Sonya Dakar Snake Venom Facial on Good Morning America – with NutraSphere Stem Cell Transformer – Video

24-01-2012 11:14 Skincare Guru Sonya Dakar (www.sonyadakarskinclinic.com) on Good Morning America (GMA) Bizarre Beauty Segment showcases her Snake Venom Facial Treatment at the Sonya Dakar Skin Clinic in Beverly Hills utilizing her new NutraSphere Stem Cell Transformer. Made with synthetic snake venom the Stem Cell Transfomer works to inhibit muscle contraction giving skin a natural botox-like effect on the skin. Learn more at http://www.sonyadakarskinclinic.com

Read the original here:
Sonya Dakar Snake Venom Facial on Good Morning America - with NutraSphere Stem Cell Transformer - Video

Documenting THE CURE: Seeking Stem Cell Healing Offshore — MS patient – Video

13-02-2012 21:11 Documenting THE CURE is a funding project to write a book about patients leaving the US to receive natural healing Stem Cell treatments in Panama. DONATE: http://www.kickstarter.com The FDA ban on all stem cell treatments forces Americans to seek adult (non-embryonic) stem cell treatments offshore. This new type of stem cell treatment is documented in Dr. Roger Nocera's new book, Cells That Heal Us From Cradle To Grave: A Quantum Leap in Medical Science. JL Thompson will document the effectiveness of this treatment on an MS patient, and other patients seeking treatment at the Panama clinic.

Read more:
Documenting THE CURE: Seeking Stem Cell Healing Offshore -- MS patient - Video

Edmond Veterinary Hospital Offers Pet Stem Cell Therapy for Arthritis

EDMOND, OK--(Marketwire -02/19/12)- The team of veterinarians at White Oaks Veterinary Clinic in Edmond announced that the animal hospital is now offering pet stem cell therapy. This new regenerative medicine for pets helps animals suffering from degenerative joint disease or arthritis. Based on the research and technology provided by a company called Stemlogix, White Oaks Veterinary Clinic can now offer affordable, same-day stem cell therapy to dogs suffering from these debilitating conditions. The Stemlogix technology enables the Edmond veterinarians to extract adult stem cells from a pet's own body fat, virtually eliminating the risk of rejection or negative reaction.

"I see far too many otherwise healthy pets at our veterinary clinic that have been hobbled by the effects of arthritis," Dr. Jennifer Bianchi said. "We're thrilled to be able to offer this holistic solution which harnesses the pet's own healing power to aid in the pain relief process. Our main goal with stem cell therapy is to reduce long-term inflammation and slow the progression of cartilage damage. The motto at our veterinary hospital is, 'Quality service at a great value.' Being able to provide stem cell transplants in about two hours at an affordable rate helps us live up to that promise and makes me happy to think of the pets we'll be able to help move freely again."

The veterinary hospital now has an on-site stem cell laboratory for producing stem cells. The on-site lab allows for immediate processing after extraction as the stem cells have a limited lifespan outside of the pet's body. Once the fat cells have been procured from the pet, the stem cells are isolated and returned back to the host body within ninety minutes. Stemlogix promotes this therapy as being able to relieve pain and increase range of motion in pets suffering with joint pain, arthritis, tendon and ligament damage, hip dysplasia and cartilage damage.

Once implanted, stem cells have the ability to stimulate regeneration, reduce pain and inflammation, and assist in the repair of damaged tissue. They can also differentiate into other cell types such as tendon, cartilage, bone, and ligament, which may further aid the repair process. The Edmond veterinarian says that pain relief can be expected within a few days to a few weeks. Pet owners are cautioned to gradually allow their pets to experience increased activity so as not to interfere with the healing process.

As a holistic veterinarian, White Oaks Veterinary Clinic combines natural healing techniques, such as pet acupuncture, with traditional veterinary medical services. The animal hospital was founded in 1997 and is currently practicing out of a 6500 square foot facility. Equine vet, Dr. Mark Bianchi, offers general and advanced services such as surgery, equine dentistry, lameness evaluations and reproduction consultations.

