cord blood ph | easy way to interpret cord blood gases

At present, the odds of undergoing any stem cell transplant by age 70 stands at one in 217, but with the continued advancement of cord blood and related stem and immune cell research, the likelihood of utilizing the preserved cord blood for disease treatment will continue to grow. Read more about cord blood as a regenerative medicine here.
It depends on who you ask. Although commercial cord blood banks often bill their services as “biological insurance” against future diseases, the blood doesn’t often get used. One study says the chance that a child will use their cord blood over their lifetime is between 1 in 400 and 1 in 200,000.
Cord blood stem cells are involved in treating more than 80 diseases. Most often, they’re used in treatments for cancers like leukemia and lymphoma, inherited immune system and immune-cell disorders, sickle cell disease and anemia, and Gaucher disease, but they can also be helpful in treating other immune, blood and neurological disorders.
The baby’s cord blood will be processed and stored in a laboratory facility, often referred to as a blood bank. The cord blood should be processed and stored in a facility that is accredited by the American Association of Blood Banks (AABB) for the purpose of handling stem cells.
Another primary issue is simply the fact that there is no guarantee that stem cells from cord blood will ever become a viable medical field. Though these stem cells are being used in current therapies, the chances of needing a specific stem cell transplant without a family history of illness or disease is quite low.
When you consider that public banks can only expect to ship 1-2% of their inventory for transplant, you can quickly understand why most public banks are struggling to make ends meet. That struggle means that fewer collection programs are staffed, and there are fewer opportunities for parents to donate to the public good. We said earlier that public banks only keep cord blood donations over a minimum of 900 million cells, but today most public banks have raised that threshold to 1.5 billion cells. The reason is that the largest units are the ones most likely to be used for transplants that bring income to the bank. Family cord blood banks do not need to impose volume thresholds because they have a profit margin on every unit banked.
The potential of cord blood banking is enormous, but so are the costs of private banking. The pros and cons of cord blood banking suggest that public banking can be a beneficial choice for many families. Other choices are available as well, including a delay in the cutting of the umbilical cord, so each family must decide which option will be right for them.
Medical staff at the public cord blood bank will check to see if you can donate. If you have had a disease that can be given to another person through blood-forming cells, such as hepatitis B, hepatitis C, or HIV (the AIDS virus), you will likely not be able to donate. However, other medical reasons may still allow you to donate, for example, hepatitis A or diabetes only during your pregnancy (gestational diabetes). The staff at the public cord blood bank will tell you.
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To prevent graft-versus-host disease and help ensure engraftment, the stem cells being transfused need to match the cells of the patient completely or to a certain degree (depending on what is being treated). Cord blood taken from a baby’s umbilical cord is always a perfect match for the baby. In addition, immediate family members are more likely to also be a match for the banked cord blood. Siblings have a 25 percent chance of being a perfect match and a 50 percent chance of being a partial match. Parents, who each provide half the markers used in matching, have a 100% chance of being a partial match. Even aunts, uncles, grandparents and other extended family members have a higher probability of being a match and could possibly benefit from the banked cord blood. Read more reasons why you should bank cord blood.
FAQ172: Designed as an aid to patients, this document sets forth current information and opinions related to women’s health. The information does not dictate an exclusive course of treatment or procedure to be followed and should not be construed as excluding other acceptable methods of practice. Variations, taking into account the needs of the individual patient, resources, and limitations unique to the institution or type of practice, may be appropriate.
The main reason for this requirement is to give the cord blood bank enough time to complete the enrollment process. For the safety of any person who might receive the cord blood donation, the mother must pass a health history screening. And for ethical reasons, the mother must give informed consent.
Private cord blood banking companies provide you and your family the assurance that your child’s cord blood will be contained safely and securely until needed. Private cord banking is provided by an accredited family company that contains your child’s blood as long as you are able to pay the fees. There are currently 25+ AABB certified private banks available.
Yes, if you have any sick children who could benefit from umbilical cord blood. Public banks such as Carolinas Cord Bank at Duke University and private banks such as FamilyCord in Los Angeles offer programs in which the bank will assist with cord blood processing and storage if your baby has a biological sibling with certain diseases. FamilyCord will provide free cord blood storage for one year. See a list of banks with these programs at parentsguidecordblood.org/help.php.
