Recurrent pulmonary hemorrhage with hemosiderosis: so-called idiopathic pulmonary hemosiderosis.
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We analyzed the clinical data and liver histology for iron overload in 74 renal allograft recipients. Twenty of the 74 patients had histological evidence of hemosiderosis. Four patients had hemochromatosis. Of the 2 noninvasive diagnostic tests the serum ferritin level was more reliable than percent saturation of transferrin in predicting the histological diagnosis of hemosiderosis. Of the 20 patients with hemosiderosis 14 died either from liver failure or concomitant sepsis. Female patients and those who received long-term dialysis had higher susceptibility for developing hemosiderosis. Of the 6 patients treated with phlebotomies, the response was good in 4 and incomplete in 2. Hemosiderosis and hemochromatosis should be considered in the differential diagnosis of posttransplant liver disease. Intermittent phlebotomies if carried out early may prevent the progression of hemosiderosis to micronodular cirrhosis.
Previously reported animal models of hemosiderosis fall short of simulating the human disease state of transfusion-induced hemosiderosis. An explanation for this was found by reexamining heat-treated red blood cell (rbc) loading in the mouse. After 18 intraperitoneal transfusions, each equal to two-thirds of mouse rbc volume, liver Fe reaches a level of 0.3% Fe (dry weight), which is far below the 2%-8% found in heavily transfused patients. Using the easily synthesized chelate compound ferric acetohydroxamate, Fe(AHA)3, liver Fe levels in the rat of up to 2% were achieved after 38 intraperitoneal injections. Fe was distributed in both the reticuloendothelial (RE) system and parenchymal cells, as ascertained by light microscopy. No definite histological or biochemical abnormalities could be demonstrated in loaded rats. Cardiac Fe was approximately doubled. Thus, chelate loading, while producing Fe liver levels similar to those of humans with hemosiderosis, may still be of limited usefulness in studying long-term sequelae. On the other hand, this model can be used in determining responses to chelating agents. To explore this, Fe stores were first labeled by giving 59Fe as 59Fe(AHA)3 prior to loading. In animals loaded to 0.7% liver Fe (calculated), desferroxamine, at a dose of 400 mg/kg, induced a 20-fold rise in urinary Fe. This was duplicated by AHA at a dose of 800-1600 mg/kg. It is concluded that Fe(AHA)3-loaded rats are a potentially useful model of hemosiderosis and that further studies are needed to determine whether AHA can be effective in the treatment of transfusion-induced hemosiderosis.
Using three different methods of cells fractionation, hemosiderin granules were isolated from tissues (liver and/or spleen) of three patients. The samples were obtained from a case of idiopathic hemochromatosis, a case of thalassemia major with secondary (transfusional?) hemosiderosis, and a case of transfusional hemosiderosis associated with an unclassified anemia. Iron, nitrogen, and protein content of the hemosiderin granules varied over a wide range. Electron microscopy of sectioned granules revealed aggregates of dense particles of different shapes, with diameters ranging from 10 A to about 75 A. In some of the granules dense particles corresponding to the iron hydroxide micelles of ferritin molecules were abundant. But many of the granules contained very few of these molecules. The presence of ferritin and apoferritin in the samples of hemosiderin granules was demonstrated by means of precipitin tests in agar-gel, using rabbit antiferritin sera with known antibody nitrogen concentrations. At least three antigenic components were detected in highly purified crystalline ferritin prepared from tissues of the three patients; the hemosiderin granules contained the same antigens, but probably in much smaller quantities. Both ferritin and apoferritin molecules were extracted from hemosiderin granules, and were demonstrated in the electron microscope after suitable preparation. The solubility curve of human ferritin in solutions of (NH(4))(2)SO(4) was investigated. The results indicate that substantial quantities of ferritin or apoferritin can be lost in saline, aqueous media during isolation of hemosiderin granules from cells. It was shown by means of electron microdiffraction on selected hemosiderin granules that the dense particles represent forms of partly hydrated alpha-Fe(2)O(3). The conditions necessary for electron microdiffraction in an electron microscope precluded an exact determination of the state of hydration of the alpha-Fe(2)O(3) or of its structural relation to (FeOOH) micelles of pure ferritin in its undenatured state. The findings were considered in the light of evidence on the structure and disposition of hemosiderin in situ in cells, and on the structure of ferritin. Differences between endogenous hemosiderin and hemosiderin derived from injections of colloidal iron compounds were pointed out. The evidence indicates that in hemochromatosis and in secondary hemosiderosis much of the inorganic storage iron in liver and spleen is derived from degraded ferritin. The findings suggest that an abnormal cellular metabolic pathway of ferritin is implicated in the pathogenesis of hemochromatosis and transfusional hemosiderosis.
