- Anemia of chronic disease
Infobox_Disease
Name = PAGENAME
Caption =
DiseasesDB =
ICD10 =
ICD9 = ICD9|285.2
ICDO =
OMIM =
MedlinePlus = 000565
eMedicineSubj = emerg
eMedicineTopic = 734
MeshID =Anemia of chronic disease, increasingly referred to as "anemia of inflammation", is a form of
anemia seen in chronic illness, e.g. from chronic infection, chronic immune activation, or malignancy. New discoveries suggest that the syndrome is likely primarily the result of the body's production ofhepcidin , a master regulator ofhuman iron metabolism .Pathophysiology
In response to inflammatory
cytokines , predominantlyIL-6 [cite journal | author=Nemeth E, Rivera S, Gabayan V, Keller C, Taudorf S, Pedersen BK, Ganz T. | title=IL-6 mediates hypoferremia of inflammation by inducing the synthesis of the iron regulatory hormone hepcidin. | journal=J Clinical Invest. | year=2004| pages=1251–3| volume=113| issue=9| pmid=15124018 | doi=10.1172/JCI20945 ] , the liver produces increased amounts ofhepcidin . Hepcidin in turn stopsferroportin from releasing iron stores. Inflammatory cytokines also appear to affect other important elements of iron metabolism, including decreasingferroportin expression, and probably directly bluntingerythropoiesis by decreasing the ability of thebone marrow to respond toerythropoietin .Before the recent discovery of
hepcidin and its function in iron metabolism, anemia of chronic disease was seen as the result of a complex web of inflammatory changes. Over the last few years, however, many investigators have come to feel that hepcidin is the central actor in producing anemia of chronic inflammation. Hepcidin offers an attractiveOccam's Razor (parsimonious) explanation for the condition, and more recent descriptions ofhuman iron metabolism and hepcidin function reflect this view. [cite journal | author=Nemeth E, Ganz T. | title=Regulation of iron metabolism by hepcidin. | journal=Annu. Rev. Nutr. | year=2006| pages=323-42| volume=26| issue=1| pmid=16848710 | doi=10.1146/annurev.nutr.26.061505.111303]Nonetheless, in addition to effects of iron sequestration, inflammatory cytokines promote the production of
white blood cells .Bone marrow produces bothred blood cells andwhite blood cells from the same precursorstem cells . Therefore, the upregulation ofwhite blood cells causes fewerstem cells to differentiate intored blood cells . This effect may be an important additional cause for the decreasederythropoiesis and red blood cell production seen in anemia of inflammation, even whenerythropoietin levels are normal, and even aside from the effects of hepcidin.In the short term, the overall effect of these changes is likely positive: it allows the body to keep more iron away from
bacteria l pathogens in the body, while producing more immune cells to fight off infection. Bacteria, like most life forms, depend on iron to live and multiply. However, if inflammation continues, the effect of locking up iron stores is to reduce the ability of thebone marrow to producered blood cells . These cells require iron for their massive amounts ofhemoglobin which allow them to transport oxygen.Because anemia of chronic disease can be the result of non-bacterial causes of inflammation, future research is likely to investigate whether hepcidin antagonists might be able to treat this problem.
Anemia of chronic disease as it is now understood is to at least some degree separate from the anemia seen in
renal failure in which anemia results from poor production oferythropoietin , or the anemia caused by some drugs (like AZT, used to treatHIV infection) that have the side effect of inhibitingerythropoiesis . In other words, not all anemia seen in people with chronic disease should be diagnosed as anemia of chronic disease. On the other hand, both of these examples show the complexity of this diagnosis: HIV infection itself can produce anemia of chronic disease, and renal failure can lead to inflammatory changes that also can produce anemia of chronic disease.Diagnosis
Anemia of chronic disease is often a mild normocytic anemia, but can sometimes be more severe, and can sometimes be a
microcytic anemia ; thus, it often closely resembles iron-deficiency anemia. Indeed, many people with chronic disease can also be genuinely iron deficient, and the combination of the two causes of anemia can produce a more severe anemia. As with iron deficiency, anemia of chronic disease is a problem of red cell production. Therefore, both conditions show a lowreticulocyte production index , suggesting thatreticulocyte production is impaired and not enough to compensate for the decreased red blood cell count.While no single test is always reliable to distinguish the two causes of disease, there are sometimes some suggestive data:
* In anemia of chronic disease without iron deficiency,
ferritin levels should be normal or high, reflecting the fact that iron is stored within cells, and ferritin is being produced as an acute phase reactant but the cells are not releasing their iron. Iniron deficiency anemia ferritin should be low.*
TIBC should be high in genuine iron deficiency, reflecting efforts by the body to produce moretransferrin and bind up as much iron as possible;TIBC should be low or normal in anemia of chronic disease.If the importance of
hepcidin in this condition is borne out, tests to measure hepcidin or cellular expression offerroportin may one day be useful, but neither are available asvalidate d clinicalassays .Examination of the bone marrow to look for the absence or presence of iron, or a trial of iron supplementation (pure iron deficiency anemia should improve markedly in response to iron, while anemia of chronic disease will not) can provide more definitive diagnoses.
Treatment
The ideal treatment for anemia of chronic disease is to treat the chronic disease successfully. Barring that, many patients with anemia of chronic disease simply live with the effects of the anemia as part of enduring the limits placed on them by other aspects of their underlying medical conditions. In more severe cases,
transfusions or several versions of commercially-producederythropoietin can be helpful in some circumstances; both approaches are costly.References
* [http://www.pubmedcentral.gov/articlerender.fcgi?tool=pubmed&pubmedid=15124013 Andrews NC. Anemia of inflammation: the cytokine-hepcidin link. "Journal of Clinical Investigation" 113(9):1251-3. May 2004.]
*Weiss G and Goodnough LT. Anemia of chronic disease. "New England Journal of Medicine" 352(10):1011-1023. March 10, 2005. [http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15758012&query_hl=2 PMID: 15758012]
*Schrier, SL. Anemia of chronic disease (anemia of chronic inflammation). [http://www.uptodate.com Up-to-Date] (requires subscription). Accessed December 2005.External links
* [http://www.anemia.org National Anemia Action Council]
Wikimedia Foundation. 2010.