Cord Blood Banking https://cord-blood.org Info, Facts, and Cost Sun, 15 Jul 2018 13:07:52 +0000 en-US hourly 1 https://wordpress.org/?v=4.9.7 https://cord-blood.org/wp-content/uploads/2017/12/cropped-Cord-Blood.org_-1-32x32.jpg Cord Blood Banking https://cord-blood.org 32 32 Can Cord Blood Be Used for Parents? https://cord-blood.org/can-cord-blood-used-parents/ https://cord-blood.org/can-cord-blood-used-parents/#respond Sun, 15 Jul 2018 13:07:52 +0000 http://cord-blood.org/?p=124  If cord blood can be used for parents is the very common question that many adults have. And of course, the answer is Yes”. Actually, it’s very common reason for the parents to save and store their baby’s umbilical cord blood. And it’s not just parents that could benefit from the cord blood stem […]

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If cord blood can be used for parents is the very common question that many adults have.

And of course, the answer is Yes”.

Actually, it’s very common reason for the parents to save and store their baby’s umbilical cord blood. And it’s not just parents that could benefit from the cord blood stem cells, but other family members can too.

As far as the DNA matches, the blood can be used to treat many different diseases. The decision is entirely up to the mother, whether she wants to preserve the cord blood for the future, donate or discard.

The cost of storage would range somewhere between $1500 – $3000 plus the annual fee of about $100. But the price pretty much differs from bank to bank, whether we are choosing private or public cord blood bank, etc.

can cord blood be used for parents

Here is What Independent Experts Got to Say

Expectant parents have a number of big financial decisions to make. Increasingly among them, what to do with baby’s cord blood.

Cord blood is a hot commodity. Taken from a newborn’s umbilical cord shortly after birth, it’s a rich source of stem cells that can be used to treat dozens of disorders, including several forms of leukemia, lymphoma and anemia. Parents have the option to discard it, donate it or store it with a private cord blood bank.

Private cord blood banks store the blood for a fee, in the event that the family might need it in the future. The banks also let families donate the blood for free, where it can be matched with patients in need or used for medical research.

The pitches for cord blood banking, particularly for private banking, are everywhere — hawked at tables at baby fairs, in brochures in doctors’ waiting rooms, on pop-ups in pregnancy apps and through ads in parenting magazines. July is even National Cord Blood Awareness Month. But doctors urge caution before signing up for private cord blood storage.

“What I tell parents is, this is a choice — and you should make an informed choice,” said Dr. Sergio Giralt, the immediate past president of the American Society for Blood and Marrow Transplantation (ASBMT).

Quarter-million-dollar baby: The cost of raising kids

Private cord blood banking can be expensive. Depending on the bank, current promotions and whether you’re storing cord blood, cord tissue or both, initial processing fees can run from roughly $500 to $2,500, with annual storage fees of $100 to $300 each year thereafter. That’s no small change, considering the USDA estimates middle-class parents already spend $12,940 on a baby during the first year, a figure that doesn’t include the cost of giving birth or starting a college savings fund.

Private banks may waive some or all of the fees if clients have a family member who stands to benefit from the banked cells, though the criteria for qualifying — and the savings — vary from bank to bank. Donation to a public bank is free.

Doctors say there’s a good reason for parents-to-be to consider taking some action on baby’s cord blood.

Original source and full article: https://www.nbcnews.com/business/consumer/cord-blood-banking-n400561

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Umbilical Cord Blood Harvesting https://cord-blood.org/harvesting/ https://cord-blood.org/harvesting/#comments Thu, 05 Jul 2018 19:08:02 +0000 http://cord-blood.org/?p=111 The term “Cord Blood harvesting” has a slightly morbid sound, but in reality, it is a very worthwhile and potentially lifesaving field of medical science. Umbilical Cord blood is blood that remains in the umbilical cord after birth. This umbilical cord blood is full of stem cells, and these powerful cells can be harvested for […]

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umbilical Cord Blood Harvesting

The term “Cord Blood harvesting” has a slightly morbid sound, but in reality, it is a very worthwhile and potentially lifesaving field of medical science. Umbilical Cord blood is blood that remains in the umbilical cord after birth. This umbilical cord blood is full of stem cells, and these powerful cells can be harvested for use in medical testing, or for transplantation into another host. A transplantation of harvested umbilical cord blood can have a profound effect on the recovery of patients with a host of medical conditions such as leukemia, cancers, thalassemia, Diabetes and some other diseases.

