PubMed HealthSearch

Biomedical subjects

G S Allen

Publications and source records attributed to G S Allen.

At least 19 recordsLinked to original sources

A technique for interactive image-guided neurosurgical intervention in primary brain tumors.

Interactive image-guided neurosurgical techniques allow safer and more complete cytoreduction of gliomas. This is most significant for low-grade tumors, whose configurations and margins are perhaps better appreciated by reference to registered MR images rather than by reliance on direct visualization using microscopic illumination. Spatially registered electro-physiologic recordings of intraoperative cortical stimulation to map language and motor function can increase the margin of safety for performing radical resections. By individualizing approaches and optimizing results, these technologies promise a new degree of standardization of outcome after resective surgery for all glial tumors.

Brain Mapping

Evaluating contrast-enhancing brain lesions in patients with AIDS by using positron emission tomography.

OBJECTIVE: To determine whether a noninvasive method for evaluating contrast-enhancing brain lesions in patients with the acquired immunodeficiency syndrome (AIDS) can accurately differentiate between lymphoma and nonlymphoma diagnoses. This method is based on Toxoplasma serologic testing and positron emission tomography. DESIGN: Prospective, nonrandomized, criterion-standard clinical study. SETTING: An academic center in the mid-southeastern United States. PATIENTS: 20 patients with AIDS and contrast-enhancing brain lesions. INTERVENTIONS: Positron emission tomographic scanning and Toxoplasma serologic testing. MAIN OUTCOME MEASURE: Diagnoses were confirmed by clinical response, autopsy, or brain biopsy. RESULTS: Eight patients had a confirmed diagnosis of toxoplasmosis, six had lymphoma, four had other diagnoses, and two were not evaluable. Seven of eight patients with toxoplasmosis had positron emission tomographic scans; all of these scans showed hypometabolic lesions consistent with a nonlymphoma diagnosis. The six patients with lymphoma all had hypermetabolic lesions on positron emission tomographic scans. The difference between these two sets of results was statistically significant (P < 0.001, Fisher exact test, two-tailed). The anti-Toxoplasma titer was greater than or equal to 1:4 in all patients with confirmed toxoplasmosis who had serologic testing and in three of six patients with lymphoma. CONCLUSIONS: Evaluating contrast-enhancing brain lesions in patients with AIDS by using Toxoplasma serologic testing and positron emission tomography can accurately guide therapy and obviate the need for most brain biopsies in these patients. A larger, national, multicenter study is needed to confirm our findings and to determine the effect of earlier diagnosis and treatment on morbidity and mortality in patients with AIDS and primary central nervous system lymphoma.

AIDS-Related Opportunistic Infections

Viral myocarditis leading to cardiomyopathy: do cytokines contribute to pathogenesis?

Cardiotropic virus infection of mice typically produces florid myocardial inflammation and, in certain strains, elicits a chronic postinfectious autoimmune myocarditis. In humans, myocarditis may progress into cardiomyopathy manifested by interstitial fibrosis and myocyte hypertrophy in the absence of myocardial inflammation. Because of their pleiotropic effects, cytokines may provide a common link between connective tissue changes, myocardial injury, and cardiac autoimmunity. To explore such possibilities, histopathological and serological studies were performed on virus-infected mice which were or were not subject to cytokine manipulation. Mice infected with low doses of encephalomyocarditis virus exhibited little myocardial inflammation although myocyte hypertrophy and reactive fibrosis were common. Profound ultrastructural changes in the interstitium were observed through much of the noninflamed myocardium. B10.A mice which are resistant to the development of postinfectious autoimmune myocarditis developed severe autoimmune myocarditis when infected with Coxsackie virus B3 (CB3) and treated with bacterial lipopolysaccharide (LPS), tumor necrosis factor (TNF), or interleukin 1 (IL-1). B10.A mice given CB3, LPS, TNF, or IL-1 alone did not develop myocarditis and there was no evidence of autoimmune recognition of the heart. When CB3-infected A/J mice, which typically develop autoimmune sequelae to the infection, were treated with an IL-1 receptor antagonist, myocardial injury was diminished and heart antibody activity was reduced. These results suggest that TNF, IL-1, and possibly other cytokines contribute to myocardial pathogenesis and the induction of heart-specific autoimmunity. Further studies may lead to the development of cytokine-based therapeutic approaches to treating myocarditis and cardiomyopathy.

