Monthly Archives: October 2018


Stem cell laws – Wikipedia

Stem cell laws are the law rules, and policy governance concerning the sources, research, and uses in treatment of stem cells in humans. These laws have been the source of much controversy and vary significantly by country.[1] In the European Union, stem cell research using the human embryo is permitted in Sweden, Spain, Finland, Belgium, Greece, Britain, Denmark and the Netherlands;[2] however, it is illegal in Germany, Austria, Ireland, Italy, and Portugal. The issue has similarly divided the United States, with several states enforcing a complete ban and others giving support.[3] Elsewhere, Japan, India, Iran, Israel, South Korea, China, and Australia are supportive. However, New Zealand, most of Africa (except South Africa), and most of South America (except Brazil) are restrictive.

The information presented here covers the legal implications of embryonic stem cells (ES), rather than induced pluripotent stem cells (iPSCs). The laws surrounding the two differ because while both have similar capacities in differentiation, their modes of derivation are not. While embryonic stem cells are taken from embryoblasts, induced pluripotent stem cells are undifferentiated from somatic adult cells.[4]

Stem cells are cells found in most, if not all, multi-cellular organisms. A common example of a stem cell is the hematopoietic stem cell (HSC) which are multipotent stem cells that give rise to cells of the blood lineage. In contrast to multipotent stem cells, embryonic stem cells are pluripotent and are thought to be able to give rise to all cells of the body. Embryonic stem cells were isolated in mice in 1981, and in humans in 1998.[5]

Stem cell treatments are a type of cell therapy that introduce new cells into adult bodies for possible treatment of cancer, somatic cell nuclear transfer, diabetes, and other medical conditions. Cloning also might be done with stem cells. Stem cells have been used to repair tissue damaged by disease.[6]

Because Embryonic Stem (ES) cells are cultured from the embryoblast 45 days after fertilization, harvesting them is most often done from donated embryos from in vitro fertilization (IVF) clinics. In January 2007, researchers at Wake Forest University reported that "stem cells drawn from amniotic fluid donated by pregnant women hold much of the same promise as embryonic stem cells."[5]

The European Union has yet to issue consistent regulations with respect to stem cell research in member states. Whereas Germany, Austria, Italy, Finland, Ireland, Portugal and the Netherlands prohibit or severely restrict the use of embryonic stem cells, Greece, Sweden, Spain and the United Kingdom have created the legal basis to support this research.[7]Belgium bans reproductive cloning but allows therapeutic cloning of embryos.[1]France prohibits reproductive cloning and embryo creation for research purposes, but enacted laws (with a sunset provision expiring in 2009) to allow scientists to conduct stem cell research on imported a large amount of embryos from in vitro fertilization treatments.[1]Germany has restrictive policies for stem cell research, but a 2008 law authorizes "the use of imported stem cell lines produced before May 1, 2007."[1]Italy has a 2004 law that forbids all sperm or egg donations and the freezing of embryos, but allows, in effect, using existing stem cell lines that have been imported.[1]Sweden forbids reproductive cloning, but allows therapeutic cloning and authorized a stem cell bank.[1][7]

According to modern stem cell researchers, Spain is one of the leaders in stem cell research and currently has one of the most progressive legislations worldwide with respect to hESC research.[8] The new Spanish law allows existing frozen embryos - of which there are estimated to be tens of thousands in Spain - to be kept for patient's future use, donated for another infertile couple, or used in research.[9] In 2003, Spain's laws state that embryos left over from IVF and donated by the couple that created them can be used in research, including ES cell research, if they have been frozen for more than five years.[10]

In 2001, the British Parliament amended the Human Fertilisation and Embryology Act 1990 (since amended by the Human Fertilisation and Embryology Act 2008) to permit the destruction of embryos for hESC harvests but only if the research satisfies one of the following requirements:

The United Kingdom is one of the leaders in stem cell research, in the opinion of Lord Sainsbury, Science and Innovation Minister for the UK.[11] A new 10 million stem cell research centre has been announced at the University of Cambridge.[12]