With umbilical cord blood harvesting, the harvested cord blood does not come from the newborn baby itself; instead, the cord blood is harvested from the blood that remains in the umbilical cord after birth. Umbilical cord blood is never harvested from either mother or child, but only from the unused blood in the umbilical cord, which would otherwise be discarded waste. The harvesting procedure takes only a few minutes and there is zero danger to either the parent or the baby.

The process for umbilical cord blood harvesting is straightforward: An obstetrician or doctor harvests the umbilical cord blood at the time of the baby’s birth. Timing is very important, as the umbilical cord blood must be harvested quickly so that the cells remain fresh. The harvested umbilical cord blood should preferably be at least 75 mL to make sure that there is enough cord blood and stem cells to be transplanted at a later stage.

After harvesting, the umbilical cord blood is taken to a cord blood bank where it will be tested to make sure that it is clear of disease and other contaminants. Before being frozen, a cryopreservant is added to the cord blood so that the stem cells are able to be frozen without damaging them, after which they are stored in a liquid nitrogen Cord Blood storage tank at –196 Celsius.

Umbilical cord blood stem cells are different from other kinds of cells in a couple of different ways. The first is that umbilical cord blood stem cells are unspecialized cells, which have the ability to renew themselves by cell division, even after significant time has elapsed since they were frozen. The second reason is that in certain situations, and under exacting conditions, the umbilical cord stem cells can become tissue- or organ-specific cells, allowing regeneration of those tissues.

Because of their ability to regenerate, umbilical cord stem cells may provide the answers to conditions such as various forms of heart disease and diabetes. Medical researchers studying umbilical cord blood stem cells have recorded several positive observations in animal studies, including instances where cord blood stem cells have improved vascular functions in injured tissue, as well as blood flow and improved overall heart function.

If you intend donating umbilical cord blood for preservation and later use, you should let your doctor know by your 34th week so that they can help make any arrangements with a cord blood bank. Once you and your doctor have decided on which cord blood bank to use, you will often be sent informational reading materials from the cord blood bank for further education regarding the process of cord blood harvesting.

Prior to the cord blood being harvested you will need to complete a health history questionnaire, and provide a blood sample to check for disease. In most situations, you will also be required to sign a consent form to confirm your intention to have the cord blood harvested.

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Cord Blood Banking: More Viable Option Today https://cord-blood.org/cord-blood-banking-more-viable-option-today/ https://cord-blood.org/cord-blood-banking-more-viable-option-today/#respond Sun, 01 Jul 2018 21:00:31 +0000 https://cord-blood.org/?p=171   There are many “what if” situations that we all consider in our life. One of the most serious is “What if a child or other family member was to become seriously ill?” Cord Blood Banking clinics have been growing exponentially in response to this common fear. But should you ever find yourself in this […]

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There are many “what if” situations that we all consider in our life. One of the most serious is “What if a child or other family member was to become seriously ill?” Cord Blood Banking clinics have been growing exponentially in response to this common fear. But should you ever find yourself in this dilemma, what are the pros and cons of using cord blood cells versus other stem cell-related treatments? This article will take a comparative look at some of the key benefits and difficulties as well as the financial costs of cord blood banking.

Cord Blood Treatment Defined

Cord blood contains stem cells that can save lives.  Patients requiring a stem cell transplant will receive cells from one of three sources: bone marrow, circulating blood, or umbilical cord blood.  The first two exist in all healthy adults, but cord blood can only be harvested and stored at birth

A cord blood bank is based upon a laboratory where staff process the cord blood, freeze it in liquid nitrogen, and monitor the freezers.

Only a limited number of institutions in the United States have the funding to maintain public banks which take donations for free.

Advantages of Cord Blood Transplants  versus Bone Marrow Transplants (BMT) or Peripheral Blood Stem Cells (PBSC)

Harvesting umbilical cord blood poses no risk to mother or child, whereas a bone marrow donor must undergo a surgical procedure.

Stored cord blood is ready for use as soon as it is needed, whereas the process of contacting and testing donors listed in a registry takes weeks to months.

For transplants, the primary advantage of cord blood stem cells over stem cells from adults is that they cause much less graft versus host disease (GvHD).  In order to safely transplant adult stem cells, the patient and donor must match over at least 10 of 12 tissue types called Human Leukocyte Antigens (HLA), or 83% HLA match.  By comparison, medical outcomes are just as good with cord blood that has a 4 out of 6 or 67% HLA match.

