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NSI Stem Cell | What Is Stem Cell Therapy?

Posted: August 20, 2018 at 8:40 pm

This innovative therapy option for alleviating pain and restoring function in the body could be the answer youve been looking for! We know you may have tried everything, and may have seen numerous doctors to take care of your condition, without real success. This can be very frustrating and can cause a lot of stress on you and your family. It is very important to your recovery to find someone that understands your journey and what you have been through along the way.

You may have been through the ringer with your injury or condition. Many of our patients have spent years getting their hopes up, and then getting their hopes dashed.

Stem Cell Therapy is about using your bodys own stem cells to regenerate damagedtissue. So if you, or someone you love, is suffering please read on to find out who can be helped and how.

Our Stem Cell Therapy is an innovative therapy that is recommendedfor a wide variety of chronic conditions, yet many people are learning about it now for the first time.

These are not embryonic stem cells or cells from fetuses.These regenerative cells come straight from your own body.

They are extracted just a few hours before theyre injected back into your body and put to work to heal damaged or dysfunctional tissue.

We use a variety of stem cells derived from the patients own tissues. Our preferred choice is bone marrow or fat because the cells there are multi-potent which means that they have the ability to differentiate into muscle, tendons, ligaments, bone, and cartilage. Once introduced into the damaged or diseased area, the stem cells can then heal your damaged tissue and regenerate new healthy tissue.

Stem Cell Therapy offers significant potential for the healing of tissues that have become injured as a result of the aging process.

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Stem Cell Therapy and Stem Cell Injection Provider Finder …

Posted: August 19, 2018 at 7:41 pm

Stem cell therapy can be described as a means or process by which stem cells are used for the prevention, treatment or the cure of diseases. Stem cells are a special kind of cells that have features other types of cells dont have. As an illustration, stem cells are capable of proliferation. This implies that they can develop into any type of cell, and grow to start performing the functions of the tissue. In addition, they can regenerate. This means they can multiply themselves. This is most important when a new tissue has to be formed. Also, they modulate immune reactions. This has made them useful for the treatment of autoimmune diseases, especially those that affect the musculoskeletal system such as rheumatoid arthritis, systemic lupus erythematosus and so on. Stem cells can be derrived from different sources. They can be extracted from the body, and in some specific parts of the body. This includes the blood, bone marrow, umbilical cord in newborns, adipose tissue, and from embryos. There are 2 main types of stem cell transplant. These are autologous stem cell transplant, and allogeneic stem cell transplant. The autologous stem cell transplant means that stem cells are extracted from the patient, processed, and then transplanted back to the patient, for therapeutic purposes. On the other hand, allogeneic stem cell transplant means the transplant of stem cells or from another individual, known as the donor, to another person, or recipient. Some treatments must be given to the receiver to prevent any cases of rejections, and other complications. The autologous is usually the most preferred type of transplant because of its almost zero side effects. Below are some of the stem cell treatments. Our goal is to provide education, research and an opportunity to connect with Stem Cell Doctors, as well as provide stem cell reviews

Adipose Stem Cell TreatmentsAdipose stem cell treatment is one of the most commonly used. This is because large quantities of stem cells can be derrived from them. According to statistics, the number of stem cells in adipose tissue are usually hundreds of times higher than what can be obtained from other sources, such as the bone marrow stem cells. Adipose stem cells have taken the center stage in the world of stem cell therapy. Apart from the ease that comes with the harvesting of these cells from the adipose tissue, they also have some special features, that separates them from other types of cells. Adipose stem cells are capable of regulating and modulating the immune system. This includes immune suppression, which is important for the treatment of autoimmune diseases. In addition, adipose stem cells can differentiate to form other types of cells. Some of them include the bone forming cells, cardiomyocytes, and cells of the nervous system.

This process can be divided into four parts. These are

Stem cell joint injection is fast becoming the new treatment of joint diseases. Stem cells derived from bone marrow, adipose and mesenchymal stem cells are the most commonly used. The stem cells are injected into the joints, and they proceed to repair and replace the damaged tissues. The cells also modulate the inflammatory process going on. Overall, stem cell joint injections significantly reduce the recovery time of patients and also eliminates pain and risks associated with surgery. Examples of diseases where this treatment is used include osteoarthritis, rheumatoid arthritis, and so on. Researchers and physicians have rated this procedure to be the future of joint therapy.