The primary legislation in South Africa that deals with embryo research is the Human Tissue Act, which is set to be replaced by Chapter 8 of the National Health Act. The NHA Chapter 8 has been enacted by parliament, but not yet signed into force by the president. The process of finalising these regulations is still underway. The NHA Chapter 8 allows the Minister of Health to give permission for research on embryos not older than 14 days. The legislation on embryo research is complemented by the South African Medical Research Council's Ethics Guidelines. These Guidelines advise against the creation of embryos for the sole purpose of research. In the case of Christian Lawyers Association of South Africa & others v Minister of Health & others[13] the court ruled that the Bill of Rights is not applicable to the unborn. It has therefore been argued based on constitutional grounds (the right to human dignity, and the right to freedom of scientific research) that the above limitations on embryo research are overly inhibitive of the autonomy of scientists, and hence unconstitutional.[14]

China prohibits human reproductive cloning but allows the creation of human embryos for research and therapeutic purposes.[1]India banned in 2004 reproductive cloning, permitted therapeutic cloning.[1] In 2004, Japans Council for Science and Technology Policy voted to allow scientists to conduct stem cell research for therapeutic purposes, though formal guidelines have yet to be released.[1] The South Korean government promotes therapeutic cloning, but forbids cloning.[1] The Philippines prohibits human embryonic and aborted human fetal stem cells and their derivatives for human treatment and research. In 1999, Israel passed legislation banning reproductive, but not therapeutic, cloning.[1][7]Saudi Arabia religious officials issued a decree that sanctions the use of embryos for therapeutic and research purposes.[1] According to the Royan Institute for Reproductive Biomedicine, Iran has some of the most liberal laws on stem cell research and cloning.[15][16] Laws and regulations in Jordan allow stem-cell research.[17] A center for stem cell research has acquired a license to begin operating in April 2017 at the University of Jordan.[18]

Brazil has passed legislation to permit stem cell research using excess in vitro fertilized embryos that have been frozen for at least three years.[1]

Federal law places restrictions on funding and use of hES cells through amendments to the budget bill.[19] In 2001, George W. Bush implemented a policy limiting the number of stem cell lines that could be used for research.[5] There were some state laws concerning stem cells that were passed in the mid-2000s. New Jersey's 2004 S1909/A2840 specifically permitted human cloning for the purpose of developing and harvesting human stem cells, and Missouri's 2006 Amendment Two legalized certain forms of embryonic stem cell research in the state. On the other hand, Arkansas, Indiana, Louisiana, Michigan, North Dakota and South Dakota passed laws to prohibit the creation or destruction of human embryos for medical research.[19]

During Bush's second term, in July 2006, he used his first Presidential veto on the Stem Cell Research Enhancement Act. The Stem Cell Research Enhancement Act was the name of two similar bills, and both were vetoed by President George W. Bush and were not enacted into law. New Jersey congressman Chris Smith wrote a Stem Cell Therapeutic and Research Act of 2005, which made some narrow exceptions, and was signed into law by President George W. Bush.

In November 2004, California voters approved Proposition 71, creating a US$3 billion state taxpayer-funded institute for stem cell research, the California Institute for Regenerative Medicine. It hopes to provide $300 million a year.

Barack Obama removed the restriction of federal funding passed by Bush in 2001, which only allowed funding on the 21 cell lines already created. However, the Dickey Amendment to the budget, The Omnibus Appropriations Act of 2009, still bans federal funding of creating new cell lines. In other words, the federal government will now fund research which uses the hundreds of more lines created by public and private funds.[20]

In March 2002, the Canadian Institutes of Health Research announced the first ever guidelines for human pluripotent stem cell research in Canada. The federal granting agencies, CIHR, Natural Sciences and Engineering Research Council, and Social Sciences and Humanities Research Council of Canada teamed up and agreed that no research with human IPSCs would be funded without review and approval from the Stem Cell Oversight Committee (SCOC).[21]

In March 2004, Canadian parliament enacted the Assisted Human Reproduction Act (AHRA), modeled on the United Kingdoms Human Fertilization and Embryology Act of 1990. Highlights of the act include prohibitions against the creation of embryos for research purposes and the criminalization of commercial transactions in human reproductive tissues.[22]

In 2005, Canada enacted a law permitting research on discarded embryos from in vitro fertilization procedures. However, it prohibits the creation of human embryos for research.[1]

On June 30, 2010, The Updated Guidelines for Human Pluripotent Stem Cell Research outline that:

Canada's National Embryonic Stem Cell Registry:

Australia is partially supportive (exempting reproductive cloning yet allowing research on embryonic stem cells that are derived from the process of IVF). New Zealand, however, restricts stem cell research.[23]

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Stem cell laws - Wikipedia

Stem Cell Therapy for Knee Injuries and Arthritis – StemCell ARTS

Utilizing your own stem cells to help the healing process of injured or degenerated joints The human body is made of billions of specialized cells that form specific organs like the brain, skin, muscles, tendons, ligaments, joints, and bone. Each day these cells go through a degenerative and regenerative process. As older cells die, new cells are born from stem cells with the unique capability of being able to create multiple types of other cells. However, when tissues are injured, the degenerative process exceeds this regenerative process, resulting in structures that become weaker, painful and less functional. While there are several types of stem cells, those that are best at promoting musculoskeletal healing (tendon, ligament, cartilage and bone) are found in bone marrow. These mesenchymal stem cells, or MSCs, are essential to successful patient outcomes and at Stem Cell ARTS we utilize the patented Regenexx Stem Cell Protocol, which iscapable of yielding much higher concentrations of these important cells. Most Commonly Treated Knee Conditions and Injuries Below is a list of the most common knee injuries and conditions that we treat with stem cells or platelet procedures. This is not an all-inclusive list. Knee Patient Outcome Data

This Regenexx bone marrow derived stem cell treatment outcome data analysis is part of the Regenexx data download of patients who were tracked in the Regenexx advanced patient registry.

Regenexx has published more data on stem cell safety in peer reviewed medical research for orthopedic applications than any other group world-wide. This is a report of 1,591 patients and 1,949 procedures treated with the Regenexx Stem Cell Procedure. Based on our analysis of this treatment registry data, the Regenexx Stem Cell Procedure is about as safe as any typical injection procedure, which is consistent with what we see every day in the clinic.

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These non-surgical stem cell injection procedures happen within a single day and may offer a viable alternative for those who are facing surgery or even joint replacement. Patients are typically able to return to normal activity following the procedure and are able to avoid the painful and lengthy rehabilitation periods that are typically required to help restore strength, mobility and range-of-motion following invasive joint surgeries. Lastly, patients are far less vulnerable to the risks of surgeries, such as infection and blood clots.

Modern techniques in todays medicine allows us to withdraw stem cells from bone marrow, concentrate them through a lab process and then re-inject them precisely into the injured tissues in other areas of the body using advanced imaging guidance. Through Fluoroscopy and MSK Ultrasound, were able to ensure the cells are being introduced into the exact area of need. When the stem cells are re-injected, they enhance the natural repair process of degenerated and injured tendons, ligaments, and arthritic joints Turning the tables on the natural breakdown process that occurs from aging, overuse and injury.

If you are suffering from a joint injury or degenerative condition such as osteoarthritis, you may be a good candidate for a stem cell procedure. Please complete the form below and we will immediately send you an email with additional information and next steps in determining whether youre a candidate for these advanced stem cell procedures.

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Stem Cell Therapy for Knee Injuries and Arthritis - StemCell ARTS

Stem Cell Therapy for Back Pain – ThriveMD Vail & Denver, CO

Degenerative Disc Disease (DDD), Herniated Discs & Sciatica Causing Lumbar Back Pain

What is degenerative disc disease and what are the symptoms?

Spinal disc degeneration and disc herniations are two of the most common causes of back pain, affecting in particular the lumbar spine (low back). Spinal discs are soft, compressible structures that separate the vertebrae of the spine. The discs act as shock absorbers, allowing the spine to flex, bend, and twist.

Sciatica is the name for the horrible leg pain that is caused when a bulging lumbar disc irritates a lumbar nerve root. The discomfort can be a combination of burning pain and numbness that responds poorly to pain medication.

There is a normal amount of expected wear and tear of our spinal discs as we age. On the other hand, arthritis, injury, and extreme wear and tear of sports can accelerate the degeneration. On a cellular level, there is continual loss of healthy cells inside the disc that is responsible for the discs structure. Over time, normal cells are damaged and hydration is lost, leading to tears in the internal structure of the discs.

When discs degenerate, mobility is affected and function is limited, resulting in symptoms that include stiffness, weakness, and ultimately, unrelenting pain.

