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Category Archives: Stem Cell Therapy

stem cell therapy treatment for dystonic cerebral palsy by dr alok sharma, mumbai, india – Video

Posted: November 11, 2013 at 2:42 pm


stem cell therapy treatment for dystonic cerebral palsy by dr alok sharma, mumbai, india
improvement seen in just 3 months after stem cell therapy treatment for dystonic cerebral palsy by dr alok sharma, mumbai, india. Stem Cell Therapy done date...

By: Neurogen Brain and Spine Institute

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stem cell therapy treatment for dystonic cerebral palsy by dr alok sharma, mumbai, india - Video

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stem cell therapy treatment for Cerebral Palsy with Hemiplegia by dr alok sharma, mumbai, india – Video

Posted: November 11, 2013 at 2:42 pm


stem cell therapy treatment for Cerebral Palsy with Hemiplegia by dr alok sharma, mumbai, india
improvement seen in just 5 days after stem cell therapy treatment for cerebral palsy with hemiplegia by dr alok sharma, mumbai, india. Stem Cell Therapy done...

By: Neurogen Brain and Spine Institute

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stem cell therapy treatment for Cerebral Palsy with Hemiplegia by dr alok sharma, mumbai, india - Video

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Stem Cell Therapy | Regenerative Medicine | Bone Marrow Stem Cells …

Posted: November 8, 2013 at 1:40 pm

Home > Stem Cell Therapy

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Source: Research by Tim Friend and Dan Vergano, USA TODAY By Frank Pompa and Julie Snider, USA TODAY

Although the general public considers stem cell therapy an innovative, cutting-edge treatment, the fact is that this kind of therapy already has a lengthy history. In the past, however, stem cells were difficult and very expensive to obtain. Luckily, the advent of improved equipment and techniques has meant that stem cells can now be acquired through a simple procedure.

If the area in question has an insufficient blood supply, this is termed an area of hypoxia, otherwise known as low oxygen content. Hypoxia areas can include the rotator cuff, the joints, meniscus tissue, and other spots with tendon injuries. Typically, these areas are unable to heal properly without help, as the body does not send enough repair cells to the afflicted areas. The inadequate supply of blood in these areas means that the body fails to sense the injury. Fortunately, we are generally able to treat the area, if the injury isnt severe, with platelet-rich plasma. This works by effectively mimicking a blood supply, allowing the platelets to sense the injury and release growth factors, which then prompt the body to send various stem cells to the area.

In most cases, 2 oz. (60 cc) of bone marrow aspirate is required. The aspirate includes platelets, mesenchymal stem cells, and other kinds of stem cells used in adult stem cell therapy. After aspiration, the bone marrow is placed inside a special container, which in turn is placed into a machine known as a centrifuge. The centrifuge spins the material at a high rate of speed, and this process separates the platelets and stem cells from the remainder of the blood products. It is this concentration of bone marrowcalled BMAC, or bone marrow aspiration concentratethat is reintroduced to the injured area during stem cell therapy.

Once this is accomplished, the platelets then release signal proteins and growth factors that activate the stem cells. Its important to understand that stem cells by themselves are unable to repair the injured area. These cells have to be properly directed, and platelets perform this function. In effect, stem cells are construction workers and the platelets are their supervisors. Once they are activated, these stem cells perform a variety of valuable functions. Apart from repairing damage to the injured areas, stem cells help damaged cells repair themselves and participate in the repairing process.

Generally, the repair process takes two to three months to complete, but in most cases improvement can be noticed before then. About four to six weeks after the stem cell injection, the patient receives a platelet-rich plasma injection on the afflicted area; this is followed by another injection four to six weeks afterward. These injections enable the stem cells to continue growth and multiply into cartilage tissue.

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Stem Cell Therapy | Regenerative Medicine | Bone Marrow Stem Cells ...

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Zaal Kokaia and Olle Lindvall – Stem cell therapy for stroke and other neurodegenerative diseases – Video

Posted: November 8, 2013 at 5:45 am


Zaal Kokaia and Olle Lindvall - Stem cell therapy for stroke and other neurodegenerative diseases
Interview wtth Zaal Kokaia and Olle Lindvall, researchers at Lund Stem Cell Center.

By: Medicinska Fakulteten, LU

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Zaal Kokaia and Olle Lindvall - Stem cell therapy for stroke and other neurodegenerative diseases - Video

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PURTIER Placenta Live Stem Cell Therapy (ENGLISH) – Video

Posted: November 6, 2013 at 4:40 am


PURTIER Placenta Live Stem Cell Therapy (ENGLISH)
If you have other enquiries, please contact us at +65 8200 8227 Email: TrueStemCell@gmail.com PURTIER Placenta Live Stem Cell Therapy has been effective for ...

By: Kim Purtier Placenta

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PURTIER Placenta Live Stem Cell Therapy (ENGLISH) - Video

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PURTIER Placenta Live Stem Cell Therapy (CHINESE) – Video

Posted: November 3, 2013 at 5:45 pm


PURTIER Placenta Live Stem Cell Therapy (CHINESE)
??? PURTIER Placenta ???????? If you have other enquiries, please contact us at +65 8200 8227 Email: TrueStemCell@gmail.com PURTIER Placenta Live Stem Cell T...

By: Kim Purtier Placenta

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PURTIER Placenta Live Stem Cell Therapy (CHINESE) - Video

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D'AGE Sheep Placenta Extract / Stem Cell Therapy – Video

Posted: November 1, 2013 at 5:44 am


D #39;AGE Sheep Placenta Extract / Stem Cell Therapy
D #39;AGE is one of our most precious project, we created the environment and incorporated sand glass into the visual, all the sand effects details was crafted with a lot of TLC.