White Oaks Veterinary Clinic is located at 131 W. Waterloo Rd. Further information on the animal hospital or pet stem cell therapy may be obtained by visiting the website at http://www.whiteoaksvet.com.

Original post:
Edmond Veterinary Hospital Offers Pet Stem Cell Therapy for Arthritis

Stem-cell scientists find right chemistry

The day – Valentine’s Day, as it happened – began in a whirl of coffee cups, bustling dogs and homework, then a brisk walk around the block – in other words, business as usual for a UC Irvine couple who are a high-profile science team engaged in cutting-edge stem-cell research.

Brian Cummings and Aileen Anderson, whose stem-cell treatment for spinal cord injury is being tested on patients in Switzerland, say their office – only a short walk from their home on the UCI campus – has a family feel as well.

At UCI’s recently constructed Stem Cell Research Center, they supervise a crew of young students and technicians whose bond with their mentors is so close that they call themselves the “Andermings.”

“I suppose it’s like having an orphanage,” Cummings joked as he prepared for the day ahead.

It would include a lengthy meeting with the Andermings on how best to grow human embryonic stem cells without animal-cell contamination, a critique of a doctoral candidate’s presentation of potentially significant new findings and a session with Alzheimer’s researchers at an institute called UCI MIND.

But first, Cummings, Anderson and their two dogs – Chesapeake and Indiana – had to get the couple’s 6-year-old daughter, Camryn, to school.

After Camryn finished her homework (completed strategically a day in advance, leaving more time for afternoon play), they took the long way round to the Montessori school, also easy walking distance from their home.

Along the way, they encountered another faculty couple, from the German department, and their dog. They stopped with Camryn, giggling as the dogs rolled and tumbled on a neighbor’s lawn.

•••

Cummings, 47, and Anderson, 45, together since they were both undergrads at the University of Illinois, say living and working with each other comes naturally.

“People say, ‘Do I need a break from her?’ ” Cummings said as he wrangled the dogs.

“More people say, ‘Do you need a break from him?’ ” Anderson replied.

Later, the conversation transitions into a science meeting as the two take the 20-minute walk past UCI’s Ecological Preserve and into the Sue and Bill Gross Stem Cell Research Center. The energy-efficient building, with an open design to encourage chance meetings among scientists, houses a roster of high-powered researchers as well as their experimental subjects: rodents.

The center was seeded by $27 million in state stem-cell funding and $10 million from donors Bill and Sue Gross. The building was completed in 2010.

Now, researchers working there cultivate lines of human embryonic stem cells that can grow into a variety of cell types, from brain cells to liver and heart cells.

The ability to coax stem cells into many forms – and with it the potential to treat Alzheimer’s, paralysis and a long list of diseases – is fueling an explosion of research around the nation and across the state.

Anderson and Cummings showed that their stem-cell treatment, using cells derived from aborted fetuses, allowed partially paralyzed rats to walk again. The rat’s recovery was revealed in a dramatic before-and-after video.

So far, the human trial of the treatment in Switzerland is showing no ill effects on patients, Cummings said.

But stem-cell research is buffeted by political controversy, funding uncertainties and, sometimes, attacks by stem-cell research opponents.

The trial of the treatment developed by Cummings and Anderson with their collaborators, StemCells Inc., was the first of its kind in the world when it was announced in 2010.

In some ways, that made the family – and their team – a target.

Concerns about possible intruders prompted the couple to place a camera at their front door. Cummings’ tires have been slashed, he said, though he doesn’t know if that was the work of people who oppose the harvesting of human embryonic stem cells, animal-rights activists (angered by experiments on rodents) or perhaps a disgruntled student.

At the moment, Cummings and Anderson are running five research programs and leading 17 researchers. All of it is funded by $2.2 million in grants, much of it from California Institute for Regenerative Medicine, or CIRM.

Created by voter initiative – Proposition 71 in 2004 – CIRM is California’s $3 billion answer to federal restrictions on funding for stem-cell research. Those restrictions were started by the Bush administration and eased, but not eliminated, under President Obama.

Cummings said opposition to their research is based, in part, on incorrect assumptions.