 

(Reference: V Rocha, et al, 2000; NEJM 342:1846)

Disadvantages of CBT versus BMT or PBSCT

The main disadvantage of cord blood transplants is that they take at least a week longer to “engraft”, which means repopulate the patient’s blood supply so that cell counts reach minimum acceptable levels.  The longer engraftment time is a risk because it leaves the patient vulnerable to a fatal infection for a longer time.

A typical cord blood collection only contains enough stem cells to transplant a large child or small adult.  This website has a page explaining the optimum transplant dose.  At one time it was believed that cell dose limitations restricted the use of cord blood transplants to children.  In recent years growing numbers of adults are also receiving cord blood transplants, either by growing the cells in a lab prior to transplant or by transplanting more than one cord blood unit at a time.  More information about these trials is available on the web page about Research on Cord Blood Transplants.

Cost Issues

Private cord blood banks usually charge an enrolment and collection fee ranging from about $775 to $2,150, plus annual storage fees ranging from about $85 to $150. Some banks include the first year’s storage as part of your initial payment and lower your annual payment if you put down more money initially.

That may sound expensive, but the cost of processing cord blood and storing it in medical freezers for years on end is considerable. Even public cord blood banks say the initial collection, processing, and storage cost them about $1,500 per unit of cord blood.

And cord blood from a public bank isn’t free, either. Costs run about $28,000 per unit and are charged to the patient’s insurance company when a cord blood unit is selected for transplant.

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What is Cord Blood Transplant Used For? https://cord-blood.org/what-is-cord-blood-transplant-used-for/ https://cord-blood.org/what-is-cord-blood-transplant-used-for/#respond Sat, 30 Jun 2018 08:54:44 +0000 https://cord-blood.org/?p=173 What is cord blood and how is it collected? Throughout the last few years, cord blood banking has turned out to be one of the most viable and commendable medical advancements. Wondering what is cord blood? Well, this is the blood extracted from the baby’s umbilical cord. The entire procedure, during which the blood is extracted, […]

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What is cord blood and how is it collected?

Throughout the last few years, cord blood banking has turned out to be one of the most viable and commendable medical advancements. Wondering what is cord blood? Well, this is the blood extracted from the baby’s umbilical cord. The entire procedure, during which the blood is extracted, turns out to be painless and safe both for the child and the mother. On top of that, the baby, his family members, and many other individuals can enjoy high health benefits from the procedure of cord blood banking. So simply read along to know better about cord blood storage as well as overall cord blood banking procedures.

How is Cord Blood Collected?

Now when you know what is cord blood, you might be wondering how it is collected. Well, cord blood is collected right after the birth of your little one. The procedure is completely painless and free from risks as well. The procedure is so quick, hassle-free and painless that neither a newborn nor a new mother realizes the entire procedure has taken place. Following is a list of steps depicting how the procedure is actually convened. Read on, to grasp a better insight on cord blood banking and its proceedings.

The cord is clamped and cut

After the baby is delivered, according to the procedures of cord blood banking, the umbilical cord is initially clamped and then cut out in the natural and usual manner. Here, the procedure for clamping and cutting remains the same for vaginal deliveries and c-section deliveries. However, while convening the procedure, make sure to get it done under the supervision of a competent and efficient professional.

The procedure of cord clamping can be delayed for a considerable period of time. However, the delay has to be a brief one. It cannot be delayed more than one or two minutes. If the procedure of clamping the cord is delayed for too long, the blood present in the cord might clot and once the blood clots it does not benefit anyone. Neither does it help your baby nor can it be collected for storage.

Harvesting the cord blood

Right after the cord is clamped and cut, your medical practitioner uses a needle and gets it inserted into the umbilical vein of the cord. Only that part is cut which is still attached to the placenta. High quality and proper needles are used and they do not go anywhere near your baby.

Cord Blood Banking and Storage

Well, this is how the entire procedure of cord blood banking. Right after the blood is extracted, it is sent for to the bank. In the bank, the cord blood is checked, tested, processed and finally preserved. This preservation is ensured by controlled freezing under high end freezing conditions. Certain private banks collect a certain segment of the umbilical cord along with the cord blood. The umbilical cord tissue contains various stem cells that are quite different from the general cord blood cells. Research experts are studying in order to understand the possible use of the stem cells in medicine.