The decision to bank your child’s cord blood is a personal one. Some parents believe the potential benefits are too few to justify the cost, or lose the advantages of delayed cord clamping; others believe it’s a worthwhile investment.
Cord blood collection is a quick, simple procedure that takes between five and 10 minutes. But the decision to collect your baby’s cord blood is one to discuss with your doctor well before giving birth. If you opt to bank your baby’s cord blood, you’ll need to obtain a collection kit from your cord blood bank, which can take several weeks. You’ll also need to have a blood test and sign a consent form before labor begins. Finally, it’s important to confirm that your hospital is able to collect cord blood, since not all of them can. 
Cord tissue is rich in a completely different type of stem cell. With over fifty clinical trials currently in progress, researchers agree that banking cord tissue is the future of stem cell banking. Learn more >
You certainly should, especially if you have a family history of any diseases or conditions that could be treated with cord blood stem cells. Since there is only a 25% chance of a match, you should bank the cord blood of each individual child if you have the means.
The stored blood can’t always be used, even if the person develops a disease later on, because if the disease was caused by a genetic mutation, it would also be in the stem cells. Current research says the stored blood may only be useful for 15 years.
Today, cord blood stems cells are used in the treatment of nearly 80 diseases, including a wide range of cancers, genetic diseases, and blood disorders.2 In a cord blood transplant, stem cells are infused in to a patient’s bloodstream where they go to work healing and repairing damaged cells and tissue. When a transplant is successful, a healthy new immune system has been created. 
STEM CELLS are found in cord blood, cord tissue, and placenta tissue. These cells are highly valuable to your baby, the mother, and possibly other family members. When you save these stem cells with Americord®, you ensure that they are securely stored for you and your family’s future needs. Learn more >
If you decided to donate cord blood, it is highly unlikely the blood would be available for you or a close relative later on in life. If cord blood is ever needed in the future you would have to pay for a donation made by another (compatible) donor.
The collection of cord blood takes place after the baby has been delivered, so there is no risk to either the mother or baby. The delivery process is not changed or modified because of the cord blood collection. The umbilical cord is clamped, cut and separated from the baby. The baby is then placed in the mother’s arms or taken to a warmer. Only then will your physician or midwife collect the cord blood. The blood from the umbilical cord drains into a standard blood donor collection bag by gravity.
One of the questions that all new mothers are asked during their pregnancy is if they wish to bank their cord blood after the delivery. The cord blood has stem cells within it, which in the ever-evolving field of medicine today allows for improved transplants, immune systems, and injury recovery… but they could also be used to save your child’s life one day. At birth, these stem cells are unique, smart, and extremely flexible and at this very moment are being used to treat over 80 diseases.
When a child is born, their umbilical cord is filled with nutrient-rich blood. There are stem cells contained in that blood, along with numerous other potentially beneficial items. It can be used for research purposes, including helping the newborn receive needed treatments should they encounter certain serious diseases in their young life. Banking that cord blood immediately can be the ticket to a bright future for some children.
These are diseases for which transplants of blood-forming stem cells (Hematopoietic Stem Cell Transplants, HSCT) are a standard treatment. For some diseases they are the only therapy, and in other diseases they are only employed when front-line therapies have failed or the disease is very aggressive. The lists below include ALL therapies that use blood-forming stem cells, without distinction as to whether the stem cells were extracted from bone marrow, peripheral blood, or cord blood.
There are a number of different processing methods out there for a cord blood bank to use, and the processing method can ultimately affect the purity of the final product, which we’ll explain in a minute. Once the stem and immune system cells have been isolated and extracted from the plasma and red blood cell, they are mixed with a cryo-protectant and stored in a cryo-bag. We overwrap our bags for added protection and use a technique called “controlled-rate freezing” to prepare the cells for long-term storage. The overwrapped cryo-bag is housed in a protective metal cassette and placed in vapor-phase liquid nitrogen freezer for long-term preservation.
Several private cord blood banks offer families up to 1 year of free storage. This option can be especially useful for families where a sibling or parent may need to utilize the cord blood for a treatment in the near future. Many organizations will also partner with you to raise the funds that you may need to cover these expenses, including help with crowdfunding in certain situations.
With more than 80 diseases now treatable using cord blood stem cells and over 50 clinical trials underway using cord and placenta tissue, the motivation for collecting these valuable and potentially life-saving cells is clear. When you save these stem cells with Americord®, you ensure that they are securely stored for you and your family’s future needs.