A big one is that the research involves the destruction of embryos. In reality, they work with balls of cells created at an earlier stage of human development, called blastocysts – a distinction many opponents do not draw.

“Embryonic stem cells don’t come from embryos,” he said. “And they never have.”

The raw material comes from fertility clinics and otherwise would be discarded.

Cummings says those who say that such research is immoral have it wrong.

“The argument is backward,” he said. “It’s immoral to throw away this stuff and not use it to help someone.”

••

During their meeting with the Andermings, project leader Hal Nguyen described the group’s plan to grow a series of stem-cell cultures and check a compelling question: Is some of a stem cell’s transformation guided by the microscopic environment in which it dwells, or is it entirely dictated by the cell’s internal workings?

“The plan is in the email,” Nguyen told Anderson.

“Dude, I have 400 emails,” Anderson said.

The group’s task was meant to answer a classic nature-nurture question, Anderson said. In this case, “nature” is the DNA coding in the stem cell itself, while “nurture” is the cellular environment, with all its floating nutrients and chemical signals.

“Will that environment, the extrinsic factor, trump anything the cell can do?” Anderson had wondered earlier. “Or is the intrinsic programming of the cell the principal determinant? Is that the main driving factor?”

Cummings stood by in the tiny meeting room while the researchers batted around their questions and answers. He said Anderson, a spinal cord specialist, was the expert in this arena, though he couldn’t help piping in during a discussion of the medium in which the cells would be grown.

“You’re comparing two different medias, too?” Cummings asked.

“We all know what we’re talking about,” Anderson told him. “Don’t interrupt.”

Then it was on to a larger, mostly empty meeting room where Sheri Peterson, a doctoral candidate, wanted to test her presentation on Cummings and Anderson.

Her eventual target is an advancement committee that will determine her future. The presentation will be crucial in her quest for a Ph.D.

Peterson ran through an array of slides projected on a large screen to reveal her findings. Inflammation of damaged tissue being regenerated in rats, she said, might be eased or worsened simply by manipulating proteins surrounding the regenerating cells.

Again, the topic was in Anderson’s wheelhouse.

“My notes said, ‘Nicely done,’ ” Cummings told Peterson.

“He’s not an aficionado,” Anderson said.

The husband-and-wife researchers then provided her with a detailed, slide-by-slide critique.

•••

Cummings’ expertise centers on traumatic brain injury. But he also is an expert at the complex task of marshaling grant funding. On his office wall, a whiteboard densely covered with writing tells the story: Cummings must police incoming and outgoing grants like an air traffic controller, timing the grants and the work they fund to match years of employment for graduate students and staff members.

The grants come and go over months and years, and so do the students and staff. Get the timing wrong, and you might have funding with no researchers, or researchers with nothing to do.

“At UCI, I’m like a small-business owner,” Cummings said.

Over a hasty lunch in his office (cold sandwiches grabbed during a trip, with Anderson, to a nearby campus snack shop), Cummings spoke of the merging of home and office life.

Writing up grant requests takes up both researchers’ time. Often, as they write, Camryn is playing in the background, whether at home or at the office. And research collaborators can show up wanting to conduct interviews at any time, holidays included.

“I did draw a line in the sand at Christmas Eve,” Anderson said.

Cummings knows such stress has driven other husband-and-wife teams into open conflict. But that just isn’t his and Anderson’s style. In fact, he said, keeping a scientific perspective, even at home, might help keep things calm.

“There’s no need to be yelling and shouting at each other because we don’t think that way,” he said. “You’re supposed to believe nothing until you prove it.”

That doesn’t mean they don’t differ, sometimes strongly, over scientific details.

“They don’t always agree with each other, and that’s good,” said Brittany Greer, an intern in their lab and an Anderming.

Nurturing the students and young scientists is part of the pleasure of doing science for both halves of the research couple, Anderson said.

“You start to look at this crowd of people as your second family,” she said. “They’re your kids. That is fun and rewarding for sure.”