Animals

In vivo deposition of myosin-specific autoantibodies in the hearts of mice with experimental autoimmune myocarditis.

Experimental autoimmune myocarditis (EAM) is elicited in certain strains of mice by immunizing with mouse cardiac myosin. Concomitant with the onset of myocardial inflammation is the induction of circulating IgG antibodies to myosin. To further examine the role of myosin in disease, both EAM-susceptible (A/J) and EAM-resistant (B10.A) mice were immunized with myosin emulsified in CFA and examined for myocardial inflammation and IgG deposition. Myocarditis was common in susceptible, but not resistant strain mice. IgG deposition was extensive in A/J mice, but modest in B10.A mice, when compared to controls given adjuvant alone. Localization was independent of inflammatory or necrotic lesions. A spot ELISA indicated that antimyosin IgG antibody-secreting cells were present in the myocardial infiltrate and likely contributed to antibody localization. Antibody was eluted from the hearts of immunized animals and found to react strongly with normal heart tissue by indirect immunohistochemistry. This reactivity was not completely absorbed by skeletal muscle, indicating that some of the antibody was heart-specific. Western immunostaining demonstrated that eluates from immunized A/J and B10.A mice possessed anti-myosin antibody activity; similar reactivity was not observed in eluates from control mice of either strain. Comparison of heart reactivity with syngeneic and allogeneic tissue suggests that although myosin immunization elicits homologous antibody in both strains, each may recognize distinct epitopes. These findings strongly suggest that cardiac myosin or a myosin-like determinant is expressed on the surface of normal mouse myocytes.

Animals

A universal system for interactive image-directed neurosurgery.

Stereotactic methods confer great accuracy to intracranial target localization, but require strict adherence to a complex program of mechanical and computational maneuvers. A computerized, articulated, localizing 'arm' has been developed that frees the neurosurgeon of these constraints and provides a completely intuitive, 'user-friendly' interface. This universal system is independent of whatever localizing fiducial system is selected. The arm may be sterilized for intracranial use. A variety of intraoperative end effectors may be selected. The patient's CT/MR/PET scans are loaded into computer memory and a three-dimensional shaded surface wireframe diagram of the patient's head is displayed simultaneously with up to 3 independent sets of cross-referenced CT/MR/PET scan images on the intraoperative video screen. The arm's endpoint location and the directional vector are shown as cursors on the relevant scan slices, and change continuously as the surgeon moves the arm. Because the information is continuously updated, an unlimited number of targets and trajectories may be displayed throughout the operation. The arm has an ultimate design accuracy for end-point localization to within 0.1 mm throughout a target volume of 40 x 40 x 40 cm. The tested application accuracy of the first prototype model is 0.31 mm. In clinical use during 30 surgeries, its real-world application accuracy is 0.9 mm. This system provides stereotactic accuracy and universally compatible, intuitive, interactive operation.

Biopsy

Elution of autoantibodies from the hearts of coxsackievirus-infected mice.

Circulating heart-reactive antibodies are commonly reported in myocarditis and cardiomyopathy patients. While these observations support the hypothesis that autoimmune mechanisms may be involved in pathogenesis, such evidence is largely circumstantial. The current studies demonstrate that heart-reactive antibodies can be eluted from the hearts of infected Coxsackievirus B3-infected A/J mice with post-infectious autoimmune myocarditis, but not from the hearts of infected B10.A mice which are resistant to autoimmune myocarditis. The eluted antibodies recognize fewer cardiac antigens than are recognized by circulating antibodies. These results provide an opportunity to examine the role of autoantibodies in the pathogenesis of chronic myocarditis.