So, now when you know what is cord blood and how it is collected, opt for the procedure and enjoy better health of your child and family members.

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Stem Cells – 10 Diseases They May or May Not Cure https://cord-blood.org/stem-cells-10-diseases-they-may-or-may-not-cure/ https://cord-blood.org/stem-cells-10-diseases-they-may-or-may-not-cure/#respond Fri, 29 Jun 2018 18:40:59 +0000 http://cord-blood.org/?p=74 With President Obama’s lifting of the ban on federal funding for embryonic stem cell research, scientists had necessary funding for developing medical treatments, in which case with a new Trump’s administration it might be different now. Anyway, the excitement over the embryonic cells comes from their remarkable ability, as biological blank slates, to become virtually […]

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With President Obama’s lifting of the ban on federal funding for embryonic stem cell research, scientists had necessary funding for developing medical treatments, in which case with a new Trump’s administration it might be different now.

Anyway, the excitement over the embryonic cells comes from their remarkable ability, as biological blank slates, to become virtually any of the body’s cell types. Many observers believe the president’s move will accelerate the hunt for cures for some of our most vexing diseases. However, the benefits are largely hypothetical, given the infancy of the field, and are offset by some real obstacles: The risks of embryonic stem cells, as well as cells programmed to become like them, including the possibility they will actually cause cancers in people who receive them. Nonetheless, here’s a look at 10 health problems that stem cells might someday cure or at least help treat.

Thanks very much much for watching and please share to bring the awareness of the importance of Cord Blood and Stem Cell Research for better and healthy living.

1. Spinal cord injury. In January, the Food and Drug Administration OK’d its first-ever human study of a medical treatment derived from human embryonic stem cells. The objective: help people with acute spinal cord injuries. While expected to assess only the safety of the treatment, the study also might show if the paralyzed volunteers can regain some feeling in and control over their lower extremities.

2. Diabetes. For the many Americans with type 1 diabetes, whose insulin-making pancreatic cells have been killed off by their immune system, stem cells may be the answer. Last year, scientists reported that they had coaxed human embryonic stem cells into becoming insulin-producing, blood sugar-regulating cells in diabetic mice. The aim: to someday do the same for people.

3. Heart disease. It’s the leading cause of death in the United States, and stem cells may provide some relief. Research is underway to see if injecting the cells into the heart could help regenerate heart muscle damaged by, for example, a heart attack. Again, researchers have reported success in rodents.

4. Parkinson’s disease. Stem cells may also help those who suffer from Parkinson’s, a neurodegenerative disorder that can cause tremors, stiffness, and other movement and speech problems. Studies show that embryonic stem cells can give rise to the dopamine-making neurons that Parkinson’s patients lack. When transplanted into rodents with a Parkinson’s-like disorder, those replacement brain cells improved the animals’ motor function.

5. Alzheimer’s disease. Likewise, embryonic stem cells may come in handy against Alzheimer’s disease, a progressive and deadly disorder that degrades and kills brain cells, leading to memory loss, cognitive decline, and behavioral problems. Stem cells may give rise to new treatments or even, some say, a cure; other experts have expressed skepticism.

6. Lou Gehrig’s diseaseThere’s hope that stem cells could help those with Lou Gehrig’s disease, also known as amyotrophic lateral sclerosis, or ALS. The crippling disease comes with a grim prognosis: Many die within three to five years of diagnosis, as their bodies progressively damage muscle-controlling motor neurons in the brain and spinal cord. Scientists are exploring ways to coax stem cells into becoming motor neurons that could be transplanted into ALS patients, restoring their ability to move.

7. Lung diseases. From human embryonic stem cells, researchers in Texas have created transplantable sources of lung cells in the lab. Those lung cells could potentially be used to repair damage brought on by a variety of pulmonary conditions or by lung trauma resulting from a car accident, bullet wound, or sports injury. Unpublished studies using such cells have shown promise for tissue repair in mice with acute lung injury, the group reports.

8. ArthritisAlso called degenerative joint disease, osteoarthritis—the most common form of arthritis—results when protective cartilage in joints wastes away. Once it’s gone, it’s gone for good. Stem cells could change that. Scientists are examining how best to use them to rebuild lost cartilage and repair shot joints.

9. Sickle cell anemia. Stem cell researchers are exploring ways to correct numerous blood disorders, including sickle cell anemia. Mice have been cured of the sometimes-deadly condition after receiving transfusions of stem cells made from their own skin cells.