See the original post here:
Stem-cell scientists find right chemistry

ImmunoCellular Therapeutics To Present at Targeting Stem Cells Symposium during 19th Annual Molecular Medicine Tri …

LOS ANGELES--(BUSINESS WIRE)--

ImmunoCellular Therapeutics, Ltd. (“ImmunoCellular” or the “Company”) (OTCBB: IMUC –News), a biotechnology company focused on the development of novel immune-based cancer therapies, today announced that John Yu, MD, Chairman and Chief Scientific Officer of ImmunoCellular Therapeutics, will deliver a presentation at the Cambridge Healthtech Institute’s inaugural Targeting Stem Cells Symposium as a part of the 19th Annual Molecular Medicine Tri-Conference from February 19-23, 2012. Dr. Yu will present during a session highlighting Emerging Cancer Stem Cell Therapeutics, featuring the Company’s discovery and development of cancer stem cell therapy.

The Cambridge Healthtech Institute’s Targeting Cancer Stem Cells Symposium reflects a growing interest in cancer stem cells and their developing importance in the field of oncology, as more pharmaceutical and biotech companies have begun to focus on cancer stem cells as oncological drug targets. The symposium will feature case studies from those working with cancer stem cells, a history of the role of cancer stem cells in treatment resistance, as well as highlights from ongoing novel cancer stem cell therapeutic development programs and platforms.

About ImmunoCellular Therapeutics, Ltd.

IMUC is a Los Angeles-based clinical-stage company that is developing immune-based therapies for the treatment of brain and other cancers. The Company recently commenced a Phase II trial of its lead product candidate, ICT-107, a dendritic cell-based vaccine targeting multiple tumor associated antigens including those associated with cancer stem cells for glioblastoma treatment. To learn more about IMUC, please visit www.imuc.com.

Forward-Looking Statements

This press release contains certain forward-looking statements that are subject to a number of risks and uncertainties, including the risk that any patents issued covering IMUC’s vaccine technology will not provide significant commercial protection for IMUC’s technology or products; the risk that the safety and efficacy results obtained in the Phase I trial for the dendritic cell- based vaccine will not be confirmed in subsequent trials; the risk that the correlation between immunological response and progression-free and overall survival in the Phase I trial for ICT-107 will not be reflected in statistically significant larger patient populations; the risk that IMUC will not be able to secure a partner company for development or commercialization of ICT-107. Additional risks and uncertainties are described in IMUC's most recently filed SEC documents, such as its most recent annual report on Form 10-K, all quarterly reports on Form 10-Q and any current reports on Form 8-K. IMUC undertakes no obligation to publicly update or revise any forward-looking statements, whether as a result of new information, future events or otherwise.

See more here:
ImmunoCellular Therapeutics To Present at Targeting Stem Cells Symposium during 19th Annual Molecular Medicine Tri ...

China medicdal tourism– Cirrhosis–Stem cells therapy 1.mp4 – Video

16-02-2012 20:19 Many of our patients travel to Guangzhou from all over the world for medical treatment and tourism. China medical tourism can help with becoming a patient, travel arrangements and language assistance. If you want to know more about our services, please browse the web:htttp://www.medicaltourism.hk/ or mail to us: giels-x@medicaltourism.hk firstcare-china@hotmail.com Adult stem cells provide real improvement for cirrhosis patients Breakthrough adult stem cell research has shown that stem cells are able to regenerate and repair damaged or destroyed liver cells. For patients with cirrhosis, this means improved liver function, decreased pain and a significantly improved quality of life. Stem cell therapy offers the safest and most effective treatment alternative for liver cirrhosis and it is quickly becoming a preferred treatment in Asia. China medical tourism offers unique access to the best stem cell therapies available at leading medical facilities. Supporting data and statistics Three out of every four patients treated experienced a significant improvement in their condition following stem cell treatment. The following clinical results were observed: •Improved liver function •Decreased pain •Improved values for liver function, PLT (blood platelet) and blood ammonia You may see improvements during your hospitalization due to neurotrophic factors released during the stem cell transplantation, which stimulate nerve activity; new cells will grow for up to six months after you ...