Pulmonary hemosiderosis has been attributed to airborne fungi in water-damaged homes in studies of a cluster of cases in infants and children in Cleveland, Ohio, in 1997. We have searched for such emerging infectious agents in the Coastal Plain of North Carolina, which is subject to intermittent flooding. Pulmonary tissue from 206 infants and young children whose deaths had been investigated from October 1978 to September 1996 was retained at East Carolina University School of Medicine. Ages ranged from premature newborns to 49-months. One hundred and ten deaths were attributed to sudden infant death syndrome (SIDS). New sections were cut and analyzed using hematoxylin and eosin, Prussian blue for iron, and Gomori methenamine silver for fungal organisms. Twenty-three infants and children had iron-containing macrophages. Sixteen of these had underlying illnesses, but 4 were originally diagnosed as SIDS. Only one of these had sufficient hemosiderosis to be considered as having pulmonary hemosiderosis and no fungi were present. One case without iron had fungi and was not originally diagnosed as SIDS. The single case of pulmonary hemosiderosis found in this rural area is not similar to the cluster in Cleveland. The study identifies no fungal organisms as emerging infectious diseases in this area.
OBJECTIVE: To report a fatal outcome from pulmonary hemosiderosis in an infant with scimitar syndrome after prolonged pulmonary vasodilator therapy. DESIGN: Case report. SETTING: A tertiary care pediatric intensive care unit. SUBJECT: An infant with scimitar syndrome. INTERVENTIONS: Treatment included redirection of anomalous right pulmonary venous drainage and closure of atrial septal defect, assisted ventilation via tracheostomy, and protracted nitric oxide and prostacyclin therapy until his death at 1 yr of age. RESULTS: Inhaled nitric oxide (iNO) and/or prostacyclin (PGI(2)) were administered for 6.5 months. Numerous echocardiograms demonstrated good control of pulmonary pressures and no evidence of pulmonary venous obstruction. Repeated attempts to slowly wean from the pulmonary vasodilators resulted in return of pulmonary pressures to systemic levels. Although there was no clinically apparent hemoptysis, pulmonary infiltrates worsened, prompting an open-lung biopsy that revealed pulmonary hemosiderosis. During the last 4 days of the patient's life, the pulmonary hypertensive crises with suprasystemic pressures and pulmonary infiltrates worsened regardless of aggressive vasodilator therapy with iNO, PGI(2), alkalinization, and isoproterenol. Vasodilator therapy was withdrawn and the patient rapidly died. CONCLUSION: We achieved long-term control of pulmonary hypertension with iNO and/or PGI(2) without apparent tachyphylaxis or other major reported side effects. Although pulmonary hypertension was successfully controlled with prolonged iNO and intravenous PGI(2) administration in this patient with scimitar syndrome, the patient died of hypoxemic respiratory failure from pulmonary hemosiderosis. Early evaluation of roentgenographic infiltrates for hemosiderosis and potential lung transplantation in similar patients may be warranted.