Animals

Heart-specific autoantibodies can be eluted from the hearts of Coxsackievirus B3-infected mice.

This study was undertaken to determine if immunoglobulin G (IgG) antibodies could be eluted from the hearts of mice with Coxsackievirus B3-induced autoimmune myocarditis and to characterize the immunoreactivity of any elutable autoantibodies. Susceptible (A/J) and resistant (B10.A) mice were administered the virus or the control treatment and killed at various times after treatment. Acid eluates from pooled heart tissue from each treatment group and each time were tested for IgG reactivity with normal heart tissue by immunohistochemistry and with normal heart extracts by Western immunostaining. Eluates from infected A/J mice reacted strongly with syngeneic heart and modestly with syngeneic skeletal muscle tissue. Eluates from infected B10.A or control mice of either strain exhibited little reactivity with either tissue. Tissue reactivity was similar when allogeneic tissue was used as the substrate. Eluates from infected A/J mice recognized the heavy chain of cardiac myosin and several other cardiac antigens by Western immunostaining while eluates from the other treatment groups exhibited little or no reactivity with any normal heart constituents. These results indicate that in vivo IgG deposition occurs in the hearts of mice with post-infectious autoimmune myocarditis and that the specificity of these antibodies is similar to that reported for serum from animals with this disease. The mechanism(s) leading to myocardial IgG deposition and its possible role in pathogenesis remain to be elucidated.

Animals

Combined chylothorax, chylopericardium, and cranial vena cava syndrome in a dog with thymoma.

A dog was examined because of anorexia and development of submandibular, sternal, and forelimb edema. Physical examination revealed engorged jugular veins and engorged blood vessels of the conjunctivae and nictitating membranes. Thoracic radiography revealed pleural and pericardial effusions, later identified as chyle. Contrast angiography revealed an intravascular mass, later identified as thymoma, in the cranial vena cava.

Animals

Alterations in prealbumin concentration after adrenal autotransplantation for Parkinson's disease.

The cerebrospinal fluid of eight patients with Parkinson's disease who underwent adrenal medullary autotransplantation was analyzed using SDS-polyacrylamide gel electrophoresis. A protein, subsequently identified as prealbumin, was noted to change in concentration over the intraoperative to 18-month postoperative time course. The qualitative changes observed on visual inspection were confirmed and quantified using laser densitometry. The concentration of prealbumin increased by an average of 90% when the intraoperative and 12-month samples were compared. This increase persisted at 18 months. The ratio of prealbumin to albumin also increased from intraoperative to 12 months by an average of 56%. This suggests that the increases in PA are the result of choroid plexus activation rather than a nonspecific breakdown of the blood-brain barrier. Given the association of prealbumin with other nervous system diseases, as well as its known ability to bind multiple substances, these findings may have important implications. Alterations in prealbumin may be responsible for the improvement seen in some patients who receive adrenal medullary autotransplants. Alternatively, prealbumin may be implicated in the pathophysiology of Parkinson's disease.

Adrenal Medulla

Alteration of kainic acid and quinolinic acid toxicity by neostriatal transplants in vitro.

Mature (greater than 21 days in vitro) organotypic corticostriatal cultures prepared from newborn rat brain were incubated in either kainic acid (KA) 10(-3) M or quinolinic acid (QUIN) 10(-3) M for up to 48 h. Other identical cultures were similarly incubated immediately after they had received one or two additional explants of neonatal striatal tissue placed beside each corticostriatal culture. The cultures incubated with either KA or QUIN in the presence of the neonatal striatal tissue showed better preservation than cultures incubated with KA or QUIN alone. Results suggest that the neonatal striatal explants or 'transplants' afford some protective effect against the toxicity or either KA or QUIN.