Here is the original post:
China medicdal tourism-- Cirrhosis--Stem cells therapy 1.mp4 - Video

Blood Cancer Patients To Benefit From Stem Cell Research Breakthrough

Editor's Choice
Academic Journal
Main Category: Lymphoma / Leukemia / Myeloma
Also Included In: Blood / Hematology;  Cancer / Oncology;  Stem Cell Research
Article Date: 17 Feb 2012 - 9:00 PST

email to a friend   printer friendly   opinions  

Current Article Ratings:

Patient / Public: Healthcare Prof:
A landmark study published Online First in The Lancet Oncology , describes the discovery of a unique matching mechanism that affects the outcome of blood stem cell transplants and helps improving survival rates for sufferers from leukemia and other blood cancers.

Often, the last glimmer of hope for blood cancer sufferers who remain unresponsive to all other treatment options is to receive blood stem cells, also called haemopoietic cells, from an unrelated, living donor.

An allele is an alternative form of a gene, i.e. one member of a pair that is located at a specific position on a specific chromosome. Doctors look for matches of the human leukocyte antigen (HLA) type of five key alleles that occur in a blood stem cell to achieve a 10/10 match to reduce the risks linked to transplants, such as acute Graft versus Host Disease (aGvHD). However, due to complex reasons that are not fully understood, even a 10/10 match does not guarantee a successful transplant.

Research leader Dr. Bronwen Shaw, Clinical Senior Scientist at the blood cancer charity Anthony Nolan and her collaborator Katharina Fleischhauer from the San Raffaele University in Milan have discovered a hidden role of an additional allele (HLA-DPB1) that gives new insight on transplant outcomes.

Researchers previously thought that DPB1 had not impact on transplant outcomes, as it is not often matched between donor and patient. However, the new study has revealed that it is possible to have good, i.e. permissive and bad, i.e. non-permissive DPB1 matches that can have a significant impact on transplant outcomes.

The International Histocompatibility Working Group team retrospectively assessed 5,428 transplants with a 10/10 match, discovering that 20% of these or 1,719 transplants were HLA-DPB1 matches, with 31% or 2,670 transplant being permissive mismatches and 49% or 4,150 transplant being non-permissive mismatches.

Non-permissive mismatches were linked to a substantially increased risk of overall mortality and severe aGvHD as compared with permissive mismatches.

Dr. Bronwen Shaw, Clinical Senior Scientist at Anthony Nolan, stated:

"These findings provide a practical, clinical strategy for lowering the risk of death following an unrelated-donor blood stem cell transplant. It builds on the gold-standard which already exists for transplants and could be easily incorporated into the current framework transplant centers use when trying to find the best match."

The team also established that DPB1 is a potential indicator of transplant outcome in cases where a 10/10 match cannot be found. In such incidents, doctors sometimes use a donor with a 9/10 match, especially if the patient is likely to die unless a transplant is performed quickly.

Chief Executive of Anthony Nolan, Henny Braund concluded:

"This research is incredibly exciting. Anthony Nolan created the world's first stem cell register in 1974. Since that time, we have been committed to saving as many lives as possible through a combination of providing matches through our register and exploring the science behind transplants to improve survival rates. This study provides a genuine breakthrough in a very complex scientific area and will undoubtedly help save many more lives in the future."

Written by Petra Rattue
Copyright: Medical News Today
Not to be reproduced without permission of Medical News Today

Visit our lymphoma / leukemia / myeloma section for the latest news on this subject. Please use one of the following formats to cite this article in your essay, paper or report:

MLA

Petra Rattue. "Blood Cancer Patients To Benefit From Stem Cell Research Breakthrough." Medical News Today. MediLexicon, Intl., 17 Feb. 2012. Web.
17 Feb. 2012. <http://www.medicalnewstoday.com/articles/241858.php&gt;

APA

Please note: If no author information is provided, the source is cited instead.


Rate this article:
(Hover over the stars then click to rate) Patient / Public:
or Health Professional:

Please note that we publish your name, but we do not publish your email address. It is only used to let you know when your message is published. We do not use it for any other purpose. Please see our privacy policy for more information.

If you write about specific medications or operations, please do not name health care professionals by name.

All opinions are moderated before being included (to stop spam)

Contact Our News Editors

For any corrections of factual information, or to contact the editors please use our feedback form.

