[Paraneoplastic syndromes in medical and neurologic oncology].
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Biomedical subjects
Publications and source records attributed to J Dalmau.
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The p53 product is frequently mutated in human tumors. Both acquired and inherited mutations have been described. These mutations transform p53 from a growth suppressor gene to a transforming oncogene. We examined tissue from 6 patients with primary lung carcinoma and the corresponding brain metastases for the presence of p53 mutations by immunohistochemistry. We then confirmed and characterized the mutations by single strand conformation analysis and by direct sequence analysis. All 6 patients had primary and metastatic tumor expressing a mutant p53. The mutations were all G-T transversions and mapped to exons 5, 6, 7, and 8. The mutations in the primary tumors were precisely conserved in the brain metastases.
We studied 71 patients with "paraneoplastic" encephalomyelitis, sensory neuronopathy, or both associated with the presence of the anti-Hu antibody in their serum. Most (78%) had small-cell lung cancer. In 9 patients no tumor was detected. Fifty-two patients (73%) had signs and symptoms of multifocal involvement of the nervous system; in 28 (39%), 2 areas, and in 24 (34%), 3 or more areas were clinically affected. Sensory neuronopathy was present in 52 patients (74%), but in only 44 (62%) did it dominate the course of the disease. Other predominant findings were: motor neuron dysfunction (14 patients, 20%), limbic encephalopathy (14, 20%), cerebellar symptoms (11, 15%), brainstem encephalopathy (10, 14%), and autonomic nervous system dysfunction (7, 10%). The presence of the anti-Hu antibody prompted a search for the tumor in 60% of the patients; the tumor when found was usually small and remained localized until death, or was demonstrated only at autopsy. Treatment using steroids and plasmapheresis, immunosuppressants, or both, did not improve the paraneoplastic symptoms. Autonomic and respiratory failure, either of central origin or secondary to neuromuscular weakness, were the principal causes of death. Patients with rapidly developing sensory neuropathy or symptoms of encephalomyelitis should be studied for the presence of the anti-Hu antibody; if the antibody is found, the possibility of small-cell lung cancer should be investigated. If a tumor is not found in the initial search, one may become evident in several months.
Using immunohistochemistry or Western blot analysis, the authors have studied the expression of the Hu antigen (a neuronal protein identified by the serum of patients with small cell lung cancer and paraneoplastic encephalomyelitis/sensory neuronopathy) in normal human tissues and 115 tumors of different histologic types. In normal tissue, the Hu antigen is highly restricted to the nervous system. In lung tumors, the Hu antigen is restricted in its expression to all small cell carcinomas. A few other neuroendocrine-related tumors, especially neuroblastomas (50%), also express the antigen.
A neuronal antigen (HuD) recognized by the sera of patients with antibody-associated paraneoplastic encephalomyelitis has been isolated by screening a lambda cerebellar expression library. The recombinant antigen provides an unambiguous assay for this rare condition associated with small cell lung cancer. The recombinant antigen has been used to identify specific infiltrating lymphocytes in tumors and affected brain tissues of patients with antibody-associated paraneoplastic encephalomyelitis and sensory neuronopathy. HuD mRNA is uniquely expressed in brain tissue. The HuD protein shows a remarkable homology to the Drosophila proteins Elav and Sex-lethal and is likely to play a role in neuron-specific RNA processing.
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We studied the nervous systems and tumors of five patients with anti-Hu-positive paraneoplastic encephalomyelitis/sensory neuronopathy (PEM/PSN) to determine if the autoantibody found in the serum and CSF was also present in those tissues. Immunohistochemical studies of the nervous system revealed the presence of IgG bound predominantly to the nuclei of most of the neurons and the cytoplasm of some glial cells. IgG was also present to a lesser degree in the neuropil. In brains of patients who died of cancer without the paraneoplastic syndrome, IgG was present in the immediate perivascular areas and to a very limited degree in the neuropil. There was no IgG in neurons, and in only some of the controls a few glial cells showed IgG immunoreactivity in the cytoplasm. The amount of anti-Hu IgG relative to total IgG in various brain regions and tumor was determined by quantitative Western blot analysis. The proportion of anti-Hu IgG was greater in some areas of the brain and tumor than in serum and CSF. Control brains did not contain anti-Hu IgG. There was a limited correlation among (1) the principal clinical symptoms, (2) regions of major tissue injury, and (3) the quantitative anti-Hu IgG distribution. We conclude that although the role of the antibody in the pathogenesis of the disease is still uncertain, its specific localization in the nervous system and tumor suggests an immunologic etiology of this paraneoplastic syndrome.