Losing a tooth as a kid isnt news because youd eventually grow them back, but losing one as an adult isnt a pleasant experience. Youd have to go through the pains of getting a replacement from your dentist. Apart from the cost of these procedures, the pain and number of days youd have to stay at home nursing the pain is also a problem. Nevertheless, there are great teeth replacement therapies available for all kinds of dental problems. Although there are already good dental treatment methods, stem cell therapy might soon become the future of dental procedures. Currently, a lot of research is being done on how stem cells can be used to develop teeth naturally, especially in patients with dental problems. The aim of the project is to develop a method whereby peoples stem cells are used in regenerating their own teeth and within the shortest time possible. Some of the benefits of the stem cell tooth would be:

The quality of life of those that underwent serious procedures, especially those that had an allogeneic hematopoietic stem cell transplantation done was studied. It was discovered that this set of people had to cope with some psychological problems, even years after the procedure. In addition, allogeneic stem cell transplantation often comes with some side effects. However, this a small price to pay, considering that the adverse effects are not usually life-threatening. Also theses types of procedures are used for severe disorders or even terminal diseases. On the other hand, autologous stem cell transplantation bears the minimum to no side effects. Patients do have a great quality of life, both in the short term and in the long term.

This is one of the many uses of stem cells. The stem cell gun is a device that is used in treating people with wounds or burns. This is done by simply triggering it, and it sprays stem cells on the affected part. This kind of treatment is crucial for victims of a severe burn. Usually, people affected by severe burns would have to endure excruciating pain. The process of recovery is usually long, which might vary from weeks to months, depending on the severity of the burn. Even after treatment, most patients are left with scars forever. However, the stem cell gun eliminates these problems, the skin can be grown back in just a matter of days. The new skin also grows evenly and blends perfectly with the other part of the body. This process is also without the scars that are usually associated with the traditional burns therapy. The stem cell gun is without any side effects.

There is one company that focuses on the production of stem cell supplements. These stem cells are usually natural ingredients that increase the development of stem cells, and also keeps them healthy. The purpose of the stem cell supplements is to help reduce the aging process and make people look younger. These supplements work by replacing the dead or repairing the damaged tissues of the body. There have been a lot of testimonials to the efficacy of these supplements.

It is the goal of researchers to make stem cell therapy a good alternative for the millions of patients suffering from cardiac-related diseases. According to some experiments carried out in animals, stem cells were injected into the ones affected by heart diseases. A large percentage of them showed great improvement, even within just a few weeks. However, when the trial was carried out in humans, some stem cells went ahead to develop into heart muscles, but overall, the heart function was generally improved. The reason for the improvement has been attributed to the formation of new vessels in the heart. The topic that has generated a lot of arguments have been what type of cells should be used in the treatment of heart disorders. Stem cells extracted from the bone marrow, embryo have been in use, although bone marrow stem cells are the most commonly used. Stem cells extracted from bone marrow can differentiate into cardiac cells, while studies have shown that other stem cells cannot do the same. Even though the stem cell therapy has a lot of potential in the future, more research and studies have to be done to make that a reality.

The use of stem cells for the treatment of hair loss has increased significantly. This can be attributed to the discovery of stem cells in bone marrow, adipose cells, umbilical cord, and so on. Stem cells are extracted from the patient, through any of the sources listed above. Adipose tissue stem cells are usually the most convenient in this scenario, as they do not require any special extraction procedure. Adipose tissue is harvested from the abdominal area. The stem cells are then isolated from the other cells through a process known as centrifugation. The stem cells are then activated and are now ready for use. The isolated stem cells are then introduced into the scalp, under local anesthesia. The entire process takes about three hours. Patients are free to go home, after the procedure. Patients would begin to see improvements in just a few months, however, this depends largely on the patients ability to heal. Every patient has a different outcome.