Please send any medical news or health news press releases to:

Note: Any medical information published on this website is not intended as a substitute for informed medical advice and you should not take any action before consulting with a health care professional. For more information, please read our terms and conditions.


See more here:
Blood Cancer Patients To Benefit From Stem Cell Research Breakthrough

BioTime CEO Michael D. West to Present at New York Stem Cell Summit

ALAMEDA, Calif.--(BUSINESS WIRE)--

BioTime, Inc. (NYSE Amex: BTX), a biotechnology company that develops and markets products in the field of regenerative medicine, today announced that Chief Executive Officer Michael D. West, Ph.D. will present at the 7th Annual New York Stem Cell Summit at Bridgewaters New York City on Tuesday, February 21, 2012 at 8:48 a.m. ET. Dr. West will provide an update and new information on the Company's manufacturing technologies and cell-based therapeutics in development. The presentation will be available online at http://www.biotimeinc.com.

The annual New York Stem Cell Summit provides investors, industry, practitioners, and analysts with the latest developments and investment opportunities in the stem cell marketplace.

About BioTime, Inc.

BioTime, headquartered in Alameda, California, is a biotechnology company focused on regenerative medicine and blood plasma volume expanders. Its broad platform of stem cell technologies is developed through subsidiaries focused on specific fields of applications. BioTime develops and markets research products in the field of stem cells and regenerative medicine, including a wide array of proprietary ACTCellerate™ cell lines, culture media, and differentiation kits. BioTime's wholly owned subsidiary ES Cell International Pte. Ltd. has produced clinical-grade human embryonic stem cell lines that were derived following principles of Good Manufacturing Practice and currently offers them for use in research. BioTime's therapeutic product development strategy is pursued through subsidiaries that focus on specific organ systems and related diseases for which there is a high unmet medical need. BioTime's majority owned subsidiary Cell Cure Neurosciences, Ltd. is developing therapeutic products derived from stem cells for the treatment of retinal and neural degenerative diseases. Cell Cure's minority shareholder Teva Pharmaceutical Industries has an option to clinically develop and commercialize Cell Cure's OpRegen™ retinal cell product for use in the treatment of age-related macular degeneration. BioTime's subsidiary OrthoCyte Corporation is developing therapeutic applications of stem cells to treat orthopedic diseases and injuries. Another subsidiary, OncoCyte Corporation, focuses on the diagnostic and therapeutic applications of stem cell technology in cancer, including the diagnostic product PanC-DxTM currently being developed for the detection of cancer in blood samples, therapeutic strategies using vascular progenitor cells engineered to destroy malignant tumors. ReCyte Therapeutics, Inc. is developing applications of BioTime's proprietary induced pluripotent stem cell technology to reverse the developmental aging of human cells to treat cardiovascular and blood cell diseases. BioTime's newest subsidiary, LifeMap Sciences, Inc., is developing an online database of the complex cell lineages arising from stem cells to guide basic research and to market BioTime's research products. In addition to its stem cell products, BioTime develops blood plasma volume expanders, blood replacement solutions for hypothermic (low-temperature) surgery, and technology for use in surgery, emergency trauma treatment and other applications. BioTime's lead product, Hextend®, is a blood plasma volume expander manufactured and distributed in the U.S. by Hospira, Inc. and in South Korea by CJ CheilJedang Corp. under exclusive licensing agreements. Additional information about BioTime, ReCyte Therapeutics, Cell Cure, OrthoCyte, OncoCyte, BioTime Asia, LifeMap Sciences, and ESI can be found on the web at http://www.biotimeinc.com.

