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Metastatic bacterial endophthalmitis: a contemporary reappraisal.

Metastatic bacterial endophthalmitis remains a challenge to the clinician despite the success of antibiotics in reducing its frequency and severity. Controversy currently surrounds the management of this condition because of uncertainty about the value of and indications for vitreous surgery. We review 72 cases of metastatic endophthalmitis from the past decade, including five not previously published. The spectrum of causative bacteria changed significantly during this period, with displacement of meningococcus by Bacillus cereus as the most frequently reported agent and an increasing incidence of infection by organisms of low pathogenicity in immunologically compromised hosts. We propose a new classification scheme for metastatic endophthalmitis based on the location (anterior or posterior segment) and extent (focal or diffuse) of the primary intraocular infection. Focal and anterior cases appear to have a good prognosis, while posterior diffuse disease nearly always leads to blindness. Our analysis of outcomes suggests that systemic antibiotics are more valuable in metastatic than in postoperative or traumatic endophthalmitis and that intraocular antibiotic injection and vitrectomy make only a limited contribution to successful treatment in metastatic infection. We recommend a clinical approach to metastatic endophthalmitis that minimizes exposure of patients to the risks of invasive procedures.

Adolescent↗

Bacterial meningitis and meningococcal infection.

Now that invasive disease caused by Haemophilus influenzae type b has been largely controlled in the developed world, the principal bacterial pathogen causing meningitis in most countries is the meningococcus. Serogroup B and C strains predominate in most industrialised countries in contrast to the situation in sub-Saharan Africa, where serogroup A meningococcal disease is periodically a problem of massive epidemic proportions. This review focuses on developments in our understanding of the diagnosis and treatment of meningococcal disease, of host factors important in susceptibility to, and severity of, this infection, and on advances which may eventually lead to its prevention.

Child↗

Hematological findings in acute infections and septicemias.

This paper is a report on twelve cases of septicemia, the diagnosis made possible by medical technologists observing the degenerative morphological findings in the peripheral blood smears. This led to the finding of microorganisms, prior to the bacteriological confirmation, in an active emergency department. It also includes four case reports in which the organism was identified: a meningococcus, a pneumonococcus, an Escherichia coli, and a clostridium perfringens (welchii).

Adult↗

Purulent pericarditis in children.

Acute purulent pericarditis was treated successfully in five children between the ages of 27 months and 11 1/2 years during the past 5 years. The responsible organism was Hemophilus influenzae, type b, in two cases and Meningococcus, Pneumococcus, and coagulase-positive Staphylococcus aureus in one case each. No primary source of infection could be identified in two patients. A high index of suspicion, combined with immediate echocardiograms and pericardiocentesis, led to the diagnosis. Immediate antibiotic therapy was instituted on the basis of the gram stain of the pericardial fluid. All five patients had a pericardial window established--four through subxyphoid approach and the fifth, because of a left pleural effusion, through a left thoracotomy. When the subxyphoid approach was used, sump drains were left for postoperative suction and irrigation. All five patients survived without sequalae during follow-up periods of from 18 months to 5 years. We advocate an aggressive approach to the diagnosis and treatment of this problem. This report documents the safety, ease, and effectiveness of the subxyphoid approach as a means of drainage.

Child↗

Manson Lecture. Meningococcal meningitis in Africa.

This review covers the history of meningococcal meningitis in Africa since epidemics of the infection were first described around 100 years ago. It is possible that an epidemic strain of the meningococcus was introduced into West Africa from the Sudan by pilgrims returning from the Haj around the turn of the century. Since 1905 major epidemics of meningococcal meningitis have occurred in countries of the Sahel and sub-Sahel every few years, culminating in a massive epidemic in which nearly 200,000 cases were reported in 1996. Attempts to control epidemic meningococcal meningitis in Africa by vaccination with meningococcal polysaccharide vaccines have met with only modest success because epidemics can progress with great rapidity and vaccination is often started too late. This situation should be improved as a result of a recent initiative, the International Coordinating Group (ICG), which is contributing to better surveillance in countries at risk and ensuring that vaccine is available when needed. However, in the medium term, the best prospect for the control of meningococcal meningitis in Africa lies in the recent development of polysaccharide-protein conjugate vaccines which, unlike polysaccharide vaccines, are immunogenic in the very young, induce immunological memory and are likely to give long-lasting protection.

Africa↗