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D'AGE Sheep Placenta Extract / Stem Cell Therapy - Video

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Stem Cell Therapy & Stem Cell Treatment – Cell Therapy Center Emcell

Posted: November 1, 2013 at 5:44 am

Our Cell Therapy Center offers advanced patented methods of stem cell treatment for different diseases and conditions. The fetal stem cells we use are nonspecialized cells able to differentiate (turn) into any other cell types forming different tissues and organs. Fetal stem cells have huge potential for differentiation and proliferation and are not rejected by the recipients body more...

Stem cell therapy has proven to be effective for organs and tissues restoration, and for fight against the incurable and obstinate diseases. We treat patients with various diseases, such as diabetes mellitus, multiple sclerosis, Parkinsons disease, Duchenne muscular dystrophy, cancer, blood diseases and many others, including rare genetic and hereditary diseases. Among our patients there are also people willing to undergo anti-aging treatment. Stem cell treatment allows for achieving effects that are far beyond the capacity of any other modern method more...

For over 19 years, we have performed more than 7,500 transplantations of fetal stem cells to people from many countries, such as the USA, China, Italy, Germany, Denmark, UAE, Egypt, Russian Federation, Greece and Cyprus, etc. Our stem cell treatments helped to prolong life and improve life quality to thousands of patients including those suffering from the incurable diseases who lost any hope for recovery.

With Cell Therapy Center EmCell located in Kiev, Ukraine, we have numerous partners in various countries devoted to provide medical advice on EmCell stem cell treatment locally.

We are always open for medical, businessandscientificcooperation.

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Stem Cell Therapy & Stem Cell Treatment - Cell Therapy Center Emcell

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stem cell therapy treatment for autism from united kingdom by dr alok sharma, mumbai, india – Video

Posted: October 27, 2013 at 11:45 pm


stem cell therapy treatment for autism from united kingdom by dr alok sharma, mumbai, india
amazing improvement seen in just 1 months after stem cell therapy treatment for autism from united kingdom by dr alok sharma, mumbai, india. After Stem Cell ...

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stem cell therapy treatment for autism from united kingdom by dr alok sharma, mumbai, india - Video

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No evidence to support stem cell therapy for pediatric optic nerve hypoplasia

Posted: October 22, 2013 at 3:40 pm

Oct. 22, 2013 A study performed at Children's Hospital Los Angeles found no evidence that stem cell therapy improves vision for children with optic nerve hypoplasia (ONH). Their results are reported in the Journal of the American Association for Pediatric Ophthalmology and Strabismus (AAPOS).

ONH, an underdevelopment of optic nerves that occurs during fetal development, may appear either as an isolated abnormality or as part of a group of disorders characterized by brain anomalies, developmental delay, and endocrine abnormalities. ONH is a leading cause of blindness in children in North America and Europe and is the only cause of childhood blindness that shows increasing prevalence. No treatments have been shown to improve vision in these children.

With no viable treatment options available to improve vision, ophthalmologists are becoming aware that families with children affected by ONH are travelling to China seeking stem cell therapy, despite lack of approval in the United States and Europe or evidence from controlled trials. The American Association for Pediatric Ophthalmology and Strabismus has also expressed its concern about these procedures. In response to this situation, pediatric neuro-ophthalmologist Mark Borchert, MD, Director of both the Eye Birth Defects and Eye Technology Institutes in The Vision Center at Children's Hospital Los Angeles, realized that a controlled trial of sufficient size was needed to evaluate whether stem cell therapy is effective at improving optic nerve function in children with ONH. He agreed to conduct an independent study when asked by Beike Biotech, a company based in Shenzhen, China, that offers treatment for ONH using donor umbilical cord stem cells injected into the cerebral spinal fluid.

Beike Biotech agreed to identify 10 children with bilateral ONH (ages 7-17 years) who had volunteered to travel to China for stem cell therapy and who agreed to participate in the study; Children's Hospital was to find case matched controls from their clinic. However, only two case-controlled pairs were evaluated because Beike Biotech was only able to recruit two patients. Treatments consisted of six infusions over a 16-day period of umbilical cord-derived mesenchymal stem cells and daily infusions of growth factors. Visual acuity, optic nerve size, and sensitivity to light were to be evaluated one month before stem cell therapy and three and nine months after treatment.

No therapeutic effect was found in the two case-control pairs that were enrolled. "The results of this study show that children greater than 7 years of age with ONH may have spontaneous improvement in vision from one examination to the next. This improvement occurs equally in children regardless of whether or not they received treatment. Other aspects of the eye examination included pupil responses to light and optic nerve size; these did not change following treatment. The results of this research do not support the use of stem cells in the treatment of ONH at this time," says lead author Cassandra Fink, MPH, program administrator at The Vision Center, Children's Hospital Los Angeles.

Confounding the trial was that subjects received additional alternative therapies (acupuncture, functional electrical stimulation, and exercise) while receiving stem cell treatments, which was contrary to the trial protocol. The investigators could not determine the effect of these additional therapies.

"This study underscores the importance of scientifically testing these procedures to validate them and also to ensure their safety. Parents of afflicted children should be aware that the science behind the use of stem cell technology is unclear. This study takes a step toward testing this technology and finds no beneficial effect," says William V. Good, MD, Senior Associate Editor, Journal of AAPOS and Clinical Professor of Ophthalmology and Senior Scientist at the Smith-Kettlewell Eye Research Institute.

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No evidence to support stem cell therapy for pediatric optic nerve hypoplasia

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