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Biomedical subjects

J Siffert

Publications and source records attributed to J Siffert.

13 recordsLinked to original sources

Foreign body reaction to hemostatic materials mimicking recurrent brain tumor. Report of three cases.

Chemical agents routinely used in neurosurgery to achieve intraoperative hemostasis can cause a foreign body reaction, which appears on magnetic resonance (MR) images to be indistinguishable from recurrent tumor. Clinical and/or imaging evidence of progression of disease early after surgical resection or during aggressive treatment may actually be distinct features of granuloma in these circumstances. A series of three cases was retrospectively analyzed for clinical, imaging, surgical, and pathological findings, and the consequences they held for further disease management. All patients were boys (3, 3, and 6 years of age, respectively) and all harbored primitive neuroectodermal tumors. Two tumors were located in the posterior fossa and one was located in the right parietal lobe. Two boys exhibited clinical symptoms, which were unexpected under the circumstances and prompted new imaging studies. One patient was asymptomatic and imaging was performed at planned routine time intervals. The MR images revealed circumscribed, streaky enhancement in the resection cavity that was suggestive of recurrent disease. This occurred 2 to 7 months after the first surgery. At repeated surgery, the resected material had the macroscopic appearance of gelatin sponge in one case and firm scar tissue in the other cases. Histological analysis revealed foreign body granulomas in the resected material, with Gelfoam or Surgicel as the underlying cause. No recurrent tumor was found and the second surgery resulted in imaging-confirmed complete resection in all three patients. Because recurrent disease was absent, the patients continued to participate in their original treatment protocols. All patients remain free from disease 34, 32, and 19 months after the first operation, respectively. During or after treatment for a central nervous system neoplasm, if unexpected clinical or imaging evidence of recurrence is found, a second-look operation may be necessary to determine the true nature of the findings. If the resection yields recurrent tumor, additional appropriate oncological treatment is warranted, but if a foreign body reaction is found, potentially harmful therapy can be withheld or postponed.

Brain↗

Neurological dysfunction associated with postoperative cerebellar mutism.

BACKGROUND AND OBJECTIVES: The postoperative cerebellar mutism syndrome (CMS) is an unique acute postoperative complication characterized by transient decrease in speech output (often mutism), apathy, irritability as well as global cerebellar dysfunction. As much as 25% of patients undergoing a resection of a cerebellar or IV ventricular tumor may develop such a syndrome. In this retrospective study we characterize the clinical features of the CMS and explore potential etiologic mechanisms. METHODS: We conducted a retrospective analysis of medical records and imaging tests of 8 consecutive patients with the CMS identified through the database of the Children's Hospital and Dana-Farber Cancer Institute, Boston, and compared with a control group of 8 unaffected children undergoing a comparable tumor resection. RESULTS: In contrast to the control group, children in the affected group had marked decrease in speech output and comprehension, apathy and lack of initiative, inattention, persistent eye closure, flaccid hemiparesis and a severe global cerebellar dysfunction. Swallowing difficulties and bowel and bladder dysfunction were also observed. The median duration of the syndrome as judged by the persistence of the communication abnormalities was 4 weeks. The recovery was near complete with exception for a persistent global cerebellar dysfunction. A comparison of CT and MRI scans of children in both groups failed to identify distinguishing features. CONCLUSION: A surgical lesion of the midline cerebellum can cause a complex neurological dysfunction such as the CMS. Thus, we postulate that the cerebellum and its connections function as a 'modulatory system' in control of both motor and non-motor functions, including attention and language.

Akinetic Mutism↗

Late effects of therapy of thalamic and hypothalamic tumors in childhood: vascular, neurobehavioral and neoplastic.