The mother signs an informed consent which gives a “public” cord blood bank permission to collect the cord blood after birth and to list it on a database that can be searched by doctors on behalf of patients.  The cord blood is listed purely by its genetic type, with no information about the identity of the donor. In the United States, Be The Match maintains a national network of public cord blood banks and registered cord blood donations. However, all the donation registries around the world cooperate with each other, so that a patient who one day benefits from your child’s cord blood may come from anywhere. It is truly a gift to the benefit of humankind.
There are several resources available for collection that benefit transplant patients, including bone marrow. Umbilical cord blood is the easiest to collect because it is a painless procedure that must be completed anyway to disconnect a newborn from the mother. Cord blood is also easier to match with others, even compared to blood that is recovered from the placenta, which makes it a highly effective treatment option.
As you begin to make decisions on behalf of your new baby, we hope that you will consider including the donation of your baby’s cord blood to the St. Louis Cord Blood Bank’s First Gift donation program among your priorities. Thousands of children and adults are alive today because mothers like you have donated their baby’s cord blood. Be assured that it is safe, painless, easy and free. 
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During pregnancy, the placenta and blood within it serve as the lifeline of nourishment from mother to baby through the umbilical cord. Following the birth, these items are usually discarded. However, cord blood is a rich source of adult stem cells, similar to those found in bone marrow. These blood-forming stem cells create all of a person’s blood cells: red cells that carry oxygen, white cells that fight disease, and platelets that help blood clot. It is because of this multipurpose functionality that cord blood is capable of treating more than 80 different diseases, and has saved thousands of lives.
Most stored cord blood is discarded. At public cord blood banks, a unit of stored cord blood has a greater chance of being used to help a sick child or used toward stem cell research. Private cord blood banks, on the other hand, eventually throw away blood that a family no longer wants to store or use.
If someone doesn’t have cord blood stored, they will have to rely on stem cells from another source. For that, we can go back to the history of cord blood, which really begins with bone marrow. Bone marrow contains similar although less effective and possibly tainted versions of the same stem cells abundant in cord blood. Scientists performed the first bone marrow stem cell transplant in 1956 between identical twins. It resulted in the complete remission of the one twin’s leukemia.
At Cryo-Cell, we strive to give all parents the chance to store their babies’ umbilical cord blood for the future health of their families. We offer special discounts and offers for multiple births, returning customers, referrals, military families, medical professionals, long-term, pre-paid storage plans and more. In addition, we have in-house financing options that start for as little as a few dollars a day to keep cord blood banking in everyone’s reach. See how much cord blood banking costs at Cryo-Cell here.
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The therapuetic potential of cord blood continues to grow.  Over the last few years cord blood use has expanded into an area known as regenerative medicine. Regenerative medicine is the science of living cells being used to potentially regenerate or facilitate the repair of cells damaged by disease, genetics, injury or simply aging. Research is underway with the hope that cord blood stem cells may prove beneficial in young patients facing life-changing medical conditions once thought untreatable – such as autism and cerebral palsy.
Cord blood (short for umbilical cord blood) is the blood that remains in the umbilical cord and placenta post-delivery. At or near term, there is a maternal–fetal transfer of cells to boost the immune systems of both the mother and baby in preparation for labor. This makes cord blood at the time of delivery a rich source of stem cells and other cells of the immune system. Cord blood banking is the process of collecting the cord blood and extracting and cryogenically freezing its stem cells and other cells of the immune system for potential future medical use.
Your own cord blood will always be accessible. This applies only if you pay to store your cord blood at a private bank. The blood is reserved for your own family; nobody else can access or use it, and it will never be allotted to another family or be donated to research. If you donate your cord blood to a public bank, on the other hand, anyone who needs compatible cord blood can have it; there’s no guarantee that it will be available if and when your family needs it.
Like most transplants, the stem cells must be a genetic match with the patients to be accepted by the body’s immune system. It goes without saying that a patient’s own cord blood will be a 100% match. The second highest chance of a genetic match comes from siblings.