What is spinal facet disease and what are the symptoms?

Spinal facet disease is one of the most common causes of neck and back pain and can cause pain at any level of the spine. The spinal facets joints are located on both sides of the back of each spinal segment. They connect each spinal level and are responsible for stabilizing the vertebral bodies and counterbalancing the intervertebral discs. The facets can be injured during acute trauma often seen in flexion extension injuries such as a whiplash event or sports accident. The surfaces of the facet joints are covered by articular cartilage and are also prone to chronic degenerative arthritis much like the larger joints such as knees and hips.

Pain that is caused by facet dysfunction is typically isolated to the back of the lumbar spine, thoracic region and neck. The discomfort can be isolated to one side or may affect both sides of the spine at once. The pain may radiate into the muscles but does not extend into the extremities like sciatic pain that is caused from a disc herniation. Typically the pain is worsened with extension and or rotation of the neck or back. Diagnosis of facet pain begins with a physical exam and imaging studies, but often requires diagnostic injection with local anesthetic and or steroid to confirm the diagnosis.

When the facet joints are injured mobility is affected and function is limited, resulting in symptoms that can mimic disc disease such as stiffness, weakness, and ultimately, unrelenting pain.

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Stem Cell Therapy for Back Pain - ThriveMD Vail & Denver, CO

Regenerative Stem Cell Therapy | Treatment for Back Pain | VSI

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Regenerative therapiesfor the spine are the future for spinal treatments. We are excited to offer innovative techniques as new and improved ways to try to heal spinal problems without having to undergo surgery. Regenerative therapy options hold wonderful healing potential and represent the future of modern medicine. We are excited to offer innovative techniques as new and improved ways to try to heal spinal problems without having to undergo surgery.

In the United States alone, more than 400,000 lumbar discectomies and 500,000 spinal fusions are performed each year for symptoms related to lumbar disc degeneration. The ability to get these to heal without surgery has been a long-term goal of many patients and physicians alike.

At Virginia Spine Institute, we are working to promote healing without surgery. Virginia Spine Institute continues to be on the forefront of treatment options and is proud to offerstem cell therapy treatmentsfor patients as part of ourcomprehensivenon-operative treatmentoptions.

Painful discs in the neck or low back are common causes of severe back pain and disability. Historically, therapies did not exist to regenerate the degenerative process in a vertebral disc, often leaving surgical intervention as the only option if other non-operative treatment options have failed. In selected patients, we now have hopes of better ways to treat spinal disease.

Learn if you are a candidate for this treatment.

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We obtain a patients own stem cells by aspirating tissue from the patient's hip bone or from their fat cells. These cells are centrifuged down to identify and separate specific primitive cells that will help heal tissues. Stem cells are theninjected into the disc, stimulating healing of the disc by using these primitive blood cells to stimulate regeneration of the collagen within the disc. We are excited to report improvements in our patients treated with stem cells.

Stem cells are undifferentiated cells that have the potential to become specialized types of cells. Stem cells can be categorized as embryonic stem cells or adult stem cells.Embryonic stem cells are derived from a human fetus; there are many ethical concerns with embryonic stem cells, and these are not used in our practice.

Adult stem cells are derived from adults, sometimes obtained from your very own body! Adult stem cells are further divided into different categories. For example, the types of adult stem cells we use to treat musculoskeletal issues are known as mesenchymal stem cells (MSCs). These are multi-potent cells that can differentiate into bone cells, cartilage cells, or fat cells. Its important to note that they cannot differentiate into any other type of cell.

The human body has multiple storage sites for stem cells to repair degenerated and injured structures. We have found that obtaining stem cells from the hip bone (iliac bone) is easily performed within minutes and, in most cases, is a fairly painless procedure for the patient. The stem cells are obtained from your own bone marrow; just minutes later, they are used for treatment.

This procedure is done in our office and starts with the patient lying face down on the examination table. The skin is first numbed with a novocaine solution. After that, the cortex of the hip bone (iliac bone) is numbed. Next, under x-ray (fluoroscopic) guidance, a special needle is advanced through the bone to the cortex of your hip bone into the bone marrow. The liquid marrow - which contains the stem cells - is then withdrawn into a syringe. Finally, the needle is removed, and a small bandage is placed where the needle was inserted.