Human umbilical stem cells are cells extracted from the umbilical cord of a healthy baby, shortly after birth. Umbilical cord tissue is abundant in stem cells, and the stem cells can differentiate into many types of cells such as red blood cells, white blood cells, and platelets. They are also capable of differentiating into non-blood cells such as muscle cells, cartilage cells and so on. These cells are usually preferred because its' extraction is minimally non invasive. It also is nearly painless. It also has zero risks of rejecting, as it does not require any form of matching or typing.Human umbilical stem cell injections are used for the treatment of spinal cord injuries. A trial was done on twenty-five patients that had late-stage spinal cord injuries. They were placed on human umbilical stem cell therapy, while another set of 25 patients were simultaneously placed on the usual rehabilitation therapy. The two groups were studied for the next twelve months. The results of the trial showed that those people placed on stem cell therapy by administering the human umbilical cell tissue injections had a significant recovery, as compared to the other group that underwent the traditional rehabilitation therapy. It was concluded that human umbilical tissue injections applied close to the injured part gives the best outcomes.

Stem cell therapy has been used for the treatment of many types diseases. This ranges from terminal illnesses such as cancer, joint diseases such as arthritis, and also autoimmune diseases. Stem cell therapy is often a better alternative to most traditional therapy today. This is because stem cell procedure is minimally invasive when compared to chemotherapy and so on. It harnesses the bodys own ability to heal. The stem cells are extracted from other parts of the body and then transplanted to other parts of the body, where they would repair and maintain the tissues. They also perform the function of modulating the immune system, which makes them important for the treatment of autoimmune diseases. Below are some of the diseases that stem cell therapies have been used successfully:

A stem cell bank can be described as a facility where stem cells are stored for future purposes. These are mostly amniotic stem cells, which are derived from the amnion fluid. Umbilical cord stem cells are also equally important as it is rich in stem cells and can be used for the treatment of many diseases. Examples of these diseases include cancer, blood disorders, autoimmune diseases, musculoskeletal diseases and so on. According to statistics, umbilical stem cells can be used for the treatment of over eighty diseases. Storing your stem cells should be seen as an investment in your health for future sake. Parents do have the option of either throwing away their babys umbilical cord or donating it to stem cell banks.

The adipose tissue contains a lot of stem cells, that has the ability to transform into other cells such as muscle, cartilage, neural cells. They are also important for the treatment of some cardiovascular diseases. This is what makes it important for people to want to store their stem cells. The future health benefit is huge. The only way adults can store their stem cells in sufficient amounts is to extract the stem cells from their fat tissues. This process is usually painless and fast. Although, the extraction might have to be done between 3 to 5 times before the needed quantity is gotten. People that missed the opportunity to store their stem cells, using their cord cells, can now store it using their own adipose tissues. This can be used at any point in time.

Side effects often accompany every kind of treatment. However, this depends largely on the individual. While patients might present with side effects, some other people wouldnt. Whether a patient will present with adverse effects, depends on the following factors;

Some of the common side effects of stem cell transplant are;

Stem cell treatment has been largely successful so far, however, more studies and research needs to be done. Stem cell therapy could be the future.

Stem cells are unique cells that have some special features such as self-regeneration, tissue repair, and modulation of the immune system. These are the features that are employed in the treatment of diseases.

Our doctors are certified by iSTEMCELL but operate as part of a medical group or as independent business owners and as such are free to charge what the feel to be the right fit for their practice and clients. We have seen Stem Cell Treatment costs range from $3500 upwards of $30,000 depending on the condition and protocol required for intended results. Find the Best Stem Cell Doctor Near me If you are interested in saving money, try our STEM CELL COUPON!

Travel Medcations are becoming very popular around the globe for several reasons but not for what one might think. It is not about traveling to Mexico to save money, but to get procedures or protocols that are not yet available in your home country. Many procedures are started in your home country, then the tissue is set to the tissue lab where it is then grown in a process to maximize live cells, then sent to a hospital in Mexico designed to treat or provide different therapies for different conditions. If you're ready to take a medical vacation call 972-800-6670 for our"WHITE GLOVE" service.