Paraneoplastic cerebellar degeneration is a rare syndrome that occurs in patients with gynecologic cancer and is characterized by widespread loss of Purkinje cells. To determine whether Purkinje-cell antigens are selectively expressed in the tumors of patients with the syndrome, we examined tumor tissue from 10 patients whose serum contained anti-Purkinje-cell (anti-Yo) antibodies. The origins of the cancers were the breast (five patients), ovary (three), endometrium (one), and fallopian tube (one). We used as controls tumor tissue from 11 patients with ovarian cancer and 10 patients with breast cancer who were neurologically normal. Using immunohistochemical and Western blot analysis, we found that Purkinje-cell antigens were expressed in all the tumors from the 10 patients with paraneoplastic cerebellar degeneration but in none of the tumors from the 21 neurologically normal patients. When IgG from patients with paraneoplastic cerebellar degeneration was affinity-purified to cerebellar Purkinje-cell antigen, immunohistochemical analysis showed that it reacted specifically with the tumor tissue from those patients. We conclude that in patients with paraneoplastic cerebellar degeneration, the anti-Yo antibody results from an immune response to neural antigens expressed by the gynecologic tumors in the patients.
We looked for the presence of the anti-Hu antibody in the sera from 50 normal subjects; 44 patients with small cell lung cancer, not associated with paraneoplastic disease; and 25 patients with small cell lung cancer associated with paraneoplastic sensory neuropathy, encephalomyelitis, or both. Using the avidin-biotin immunoperoxidase method and a highly sensitive quantitative Western blot analysis, the anti-Hu antibody was not detected in the 50 normal human sera. Seven of the 44 patients with small cell lung cancer but no paraneoplastic syndrome had detectable levels (average titer, 76 U/ml) of anti-Hu antibody on Western blot. These levels are significantly lower than the average titer of the 25 patients who had small cell lung cancer and paraneoplastic sensory neuropathy or encephalomyelitis (average titer, 4,592 U/ml). In the group with nonparaneoplastic small cell lung cancer (low anti-Hu titer) there was a predominance of women (5 women: 2 men), and all patients had "limited" disease when diagnosed. In the antibody-negative group the sex ratio was 16 women to 21 men and 51% of the patients had "extensive" disease. None of the 7 patients with a low-titer anti-Hu antibody developed a paraneoplastic syndrome by the time of writing. The anti-Hu antibody appears, when present, to be a good marker for small cell lung cancer and, when present at high titer, for small cell lung cancer associated with a paraneoplastic syndrome.
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Tongue paralysis are often underestimated, particularly when isolated or having a chronic course. Sometimes, its early recognition may lead to the diagnosis of a tumor process, favorably modifying its course. We have retrospectively analyzed 13 cases of tongue paralysis of neoplastic etiology. In a woman, the paralysis was due to a lesion of the corticobulbar pathway whereas in the remaining 12, the alteration occurred in the hypoglossal nerve, particularly at extrabulbar intracranial and cranial base tract (10 cases). The clinical picture was due to the primary tumor in 9 patients, and due to bone or leptomeningeal metastases in the remaining four cases. In five cases, the lesion of the XII cranial nerve was essential for the diagnosis of the neoplasm or the neoplastic recurrence and in four cases, it was the only affected cranial nerve.
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The results of a zinc-protoporphyrin (ZPP) screening in 1983 among first-grade schoolchildren in Hospitalet de Llobregat (Catalonia, Spain) are presented. Tap water in this industrial city comes from the Llobregat river and is extremely hard, with an excessive level of salts. At this time, Spanish gasoline had high levels of lead. The purpose of the study was to evaluate the effect of environmental pollution on subclinical lead poisoning. These were 428 children in the study, 67% of those eligible. Causes for non participation were being absent from school on the screening day or lack of parental consent for participation in the study. Only in two children levels of ZPP above 40 theta g/100 ml were found; both cases had iron deficiency anemia with low blood lead levels. Mean ZPP levels were somewhat higher in the Collblanc district, which suffers higher air pollution from street traffic, and in children living in houses built before 1940. The relevance and implications of these findings are discussed.
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