The late effects in children with hypothalamic and thalamic tumors relate to the effects of the tumor on the surrounding brain, the effects of surgery, radiotherapy (RT) and, to a lesser extent, chemotherapy. The clinical manifestations of late effects include endocrinologic dysfunction, neurocognitive sequelae, behavioral problems and second neoplasia. The prevention of late effects is an integral part of current treatment strategies. Early diagnosis, a rational use of surgery, and deferral of RT are the mainstays of the modern treatment in these patients. The improvement of RT techniques and the use of radioprotective compounds may further help spare normal brain tissue. A better understanding of chemotherapy use and the development of newer agents may increase efficacy, reduce side effects and allow deferral of RT in a greater percentage of patients. Finally, an aggressive management of endocrinological problems, physical and cognitive rehabilitation as well as psychological and school support help provide these children with maximal function within their potential.

Adolescent↗

A phase I/II study of carboplatin combined with hyperfractionated radiotherapy for brainstem gliomas.

BACKGROUND: Brainstem gliomas often respond to radiotherapy but long term disease control is exceptional. The concomitant administration of a chemotherapy agent with radiosensitizing properties such as carboplatin may increase the efficacy of radiotherapy. METHODS: A dose escalation schedule of carboplatin was devised to determine the maximum tolerated dose (MTD) of intravenous carboplatin when given on a twice-weekly schedule during a course of hyperfractionated, involved field radiotherapy (100 centigrays [cGy] twice daily to 7200 cGy). The starting dose was 20 mg/m(2) and the dose was increased by 15 mg/m(2) after every 3 patients provided no Grade 3 or 4 (according to the National Institutes of Health Common Toxicity Criteria) toxicity occurred. Magnetic resonance imaging (MRI) scans (brain and spine) were obtained before treatment and at the time of disease progression. Clinical entry criteria included an MRI scan demonstrating a diffuse intrinsic pontine tumor and a typical 2-3-month history of evolving cranial neuropathies and a gait disorder. Biopsy-confirmed evidence of a high grade glioma was required for nonpontine brain stem tumors. RESULTS: A total of 34 patients were enrolled. The median age of the patients was 7.8 years (range, 3.6-15.4 years) and the median prodrome duration was 1.5 months (range, 0.25-36 months). The MTD was 110 mg/m(2) or a total cumulative dose of 1540 mg/m(2) over 7 weeks. The dose-limiting toxicity was hematologic. The median progression free survival was 8 months (range, 0-104+ months) and the overall survival was 12 months (range, 5-104+ months). At last follow-up there were 5 long term survivors (15%) who remained in continuous remission after a mean follow-up period of 79 months (range, 46-104 months). Fifteen of the 29 patients (52%) with recurrence and or disease progression developed leptomeningeal/intraaxial tumor spread beyond the local radiation field. CONCLUSIONS: The cumulative MTD for carboplatin is 1540 mg/m(2) when administered concomitantly with involved field, hyperfractionated radiotherapy in a twice-weekly schedule for 7 weeks. Subsequent Phase II and III clinical trials can be conducted safely at this level.

Adolescent↗

Dose-intensive, time-compressed procarbazine, CCNU, vincristine (PCV) with peripheral blood stem cell support and concurrent radiation in patients with newly diagnosed high-grade gliomas.

The dose intensity of the PCV regimen can be doubled using peripheral blood stem cell (PBSC) support. This study sought to determine the feasibility of giving dose-intensive PCV concurrently with radiation therapy. Twelve patients, age 3.2-22.7 years, median 7.5 years, with newly diagnosed high grade gliomas were enrolled. Diagnoses included diffuse intrinsic brainstem gliomas (BSG) (n = 6), glioblastoma (n = 4), anaplastic astrocytoma (n = 2). PBSCs were harvested prior to chemotherapy with G-CSF priming. Chemotherapy consisted of CCNU 130 mg/m2 and vincristine 1.5 mg/m2 on day 0, and procarbazine 150 mg/m2 on days 1-7. PBSCs were reinfused on day 9 of each course. Four courses of chemotherapy were administered every 28 days or when blood counts recovered. The first course was administered the week prior to RT, the second course began on week 3 of RT and the third and fourth course were given after RT. Hematologic toxicity was mild and the majority of courses were given on schedule. Five of six patients with diffuse BSG showed clinical improvement and three showed a radiographic response; however, only one remains alive 12+ months from diagnosis. All four patients with non-brainstem large-volume tumors showed clinical deterioration and radiographic progression during or shortly after RT. MRI scans showed massive edema and enhancement. Median time to radiographic progression was five months. Median overall survival was 11 months. We conclude that dose-intensive, time-compressed PCV given concurrently with large-volume RT appears to result in unacceptable toxicity in patients with large residual tumors.