10. Organ failure. What better way to ease the shortage of organs for transplantation than to grow new ones? That’s what some scientists think, and with stem cells, that vision may become more than a pipe dream. Last year, researchers grew a beating rat heart in the lab with the help of heart cells from newborn rats, preliminary proof of the concept.

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Super Energized Blood After 1 Drop of Quantum Infused Oil https://cord-blood.org/super-energized-blood-after-1-drop-of-quantum-infused-oil/ https://cord-blood.org/super-energized-blood-after-1-drop-of-quantum-infused-oil/#comments Mon, 25 Jun 2018 19:00:09 +0000 http://cord-blood.org/?p=68 It’s incredible how much little we know about the science when it comes down to the almost everything. A group of very open-minded scientists studying and understanding the spiritual laws and the laws of the universe. learned through various experiments how to capture the essence of the sun into the high-quality organic oil. Throughout many […]

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It’s incredible how much little we know about the science when it comes down to the almost everything. A group of very open-minded scientists studying and understanding the spiritual laws and the laws of the universe. learned through various experiments how to capture the essence of the sun into the high-quality organic oil.

Throughout many experiments and testings different individuals, the Flower of Sunlight absolutely works, no doubt about that.

Here is a short video showing the blood before and right after use of the Organic Oil, and the results are phenomenal.

Flower of Sunlight – Quantum Infused Sunlight Energy Organic Oil

This is absolutely rare and unique technology to infuse the pure organic oil with the sunlight frequency waves and vibrations that almost instantly have an incredible effect on the body, either from the physiological point of view or spiritual. The small drop of the sunlight oil immediately affects the blood cells and create an easy and stress-free blood flow, balancing and harmonizing the entire body system as well as giving the energy boost for the whole day.

So far, the Flower of Sunlight has been tested by a small number of individuals, including some athletes and physically active individuals, different age groups, etc., and they always felt the immediate energy boost and improvements of physiological and mental health. In the group of physically active people, the oil significantly improved their efforts, some of them saying that they didn’t have to try that hard to achieve the same performance as they normally do.

Alkaline Blood of Acidic Blood

Unless we are hiking in the forest, mountains, or living at the side of a waterfall or undisrupted seashore, our bodies tend to be in the acidic state given to the fact that our physical bodies are made of 60% water fluid. You cannot really get acidic or alkaline cracker because there is no or very little % of water.

So, unfortunately, depending on where you live your overall physical and mental health will vary significantly. Of course, through the right breathing, meditations, and positive thinking we can very much improve our health too, but not many people can or are willing to do that.

BUT!

Flower of Sunlight oil does put your blood into its natural alkaline state, easily flowing through your body, making you feel great and positive almost without an effort from your side.

Just test it out and see for yourself 🙂

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Review of Private VS Public Cord Blood Banking https://cord-blood.org/private-vs-public-cord-blood-banking-review/ https://cord-blood.org/private-vs-public-cord-blood-banking-review/#respond Sun, 15 Apr 2018 11:49:26 +0000 http://cord-blood.org/?p=59 There are two kinds of cord blood storage facilities: public cord blood banks and private cord blood banks. These facilities perform the same basic function of providing a safe place to store precious donated umbilical cord blood for possible use in future stem cell transplants. There are a couple of very important differences between the […]

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Private VS Public Cord Blood BankingThere are two kinds of cord blood storage facilities: public cord blood banks and private cord blood banks. These facilities perform the same basic function of providing a safe place to store precious donated umbilical cord blood for possible use in future stem cell transplants. There are a couple of very important differences between the two though that are important to understand.
First, what is the same?

The physical process of collecting the cord blood is basically the same.  In both cases the umbilical cord will be clamped, cut and the blood drained into a sterile container.  From there the blood is transported to a blood bank where it will be cryogenically frozen in nitrogen at a temperature of roughly -190⁰ Celsius.  At such a low temperature all molecular movement ceases thus ensuring the ability to use the blood in the future for an indefinite amount of time.

What’s the difference between the two options? The first major difference is the future availability of the umbilical cord blood to the baby, or family member who may need a genetically-matched donor for a cord blood transplant.

With a public cord blood bank, the child and family will be given no future access to the child’s donated blood.  Once the blood has been processed within a couple of days after collection, the donor’s information is deleted as a matter of privacy, as with any other donated organ.  This is important to consider if your family has a history of genetic disorders or diseases where stem cell transplants have been found to be an effective treatment.

