Homepage | Imprint
Lumrix Logo
 
 
Lumrix Wiki Logo
[ICD 10 Search]



Back
[ICD 10 Search]

 

 

Acute lymphoblastic leukemia

{{{Name|Acute lymphoblastic leukemia}}}
[[Image:{{{Image}}}|190px|center|]]
{{{Caption|}}}
ICD-10 C91.0 (ICD-O9821/3)
ICD-O: {{{ICDO}}}
ICD-9 204.0
OMIM }}}
MedlinePlus }}}
eMedicine }}}
DiseasesDB }}}

Acute lymphoblastic leukemia (ALL), also known as acute lymphocytic leukemia, is a cancerof the white blood cells, characterised by the overproduction and continuous multiplication of malignantand immature white blood cells (referred to as lymphoblasts) in the bone marrow. It is a hematological malignancy. It is fatal if left untreated as ALL spreads into the bloodstream and other vital organs quickly (hence "acute"). It mainly affects young children and adults over 50.

Inhaltsverzeichnis

  • 1 Symptoms
  • 2 Diagnosis
  • 3 Pathophysiology
  • 4 Classification
  • 5 Treatment
    • 5.1 Chemotherapy
    • 5.2 Radiation therapy
  • 6 Epidemiology
  • 7 Prognosis
  • 8 External links

Symptoms

Initial symptoms of ALL are quite aspecific, but worsen to the point that medical help is sought:

  • Generalised weakness and fatigue
  • Anemia
  • Frequent or unexplained feverand infections
  • Weight loss and/or loss of appetite
  • Excessive bruisingor bleedingfrom wounds, nosebleeds, petechiae(red pinpoints on the skin)
  • Bone pain, joint pains(caused by the spread of "blast" cells to the surface of the bone or into the joint from the marrow cavity)
  • Breathlessness
  • Enlarged lymph nodes, liverand/or spleen

The signs and symptomsof ALL result from the lack of normal and healthy blood cells because they are crowded out by malignant and immature white blood cells. Therefore, people with ALL experience symptoms from their red blood cells, white blood cells, and platelets not functioning properly. Laboratory tests which might show abnormalities include blood counts, renal functions, electrolytesand liver enzymes.

Diagnosis

Diagnosingleukemia usually begins with a medical history and physical examination. If there is a suspicion of leukemia, the patient will then proceed to undergo a number of tests to establish the presence of leukemia and its type. Patients with this constellation of symptoms will generally have had blood tests, such as a full blood count.

These tests may include complete blood count(blasts on the blood filmgenerally lead to the suspicion of ALL being raised). Nevertheless, 10% have a normal blood film, and clinical suspicion alone may be the only reason to perform a bone marrow biopsy, which is the next step in the diagnostic process.

Bone marrow is examined for blasts, cell counts and other signs of disease. Pathologicalexamination, cytogenetics(e.g. presence of the Philadelphia chromosome) and immunophenotypingestablish whether the "blast" cells began from the B lymphocytesor T lymphocytes.

If ALL has been established as a diagnosis, a lumbar punctureis generally required to determine whether the malignant cells have invaded the central nervous system(CNS).

Lab tests (mentioned above) and clinical information will also determined if any other medical imaging(such as ultrasoundor CT scanning) may be required to find invasion of other organssuch as the lungsor liver.

Pathophysiology

The etiologyof ALL remains uncertain although some doctors believe that ALL develops from a combination of geneticand environmental factors. However, there is no definite way of determining the cause of leukemia.

Scientific research has shown that all malignancies are due to subtle or less subtle changes in DNAthat lead to unimpaired cell division and breakdown of inhibitory processes. In leukemias, including ALL, chromosomal translocationsoccur regularly. It is thought that most translocations occur before birth during fetal development. These translocations may trigger oncogenesto "turn on", causing unregulated mitosiswhere cells divide too quickly and abnormally, resulting in leukemia. There is little indication that propensity for ALL is passed on from parents to children.

There have been indications that excessive exposure to high dose radiation(such as that of nuclear reactors, notably Chernobyl, and the atomic bombsin Hiroshima, Japan1945) increases the risk of developing acute leukemia. There has also been inconclusive evidence suggesting that chemicals such as benzenehave an increased risk of developing acute leukemia.

Classification

Subtyping of the various forms of ALL is done according to the FAB (French-American-British) classification, which is used for all acute leukemias (including acute myelogenous leukemia, AML). As ALL is not a solid tumour, the TxNxMxnotation used in those cancers is of little use.

The FAB classification is:

  • ALL-L1: small uniform cells
  • ALL-L2: large varied cells
  • ALL-L3: large varied cells with vacuoles(bubble-like features)

Note: The recent WHO International panel on ALL recommends that this classification be abandoned, since the morphological classification has no clinical or prognostic relevance. It instead, advocates the use of the immunophenotypic classification mentioned below.