Forward-Looking Statements

Statements pertaining to future financial and/or operating results, future growth in research, technology, clinical development, and potential opportunities for BioTime and its subsidiaries, along with other statements about the future expectations, beliefs, goals, plans, or prospects expressed by management constitute forward-looking statements. Any statements that are not historical fact (including, but not limited to statements that contain words such as "will," "believes," "plans," "anticipates," "expects," "estimates") should also be considered to be forward-looking statements. Forward-looking statements involve risks and uncertainties, including, without limitation, risks inherent in the development and/or commercialization of potential products, uncertainty in the results of clinical trials or regulatory approvals, need and ability to obtain future capital, and maintenance of intellectual property rights. Actual results may differ materially from the results anticipated in these forward-looking statements and as such should be evaluated together with the many uncertainties that affect the business of BioTime and its subsidiaries, particularly those mentioned in the cautionary statements found in BioTime's Securities and Exchange Commission filings. BioTime disclaims any intent or obligation to update these forward-looking statements.

To receive ongoing BioTime corporate communications, please click on the following link to join our email alert list:
http://phx.corporate-ir.net/phoenix.zhtml?c=83805&p=irol-alerts

Read the original:
BioTime CEO Michael D. West to Present at New York Stem Cell Summit

Groundbreaking Clinical Trials Study Cord Blood Stem Cells to Help Treat Brain Injury and Hearing Loss

SAN BRUNO, Calif., Feb. 16, 2012 /PRNewswire/ -- Cord Blood Registry (CBR) is the exclusive partner for a growing number of clinical researchers focusing on the use of a child's own cord blood stem cells to help treat pediatric brain injury and acquired hearing loss. To ensure consistency in cord blood stem cell processing, storage and release for infusion, three separate trials have included CBR in their FDA-authorized protocol—including two at the University of Texas Health Science Center at Houston (UTHealth) working in partnership with Children's Memorial Hermann Hospital, and a third at Georgia Health Sciences University, home of the Medical College of Georgia (MCG). This makes CBR the only family stem cell bank pairing researchers with prospective patients for these studies. 

(Logo: http://photos.prnewswire.com/prnh/20120216/AQ54476LOGO)

"Partnering with a series of specialists who want to research the use of a child's own newborn blood stem cells on a variety of disease states allows CBR to help advance medical research for regenerative therapies by connecting the child whose family banked with CBR to appropriate researchers," said Heather Brown, MS, CGC, Vice President of Scientific & Medical Affairs at Cord Blood Registry.  "The pediatric specialists from UTHealth, Children's Memorial Hermann Hospital, and Georgia Health Sciences University are at the forefront of stem cell research as they evaluate cord blood stem cells' ability to help facilitate the healing process after damage to nerves and tissue."

Hearing Loss and Traumatic Brain Injury Clinical Trials Break New Ground

Sensorineural hearing loss affects approximately 6 per 1,000 children by 18 years of age, with 9 percent resulting from acquired causes such as viral infection and head injury.(1,2,3)  The Principal Investigator of the hearing loss study is Samer Fakhri, M.D., surgeon at Memorial Hermann-Texas Medical Center and associate professor and program director in the Department of Otorhinolaryngology – Head & Neck Surgery at UTHealth.  He is joined by James Baumgartner, M.D., sponsor of the study and guest research collaborator for this first-of-its-kind FDA-regulated, Phase 1 safety study of the use of cord blood stem cells to treat children with acquired hearing loss. The trial follows evidence from published studies in animals that cord blood treatment can repair damaged organs in the inner ear. Clients of CBR who have sustained a post-birth hearing loss and are 6 weeks to 2 years old may be eligible for the year-long study. "The window of opportunity to foster normal language development is limited," said James Baumgartner, M.D.  "This is the first study of its kind with the potential to actually restore hearing in children and allow for more normal speech and language development."

Although the neurologic outcome for nearly all types of brain injury (with the exception of abuse) is better for children than adults,(4,5) trauma is the leading cause of death in children,(6) and the majority of the deaths are attributed to head injury.(7) Distinguished professor of pediatric surgery and pediatrics at UTHealth, Charles S. Cox, M.D. launched an innovative study building on a growing portfolio of research using stem cell-based therapies for neurological damage. The study will enroll 10 children ages 18 months to 17 years who have umbilical cord blood banked with CBR and have suffered a traumatic brain injury (TBI) and are enrolled in the study within 6-18 months of sustaining the injury. Read more about the trial here.