After the procedure, the syringe of stem cells is taken to the lab and placed in a specialized machine called a centrifuge. The centrifuge spins the bone marrow solution and stem cells are separated from the non-useful cells. The concentrated stem cells are then transferred to a new syringe. Now, the stem cells are ready for the treatment.

Not all patients will be a candidate for these disc regeneration procedures. For those whom are ideal candidates, this provides great hope with reduction in pain and improved quality of life without the need for major surgery. We are excited about these great advances in health care and look forward to helping you live pain free.

Stem cell injections are most commonly used for treatment of the following conditions:

The area of injury is first identified using ultrasound or fluoroscopy. The area is then sterilized, and the skin above the area is numbed with a novocaine-type solution. Using ultrasound or fluoroscopic guidance, the needle is guided to the area of injury, and the stem cell solution is injected. All the regenerative injections performed at our practice are performed under image guidance with ultrasound or fluoroscopy to confirm accurate placement of the stem cells.

The risks depend on the area being treated; however, there is always a potential risk of an injection causing infection, bleeding, or nerve damage. It is important to note that there is no risk of allergic reaction since you are using your own stem cells. At Virginia Spine Institute we always recommended the safest and most efficient procedures for our patients, however, your physician will review any possible risks associated with this treatment prior to administering.

The benefit is usually seen approximately two to three months after the whole treatment protocol has completed; however, you may start to notice the benefit sooner than this.

In most cases, patients respond very well to just one treatment; however, the patient may require two to three injections. We never perform more than three injections within a span of 12 months.

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Regenerative Stem Cell Therapy | Treatment for Back Pain | VSI

Stem Cell Treatment – AA Spine & Pain

What is Stem Cell Therapy?

Stem Cell Therapy utilizes the patients own stem cells to replace dying cells and regenerate damaged tissue to eliminate pain. These cells are obtained from the patients own bone marrow or fat tissues through a sterile closed surgical process. The cells are isolated in a centrifuge and injected into the pain site to begin healing. The cells are collected and injected on the same day using specialized imaging technology to ensure the most effective treatment.

Stem Cell Therapy accelerates the bodys own natural healing processes and is effective for treating pain. When the body is injured, adult stem cells are dispatched to the area of the injury to regenerate healthy cells, but this isnt always enough. Stem Cell Therapy collects concentrated amounts of stem cells from healthy areas of the body, and injects the cells directly into the area of injury. Stem Cell Therapy is effective for many types of tissue including cartilage, tendons, ligaments, bone, and fibrous connective tissue. Stem Cell Therapy reduces pain and promotes healing without the need for pain medications or steroid injections.

Dr. Johnson and his compassionate staff at AA Spine & Pain Clinic believe that no one should have to live in pain. We will take the time to educate our patients about their conditions and their available treatment options so they can make the best decisions about their care. Each patient will receive individualized treatment based on their specific needs to ensure the best possible outcome.

You may be considering stem cell therapy if you suffer from ongoing pain from an injury or if you are currently managing pain through medication or injection therapy. Stem Cell Therapy is a relatively new procedure and is not yet covered by most insurances. We want to provide the best treatment options for your pain, and will review your specific situation and treatment options with you.

Each Stem Cell Therapy procedure is performed in our medical office and usually takes less than an hour to complete. It does not require surgery, general anesthesia, or hospital stays. Most people find they can return to work the day after receiving Stem Cell Therapy, but strenuous physical exercise should be avoided for several weeks afterwards to promote healing and to prevent injury.

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Stem Cell Treatment - AA Spine & Pain

Joint Stem Cell Therapy Reviews & Testimonials – ThriveMD

In 1964, the tips of my skis hit a snow bank and my bindings didnt release. At the time I knew something very very bad had happened! In the olden days, osteoscopic surgery hadnt been invented, so an incision was made from the medial clear across to the lateral knee and 80% of the cartilage was removed. Skip ahead 5 decades to an arthritic, painful knee that doesnt work well at all (And since the other knee has been taking most of the walking brunt, it isnt in good shape, either).

