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Linezolid in the treatment of brain abscess due to Peptostreptococcus.

Brain abscesses can be caused by bacteria, fungi, and parasites. Among bacteria, anaerobic organisms include the Bacteroides species group, Fusobacterium, Peptostreptococcus, and Propionibacterium. In these cases, a 4-week course of parenteral penicillin/cefalosporin and metronidazole is the standard of treatment. We describe a case of brain abscess secondary to anaerobic infection with Peptostreptococcus, which was successfully treated with parenteral and oral linezolid after failure of standard therapy.

Acetamides↗

Multiple pyogenic brain abscesses.

Thirty eight patients with multiple pyogenic brain abscesses constituted 11% of all the brain abscesses treated during a 12 year period. Sixty per cent (23) of the patients were in the first two decades of life, including 9 (24%) infants. The clinical presentation was similar to brain abscess in general. 21 patients had altered "sensorium" at the time of admission. Otogenic brain abscesses were the commonest (26%), followed by those associated with congenital cyanotic heart disease (18%). The abscesses were invariably large in size. The pus was sterile on culture in 11 (29%) patients, while Staphylococcus aureus was the commonest organism grown in 9 (24%) patients. Aspiration of the pus was required as a life saving measure, to control raised intracranial pressure, in 29 (76%) patients. Twelve (32%) of these patients underwent secondary excision of the abscess capsule. The overall mortality was 32% with failure to control intracranial and systemic infection as the major causes of mortality. Level of consciousness at the time of admission was the most significant factor affecting the outcome. Surgery has a definite therapeutic and life saving role in the management of multiple pyogenic brain abscesses. A systematic treatment plan for multiple abscesses is proposed.

Adolescent↗

[Brain abscesses in diffusion-weighted imaging (DWI)--comparison to cystic brain tumors].

PURPOSE: The clinical usefulness of diffusion-weighted imaging (DWI) was evaluated in patients with brain abscesses in comparison to patients with cystic brain tumors. MATERIAL AND METHODS: Five patients with surgically confirmed brain abscesses underwent beside a brain MRI examination with contrast media application diffusion weighted imaging. Apparent diffusion coefficients (rADC) in three orthogonal diffusion gradient were calculated. The same protocol was used to examine 5 patients with cystic brain tumors. RESULTS: Showing an rADC of 0.33 x 10(-3)/mm(2)/s abscesses have a highly restricted diffusion in comparison to cystic brain tumors with an rADC of 1,67 x 10(-3)/mm(2)/s. CONCLUSION: Diffusion weighted imaging is a usefull diagnostic tool in the work up of brain abscesses.

Adult↗

Hyperbaric oxygen therapy for the treatment of brain abscess in children.

INTRODUCTION: The treatment of brain abscess remains a challenging topic usually involving a multimodal concept. METHODS: We report our experience with hyperbaric oxygen (HBO) therapy in five children presenting with brain abscesses between 1995 and 2002 at the Department of Neurosurgery, Graz. Mean age was 14.8 (range 11-17 years). All abscesses were located supratentorially. One child had a single abscess and one had multilocated abscesses. Two other patients presented with both subdural empyema and brain abscess, one of them showing an epidural empyema as well. In another child, the brain abscess was associated with meningoencephalitis and subdural empyema. In all of them the underlying condition was spread of infection from the paranasal sinuses, except for one, who was immunocompromised due to cytotoxic chemotherapy for acute lymphocytic leukaemia. RESULTS: One single brain abscess and one of the multiple abscesses were drained. All subdural/epidural empyemas were treated surgically. Antibiotics were administered intravenously for 13 to 22 days (mean 22 days). All patients underwent HBO therapy; the number of treatments ranged from 26 to 45 "dives" (mean 30). Treatments were given once daily at 2.2 atmosphere absolutes for 60 min at 12 m. During the hospital stay all improved their clinical condition, with continued regression of abnormalities on magnetic resonance imaging (MRI). In the following weeks, other interventions were performed to treat the origin of the infections. At 6 months follow-up they were all in good clinical condition, either symptom free or with minor residual symptoms. MRI at this time showed no evidence of disease in three, a residual dural enhancement in one and a residual shrunken collection in the child with multilocated abscesses. No recurrence was observed during a mean follow-up of 21 months (range from 7 to 72 months). CONCLUSION: HBO therapy in children with brain abscesses seems to be safe and effective, even when they are associated with subdural or epidural empyemas. It provides a helpful adjuvant tool in the usual multimodal treatment of cerebral infections and may reduce the intravenous course of antibiotics and, consequently, the duration of hospitalization. Multidisciplinary management is recommended to optimize care for these critically ill children.