Shai was a feisty little girl whose mother used her scientific background to search for the best approach to cure her cancer. Shai narrowly escaped death many times, including a recovery that even her doctors considered a miracle, yet she died at dawn on the day that she would have begun kindergarten. Her mother went on to found this website and charity in her memory. Read more…
In terms of performance, our PrepaCyte-CB processing method has taken the lead. PrepaCyte-CB greatly improves on parents’ returns on investment because it yields the highest number of stem cells while showing the greatest reduction in red blood cells.1–4 Clinical transplant data show that cord blood processed with PrepaCyte-CB engrafts more quickly than other processing methods.7 This means patients may start feeling better more quickly, may spend less time in the hospital and are less likely to suffer from an infection. The ability to get better more quickly and a reduced chance of infection can prove vital in certain cases. Learn more about PrepaCyte®-CB here.
The majority of programs that accept cord blood donations require the mother to sign up in advance. In the united States, the current requirement is to sign up by the 34th week of pregnancy. This cannot be over-stressed; time and time again, mothers who want to donate are turned away because they did not inquire about donation until it was too late.
Cord blood donation doesn’t cost anything for parents. Public cord blood banks pay for everything which includes the collection, testing, and storing of umbilical cord blood. This means that cord blood donation is not possible in every hospital.
The European Group on Ethics in Science and New Technologies (EGE) has also adopted a position on the ethical aspects of umbilical cord blood banking. The EGE is of the opinion that “support for public cord blood banks for allogeneic transplantations should be increased and long term functioning should be assured.” They further stated that “the legitimacy of commercial cord blood banks for autologous use should be questioned as they sell a service which has presently no real use regarding therapeutic options.”





Prior to freezing the cells, samples are taken for quality testing. Banks measure the number of cells that are positive for the CD34 marker, a protein that is used to estimate the number of blood-forming stem cells present. Typical cost, $150 to $200 per unit. They also measure the number of nucleated cells, another measure of stem cells, both before and after processing to determine the cell recovery rate. Typical expense, $35 per unit. A portion of the sample is submitted to check that there is no bacterial or fungal contamination. Typical expense, $75 per unit. Public banks will also check the ability of the sample to grow new cells by taking a culture called the CFU assay. Typical expense, $200 to $250 per unit.

5 Replies to “cord blood ph | easy way to interpret cord blood gases”

  1. Cord blood banking is not always cheap. It’s completely free to donate blood to a public cord blood bank, but private banks charge $1,400 to $2,300 for collecting, testing, and registering, plus an annual $95 to $125 storing fee.
    Cord blood collection is a completely painless procedure that does not interfere with the birth or with mother-and-child bonding following the delivery. There is no risk to either the mother or baby. Cord blood collection rarely requires Blood Center staff to be present during the baby’s delivery. There is no cost to you for donating.
    Because of the invasive procedure required to obtain the bone marrow, scientist continued to look for a better source, which eventually lead to the discovery of similar stem cells in cord blood in 1978. Cord blood was used in its first transplant in 1988, and cord blood has since been shown to be more advantageous than other means of acquiring similar stem cells and immune system cells. This is because umbilical cord blood can be considered naïve and immature compared to other sources. Cord blood has not been exposed to disease or environmental pollutants, and it is more accepting of foreign cells. In this case, inexperience makes it stronger.
    For example, if your baby were born with a genetic condition, such as spina bifida, her stem cells would carry this condition as well and therefore couldn’t be used to treat her. Similarly with leukemia, the stem cells may already have pre-leukemic changes.
    “This is a medical service that has to be done when your baby’s cells arrive and you certainly want them to be handled by good equipment and good technicians,” says Frances Verter, Ph.D., founder and director of Parent’s Guide to Cord Blood Foundation, a nonprofit dedicated to educating parents about cord blood donation and cord blood therapists. “It’s just not going to be cheap.” Although the American Academy of Pediatrics (AAP) states cord blood has been used to treat certain diseases successfully, there isn’t strong evidence to support cord blood banking. If a family does choose to bank cord blood, the AAP recommends public cord blood banking (instead of private) to reduce costs.
    If you wish to keep the umbilicial cord intact after birth, so your baby receives the benefits of delayed cord clamping, cord blood collection might not be an option for you. This will depend on the hospital and its collection policy. Staff can wait until the cord has finished pulsating, cut the cord, and then drain the placenta of the remaining blood.