I was taking pain-pills just to get out of bed and be semi-functional. I asked the orthopedic surgeon at my HMO about alternatives (including stem-cell injections) and he tossed me a metal/plastic contraption that was about as big as a toaster (or so it seemed to me) saying that was as good as I could do. I had been researching stem cell research for several years and throughout I would have to go out of the country for treatment (thereby risking unforeseen consequences then and in the future). Through a series of synchronistic happenings, I discovered ThriveMD took stem cells from adipose tissue and mixed it with a patients own platelet-rich plasma (PRP). They then inject it into joints with the aid of fluoroscopy. I decided to get the procedure, and was jumping off the table and home within two hours. After 10 days, there was no discomfort from the procedure and I began reducing my pain medication. As I write this love note to my benefactors, I havent had to take anything for pain!

MY LIFE HAS CHANGED, MY KNEES ARE EVER SO HAPPY AND IVE NOT HAD TO TAKE ANY PAIN PILLS SINCE THE FINAL INJECTION OF PRP!!!

THANK YOU FOR GIVING ME BACK MY PAIN-FREE MOBILITY AND THE POTENTIAL TO GROW BACK NEW CARTILAGE.*

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Joint Stem Cell Therapy Reviews & Testimonials - ThriveMD

Stem Cell Transplant | Stem Cell Therapy & Treatment

Current Patients 480.998.7999

New Patients 480.400.8506

Mycal's Story: Knee Conditions

Cara's Story: Hereditary Inclusion Body Myopathy

Dale's Story: No more Pain Medications

"I wanted to thank you all so much for making every step of my procedure pleasant and easy. Your dedication to excellence shines through."

- Jen R, Minnesota

"We appreciate your excellence and expertise. You treated us like family and have given us hope. I am walking without limping."

- Doug J, New Mexico

"I just wanted you to know how enormously grateful I am to all of you there. The stem cell treatment had a profound impact on my life! I can't thank you enough."

- Sean H, Arizona

"I can run my finger along the area of the achilles tendon where the damaged fibers were and feel a distinct edge. In terms of function, it is very close to full function. My never ending thanks for what you have done for me!"

- Kathy D, California

" I just got back from visiting Dr. Karen Herbst and she was amazed at my improvement. I have lost 15 more pounds and lost lots of the fibrous tissue in the tumors. She was amazed. I have tons more energy that I feel I have a life now that I did not have. Brain fog is much better now. As I say, I have a life now, a life that is so much better than it was 6 months ago. Again, thank you and God bless."

- Linda K, Kansas (Dercums disease patient)

Nykol is a beautiful, bright 22 year old student who underwent an Adult Stem Cell Therapy utilizing Stem Cells from her own fat. Hear her story and share her inspiring message of HOPE!

- Nykol

Eyrk Anders, Professional MMA fighter and rising star talks about his experience with Dr. Todd Malan's Stem Cell Therapy and his road to recovery from multiple sports related Injuries without the need for invasive surgery.

- Eyrk

Meet Jim, He is living with Periodic Paralysis, a rare inherited disorder that causes episodes of weakness and muscle paralysis. Often patients have limited treatment options and can have a severely impaired quality of life. Listen to Jim's story of hope and how Adult Stem Cell Therapy improved his quality of life. Stem Cell Therapy is considered experimental and individual results may vary. Contact us at mystemcelltherapy.com to learn more and see if Adult Stem Cell Therapy may be for you.

- Jim

Keith had suffered for many years with pain in his ankles which affected his ability to walk and stand and severely impacted his quality of life and his activity level. 1 year after his adult stem cell therapy from adipose stem cells he explains how his life has improved significantly.

- Keith

Charcot Marie Tooth disease is an inherited neurological condition affecting 1 in 2500 people in the United States with no known cure. Stem cell therapy is giving her back increased mobility and stability. "All of a sudden, I have hope!"

- Rojean

Nick received cardio-version five times to treat his atrial fibrillation before searching for a treatment option that could restore his quality of life. After a stem cell treatment, Nick is enjoying improved energy and has not had to become "pacemaker dependent".

- Nick

Wyatt suffered a traumatic brachial plexus injury as a result of a motorcycle accident. Dr. Malan has worked with him using experimental stem cell therapy to restore nerve function and reduce pain.

- Wyatts Story

Micaela B. received a stem cell treatment in June, 2017 for Arachnoiditis and updates her progress as she is learning to walk again. Watch her take some of first steps as her wheelchair sits nearby.