OBJECTIVE: To alert pediatricians about the possibillity of childhood Idiopathic Pulmonary Hemosiderosis, in cases of anemia associated with chronic lung disease. METHODS: This article documents a case of Idiopathic Pulmonary Hemosiderosis in a 6 year-old child, with histopathological documentation, and reviews it against published literature. RESULTS: A 6 year-old child with history of anemia and lung disease characterized by wheezing, recurrent pneumonia and digital clubbing was admitted to the hospital for investigation, where he suffered sudden respiratory failure and hemoptysis.He was submitted to a lung biopsy which showed a histopathological diagnosis compatible with pulmonary hemosiderosis. Therapy with high doses of corticosteroids was initiated with a good early response. After two and a half months of therapy he had a new bleeding episode, culminating in death. CONCLUSIONS: Idiopathic Pulmonary Hemosiderosis should be included as a possible diagnosis of children with anemia and chronic lung disease. This case is a good example.
A 33-year-old cadaveric renal transplant recipient showed complete histologic resolution of hemosiderosis by liver biopsies obtained pre- and post-transplantation. Although there have been reports in the past of progression of hemosiderosis to hemochromatosis to severe liver failure in the renal transplant population, the correlation has never been clear. This is the first case report of complete resolution of hemosiderosis as documented histologically by liver biopsies in a cadaveric renal transplant recipient.
Superficial leptomeningeal hemosiderosis is a rare disease of the central nervous system. Chronic bleeding into the subarachnoid space causes deposition of hemosiderin in glial cells and subsequent damage to adjacent brain tissue. There is a characteristic predilection for the cerebellum and eighth cranial nerve. Accordingly, among a variety of symptoms, cerebellar ataxia and sensorineural hearing loss progressing to total deafness commonly occur. To date, the hearing loss has been believed to be purely neural. We present a case of superficial hemosiderosis in a patient with total deafness who was successfully provided with a cochlear implant. Audiometry demonstrated total bilateral cochlear hearing losses but with preserved function of the eighth cranial nerve. These findings make us conclude that in contrast to current opinion, superficial hemosiderosis can initially damage the cochlea alone. Thus, patients with total deafness due to this disorder may benefit from cochlear implantation. All patients require careful audiometric assessment, including promontory stimulation.
BACKGROUND: Adverse reactions after ingesting buckwheat are known to be IgE-mediated. Further, hypersensitivity reactions may be involved in some patients with pulmonary hemosiderosis related to cow milk sensitivity. We, however, encountered a patient with pulmonary hemosiderosis related to buckwheat protein without high levels of buckwheat-specific IgE antibodies. OBJECTIVE: The aim of this study was to investigate the mechanisms. METHODS: RAST for anti-buckwheat IgE, skin prick test, skin patch test, and proliferative responses of peripheral blood mononuclear cells to buckwheat were investigated in this patient. RESULTS: RAST values for buckwheat protein were negative, and skin prick test for buckwheat protein also gave negative results. On the other hand, skin patch testing for buckwheat protein elicited positive responses. Further, peripheral blood mononuclear cells of our patient responded to buckwheat protein. CONCLUSIONS: Our patient had pulmonary hemosiderosis related to non-immediate buckwheat protein hypersensitivity.
BACKGROUND & AIMS: Hemosiderosis may have a detrimental effect on some chronic liver diseases. The aim of this study was to determine the prevalence and diagnostic implications of hemosiderosis in cirrhosis. METHODS: Tissue iron in 447 cirrhotic livers was studied histologically and chemically. RESULTS: Positive iron staining was found in 145 cases (32.4%), and increased chemical hepatic iron concentration was found in 91 cases (20.3%), including 38 cases (8.5%) with hepatic iron overload in the hemochromatosis range, defined by an iron index of > or = 1.9 (iron index equals hepatic iron concentration in micromoles per gram divided by age). However, homozygous hemochromatosis seemed to have caused the cirrhosis in only 5 instances. Stainable iron was found in 22%-67% of the cases with nonbiliary cirrhosis but in only 7%-20% of cases with biliary cirrhosis. Most available pretransplant biopsy specimens failed to show evidence of homozygous hemochromatosis. CONCLUSIONS: Iron overload is very common in many types of nonbiliary cirrhosis but rare in biliary cirrhosis. The hemosiderosis of affected livers seems to be acquired and to occur rapidly once cirrhosis has developed; cirrhosis alone may cause iron accumulation. In the presence of cirrhosis, hepatic iron indices of >1.9 should not be interpreted as proof of homozygous hemochromatosis.