Adolescent↗

Pediatric brain tumors.

The first section of this article focuses on epidemiology, cause, diagnosis, and treatment of brain tumors in children and adolescents. The second section addresses the long-term consequences of tumors and their treatment, and a special emphasis is paid to cognitive and psychological outcomes.

Adolescent↗

Patterns of recurrence in brain stem gliomas: evidence for craniospinal dissemination.

PURPOSE: The 3-year survival rate of pediatric patients with infiltrating brain stem gliomas (BSG) is < 10%. Treatment involves local field radiation, and local failure has been the hallmark of recurrence. With therapeutic advances and improved radiographic monitoring, perceived and actual patterns of failure may change. We report patterns of recurrence in a group of patients with close follow-up, treated on an institutional protocol incorporating hyperfractionated involved-field radiation therapy and concomitant carboplatin, who have been uniformly staged and treated and have undergone MRI surveillance. METHODS AND MATERIALS: From 1990-1995, 18 pediatric patients with BSG were treated on a Phase I-II trial of concurrent carboplatin and hyperfractionated radiotherapy. Eight had surgical procedures to document histology. Nine had hydrocephalus prior to death. All had pretreatment brain and spine MRIs, with and without gadolinium, that showed no other evidence of disease. Treatment consisted of 72.00 Gy involved-field hyperfractionated radiation therapy and dose-escalating concomitant carboplatin. RESULTS: Fifteen children have had progression of disease (median PFS = 9 months); and 13 have died (median OS = 14 months). Fourteen of the 15 children with progression had local failures, 8 of whom had evidence of noncontiguous spinal (4) or intracranial (7) disease documented by MRI or autopsy. One child with local control developed an intracranial metastasis. None had clinical manifestations of leptomeningeal disease. CONCLUSION: Leptomeningeal dissemination occurred within 1 month of local progression in nearly 30% of our patients and, overall, occurred in 50% prior to death. This high incidence may reflect close MRI surveillance or a changing pattern of recurrence. Because the majority of leptomeningeal disease occurs in the setting of local progression, treatment efforts must be directed primarily toward local control. However, management of leptomeningeal dissemination at recurrence is of increasing concern.

Antineoplastic Agents↗

Clinical manifestations of childhood ependymoma: a multitude of syndromes.

Over 90% of childhood ependymomas arise within the cranium, two-thirds below and one-third above the tentorium, and they comprise 8-10% of all childhood CNS neoplasms. This is in contradistinction to the presentation in adults where over 75% of the ependymomas arise within the spinal canal. The incidence of 2.2 cases per million appears to be increasing over the past 30 years. The biology of the disease resembles that of a low-grade glioma where local control measures are most important and less than 5% of children present with metastatic disease. Thus, total resection is the optimum therapy. The value of adjuvant therapy for children with no postoperative residual disease is unclear. Adjuvant radiotherapy is reserved for children with postoperative residual disease and appears to prolong survival. A brief review of our current understanding of the incidence, sites of origin, clinical presentations, prognostic factors and controversial treatment issues will be presented.

Adolescent↗

Chemotherapy in recurrent ependymoma.

