cells for repair.
Mesenchymal stem cells (MSCs) are increasingly utilized in treating a range of diseases due to their remarkable properties. These include self-renewal (the ability to create more stem cells), differentiation (the process of maturing into specialized cells with distinct form and function; for example, an MSC can develop into various cell types), anti-inflammatory effects (reducing harmful inflammation), and immunomodulation (regulating the immune system). Immunomodulation is particularly important, as MSCs can both stimulate a weak immune response and dampen an overactive one, potentially preventing the autoimmune reactions seen in many disorders. The anti-inflammatory capabilities of MSCs are crucial, as while inflammation is a natural defense mechanism, chronic or excessive inflammation can damage the body.
Extensive research, including both in-vitro (laboratory-based) and in-vivo (within a living organism) studies, has supported the safety and efficacy of MSC therapy and continues to elucidate the underlying mechanisms. This research highlights the diverse capabilities of MSCs, enabling their use in a variety of clinical settings for numerous degenerative conditions.
Emerging evidence suggests that umbilical cord tissue-derived MSCs (UC-MSCs) may possess greater potency compared to MSCs from other sources, potentially leading to enhanced clinical effectiveness.
Adult mesenchymal stem cells (MSCs) do not raise the same ethical concerns as fetal and embryonic stem cells. Both the Catholic Church and the Southern Baptist Convention have endorsed the research and therapeutic use of adult stem cells as an ethically acceptable alternative.
Advantages of Umbilical Cord Tissue-Derived Mesenchymal Stem Cells (UC-MSCs)
Umbilical cord tissue-derived mesenchymal stem cells (UC-MSCs) offer several advantages over other sources of MSCs, such as bone marrow-derived MSCs (BM-MSCs) and adipose-derived stem cells (ASCs):
Superior Proliferation: UC-MSCs exhibit a significantly higher proliferation rate in vitro (in a laboratory setting) compared to BM-MSCs and ASCs. This allows for more efficient expansion to obtain the large cell numbers needed for therapeutic applications.
Non-Invasive Harvesting: The collection of UC-MSCs is non-invasive. The cells are obtained from ethically donated umbilical cord tissue after birth, a process that poses no risk or discomfort to either the mother or the newborn. This contrasts with BM-MSC harvesting, which requires a bone marrow aspiration, and ASC harvesting, which typically involves liposuction.
Enhanced Secretion of Beneficial Factors: UC-MSCs secrete a variety of growth factors, cytokines, and chemokines. These secreted factors play a crucial role in tissue repair, reducing inflammation, and modulating the immune system.
Differentiation Potential: Like other MSCs, UC-MSCs can differentiate into various cell types, contributing to tissue regeneration.
Upregulated Genes: Research indicates that certain genes associated with cell proliferation (e.g., EGF), signaling pathways involved in cell survival and growth (e.g., PI3K-NFkB pathway via TEK), and neurogenesis (e.g., RTN1, NPPB, NRP2) are upregulated (have increased activity) in UC-MSCs compared to BM-MSCs. This suggests a potentially greater capacity for tissue repair and regeneration.
Yes! In recent years, several regenerative medicine treatments have been introduced into clinical practice for pain management and orthopedic care. These treatments utilize adult stem cells, making them non-controversial. The available procedures include:
Regenerative medicine may offer benefits for various medical conditions, including:
MSCs possess immunosuppressive properties, reducing the likelihood of immune rejection compared to other foreign cells. Umbilical cord tissue-derived MSCs (UC-MSCs) are particularly immune-privileged, meaning they are universally accepted by the recipient’s body with virtually no risk of rejection. This is because UC-MSCs are essentially “new” and haven’t been “claimed” by a specific immune system. Unlike organ transplantation, UC-MSC therapy doesn’t require blood products or HLA matching.
Regenerative medicine procedures are generally not covered by insurance. While some surgical applications may have billing codes, most treatments are considered out-of-pocket expenses.
The price range for regenerative medicine injections is broad, typically between $1,500 and $7,500.
Our protocol is designed to significantly reduce chronic low-grade inflammation over an extended period. Stem cells possess a unique ability to target areas of inflammation in the body. Research indicates that they can regenerate damaged or diseased tissues, decrease inflammation, and regulate the immune system—contributing to improved health and overall quality of life.
Studies suggest that mesenchymal stem cells (MSCs) may have a positive impact on various conditions, including:
Our protocol aims for long-term stabilization of the condition with a single treatment. Follow-up treatments are not required. While some patients choose to return for additional treatments, typically seeking further improvement, generally one treatment is sufficient for most degenerative conditions.
Patients generally report minimal discomfort during treatment, often describing the experience as painless.
While individual responses vary, many study participants report noticeable improvements within 1-3 months after treatment. These improvements are evidenced by reduced systemic inflammation and increased vitality, as measured by follow-up questionnaires. Some patients report improvements in symptoms and quality of life even sooner, within the first few days post-treatment.
Umbilical cord-derived mesenchymal stem cells (UC-MSCs) are particularly effective for systemic delivery via intravenous infusion. Their optimal size (17-19 micrometers) allows for efficient passage through the circulatory system, including the lungs. Although a portion of MSCs may initially be trapped in the lungs (a phenomenon known as the pulmonary first-pass effect), this does not negate their therapeutic benefits. MSCs possess a remarkable homing ability – they can actively migrate to damaged tissues. Even while temporarily in the lungs, MSCs exert beneficial paracrine effects: they secrete growth factors and other molecules that reduce inflammation and stimulate tissue repair. Advances in research are continually enhancing the delivery and efficacy of MSCs for regenerative therapies.
Potential of Stem Cells in Anti-Aging and Rejuvenation
Current research suggests that stem cell therapies may have the potential to mitigate some effects of aging and improve overall healthspan. Stem cells, particularly mesenchymal stem cells (MSCs), possess properties that could contribute to this, including their ability to:
The concept of a “protective shield” created by stem cells and anti-aging genes is a simplified representation of these complex biological processes. While a complete reversal of aging is not currently feasible, studies suggest that stem cell interventions, potentially in combination with therapies targeting aging-related genes, could contribute to a healthier and potentially longer lifespan. It’s crucial to understand that this is an area of ongoing research, and many claims about “anti-aging” stem cell treatments are not yet supported by robust clinical evidence.
Potential Benefits of Stem Cell Therapy (Observed and Reported):
Some reported benefits of stem cell therapies, particularly in the context of age-related decline, include:
Mesenchymal stem cells (MSCs) are not a cause of graft-versus-host disease (GVHD); in fact, they are being investigated as a potential treatment for this condition. GVHD is a serious complication that can occur after allogeneic hematopoietic stem cell transplantation (typically bone marrow or cord blood transplants), where the donor’s immune cells (T-cells) attack the recipient’s tissues.
MSCs possess immunomodulatory properties that make them promising candidates for GVHD therapy. They achieve this through several mechanisms, including:
While many studies suggest that MSC therapy can be beneficial for both acute and chronic GVHD, more extensive, large-scale, randomized controlled trials are needed to definitively confirm these findings and establish optimal treatment protocols.
It is important to clarify a distinction: although MSCs can modulate the activity of immune cells like T-lymphocytes and B-lymphocytes (reducing their proliferation and secretion of inflammatory factors), they are not broadly immunosuppressive in the same way as traditional immunosuppressant drugs. They have targeted immunomodulatory effects, rather than causing widespread immune suppression. This targeted effect is one reason they are promising for treating GVHD.
Follow-up vitality questionnaires indicate that approximately 85% of patients report sustained improvement in their condition within three months of treatment.