There is a paucity of data regarding hepatic allograft iron accumulation in patients undergoing orthotopic liver transplantation (OLT) in whom severe iron overload was present in the native explanted liver. Our aim is to evaluate the frequency and cellular distribution of stainable iron in early and late post-OLT hepatic allograft biopsy specimens from patients undergoing their first OLT who had excess iron in their native explanted liver. We compared iron-staining patterns in hepatic allograft biopsy specimens at approximately 1 month (early) and 1 to 2 years (late) post OLT in 41 patients with hepatic iron indices greater than 1.9 in the explanted liver (cases) with a selected group of matched controls without explant hemosiderosis. Our cases included 6 patients with a pre-OLT diagnosis of hereditary hemochromatosis and 35 patients with cirrhosis and secondary iron overload. Early iron deposition was mild in most cases, commonly affected Kupffer's cells, and was seen with similar frequency in cases and controls (41% v 27%; P =.29). Stainable iron was observed in 20 donor livers (12 cases, 8 controls), and all 20 subjects showed stainable iron in 1-month hepatic allograft biopsy specimens. Liver samples from 35 matched pairs were studied for late iron deposition. Iron deposition was observed in 43% of cases versus 17% of controls (P =.06). In conclusion, the frequency of stainable iron in early hepatic allograft biopsy specimens was not different between patients with versus without pre-OLT hepatic hemosiderosis. There was a suggestion that patients with severe pre-OLT hemosiderosis had a greater frequency of iron accumulation in late hepatic biopsy specimens.
HISTORY AND ADMISSION FINDINGS: A 68-year-old man was admitted because of symptoms of lumbar pain. He was known to have chronic anemia with ring sideroblasts and diabetes melitus and to be in heart failure. Three months before he had been given 7 units of red cell concentrate. On admission the outstanding features were brown discoloration of the skin, absent body hair, tachycardia, hepatomegaly and small testicles. INVESTIGATIONS: He had a normocytic anemia, hyperglycemia and raised transaminases, hypogonadism and vitamin D3 deficiency. The serum levels of iron, transferrin saturation and feritin were markedly elevated. Liver iron content/g dried liver was 4.2 g (by biomagnetometer). Radiology of the lumbar vertebrae showed osteoporosis and sonography confirmed hepatomegaly. DIAGNOSIS, TREATMENT AND COURSE: The known myelodysplastic syndrome (MDS) had fed to secondary hemosiderosis with heart failure, liver involvement, diabetes mellitus, hypogonadism and osteoporosis. Symptomatic treatment was unsuccessfully complemented by desferoxamine (up to 4 g/12 h) to release iron. But very good iron excretion was then achieved with deferiprone (3 x 1 g/d). The patient later died of the sequelae of hemosiderosis. CONCLUSION: Even when they have not required transfusions, patients with long-standing MDS should be examined regularly for the possible development of secondary hemosiderosis so that iron-chelating agents can be administered as needed.
OBJECTIVE: To describe cochleovestibular aspects of superficial hemosiderosis of the central nervous system. BACKGROUND: Superficial hemosiderosis of the central nervous system is a rare disease in which cochleovestibular impairment, cerebellar ataxia, and myelopathy are the most frequent signs. Chronic recurrent subarachnoidal hemorrhage with bleeding into the cerebrospinal fluid is the cause of deposition of hemosiderin in leptomeningeal and subpial tissue, cranial nerves, and spinal cord. Removing the cause of bleeding can prevent irreversible damage to these structures. Because this is the only effective treatment, an early diagnosis is crucial. STUDY DESIGN: Retrospective case review. SETTING: Tertiary referral center. PATIENT: A 72-year-old woman with superficial hemosiderosis of the central nervous system that developed when she was age 39. METHODS: Neurologic and imaging diagnostic examinations and longitudinal evaluation of cochleovestibular features were performed. Neurosurgery was not performed. RESULTS: Progressive bilateral sensorineural hearing loss and severe vestibular hyporeflexia developed within 15 years, which can be attributed to lesions in the cochleovestibular system. Additional pathology of the central nervous system developed later. CONCLUSION: The patient demonstrated cochlear and vestibular findings that are typical of this pathologic condition. It is the first documented case with extensive serial audiometry used to precisely outline the degree of hearing deterioration during the course of the disease.