Surgical resection with or without radiation therapy confers long-term remission in approximately half of the patients newly diagnosed with ependymoma. Chemotherapy has a limited role in the management of ependymoma. In newly diagnosed infants, chemotherapy is utilized as an attempt to defer radiation. The use of chemotherapy in older children has provided no conclusive benefit. The largest experience with chemotherapy in ependymoma has been in children with recurrent disease. In this section, we will analyze the principal institutional and cooperative group phase I, phase II, and phase III clinical trials utilizing single-agent and multiagent chemotherapy in patients with recurrent ependymoma. In addition, future directions relating to novel medical oncologic therapies will also be discussed.

Antineoplastic Agents↗

Contemporary issues in the management of childhood brain tumors.

The incidence of childhood brain tumors appears to be on the rise caused in part by improvements in neuroimaging and its increased availability. Current protocols for treatment of childhood brain tumors are utilizing chemotherapy more extensively in addition to and in lieu of radiotherapy to improve survival for tumors such as medulloblastoma and high grade astrocytoma, and to lessen treatment related morbidity in infants with malignant brain tumors and in older children with standard risk medulloblastomas and germ cell tumors. The increasing understanding of the molecular events that lead to oncogenesis will help unravel the causes and improve therapy for a group of illnesses that cause significant neurologic morbidity and mortality.

Brain Neoplasms↗

Contemporary chemotherapy issues for children with brainstem gliomas.

Radiotherapy has remained the mainstay of treatment for children with intrinsic, diffuse pontine tumors in spite of over 20 years of clinical trials attempting to validate the additional role of chemotherapy. Conventional phase II clinical trials conducted in patients with recurrent or progressive brainstem gliomas using single chemotherapy agents such as cyclophosphamide, carboplatin, cisplatin, etoposide and thiotepa or combinations of chemotherapy agents have produced low response rates in the range of 15-20%. Preradiotherapy chemotherapy phase II trials in newly diagnosed patients have yielded similar results with a therapeutic window as long as 4 months. Preliminary data from protocols employing high-dose chemotherapy with stem cell support have also met with disappointment. The one published phase III trial conducted by the Children's Cancer Study Group comparing radiotherapy with radiotherapy plus chemotherapy (CCNU, vincristine and prednisone) failed to establish a benefit to multimodality therapy. Current studies include the use of radiosensitizing chemotherapy (carboplatin, estramustine and cisplatin) in newly diagnosed patients and more intensive neoadjuvant chemotherapy trials. Major advances in our management await insights into molecular vulnerability of high-grade gliomas.

Antineoplastic Agents↗

Hemorrhagic vasculopathy after treatment of central nervous system neoplasia in childhood: diagnosis and follow-up.

PURPOSE: To review the clinical data, imaging findings, and intermediate outcomes of a series of children with hemorrhagic vasculopathy after treatment for intracranial neoplasia. METHODS: We retrospectively analyzed the medical records and imaging examinations of 20 pediatric patients (ages 1 to 15 years) with intracranial neoplasia in whom delayed intracranial hemorrhage developed after cranial irradiation or radiation combined with systemic or intrathecal chemotherapy. Patients with intracranial hemorrhage from other identifiable causes were excluded. Histopathologic analysis was available in four patients. RESULTS: Twenty patients with delayed intracranial hemorrhage received cranial irradiation alone (n = 9) or combined radiation and chemotherapy (n = 11) for primary brain tumors (n = 13), leukemia (n = 6), or lymphoma (n = 1). Imaging findings were consistent with hemorrhages of varying ages. The hemorrhages were not associated with tumor recurrence nor second tumors. Except for location of the hemorrhage, no significant relationship was established between outcome and original diagnosis, radiation dose (range, 1800 to 6000 centigray), chemotherapeutic agent or dosage, age at treatment, or interval between therapy and hemorrhage (mean, 8.1 years). Only brain stem hemorrhage was associated with a poor outcome. CONCLUSION: In children with central nervous system neoplasia who have undergone cranial irradiation, or radiation combined with chemotherapy, delayed intracranial hemorrhage may develop.

Adolescent↗