Adolescent↗

Neuropathological and computerized tomographic findings in experimental brain abscess.

The neuropathological progression of brain abscess formation was studied experimentally at sequential stages in dogs, and the findings correlated with the appearance on computerized tomographic (CT) brain scans. The evolution of brain-abscess formation was divided into four stages based on histological criteria: early cerebritis (Days 1 to 3); late cerebritis (Days 4 to 9); early capsule (Days 10 to 13); and late capsule (Days 14 and later). The cerebritis stage was characterized by prominent perivascular cuffing by inflammatory cells in the area adjacent to the developing necrotic center. However, the early elements of capsule formation appeared with the presence of fibroblasts by Day 5. The CT scans showed ring-shaped contrast enhancement by Day 3. Delayed scans at 30 minutes revealed diffusion of the contrast material into the developing necrotic center, forming a solid lesion. In lesions that were well encapsulated (14 days and older), five distinct histological zones were apparent: 1) a well formed necrotic center; 2) a peripheral zone of inflammatory cells, macrophages, and fibroblasts; 3) the dense collagenous capsule; 4) a layer of neovascularity associated with continuing cerebritis; and 5) reactive astrocytes, gliosis, and cerebral edema external to the capsule. The CT appearance of well encapsulated abscesses showed a typical ring-shaped contrast-enhancing lesion. On the delayed scans, the "ring" did not fill in with contrast enhancement. The diameter of the ring correlated best with the presence of cerebritis (perivascular infiltrates in the adventitial sheaths of vessels surrounding the abscess). The discussion focuses on the relevance of this study to the current management of patients with brain abscess.

Animals↗

[Otogenic and rhinogenic brain abscesses in children].

Otogenic and rhinogenic abscesses of the brain in children (25 cases) constitute 4.4% of neurosurgical pathologies and 26.9% of all brain abscesses in children. Rhinogenic abscesses (10 cases) were located in the frontal lobes and otogenic abscesses (15 cases) were found supra- or subtentorially. It is difficult to diagnose brain abscesses in children. In this respect computer tomography is very valuable. All the above patients underwent surgical intervention, which included such methods as aspiration, drainage and block removal. The lethality rate was 36%, although during the last 5 years (9 cases) no lethal cases were recorded.

Adolescent↗

Citrobacter diversus brain abscess and meningitis in neonates.

Brain abscess is an infrequent complication of meningitis, including cases caused by Gram-negative enteric bacteria in neonates. Because brain abscesses recently developed in four of five neonates with Citrobacter diversus meningitis at one institution, we reviewed cases of C diversus meningitis reported in the literature and those enrolled in the Neonatal Meningitis Cooperative Study Groups and reported to the Centers for Disease Control. Seventy-four cases in neonates were identified, and a brain abscess had developed in 41 (77%) of 53 patients for whom the information was available. This high frequency indicates the need for rapid diagnosis of this complication of C diversus meningitis.

Brain Abscess↗

Brain abscesses caused by oral infection.

Brain abscesses are rare but can be life-threatening infections. Recent progress in microbiological classification and identification has indicated that they are sometimes caused by oral infection and dental treatment. It has been postulated that oral microorganisms may enter the cranium by several pathways: 1) by direct extension, 2) by hematogenous spread, 3) by local lymphatics, and 4) indirectly, by extraoral odontogenic infection. In the direct extension, oral infections spread along the fascial planes. Hematogenous spreading occurs along the facial, angular, ophthalmic, or other veins which lack valves, through the cavernous sinus and into the cranium. Another hematogenous pathway is through the general circulation. Oral bacteria may cause systemic infections, e.g., endocarditis, and then indirectly initiate brain abscess. Microbiota, complications, and the prevention and management of odontogenic brain abscesses are also discussed in this review.

Anti-Bacterial Agents↗

Trans-mastoid approach to otogenic brain abscess.