Each subtype is then further classified by determining the surface markers of the abnormal lymphocytes, called immunophenotyping. There are three main immunologic types: B-cell, pre-B cell and T-cell. Subtyping helps determine the prognosis and most appropriate treatment in treating ALL.

Some cytogenetic subtypes have a worse prognosis than others. These include:

  • A translocation between chromosomes9 and 22, known as the Philadelphia chromosome, occurs in about 20% of adult and 5% in pediatric cases of ALL.
  • A translocation between chromosomes 4 and 11 occurs in about 4% of cases and is most common in infants under 12 months.
  • Not all translocations of chromosomes carry a poorer prognosis. Some translocations are relatively favourable.

Treatment

The earlier acute lymphocytic leukemia is detected, the more effective the treatment. The aim is to induce a lasting remission, defined as the absence of detectable cancer cells in the body (usually less than 5% blast cells on the bone marrow).

Treatment for acute leukemia can include chemotherapy, steroids, radiation therapy, intensive combined treatments (including bone marrowor stem cell transplants), and growth factors.

Chemotherapy

Chemotherapy is the initial treatment of choice. Most ALL patients end up receiving a combination of different treatments. There are no surgical options, due to the body-wide distribution of the malignant cells.

As the chemotherapy regimenscan be intensive and protracted (often about 2 years in case of the GMALL or UKALL protocols; about 3 years for males on COG protocols), many patients have an intravenouscatheter inserted into a large vein (termed a central venous catheteror a Hickman line).

Radiation therapy

Radiation therapy is used on painful bony areas, in high disease burden, or as part of the preparations for a bone marrow transplant(total body irradiation). Radiation in the form of whole brain radiation is also used for central nervous system prophylaxis, to prevent recurrence of leukemia in the brain.

Epidemiology

ALL accounts for approximately 80 per cent of all childhood leukemiacases, making it the most common type of childhood cancer. It has a peak incident rate of 2-5 years old, decreasing in incidence with increasing age before increasing again at around 50 years old. ALL is slightly more common in males than females.

Prognosis

Advancements in medical technologyand researchover the past four decades in the treatment of ALL has improved the overall prognosis significantly from a zero to 20-75 percent survival rate, largely due to the continuous development of clinical trialsand improvements in bone marrow transplantation(BMT) and stem cell transplanation (SCT) technology.

However the prognosis for ALL differs between individuals depending on a wide variety of factors:

  • Sex: females tend to fare better than males.
  • Ethnicity: Caucasiansare more likely to develop acute leukemia than African-Americans, Asiansand Hispanicsand tend to have a better prognosis than non-Caucasians.
  • Age at diagnosis: children between 1-10 years of age are most likely to be cured.
  • Lymphoblast cell count at diagnosis
  • Whether the cancer has spread to the brainor spinal cord
  • Morphological, immunological, and genetic subtypes
  • Response of patient to initial treatment
  • Genetic disorderssuch as Down's Syndrome

External links

  • The Leukemia & Lymphoma Society- provides information about leukemia and related diseases, updates on current clinical trials, and discussion forums.
  • Cancer Research UK- trains and supports scientists for cancer research, offers regional news about current research, and provides ways that individuals can become involved.
  • Children's Cancer Web- a directory of children's cancer-related resources.
  • Children's Leukemia and Cancer Research Foundation (INC)(Australia) - provides funding for children's leukemia, especially to the Princess Margaret Hospital for Children [1].
  • Ped-Onc Resource Center- provides information on childhood ALL, including disease details (MRD, phenotypes, molecular characterization), a layman's list of current and past clinical trials, a collection of articles on the possible causes of ALL, a bibliography of journal articles, and links to sources of support for parents of children with ALL.
  • Association of Cancer Online Resource (ACOR) Leukemia Links- provides links to information on leukemia, including ALL, primarily in adults.
Health science- Medicine- Hematology
Hematological malignancyand White blood cells
Lymphoid: Lymphocytic leukemia(ALL, CLL) | Lymphoma(Hodgkin's disease, NHL) | LPD| Myeloma(Multiple myeloma, Extramedullary plasmacytoma)
Myeloid: Myelogenous leukemia(AML, CML) | MPD(Essential thrombocytosis, Polycythemia) | MDS| Myelofibrosis| Neutropenia
Red blood cells
Anemia| Hemochromatosis| Sickle-cell disease| Thalassemia| Hemolysis| Aplastic anemia| G6PD| Hereditary spherocytosis| Hereditary elliptocytosis| other hemoglobinopathies
Coagulationand Platelets
Thrombosis| Deep vein thrombosis| Pulmonary embolism| Hemophilia| ITP| TTP| DIC
de:Akute lymphatische Leukämie

sv:Akut lymfatisk leukemi

Retrieved from "http://en.wikipedia.org/Acute_lymphoblastic_leukemia"



This article is licensed under the GNU Free Documentation License.
It uses material from the http://en.wikipedia.org/wiki/Acute+lymphoblastic+leukemia Wikipedia article Acute lymphoblastic leukemia.

 
  All text is available under the terms of the GNU Free Documentation License