Chen, C. and Hou, J. (2016). Mesenchymal stem cell-based therapy in kidney transplantation. Stem Cell Research & Therapy, 7(1).

Donnelly, A., Johar, S., OBrien, T. and Tuan, R. (2010). Welcome to Stem Cell Research & Therapy. Stem Cell Research & Therapy, 1(1), p.1.

Groothuis, S. (2015). Changes in Stem Cell Research. Stem Cell Research, 14(1), p.130.

Rao, M. (2012). Stem cells and regenerative medicine. Stem Cell Research & Therapy, 3(4), p.27.

Vunjak-Novakovic, G. (2013). Physical influences on stem cells. Stem Cell Research & Therapy, 4(6), p.153.

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Portland, Oregon Stem Cell Transplants, West Haven Sylvan …

Posted: August 18, 2018 at 9:46 am

Portland, the largest city in Oregon and seat of Multnomah County, is now part of the development of an innovative medical weapon for combating diseases. Billions are being spent all over the world in research to explore the normal mechanisms whereby stem cells build, maintain and repair our body systems. Many viable therapies in Portland are already in clinical trial face. Diseases like Diabetes, Multiple Sclerosis, Osteoarthritis, Parkinsons diseases and many others are part of these trials.

Stem cells can be converted into different cell types such as nerve cells, liver cells or heart cells stem cells can be used to replace cells damaged by injury or illness. The potential is so great, and the discovery so revolutionary, the research made headlines around the world, sparking more than 2,000 news reports from Japan to South Africa.

Whether you live in West Haven Sylvan, West Linn, Rivergrove, Raleigh Hills, Oceanside or any other city in Oregon, now you can access approved Stem Cell Treatments, dont hesitate to contact us and get more information.

The Stem Cells Transplant Institute of Costa Rica specializes in the legal treatment of, Chronic Obstructive pulmonary disease, Osteoarthritis, Knee Injury, Diabetes, Neuropathy, Cardiovascular Disease, Myocardial infarction, Critical limb isquemia, Parkinson, Multiple Sclerosis, Lupus, Rheumatoid Arthritis, and Alzheimer.

Stem Cells therapies have been studied for years for their impressive curative potential, but there are only a few clinics legally approved in the USA so far. Stem Cells Transplant Institute in Costa Rica wants to offer legally approved therapies, so you wont have to wait years to hear about how Regenerative Medicine has changed some one else quality of live. Are you ready to be a living proof? Apply here

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Human Genetics – McGill University

Posted: August 18, 2018 at 9:43 am

This site is a resource dedicated to providing current information to our students, faculty, alumni, applicants, and anyone interested in genetic research at McGill.

The Department of Human Genetics is both a basic science and a clinical department in the Faculty of Medicine at McGill. It has the dual challenge of promoting excellence in research and teaching in the basic science of human genetics and also a similar challenge for excellence in professional training and patient care. As part of its mission, the department is responsible for the training of basic scientists in the area of human genetics and also the training of genetic counsellors, medical students, and medical specialists in the various clinical areas of medical genetics. The concepts of genomics, epigenomics, proteomics, andmetabolomics are at the frontier of modern biology and medicine. How to translate advances in basic sciences to public policy remains to be determined. Our department is charged with the mission to translate this scientific advancement to the training of health care professionals and to patient care. Out of our administrative office in the Strathacona Anatomy & Dentistry Building, we aim to serve our faculty which is housed in the Research Institutes of the McGill teaching hospitals (MUHC, JGH, and Douglas), the Montreal Neurological Institute, the Life Sciences Complex, and the Innovation Centre.

The Genetics Community in Montreal is greatly enriched by a multitude of genetically oriented research programs within the classical disciplines of biomedical science not only at McGill, but also at the three other universities in the city, most notably theUniversit de Montral and its affiliated hospitals. The Department of Human Genetics has a central administrative core surrounded by clinical genetics units and research laboratories in diverse locations of the main university campus, and in the research institutes of the several teaching hospitals. The department is accredited for service and training (clinical, biochemical, cytogenetic, and molecular) by the Canadian College of Medical Geneticists (CCMG), and medical genetics training by the Royal College of Physicians and Surgeons in Canada and theCollge desMdecins du Qubec. The department coordinates Genetic Health-Care Services through the McGill University Health Centre, and participates fully in the teaching of human/medical genetics to baccalaureate, medical and postgraduate students. The department offers an M.Sc. in Genetic Counselling Training Program, and M.Sc. and Ph.D. Programs in Human Genetics.