"The reason we have become interested in cord blood cells is because of the possibility of autologous therapy, meaning using your own cells. And the preclinical models have demonstrated some really fascinating neurological preservation effects to really support these Phase 1 trials," says Charles S. Cox, M.D., principle investigator of the trial. "There's anecdotal experience in other types of neurological injuries that reassures us in terms of the safety of the approach and there are some anecdotal hints at it being beneficial in certain types of brain injury."

Georgia Health Sciences University (GHSU) Focuses on Cerebral Palsy

At the GHSU in Augusta, Dr. James Carroll, professor and chief of pediatric neurology, embarked on the first FDA-regulated clinical trial to determine whether an infusion of stem cells from a child's own umbilical cord blood can improve the quality of life for children with cerebral palsy. The study will include 40 children whose parents have stored their cord blood at CBR and meet inclusion criteria. 

"Using a child's own stem cells as a possible treatment is the safest form of stem cell transplantation because it carries virtually no threat of immune system rejection," said Dr. Carroll. "Our focus on cerebral palsy breaks new ground in advancing therapies to change the course of these kinds of brain injury—a condition for which there is currently no cure."

Cerebral palsy, caused by a brain injury or lack of oxygen in the brain before birth or during the first few years of life, can impair movement, learning, hearing, vision and cognitive skills. Two to three children in 1,000 are affected by it, according to the Centers for Disease Control.(8)

Cord Blood Stem Cell Infusions Move From the Lab to the Clinic

These multi-year studies are a first step to move promising pre-clinical or animal research of cord blood stem cells into clinical trials in patients. Through the CBR Center for Regenerative Medicine, CBR will continue to partner with physicians who are interested in advancing cellular therapies in regenerative applications.

"The benefits of cord blood stem cells being very young, easy to obtain, unspecialized cells which have had limited exposure to environmental toxins or infectious diseases and easy to store for long terms without any loss of function, make them an attractive source for cellular therapy researchers today," adds Brown. "We are encouraged to see interest from such diverse researchers from neurosurgeons to endocrinologists and cardiac specialists."

About CBR

CBR® (Cord Blood Registry®) is the world's largest and most experienced cord blood bank.  The company has consistently led the industry in technical innovations and supporting clinical trials. It safeguards more than 400,000 cord blood collections for individuals and their families. CBR was the first family bank accredited by AABB and the company's quality standards have been recognized through ISO 9001:2008 certification—the global business standard for quality. CBR has also released more client cord blood units for specific therapeutic use than any other family cord blood bank. Our research and development efforts are focused on helping the world's leading clinical researchers advance regenerative medical therapies. For more information, visit http://www.cordblood.com.

 

(1)  Bergstrom L, Hemenway WG, Downs MP. A high risk registry to find congenital deafness. Otolaryngol Clin North Am. 1977;4:369-399.
(2)  Billings KR, Kenna MA. Causes of pediatric sensorineural hearing loss: yesterday and today. Arch Otolaryngol Head Neck Surg. 1999 May;125(5):517-21.
(3)  Smith RJ, Bale JF Jr, White KR. Sensorineural hearing loss in children. Lancet. 2005;365(9462):879-890.
(4)  Faul M, Xu L, Wald MM, Coronado VG. Traumatic brain injury in the United States: emergency department visits, hospitalizations, and deaths. Atlanta (GA): Centers for Disease Control and Prevention, National Center for Injury Prevention and Control; 2010.
(5)  Schnitzer, Patricia, PH.D., "Prevention of Unintentional Childhood Injuries", American Academy of Family Physicians, 2006.
(6)  Centers for Disease Control and Prevention, "10 Leading Causes of Death, United States, 1997-2007", WISQARS, National Center for Health Statistics (NCHS), National Vital Statistics System
(7)  Marquez de la Plata, Hart et al, National Institutes of Health, "Impact of Age on Long-term Recovery From Traumatic Brain Injury", Arch Phys Med Rehabilitation, May 2008.
(8)  Centers for Disease Control and Prevention, http://www.cdc.gov/Features/dsCerebralPalsy, accessed February 6, 2012

 

Visit link:
Groundbreaking Clinical Trials Study Cord Blood Stem Cells to Help Treat Brain Injury and Hearing Loss