The treatment of otogenic brain abscess initially involves excision or aspiration of the abscess through a temporal or sub-occipital route depending on its location. This is followed by a mastoidectomy by the ENT surgeon to eradicate the primary source of infection. During the last three years, we have approached such lesions through a mastoidectomy followed by excision of the abscess through the same approach. This trans-mastoid approach is technically feasible in following the tract of suppuration, and clearing the cause and effect of pathology, at the same sitting. This paper describes our initial experience with the trans-mastoid approach to otogenic brain abscesses. On the basis of our results, we believe that transmastoid approach is an effective and logical option for the treatment of otogenic brain abscess, and merits further investigation in the form of a prospective study.

Adolescent↗

[Brain abscess complicating dental caries in children].

Brain abscess following dental or periapical infection is rare in childhood. This report describes brain abscesses found in two children with dental caries. Case 1.--A 12 year-old boy was admitted because he had suffered from acute meningitis for 3 days. Clinical examination showed symptoms of meningitis plus palsy of the right third and fourth cranial nerves and of the left facial nerve, and a defect in the left temporal field. Funduscopic examination showed papilledema; CT scan and MRI showed a ring-shaped lesion in the right occipital area. The patient was given cefotaxime and thiamphenicol. The abscess was drained; bacteriological examination showed Actinomyces viscosus and Peptostreptococcus magnus. The neurological condition and the CT scan lesion improved, but intracranial pressure increased again on the 17th day after the onset, requiring replacement of the antibiotics by rifampicin and ampicillin plus clavulanic acid for 2 months. This brain abscess appeared to be metastatic, derived from the infection of a large dental cyst due to a dental infection that had been treated 6 months earlier. Case 2.--A 8 1/2 year-old girl was admitted because she was suffering from palsy of the left facial nerve and left arm. She had had headaches and fever for a few days. Clinical examination showed the palsies and drowsiness. CT scan showed two brain abscesses. The patient was given ceftriaxone, fosfocin and metronidazole. She had been treated for a gingival abscess 1 month earlier, and had two infected teeth extracted. Improvement of the intracranial pressure was transient and the antibiotics were changed on the 12th day of treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

Gas-containing otogenic brain abscess.

BACKGROUND: Gas-containing brain abscesses are very rare. Two mechanisms may be responsible for the presence of intracavitary gas: bacterial fermentation or penetration through an abnormal communication between the exterior and the intracranium. The need to search for this potential communication is considered an indication for open surgery. We report the case of a surgically treated gas-containing brain abscess originating from an undiagnosed chronic otitis media. CASE DESCRIPTION: A 54-year-old man developed acute neurologic deterioration, becoming comatose within 24 hours. A contrast-enhanced computed tomography (CT) scan disclosed a gas-containing cystic mass in the right temporal lobe. Urgent surgical decompression revealed the presence of an abscess, which was excised. During the same surgery, we performed a radical mastoidectomy, removing a previously undiagnosed attic cholesteatoma. Neither procedure revealed a discontinuity of the floor of the middle cranial fossa. Cultures grew a mixed flora. Antibiotics were administered for 6 weeks. The patient made a complete neurologic recovery. CONCLUSION: This report demonstrates that otogenic brain abscesses may contain gas due to fermentation of nonclostridial bacteria.

Bacterial Infections↗

[Brain abscesses due to Listeria monocytogenes].

INTRODUCTION: Listeria monocytogenes is a gram-positive bacillus which causes sporadic infections in immunocompromised humans, with a special propensity for the central nervous system, in the form of acute, subacute or chronic meningitis, rhombencephalitis or abscesses in the brain or spinal cord. The final diagnosis is established by germ culture in blood or in cerebrospinal fluid (CSF). Preferred treatment is ampicillin in association with aminoglycosides. CASE REPORT: We report the case of a 70-year-old male patient with a history of arterial hypertension and chronic lymphatic leukaemia with no specific treatment, who suffered meningoencephalitis and brain abscesses caused by L. monocytogenes. Symptoms were a 48-hour history of headache and a febrile condition. The CSF showed lymphocytic pleocytosis with hypoglycorrhachia. Magnetic resonance scans of the brain revealed areas of cerebritis and multiple brain abscesses in the right frontal lobe. Specific treatment was established with ampicillin for 13 weeks, associated with gentamicin and vancomycin during the first few weeks, until x-rays showed the lesions to be resolved. CONCLUSIONS: L. monocytogenes infections must be investigated in all patients with cellular immunosuppression who present febrile symptoms. The central nervous system may be the only area of the body infected. Moreover, this site will need studying in patients who present neurological focus data or an alteration in the state of consciousness and bacteraemia due to L. monocytogenes. Establishing suitable treatment as early as possible can improve the prognosis.