Animals

Adrenal medullary transplantation to the caudate nucleus in Parkinson's disease. Initial clinical results in 18 patients.

Results from a pilot study of adrenal medullary autotransplantation for Parkinson's disease are presented. Eighteen patients were studied; 12 were followed up for 1 year, and 6 were followed up for 6 months. Four of 12 patients showed distinct improvement in the signs and symptoms of their disease, as assessed using the Columbia Rating Scale, at 1 year; none showed distinct deterioration. The 6 patients who were followed up for only 6 months were an average of 20 years older and generally more severely affected. None distinctly improved. Morbidity was considered to be minor and transient among the first 12 patients, while 4 of the last 6 patients experienced alteration in mental status lasting as long as several months. This problem has led us to conclude that older patients with preexisting cognitive impairment should not be included in future studies until the benefits are more clearly established. However, we believe that the distinct and persistent improvement seen in some of the younger patients warrants the initiation of a well-designed, randomized, and controlled trial of adrenal medullary autotransplantation for the purpose of confirming these results and assessing the effect of the procedure on the natural progression of Parkinson's disease.

Adrenal Medulla

Striatal grafts provide sustained protection from kainic and quinolinic acid-induced damage.

Grafts of neonatal striatal tissue were placed into the striata of adult rats. When challenged immediately with intrastriatal injections of either kainic or quinolinic acid, excitotoxic damage was prevented. Thirty days later these same graft recipients received another injection of excitotoxin. The intrastriatal grafts continued to mitigate toxin-induced damage. It is hypothesized that the grafted cells not only survive, but that they may continue to elaborate some substance or substances that prevent excitotoxin-induced injury for at least 30 days. Previous investigations indicated that grafts of neonatal striatal tissue can protect the recipient striatum from kainic acid toxicity. In the following study it is demonstrated that such grafts also protect the striatum from quinolinic acid, an endogenous excitotoxin which induces kainate-like neuronal degeneration and has been implicated in the pathogenesis of Huntington's disease. It is postulated that the salutary effect of striatal grafting may be sufficiently long lasting to mitigate a chronic toxic insult. Such grafting may therefore represent a therapy for Huntington's disease and other neurodegenerative disorders in which an endogenous or exogenous toxin has been implicated as the pathogenetic agent.

Animals

Neonatal striatal grafts prevent lethal syndrome produced by bilateral intrastriatal injection of kainic acid.

It is reported that unilateral grafts of neonatal striatal tissue protect the recipient from the lethal aphagia and adipsia produced by bilateral intrastriatal injection of 10 nmol of kainic acid in rats. It is shown that neither adult striatum nor neonatal tissue from other sites have the same lifesaving effect and that the salutary effect of the graft is dependent upon graft survival. Grafts from a histoincompatible donor are apparently rejected, leading to the death of the recipient. Cyclosporine inhibits rejection thereby enabling recipient survival. It is postulated that the graft exerts a neurohumoral influence that protects the striatum from the toxic effect of kainate.

Animals

Pituitary transplantation: cyclosporine enables transplantation across a minor histocompatibility barrier.

Pituitary glands from neonatal donors were transplanted to the median eminence of hypophysectomized adult rats. Rats with transplants were then treated for 2 weeks with the immunosuppressive drug cyclosporine. For 5 weeks thereafter, blood was drawn at regular intervals for determination of serum thyroxine, prolactin, and luteinizing hormone. Cyclosporine-treated recipients of grafts with minor histocompatibility differences had normal levels of thyroxine and prolactin, whereas untreated animals did not. In addition, the treated animals responded to oophorectomy with a marked elevation in serum luteinizing hormone. This evidence indicates that cyclosporine enables successful transplantation across a minor histocompatibility barrier. It also suggests that these grafts interact with the hypothalamus. Transplantation across a major histocompatibility barrier was unsuccessful even in the presence of cyclosporine.

Animals