    From the What to Expect editorial team and Heidi Murkoff, author of What to Expect When You’re Expecting. Health information on this site is based on peer-reviewed medical journals and highly respected health organizations and institutions including ACOG (American College of Obstetricians and Gynecologists), CDC (Centers for Disease Control and Prevention) and AAP (American Academy of Pediatrics), as well as the What to Expect books by Heidi Murkoff.

  2. If you can afford the costs of cord blood banking, then it makes sense to have it done to protect against the “what ifs” of life. If you cannot, you can still potentially help someone in need by making a donation to a public cord blood bank, which is often free and may just have a small collection fee from the hospital. The world of medicine is changing, which is why cord blood banking is so important. Talk to your doctor today to see if it is something you should be doing!
    With public cord blood banks, there’s a greater chance that your cord blood will be put to use because it could be given to any child or adult in need, says William T. Shearer, M.D., Ph.D., professor of Pediatrics and Immunology at Baylor College of Medicine in Houston. Cord blood is donated and is put on a national registry, to be made available for any transplant patient. So if your child should need the cord blood later in life, there’s no guarantee you would be able to get it back.
    It varies. Cord blood banking can be free, or it can cost a few thousand dollars or more. How much you pay will depend on several different factors, like whether your insurance covers the collection process, whether your doctor or midwife charges a collection fee, whether you opt for a public storage bank (which is free) or private storage bank (which can cost a couple thousand dollars or more), or whether there is an existing family medical need (in which case some private banks offer free or discounted storage).
    When an immediate family member has a disease that requires a stem cell transplant, cord blood from a newborn baby in the family may be the best option. There is a 25% chance, for example, that cord blood will be a perfect match for a sibling, because each child shares one of its two HLA genes with each parent. Occasionally cord blood will be a good match for a parent if, by chance, both parents share some of the six HLA antigens. The baby’s cord blood is less likely to be a good match for more distant relatives. The inventories of unrelated cord blood units in public cord blood banks are more likely to provide appropriate matches for parents and distant relatives, as well as for siblings that do not match.

  3. Cord blood (short for umbilical cord blood) is the blood that remains in the umbilical cord and placenta post-delivery. At or near term, there is a maternal–fetal transfer of cells to boost the immune systems of both the mother and baby in preparation for labor. This makes cord blood at the time of delivery a rich source of stem cells and other cells of the immune system. Cord blood banking is the process of collecting the cord blood and extracting and cryogenically freezing its stem cells and other cells of the immune system for potential future medical use.
    Cord blood is extra blood that’s left in a baby’s umbilical cord and placenta after the cord is cut. Babies don’t need this leftover blood after they’re born, but it contains cells that could help those who are sick, now or in the future.
    However, most cord banks state one of the key factors in successful cord blood treatment is the volume of blood which is infused with stem cells: the greater the cord blood volume, the greater the chance of a successful outcome for the treatment.
    Cord blood use is one of the most exciting areas of research in medical science today. Researchers are studying treatments for cerebral palsy by using the cord blood obtained at birth. Autism treatments using cord blood are underway as well, along with other potentially fatal disorders and diseases. The potential of what cord blood could provide for future medical needs has a lot of upside and not much downside.
    Depending on the predetermined period of storage, the initial fee can range from $900 to $2100. Annual storage fees after the initial storage fee are approximately $100. It is common for storage facilities to offer prepaid plans at a discount and payment plans to help make the initial storage a more attractive option for you and your family.
    It varies. Cord blood banking can be free, or it can cost a few thousand dollars or more. How much you pay will depend on several different factors, like whether your insurance covers the collection process, whether your doctor or midwife charges a collection fee, whether you opt for a public storage bank (which is free) or private storage bank (which can cost a couple thousand dollars or more), or whether there is an existing family medical need (in which case some private banks offer free or discounted storage).
    The cord blood of your baby is an abundant source of stem cells that are genetically related to your baby and your family. Stem cells are dominant cells in the way they contribute to the development of all tissues, organs, and systems in the body.
    Cord blood banking pros and cons aren’t simple. When successful, the treatment has proven extremely beneficial. However, there’s no guarantee you’ll see benefit from your investment and there are health risks to the newborn because you can’t delay cord clamping.

  4. The collection of cord blood takes place after the baby has been delivered, so there is no risk to either the mother or baby. The delivery process is not changed or modified because of the cord blood collection. The umbilical cord is clamped, cut and separated from the baby. The baby is then placed in the mother’s arms or taken to a warmer. Only then will your physician or midwife collect the cord blood. The blood from the umbilical cord drains into a standard blood donor collection bag by gravity.