Aged↗

Fifteen-year review of the mortality of brain abscess.

Ninety consecutive cases of brain abscess admitted to this center between 1964 and 1978 have been reviewed. The overall mortality has fallen in three consecutive 5-year periods from 42 to 21 to 9.7%. A number of factors seem to be responsible for this. Early surgical intervention was associated with the reduction in mortality between the first and second 5-year periods. Recognition of the significance and extent of cerebral edema, confirmed since computed tomographic (CT) scans have been available, led to a greater use of steroids during the last 5-year period, but the number of patients thus treated was too small to permit an assessment of any effect on mortality. There is no evidence to suggest a change in the natural history of the disease, and surgical management has not altered significantly. Experience with CT scanning in this center in the diagnosis of brain abscess is limited. It is therefore not possible no assess whether any improvement in mortality may have arisen from the early and accurate diagnosis obtainable with this technique. Improvement in culture technique has been of major importance, leading to a better understanding of the bacteriology of brain abscesses. This has allowed a more rational antibiotic program to be instituted, in particular the use of agents active against obligate anaerobes.

Anti-Bacterial Agents↗

Ten year review of brain abscess in Children's Hospital Bangkok, Thailand.

Brain abscesses are the most common form of intracranial suppurative process in children. In ten years, 54 cases of brain abscess in the Children's Hospital, Bangkok were diagnosed mostly on the basis of clinical features, roentgenogram, CT scanning and basic laboratory findings. The age distribution of brain abscess was from 3 months to 14 years. Evidence of signs of increased ICP was frequently present. Almost half of the patients had associated congenital heart disease particularly Tetralogy of Fallot. CT scanning was very useful in the advantage of rapid diagnosis, early management and short and long-term follow-up, by decreasing the mortality of the patients. Definite diagnosis must be established by obtaining pus or infected ncrotic brain for culture. Brain abscess bacteria can be recovered from properly performed culture. In our series, anaerobic peptostreptococci was the organism most frequently encountered. In the present series, the mortality rates for antibiotic alone and for antibiotic plus aspiration or followed by excision showed no significant difference. Most of deaths were due to brain herniation. It is concluded that with earlier diagnosis, with CT scanning technology, with appropriate antibiotics and with the use of proper surgical methods, the mortality rate from brain abscess should be zero and neurological deficit should be reduced as well.

Adolescent↗

Medical cure of apparent brain abscesses.

Two children with apparent brain abscesses were cured with antibiotic therapy. Review of the literature reveals clinical and experimental evidence that both cerebritis and an encapsulated abscess may appear as an enhancing ring lesion on cranial computed tomography. Patients reported to have had brain abscesses cured without surgery actually may have had cerebritis. There are only preliminary hints as to how to differentiate patients with cerebritis from those with an abscess. More experience is necessary to develop criteria to determine which patients may be appropriately treated with antibiotic therapy alone.

Anti-Bacterial Agents↗

Brain abscesses in children with cancer.

BACKGROUND: Brain abscesses in pediatric patients are rare events, and the causative organism and prognosis vary with the population under study. Children with cancer seem to be particularly susceptible to the development of brain abscesses because of the immunological changes induced by cancer and its treatment. We reviewed the records of children who developed a brain abscess during treatment of a malignancy to define the clinical characteristics, prognosis, and management of these patients. PROCEDURE: We performed a retrospective review of the clinical and laboratory characteristics of all cancer patients younger than age 20 years who were admitted to our institution between 1980 and 1996 for a brain abscess. RESULTS: Twelve children were identified. Cancer diagnoses were brain tumor in two, systemic PNET in two, and leukemia in eight. Six patients had multiple abscesses. Eleven received prior chemotherapy. Abscesses were surgically excised or aspirated in seven, and empiric antibiotics were given to the other five. At surgery, Listeria monocytogenes, Aspergillus fumigatus (3), Fusarium, and Candida lusitanea were cultured. Aspergillus was identified in other locations in four patients. Abscesses were successfully treated in seven patients, two of whom received antibiotics only; five patients (42%) died from infection. CONCLUSIONS: Mortality is high in this immunosuppressed population, in part due to the preponderance of fungal infection. The finding of very rare organisms suggests that drainage and culture should be performed whenever possible; empiric antibiotics that include an antifungal agent may, on occasion, be successful.

Abscess↗