A bone marrow transplant (BMT) is a procedure that replaces damaged or “sick” bone marrow with healthy bone marrow so that the individual can produce healthy blood cells on their own. It is utilized to treat numerous conditions such as acute leukemia, multiple myeloma, aplastic anemia, Hodgkin’s and Non-Hodgkin’s lymphoma, immune deficiencies, sickle cell disease, and neuroblastoma.
What is the function of bone marrow?
Recall that bone marrow is the spongy and nutrient dense substance found in the center of most bones. It comes in two forms:
What are the types of bone marrow transplants?
The bone marrow used for the transplant can be from a donor (allogeneic transplant) or it can come from the patient’s own bone marrow before it becomes damaged (autologous). You may also see BMT referred to as a stem cell transplant or a haematopoietic stem cell transplant (HSCT).
The key benefit of an allogeneic transplant is that the donor cells can provide an immune response to help fight off the diseased cells in the patient. The biggest risk with this type of transplant is graft-versus-host disease.
The key benefit of autologous transplant is there is no risk for graft-versus-host disease (GvHD), and there is no need to find a suitable match. The main risk for this type of transplant is that there is no donor immune system protection, so there is a greater chance of relapse.
A subtype of allogeneic transplant is the syngeneic transplant where the donor is an identical twin. The obvious key benefit of this type of transplant is that the twins are an exact match so there is a very low chance of GvHD. Additionally, the potential for the donor cells to grow within the patient (engraftment) is higher. However, since the donor immune system is nearly identical to the recipient’s immune system, the new cells may not recognize and fight off the cancer cells, leading to a higher incidence of relapse.
What are the options for obtaining stem cells?
Stem cells can be obtained from bone marrow, peripheral blood stem cells (PBSC) and umbilical cord blood.
To obtain stem cells from bone marrow, the donor is placed under anesthesia and bone marrow from the iliac crest is removed via needle aspiration. Peripheral blood cells are obtained via an IV catheter much in the same way that blood is donated.
In an allogeneic transplant, the donor is given medication to stimulate the production of stem cells for four to six days prior to the collection. The donor cells can be collected from the bone marrow or from the donor’s blood via an IV catheter, which is the most common method of collection.
The blood is then centrifuged to separate the stem cells from the other blood components. The blood components are returned to the donor, and the stem cells are utilized for the recipient.
Prior to the stem cell infusion, the recipient goes through a stage called “conditioning and treatment.” In this stage, the recipient undergoes high-dose chemotherapy (with or without radiation) to kill off cancer cells and to purposefully weaken the immune system so the body doesn’t reject the donor cells as readily.
In an autologous transplant, the patient is given medications that cause the body to produce and release more stem cells into the bloodstream. This is called “stem cell mobilization.” The patient then has their stem cells collected from either their bone marrow or the blood. The blood is processed through the centrifuge that removes the stem cells and the rest of the blood is returned to the patient.
In the “conditioning and treatment” stage, the patient undergoes high-dose chemotherapy (they may or may not also receive radiation) to kill off the remaining cancer cells while also killing off any blood-producing cells left in the patient’s bone marrow. When the patient is ready (about 17 days after chemotherapy), the frozen stem cells are thawed and reintroduced into the patient.
Benefits of obtaining stem cells from peripheral blood over the bone marrow is that cells obtained via peripheral blood tend to be more mature which can lead to earlier engraftment. Peripheral collection also does not require the donor to undergo a surgical procedure and anesthesia. The downsides to peripheral collection is that it can take multiple sessions over multiple days to get enough stem cells for transplant.
What about umbilical cord blood?
Umbilical cord blood can be utilized for stem cell donation by removing blood from the umbilical cord immediately after birth. The blood is tested, frozen and stored for potential later use. The benefits of this type of collection is that the cells are not differentiated so they can be used for donors who cannot find a compatible HLA match. It is also easy to obtain stem cells in this manner and does not put the child or the parent at risk.
A potential downside to this method is that genetic conditions could be transferred to the recipient and, since the cells are not differentiated at all, engraftment can take longer.
How is a match determined?
HLA matching utilizes PCR to look at DNA segments that encode the human leukocyte antigens to determine if they are similar enough for a quality match. If the quality of the match is low, the patient is at higher risk for developing graft-versus-host disease (GvHD), which is a serious and life-threatening complication.
Patients are most likely to match with a donor who is their same ethnicity, and an even greater likelihood when the potential donor is within their own family. In fact, a patient has about a 30% chance of finding a matched donor within their family, and there’s a 25% chance that a sibling will be a match.
What is engraftment?
Engraftment is essentially when the recipient’s body “takes on” the newly transplanted cells and they begin to grow in the bone marrow. In order for the stem cells to rescue the patient after his or her bone marrow has been depleted by high-dose chemotherapy/radiation, the stem cells must be able to survive and grow in the patient’s bone marrow. The average time to engraftment ranges from 14 to 21 days and can depend on the type and method of transplant as discussed above.
What are the complications of bone marrow transplant?
There are several serious complications that can occur with bone marrow transplant. These include:
Now that you have some foundation knowledge about bone marrow transplant, let’s dive into the nursing implications using the Straight A Nursing LATTE method.
L: How does the patient LOOK?If the patient has undergone an autologous transplant utilizing bone marrow aspiration, they will initially have pain and bruising at that site over the iliac crest.
Other signs and symptoms associated with bone marrow transplant are going to be closely related to those of chemotherapy and radiation since those treatment modalities are utilized for the conditioning stage. Common signs and symptoms include:
Additionally, patients will exhibit signs and symptoms specific to any post-BMT complications they may experience. Due to the high number of potential complications, this list is extensive and will vary from patient to patient.
A: How do you ASSESS the patient who has undergone BMT?The main goal of your assessments will be to monitor your patient closely for complications and signs of deterioration. This includes:
T: What TESTS will be utilized for a patient undergoing BMT?Before transplant
After transplant:
T: What TREATMENTS will be provided? Before transplant:
After transplant:
Another key consideration throughout the entire phase of treatment is to prevent infection. The key tenements of infection prevention include:
Note that soiled linens/clothing and waste from patients who have recently received chemotherapy needs to be handled with care. This includes the appropriate PPE (chemo gloves or double gloves, gowns, and goggles/face shield if splashing is a potential risk). Dispose of all waste in an appropriate “chemo bin” and double flush the toilet after depositing waste.
In addition, patients and families may require a fair amount of psychosocial support during BMT. Provide opportunities for therapeutic communication and if the patient does not have a social worker assigned, advocate for a social work consult as well as spiritual care as appropriate. You can also provide resources for community support to patients and their families as these have been shown to decrease anxiety and stress related to bone marrow transplant.
E: How do you EDUCATE the patient/family?In addition to ensuring the patient and/or their family understand the medications, tests and treatments involved in their care, other things to include in your teaching plan are:
In closing, bone marrow transplant is a wonderful procedure that saves lives. Be The Match donor registry has connected more than 111,000 patients with blood stem cell donors. If you would like to get on the Be The Match registry through the National Marrow Donor Program, go to bethematch.org to get started. The process involves a simple cheek swab you can perform at home…then you just sit back and wait to hear if you’ve been matched. And, the good news is, you might just save a life.
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