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Jerome B Posner

Publications and source records attributed to Jerome B Posner.

11 recordsLinked to original sources

Paraneoplastic syndromes affecting the nervous system.

The paraneoplastic neurologic disorders (PND) are a diverse group of diseases characterized by the presence of neurologic dysfunction in the setting of a remote cancer. PND can affect almost any part of the nervous system, and are most commonly associated with lung cancer (small cell) and gynecologic tumors. Laboratory studies have demonstrated that an autoimmune response links the neurologic disorder and the cancer, and established a model whereby the cancer is believed to initiate the syndrome by expressing a protein antigen normally expressed in the nervous system, leading to anti-tumor immune response followed by autoimmune neurologic symptoms. We review the currently known PND and their pathogenesis.

Autoantibodies↗

Brain metastases: epidemiology and pathophysiology.

Metastases are the most common tumors of the central nervous system (CNS), but cancer databases are often incomplete leading to underestimation of the incidence of even symptomatic brain metastases. Brain imaging studies are not routinely performed on neurologically asymptomatic cancer patients and autopsy studies are outdated. Furthermore, while incidence rates for cancers are stable and mortality is decreasing due to earlier detection and better therapy, the incidence of brain metastases appears to be increasing. The pathophysiology of brain metastases is a complex multistage process, mediated by molecular mechanisms; from the primary organ, cancer cells must transform, grow and be transported to the CNS where they can lay dormant for various lengths of time before invading and growing further. Understanding the pathophysiology of brain metastases is of great importance, because it may lead to the development of more efficient therapies to combat brain tumor growth or to possibly make the CNS an undesirable environment for tumor progression.

Brain Neoplasms↗

Clinical analysis of anti-Ma2-associated encephalitis.

Increasing experience indicates that anti-Ma2-associated encephalitis differs from classical paraneoplastic limbic or brainstem encephalitis, and therefore may be unrecognized. To facilitate its diagnosis we report a comprehensive clinical analysis of 38 patients with anti-Ma2 encephalitis. Thirty-four (89%) patients presented with isolated or combined limbic, diencephalic or brainstem dysfunction, and four with other syndromes. Considering the clinical and MRI follow-up, 95% of the patients developed limbic, diencephalic or brainstem encephalopathy. Only 26% had classical limbic encephalitis. Excessive daytime sleepiness affected 32% of the patients, sometimes with narcolepsy-cataplexy and low CSF hypocretin. Additional hormonal or MRI abnormalities indicated diencephalic-hypothalamic involvement in 34% of the patients. Eye movement abnormalities were prominent in 92% of the patients with brainstem dysfunction, but those with additional limbic or diencephalic deficits were most affected; 60% of these patients had vertical gaze paresis that sometimes evolved to total external ophthalmoplegia. Three patients developed atypical parkinsonism, and two a severe hypokinetic syndrome with a tendency to eye closure and dramatic reduction of verbal output. Neurological symptoms preceded the tumour diagnosis in 62% of the patients. Brain MRI abnormalities were present in 74% of all patients and 89% of those with limbic or diencephalic dysfunction. Among the 34 patients with cancer, 53% had testicular germ-cell tumours. Two patients without evidence of cancer had testicular microcalcification and one cryptorchidism, risk factors for testicular germ-cell tumours. After neurological syndrome development, 17 of 33 patients received oncological treatment (nine also immunotherapy), 10 immunotherapy alone, and six no treatment. Overall, 33% of the patients had neurological improvement, three with complete recovery; 21% had long-term stabilization, and 46% deteriorated. Features significantly associated with improvement or stabilization included, male gender, age <45 years, testicular tumour with complete response to treatment, absence of anti-Ma1 antibodies and limited CNS involvement. Immunosuppression was not found to be associated with improvement but was clearly effective in some patients. Fifteen patients (10 women, five men) had additional antibodies to Ma1. These patients were more likely to have tumours other than testicular cancer and to develop ataxia, and had a worse prognosis than patients with only anti-Ma2 antibodies (two women, 21 men); 67% of deceased patients had anti-Ma1 antibodies. Anti-Ma2 encephalitis (with or without anti-Ma1 antibodies) should be suspected in patients with limbic, diencephalic or brainstem dysfunction, MRI abnormalities in these regions, and inflammatory changes in the CSF. In young male patients, the primary tumour is usually in the testis, in other patients the leading neoplasm is lung cancer.

Adult↗

Brain metastases.

Approximately 10% of patients with cancer develop brain metastases. Although usually appearing late in the course of the disease, the brain metastasis may be present before the primary cancer has been identified and may present as a single lesion or as multiple lesions. The diagnostic and therapeutic approach depends on the number and location of brain lesions and the stage of the cancer. Patients with brain metastases are rarely cured. However, appropriate treatment can improve both the quality and duration of the patient's life. Treatment must be directed not only at the brain metastasis (definitive care), but also at a multitude of other symptoms that plague patients with cancer and brain metastases (supportive care). Judicious selection of pharmacological agents can effectively treat many serious symptoms in patients with brain metastases, but injudicious selection of pharmacological agents, through side effects, may make the patients' quality of life worse. This article reviews some aspects of both definitive and supportive care with particular attention to the side effects of some commonly used pharmacological agents.

Adrenal Cortex Hormones↗

Immunology of paraneoplastic syndromes: overview.

Cancers that cause disturbances of organs or tissues remote from the site of the tumor or its metastases are called paraneoplastic syndromes. The nervous system can be affected at virtually any site, including the neuromuscular junction (e.g., Lambert-Eaton myasthenic syndrome, myasthenia gravis). Paraneoplastic syndromes affecting the central nervous system are characterized by (1) high titers of antibodies that react with both the cancer and the affected portion of the nervous system, (2) specifically reacting T cells in the blood and cerebrospinal fluid, and (3) autopsy evidence of neuronal destruction, inflammatory infiltrates, and antibody penetration. Clinically, paraneoplastic syndromes affecting the central nervous system are usually subacute in onset, rapid in evolution, and cause severe damage, but generally stabilize after several months with or without treatment. Immune suppression does not appear to be particularly effective in treating these disorders. Treatment of the underlying cancer sometimes ameliorates symptoms.

Animals↗