- Micaela

Dr. Todd Malan is considered one of the true pioneers of fat derived stem cell therapies in the USA. In October of 2009, Dr. Todd Malan was the first U.S. physician to utilize adipose or fat derived stem cells for soft tissue reconstruction. He has described his techniques and experience as an author in two medical textbooks as well as having presented at dozens of stem cell conferences worldwide.

Those who access this web site should consult their Physician before following any of the suggestions or making any conclusions from the website.

The website contains the opinions of multiple authors intended for educational purposes with the understanding that the publications or editorials are not providing any professional services. CRCM and its associates disclaim any liability, loss, or risk, directly or indirectly of the application of any of the contents of the website.

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Stem Cell Transplant | Stem Cell Therapy & Treatment

Personalized Regenerative Medicine

I am continuing to get results: For 8 months I could not stress my left knee with squats or leg presses. The last 2 days (5 & 6th day on Stemgevity) I said what the hell, my knee feels so go good, I will give it a shot and do some one legged presses with my previously damaged knee (it has been 8 months and it just would not take that kind of stress).

So, for the last 2 days in a row I have been doing them with heavy weight. Unbelievable -completely pain-free during and after, and no soreness the next day. Just incredible. I have been taking every exotic natural product under the sun to heal it and the Stemgevity did it, made it happen. It is completely well playing racquet ball with full stress on it and no problems no soreness and no pain. My energy levels are way up and you feel kind of a glow. I can work long hard days at age 65 and at the end of the day, I still feel great. I might as well be 20. This is perfect as our business is intense (selling bank repo homes at high volume) and I simply have to keep up. Also, I had bad strep throat and a chronic knee and shoulder -and yes, the shoulder is now pain free and no longer tight after playing intense racquetball. Again, amazing.

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Personalized Regenerative Medicine

Stem Cell Doctors Delaware, Stem cell injections, Stem cell …

Stem cells are a particular sort of cells that have the capacity to repeat and recover themselves inside the human body. Grown-up mesenchymal foundational microorganisms work as a sort of interior repair framework, having the capacity to separate to recharge different cells. These regenerative cells have the one of a kind ability to remain an undifferentiated cell or turn into another sort of cell with a particular capacity inside the human body, for example, bone, ligament, muscle or skin cells. Given their great and extraordinary regenerative nature, fat inferred regenerative cell treatment offers new potential in the treatment of specific signs.

Delaware, USA a small Mid-Atlantic U.S. state, sits on a peninsula marked by dune-backed beaches bordering the Atlantic Ocean, Delaware River and Delaware Bay. In Dover, the capital, First State Heritage Park encompasses 18th-century Colonial landmarks like the Georgian-style Old State House.

Stem cells have the capability to modify into specific cell types. There are two defining characteristics of a stem cell are perpetual self-renewal and the ability to differentiate into a specialized adult cell type.

We offer a complete way to deal with construct their training by teaching people in general in a straightforward way. Our careful screening process insures doctors a high quality treatment for patients suffering from inflammatory and degenerative conditions.

For further information about our systems or doctors Contact us today.

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Stem Cell Doctors Delaware, Stem cell injections, Stem cell ...

Stem Cell Transplantation and Cellular Therapy Center | MD …

MDAnderson's Stem Cell Transplantation and Cellular Therapy Center is one of the largest facilities in the world for stem cell transplants. During stem cell transplants, unhealthy bone marrow is replaced by healthy stem cells. These stem cells then develop into healthy marrow that produces different types of blood cells.

We perform more than 850 procedures for adults and children each year, more than any other center in the nation. The cancers, hematologic diseases and autoimmune disorders we treat include:

As part of one the nations top cancer centers, we provide comprehensive stem cell transplant services. These include a clinic dedicated to monitoring and managing graft versus host disease, a condition that can arise from stem cell transplantation; and a matched unrelated donor program, which has earned us recognition as a specialized center for stem cell transplants by the National Marrow Donor Program.

We also maintain our own cell processing laboratory for preparing safe and effective tissues for transplantation and perform more than more than1,000 collections each year through our apheresis and stem cell collection unit.

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Stem Cell Transplantation and Cellular Therapy Center | MD ...