If there is a chance that the child will need the blood later in life, or if a family member is in need of a transplant.  You should consider using a private cord blood bank.  Using a private cord blood bank ensures that your family will always have access to the blood, that you will be able to retrieve it whenever necessary, and that it will be a genetic match to your child.

Going the private cord blood banking route will cost you though.  Private cord blood banks on average charge between $1,000-$2,000 up front, in addition to monthly storage fees that can be in the $60-$100+ range.  Alternatively, using a public cord blood bank is entirely free.

Public cord blood banks are a great option if you are simply interested in making a cord blood donation that can help save someone’s life.  These donations go towards helping people with leukemia and other possibly terminal conditions.  It is for this reason that you can donate your baby’s cord blood free of charge.  It is important to note though that not all hospitals are affiliated with a public cord blood bank.  You can check that though by simply asking your doctor. In the case that your hospital is not affiliated with a public cord blood bank, you will have to contact one and work out a way for them to collect the cord blood, again, free of charge.

It is also worth noting that the requirements of a public cord blood bank are usually a bit more stringent than those of a private cord blood bank, as the cord blood is destined for a wider range of use outside the child’s family circle.  Rest assured though that your baby’s cord blood will go to good use.  If it is found that the cord blood unit is unfit for use in a blood transplant, it will be used for testing to improve the process in the future.

To determine if you’re eligible to donate cord blood to a public cord blood bank you will have to fill out a health questionnaire regarding your medical history and give a blood sample to check for certain diseases.  The process for using a private cord blood bank will be less stringent.

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What Are Stem Cells and What Is the Value of Cord Blood? https://cord-blood.org/what-are-stem-cells-and-what-is-the-value-of-cord-blood/ https://cord-blood.org/what-are-stem-cells-and-what-is-the-value-of-cord-blood/#respond Thu, 05 Apr 2018 14:31:03 +0000 http://cord-blood.org/?p=31 Cord blood is the blood found inside the umbilical cord, the nutritional “pipeline” between the mother and the baby in utero. Following the birth of a baby, the umbilical cord usually is discarded along with the placenta. However, it is now known that blood retrieved from the umbilical cord is a rich source of stem […]

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what are stem cells

Cord blood is the blood found inside the umbilical cord, the nutritional “pipeline” between the mother and the baby in utero. Following the birth of a baby, the umbilical cord usually is discarded along with the placenta. However, it is now known that blood retrieved from the umbilical cord is a rich source of stem cells.

Stem cells are unspecialized cells that can develop into specialized cells such as a muscle cell, a red blood cell, or a brain cell. They continually make new copies of themselves and produce cells that make every other type of cell. Stem cells are usually further defined according to how many different types of cells they have the potential to produce. For instance, a fertilized egg is considered totipotent, meaning it can give rise to all the different types of cells in the body. Pluripotent stem cells can give rise to any type of cell in the body except those needed to develop a fetus, and multipotent stem cells can develop into multiple different cell types. The stem cells in umbilical cord blood are considered multipotent, though recent research is discovering ways to regress these and adult stem cells into pluripotent stem cells.

The Value

Like donated bone marrow, stem cells from umbilical cord blood can be used to treat various genetic disorders that affect the blood and immune system, leukemia and certain cancers, and some inherited disorders of body chemistry. To this date, there have been many cases of disorders treated with stem cells. Cord blood has therapeutic advantages over adult stem cells. Cord blood stem cells, unlike adult stem cells, are less likely to contain DNA abnormalities caused by sunlight, toxins, and errors in DNA replication during the course of a lifetime and, in transplantations, are rejected much less often even though exact matches are not required. Cord blood is a richer source of stem cells than bone marrow, with nearly 10 times as many blood-producing cells, so fewer stem cells are needed for a successful transplantation.