Sincerely,

eric.shoubrige [at] mcgill.ca (Eric Shoubridge, PhD, FRSC, Chair)Tel: (514) 398-3600Fax: (514) 398-2430

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2018 Regenerative Medicine Minnesota Research Awards

Posted: August 17, 2018 at 4:44 pm

The following 13 research projects were selected for Regenerative Medicine Minnesota grants from 61 applications.These grants are effective for a two-year period, 2018-2020.CLINICAL TRIALS (research in human patients)

Mohamad Bydon, MDCELLTOP: A Phase I Clinical Trial of Autologous Adipose Derived Mesenchymal Stem Cells in the Treatment of Paralysis due to Traumatic Spinal Cord Injury

Aaron Krych, MDThe RECLAIM trial for focal cartilage repair

Terence Burns, MD, PhD Safety and mechanisms of senolytic therapy for central nervous system rejuvenation.

Ping Chen, PhD Regeneration of hypothalamic neuro-architecture using liver enzyme gene transfer as an approach to treat post-dieting body weight rebound

Daniel Garry, MD, PhD Bioengineering strategies for cardiovascular disease and regeneration

Nobuaki Kikyo, MD, PhDCircadian rhythm-based differentiation of iPS cells to cardiomyocytes

Raghavendra Rao, MDNeuroprotection Using Human Extremely Low Gestational Age Neonate-Derived Umbilical Cord Blood Stem Cells in Neonatal Hemorrhagic Brain Injury

Jennifer Westendorf, PhD Girk channels in cartilage development and repair

Marija Cvetanovic, PhDDetermining therapeutic potential of BDNF in delaying the onset and progression of Spinocerebellar ataxia type 1 (SCA1)

Joseph Lillegard, MD, PhDGene Therapy of Hereditary Tyrosinemia Type I using in vivo Lentiviral Vectors

Troy Lund, MD, PhDAccelerating Hematopoietic Cell Regeneration

Alexander Revzin, PhDEngineering microcapsules for stem cell cultivation and transplantation

Robert Tranquillo, PhDRegenerative vein valve

Current Awards

Past Awards

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Stem Cell Clinical Trial | University of Maryland Children …

Posted: August 17, 2018 at 4:44 pm

The Children's Heart Program at the University of Maryland Medical Center is leading a first-of-its-kind clinical trial that will use stem cells to treat hypoplastic left heart syndrome (HLHS), a congenital heart disease. HLHS leaves the left ventricle underdeveloped, and this procedure strengthens the function of the right side of the patient's heart.

Led by Sunjay Kaushal, MD, PhD, the HLHS Clinical Trial tests the effectiveness of allogeneic mesenchymal stem cells in conjunction with the second palliative surgery, the Glenn (bidirectional cavopulmonary anastomosis) operation. These cells have been shown to remarkably improve cardiac function in adult hearts but have never been tested on the pediatric population until now.

After performing rigorous studies, the Food and Drug Administration (FDA) granted approval for this trial.

In this Phase I trial, 30 HLHS patients will be enrolled at the time of the second palliative operation. The first 10 patients will receive the stem cells, and their results will be used to determine feasibility and safety.

After enrollment for the initial group is completed, the following 20 participants will be enrolled on a 1:1 basis, with 10 receiving the stem cell treatment and the other 10 being viewed as a control group (not receiving the stem cells).

The HLHS Clinical Trial will assess two major endpoints:

Treatment with allogeneic mesenchymal stem cells aims to strengthen the right ventricle, improving the function of the heart and thus the patient's quality of life. If the treatment is effective, this ground-breaking procedure could be applied to other complicated congenital heart diseases, such as dilated cardiomyopathy.

Stem cells are unspecialized cells that can regenerate through cell division and have the potential to develop into many different cell types under certain conditions, including those with a more specialized function such as cardiac muscle cells.