Pleuropulmonary disease is occasionally seen in association with juvenile idiopathic arthritis. There have been few case reports of pulmonary hemosiderosis associated with juvenile idiopathic arthritis. We describe a case of a 3-year-old girl with iron deficiency anemia, juvenile idiopathic arthritis, and pulmonary hemosiderosis. Arthralgia of the left knee was noted 2 weeks after the diagnosis of iron deficiency anemia, and juvenile idiopathic arthritis was diagnosed 9 months later. She was treated with naproxen and prednisolone. Her joint symptoms were well controlled after the treatment. Six months later, hemoptysis developed and pulmonary hemosiderosis was diagnosed. She was again treated with naproxen and prednisolone and no more pulmonary or joint symptoms developed during more than 1-year follow-up.
Pulmonary hemosiderosis (PH), a rare pathology, usually occurring during infancy and childhood, is characterized by numerous and repeated intra-alveolar bleedings, interstitial iron build-up with consequent progressive fibrosis and severe anemia. PH can be basically divided into 3 different categories: Primitive or idiopathic, involving a primitive deficit of antioxidizing enzymes in the erythrocytes in genetically predisposed subjects; Secondary, subsequent to chronic pneumopathy or cardiopathy; Associated with various pathologies including collagenopathies, glomerulonephritis, myocardiopathies, diabetes, steatorrhea, tireotossicosis. A particular type of Pulmonary Hemosiderosis, associated with allergy to cow's milk, has been described for the first time by Heiner. We present in this paper our personal experience of a young patient suffering from pulmonary hemosiderosis induced by cow's milk protein.
Idiopathic pulmonary hemosiderosis gives rise to anemia, due to repeated intra-alveolar hemorrhage, the reabsorption of which leads to hemosiderin deposits in the lung parenchyma. The authors report a case in a young woman aged 24 years whose illness started with anemia, then two months later, with hemoptysis and a broncho-pulmonary syndrome with a low grade fever. On the 6th month, there occurred a hazy infiltrate of both lung bases which was fleeting, mobile and recurrent. In the light of this triad of anemia, hemoptysis and infiltrates, the diagnosis of idiopathic pulmonary hemosiderosis was made and confirmed by three examinations:--Lung biopsy: siderophages were found in the sub-mucosa,--Radio-isotope examination, using Fe 59 which revealed iron deposits in the lung,--A surgical lung biopsy which showed a congestive area and a fibrous area. The congestive area was the site of recent hemorrhage, the alveolar limits were filled with siderophages. The fibrous area was the site of chronic repair of older hemorrhage. It was mutilating. The course was complicated by massive bleeding which led to acute recovering respiratory failure. The patient is at present stabilised by corticosteroids. Three hundred cases of idiopathic pulmonary hemosiderosis have been reported in the world literature. Although the main characteristic is intra-alveolar hemorrhage, its course has not yet been determined. It seems however, to be due to an immunologic process as shown by the relationship between this curious disease and Goodpasture's syndrome.
A 38-year-old woman was known to have had a histologically proven "idiopathic" pulmonary hemosiderosis for 7 years; the authors report the onset in this patient of polyarthralgias with articular swelling and positivity of rheumatoid factor, all features consistent with the diagnosis of rheumatoid arthritis, whose beginning was certainly hidden by steroid therapy. This case, as some others previously published, outlines the possibility of the association of pulmonary hemosiderosis and rheumatoid arthritis: is this a casual association, or may pulmonary hemosiderosis be a rare manifestation of rheumatoid arthritis?