    The Leading the Way LifeSaving Ambassadors Club is a recognition program honoring sponsor groups for outstanding performance in reaching or exceeding blood drive collections goals.  CBC presents a Leading the Way plaque to winning sponsors on an annual basis. The award is based on three levels of achievement:
    The key benefit of cord blood banking involves those stem cells. Those cells can turn themselves into numerous other cells that can help older children (or even adults) receive a level of protection from a disease, such as leukemia, that attacks the immune or circulatory system. Even certain metabolic disorders can be treated thanks to stem cells saved through cord blood banking.
    Meet Dylan. Diagnosed with leukemia at just 8 weeks old, he received a life-saving cord blood transplant at 6 months old. Today, Dylan is growing up strong, going to school, travelling with his family and just having fun being a kid!
    Shai was a feisty little girl whose mother used her scientific background to search for the best approach to cure her cancer. Shai narrowly escaped death many times, including a recovery that even her doctors considered a miracle, yet she died at dawn on the day that she would have begun kindergarten. Her mother went on to found this website and charity in her memory. Read more…

  5. Public cord blood banks collect and store blood without charge; however the blood is available for use by anyone in the world who needs a stem cell transplant. If the cord blood is not suitable for banking, it may be used for stem cell research. If your child or a family member needs a cord blood transplant, and the cord blood is still in the bank and usable, it will be made available.
    Cord blood is rich in stem cells, so it can be used to treat a wide range of diseases that may affect a child. The odds that any given child will need their cord blood, however, is only about 1 in 217. For families that do not have a history of sickle cell anemia, lymphoma, or leukemia, the costs of collecting and storing the blood may not make sense and public bank storage may be a better option.
    At present, the odds of undergoing any stem cell transplant by age 70 stands at one in 217, but with the continued advancement of cord blood and related stem and immune cell research, the likelihood of utilizing the preserved cord blood for disease treatment will continue to grow. Read more about cord blood as a regenerative medicine here.
    Current research suggests that cord blood can be stored for a maximum of 15 years. New technologies in this field may extend that timeframe in the future, but how that would affect current samples stored is unknown. Because of these limits, several organizations, including the American Academy of Pediatrics, recommend against routine cord blood storage and suggest public banking instead.
    Most cells can make copies only of themselves. For example, a skin cell only can make another skin cell. Hematopoietic stem cells, however, can mature into different types of blood cells in the body. Hematopoietic stem cells also are found in blood and bone marrow in adults and children.
    In addition, cord blood is being used in experimental therapies that can help with traumatic brain injuries, developed hearing loss, and other conditions that may be caused by an inherited disease. Because the future of cord blood research is rather unknown at this point, storing the blood makes sense because in a few years, that cord blood could make an immediate impact on someone’s health within the family.
    Banked cord blood is most abundant in white blood cells and stem cells. While a lot of attention is paid to the stem cells, there are approximately 10 times more total nucleated cells (TNCs) than stem cells in any cord blood collection. TNCs are basically white blood cells, or leukocytes; they are the cells of the immune system that protect the body. Despite stem cells comprising one-tenth of most collections, cord blood is still considered a rich source of hematopoietic (he-mah-toe-po-ee-tic) stem cells (HSCs). HSCs are often designated by the marker CD34+. Hematopoietic stem cells can become two categories of cells: myeloid and lymphoid cells. Myeloid cells go on to form your red blood cells, platelets, and other cells of the blood. Lymphoid cells go on to become the B cells and T cells and are the basis for the immune system. Cord blood also contains mesenchymal (meh-sen-ki-mal) stem cells (MSCs), but they are much more abundant in cord tissue, which we will discuss in a minute.
    It’s now possible to preserve up to twice the number of stem cells – exclusively available through cord blood banking with Americord®. With Cord Blood 2.0™, you now have the opportunity to treat your child into adolescence and even adulthood. Learn more >
    Cord blood banking is a simple and painless procedure that could save lives. Immediately after birth, cord blood is harvested — or removed from the clamped-off umbilical cord. After that, the blood is frozen and stored (or “banked”) for future use. When stored properly, it’s thought that cord blood can last indefinitely.

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