This trial uses allogeneic mesenchymal stem cells, which are from donated human bone marrow cells. These particular cells have the remarkable capability to escape immune response, are readily accessible, safe to use and proven to be effective in adult patients with heart conditions.

In this trial, the stem cells will be injected in the right ventricle during the second palliative surgery for HLHS patients. If effective, the cells will act as a biological factory, secreting proteins that will make the right side of the heart stronger.

To view eligibility requirements, visit the HLHS Clinical Trials page.

Call 410-328-3778 for participation information.

Philanthropy allows us to advance cutting-edge research, teaching and patient care. To make a gift in support of this groundbreaking research, please visit the University of Maryland Medical System Foundation secure online giving page and select Pediatric Cardiovascular Research Fund in the dropdown menu.

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Baltimore, Maryland Stem Cell Transplants, Montgomery …

Posted: August 17, 2018 at 4:44 pm

In May of 2017 the Baltimore Sun reported the Maryland Stem Cell Research Commission had awarded $8.5 million to twelve institutions for twenty-nine research projects evaluating the use of stem cells to treat diseases including heart disease, muscular dystrophy, sickle cell disease and diabetes as well as other conditions. Six companies and six research institutions, including Johns Hopkins University and the University of Maryland, will each receive a portion of the grant money.

Stem cell research in the United States has been slow to progress in part due to governmental legislation. In 2009, President Barack Obama lifted the eight-year-old ban on federally funded stem cell research. Although stem cell research has been slow to progress in the United States, globally stem cell research continues to advance with a large number of studies being published each year. The Stem Cells Transplant Institute in Costa Rica believes in the potential of stem cell therapy for residents of Baltimore, Maryland therapies that in trials have shown great promise, but are not yet approved by the FDA, but available in Costa Rica.

Stem cell therapy offers hope to millions of people suffering from inflammatory and degenerative diseases for which there are few treatment options. Researchers have shown stem cell therapy to be safe and potentially efficacious in a broad range of diseases. Under the direction of Dr. Leslie Mesen, the Stem Cells Transplant Institute provides government approved stem cell therapy for the treatment of; Alzheimers disease, Parkinsons disease, osteoarthritis, multiple sclerosis, lupus, rheumatoid arthritis, diabetes, cardiovascular disease, COPD, myocardial infarction, critical limb ischemia, and erectile dysfunction.

Stem cells have great potential for treating disease by providing an unlimited source of cells for repairing or replacing damaged tissue. Stem cell treatment at the Stem Cells Transplant Institute is a safe, non-invasive, same-day procedure that takes only a few hours. Baltimore residents and those throughout the state of Maryland can experience the potential benefits of stem cell therapy by scheduling an appointment with the experts at the Stem Cells Transplant Institute. Many patients take the opportunity to make their trip an extended vacation to enjoy the beauty and rich culture of Costa Rica.

Whether you live in Baltimore, Frederick or Rockville, the temperatures in Maryland can be extreme. For those who want to escape the cold winters or hot, humid summers, Costa Rica offers comfortable year-round average temperatures of 70 to 81 degrees. There are several daily, 1-stop, low cost flights from Baltimore to Costa Rica. Schedule an appointment and let the experts at the Stem Cells Transplant Institute help you stay active and live your best life. Contact us today to see if stem cell therapy is right for you.

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The Regenerative Medicine Fast Track: What is the RMAT …

Posted: August 17, 2018 at 4:42 pm

by admin on March 23, 2018 No comments

By: Matthew Fischer

The regenerative medicine arena consists of a wide range of innovative products. Congress, acknowledging the importance of this field, has established a new program via the 21st Century Cures Act to help spur development and provide for accelerated approval for regenerative medicine products similar to the FDAs fast track and breakthrough therapy designations. This new approval is the Regenerative Medicine Advanced Therapy (RMAT) Designation.

The RMAT Designation includes all the benefits of the FDAs other accelerated designations including early agency engagement and priority review; however, unlike the other designations, the RMAT Designation does not require evidence that the product offers substantial improvement over other therapies. For a drug to be eligible for the RMAT Designation, it must meet the following:

The Code of Federal Regulations sets forth specific guidelines for the designation request process. The office within the FDA tasked with reviewing these requests is the Office of Tissues and Advanced Therapies (OTAT).