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How to Understand Cord Blood Banking and Banks https://cord-blood.org/how-to-understand-cord-blood-banking-and-banks/ https://cord-blood.org/how-to-understand-cord-blood-banking-and-banks/#respond Fri, 30 Mar 2018 17:08:27 +0000 http://cord-blood.org/?p=13 A free, unbiased source of information Every expectant parent today faces a tough and irreversible choice:  Should you bank your newborn child’s cord blood?  If you are like most expectant parents, you are perhaps overwhelmed and confused by the choice.  On one hand you receive tons of marketing from the cord blood companies touting the […]

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A free, unbiased source of information
Every expectant parent today faces a tough and irreversible choice:  Should you bank your newborn child’s cord blood?  If you are like most expectant parents, you are perhaps overwhelmed and confused by the choice.  On one hand you receive tons of marketing from the cord blood companies touting the important benefits of blood banking.  On the other hand, you’ve heard that there is limited medical value to storing your child’s cord blood and the costs are very high.
cord blood banking

Here is a quick summary of why you should bank your baby’s cord blood:

  • It might just save your baby’s or another family member’s life at some point in the future
  • You will only have one chance to bank your baby’s cord blood; the moment immediately after birth.
  • The cord blood collection process is simple, painless, and harmless to the baby and mother.
  • 30%-70% of people who need bone marrow transplants cannot find a match.  Finding a proper match is especially problematic for African-Americans, Hispanics, Native Americans, and people of mixed ethnicity.
  • By banking your baby’s stem cells, the odds of having a proper match for the baby or another family member improve.
  • Especially beneficial if a family member has a condition that can be treated with a stem cell transplant, such as sickle cell anemia, thalassemia, aplastic anemia, leukemia, metabolic storage disorders and certain genetic immunodeficiencies.
  • Future medical advances might allow stem cells to treat even more diseases and be used in more transplant cases than current medical practices.
  • I’ve tried to summarize the argument for banking cord blood as succinctly as possible.  To gather more information, you can click on the links of the cord banks on the left of the page.  Each bank has a detailed (although biased) argument in favor of blood banking.  
  • In addition, the following articles provide some interesting reading:

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Stem Cells Research & The Future of Cord Blood Banking https://cord-blood.org/stem-cells-research-future-cord-blood-banking/ https://cord-blood.org/stem-cells-research-future-cord-blood-banking/#respond Wed, 28 Mar 2018 10:27:48 +0000 http://cord-blood.org/?p=133 You should be glad to learn that we are standing on the verge of a new yet incredible medicine for regeneration, wherein stem cell transplantation is the key! The transplantation of stem cells facilitates the restoration of the functioning of diseased, debilitates and injured organs and tissues. These stem cells are shaped like embryos and […]

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Future of Cord Blood Banking Stem Cell Research

Future of Cord Blood Banking Stem Cell Research

You should be glad to learn that we are standing on the verge of a new yet incredible medicine for regeneration, wherein stem cell transplantation is the key! The transplantation of stem cells facilitates the restoration of the functioning of diseased, debilitates and injured organs and tissues. These stem cells are shaped like embryos and can be traced in umbilical cord blood. It was umbilical cord blood which was originally used 18 years ago for treating disorders related to blood and immune system. The past few decades witnessed immense avenues for the use of stem cells in a number of health conditions, anti-aging treatments, and genetic disorders in the wake of a variety of progenitor cells and multipotent stem cells identified in the cord blood. As a matter of fact, the stem cells were essentially found in umbilical cord blood, is currently used for clinical research for different neurological disorders outside the US.

Stem cell research has by and large produced amazingly successful results for treating worst diseases like Alzheimer’s disease, Parkinson’s disease, Stroke, Cerebral Palsy, Traumatic Brain Injury, Heart Diseases, Spinal Cord Injuries, Diabetes, Immune Deficiencies, and Diabetes, on both human and animal bodies.

In the ensuing years, there could be a swift advancement in adult stem cells research but bit slower and less severity in embryonic stem cells. This is because the latter appears to be a technology of the previous century in combination with therapeutic cloning. The history reveals that by the year 2020, we would see ourselves in a position to be able to generate a wide array of tissues with the help of adult stem cells with significant evolution in the building of tissues and its repair.

The future would also unfold some amazing pharmaceutical products that will devoid the method of removing a stem cell from the body, and instead activate bone marrow cells to be transferred to the required body parts seeking repairs. We might also have many biotech companies in the industry in the coming years, having invested massively into embryonic stem cells and worrying over the ethical issues concerning therein, and the fact of overlooking the potentiality of adult stem cell methodology.

The use of embryos for additional cells would remain to be controversial in contrast to the adult tissues or probably the umbilical cord stem cells. This would result in investors willing to lessen down the risks involved in their funded projects and to their organizations through alliances.

In spite of this, we look forward to watching embryonic stem cell research continuing in some countries, with further advancement features added onto it.

future of blood research

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