In November 2017, the FDA issued draft guidance regarding this expedited program requesting comment from the industry. At the time, the FDA indicated that the agency had received 34 designation requests and acted on 31 of the requests. With this new regulatory framework and specific pathway, the FDA seeks to set the stage for the future with the goal of addressing unmet medical needs with reduced product development time.

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Cell Therapy | Irvine Scientific

Posted: August 16, 2018 at 7:43 pm

Through the PRIME-XV media platform, and a range of complementary products designed to work seamlessly alongside it, we offer advanced cell culture media solutions for stem and primary cells to support basic, translational, and clinical research, as well as commercial applications.

Featuring chemically-defined, xeno-free, and serum-free, formulations, the platform is precisely developed and rigorously tested to ensure the consistent delivery of sufficient cell populations with the desired functionality and phenotype for therapeutic applications.

Designed to support cutting-edge therapies at every stage of development, the platform is cGMP manufactured using raw ingredients from a strictly controlled supply chain to minimize risk from adventitious agents and features document packets to facilitate the regulatory submission process.

Since cell therapies frequently require individualized support, we also offer process optimization for media and protocols, as well as custom manufacturing and packaging at any scalefrom 10-10,000 L (liquid), or 1-7000 kg (dry powder).

With more than four decades of experience supporting commercial biotherapeutics, we have cultivated deep industry insight, cell culture media expertise, and a legacy of unrivaled customer servicepositioning us as the cell culture media partner of choice to support your cell therapy needs.

We know the emerging cell therapy industrys needs are nuanced. If you dont see the product or service that fits your needs, or you have questions and would like individualized support, we are here to help. Contact us today to speak with a media specialist.

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2045: A New Era for Humanity – YouTube

Posted: August 16, 2018 at 7:40 pm

http://2045.com http://gf2045.comIn February of 2012 the first Global Future 2045 Congress was held in Moscow. There, over 50 world leading scientists from multiple disciplines met to develop a strategy for the future development of humankind. One of the main goals of the Congress was to construct a global network of scientists to further research on the development of cybernetic technology, with the ultimate goal of transferring a human's individual consciousness to an artificial carrier.

2012-2013. The global economic and social crises are exacerbated. The debates on the global paradigm of future development intensifies.

New transhumanist movements and parties emerge. Russia 2045 transforms into World 2045.

Simultaneously, the 2045.com international social network for open innovation is expanding. Here anyone interested may propose a project, take part in working on it, or fund it, or both. In the network, there are scientists, scholars, researchers, financiers and managers.

2013-2014. New centers working on cybernetic technologies for the development of radical life extension rise. The 'race for immortality' starts.

2015-2020. The Avatar is created -- A robotic human copy controlled by thought via 'brain-computer' interface. It becomes as popular as a car.

2020. In Russia and in the world appear -- in testing mode -- several breakthrough projects:Android robots replace people in manufacturing tasks; android robot servants for every home; thought-controlled Avatars to provide telepresence in any place of the world and abolish the need business trips; flying cars; thought driven mobile communications built into the body or sprayed onto the skin.

2020-2025. An autonomous system providing life support for the brain and allowing it interaction with the environment is created. The brain is transplanted into an Avatar B. With Avatar B man receives new, expanded life.

2025. The new generation of Avatars provides complete transmission of sensations from all five sensory robot organs to the operator.

2030-2035. ReBrain -- The colossal project of brain reverse engineering is implemented. World science comes very close to understanding the principles of consciousness.

2035. The first successful attempt to transfer one's personality to an alternative carrier. The epoch of cybernetic immortality begins.

2040-2050. Bodies made of nanorobots that can take any shape arise alongside hologram bodies.

2045-2050. Drastic changes in social structure, and in scientific and technological development. All the for space expansion are established.For the man of the future, war and violence are unacceptable. The main priority of his development is spiritual self-improvement.

A new era dawns: The era of neohumanity.

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