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Biomedical subjects

M P Wilhelm

Publications and source records attributed to M P Wilhelm.

6 recordsLinked to original sources

A prospective study of the polymerase chain reaction for detection of herpes simplex virus in cerebrospinal fluid submitted to the clinical virology laboratory.

Polymerase chain reaction (PCR) was prospectively performed with cerebrospinal fluid (CSF) from 51 patients whose CSF was available for analysis and was submitted for viral culture and/or herpes simplex virus (HSV) serology and 20 patients whose CSF was submitted exclusively to the Clinical Biochemistry Laboratory. Primers were used that flanked a 92 bp segment of the HSV DNA polymerase gene (35 cycles). Amplified products were electrophoresed on agarose gel, blotted onto nylon membrane, and probed with a 32P-labelled sequence internal to the primers. For nested PCR, 1 microliter of PCR product was amplified for an additional 35 cycles before electrophoresis and Southern blot analysis. Review of the clinical records revealed that 15 patients had central nervous system (CNS) infections. Specific HSV DNA sequences were detected in CSF specimens of three of the individuals [PCR(2), nested PCR(1)]. Two of these patients had disseminated HSV infection including encephalitis and one patient had aseptic meningitis. The diagnoses of the 12 patients with CNS infection who did not have HSV DNA detected in CSF included encephalitis [varicella-zoster virus (1), cytomegalovirus (1), Mycoplasma pneumoniae (1)], meningitis [Neisseria meningitidis (1), Coccidioides immitis (1), Enterovirus (1), aseptic meningitis (1)], varicella-zoster radiculitis (2), human immunodeficiency virus dementia (2), and transverse myelitis due to Epstein-Barr virus (1). Importantly, HSV DNA was also not detected in the CSF of the 36 patients who did not have CNS infection and 20 samples submitted exclusively to the Clinical Biochemistry Laboratory. Our findings demonstrate the utility of PCR as a rapid, non-invasive method for the routine laboratory diagnosis of CNS infection due to HSV.

Adult

Strategies for prevention of infection after cardiac transplantation.

Infection remains a major cause of morbidity and mortality after cardiac transplantation. Most infections occur during the first few months after transplantation. Although late infection does occur, the risk of infection during maintenance immunosuppression is low in the absence of recurrent rejection that necessitates augmentation of suppression of the immune response. Before cardiac transplantation, the risk factors for infectious disease in potential candidates should be assessed. A detailed history of past infections should be elicited, and patients should be screened for the presence of active indolent infection. In addition, potential donors must be thoroughly assessed for organ-transmittable infection. Many common infections that may occur after cardiac transplantation can be prevented with the use of appropriate prophylactic regimens directed toward cytomegalovirus, Toxoplasma gondii, Pneumocystis carinii, and herpes simplex virus. Periodic surveillance serologic tests and cultures after cardiac transplantation facilitate early diagnosis and prompt institution of appropriate therapy.

Heart Transplantation

De novo systemic vasculitis in a renal transplant recipient.

Abdominal pain, oligoarthritis, macular skin rash, and urine sediment with more than 100 erythrocytes per high-power field and proteinuria developed in a renal transplant recipient who had no prior history of an underlying connective tissue disease. A polyarteritis-type necrotizing vasculitis was detected in the small bowel mesentery. A search for other etiologic factors revealed none. This case demonstrates that de novo vasculitis can develop in renal transplant recipients despite adequate immunosuppressive regimens and may respond to increased dosages of corticosteroids.

Combined Modality Therapy

Vancomycin.

Vancomycin is a glycopeptide antibiotic that is active against staphylococci, streptococci, and other gram-positive bacteria. It is the drug of choice for the treatment of infections due to methicillin-resistant staphylococci, Corynebacterium jeikeium, and multiply resistant strains of Streptococcus pneumoniae. Vancomycin is an alternative treatment for serious staphylococcal and streptococcal infections, including endocarditis, when allergy precludes the use of penicillins and cephalosporins. Vancomycin is bactericidal against most strains of staphylococci and nonenterococcal streptococci. Although rare strains of staphylococci and enterococci that are resistant to vancomycin have been reported, bacterial resistance has thus far not emerged as a major clinical problem despite widespread use of vancomycin. When therapy is monitored by periodic determinations of serum concentrations of the drug and rapid infusion rates are avoided, vancomycin is rarely associated with serious toxicity.

Drug Monitoring

Pancreas transplantation at Mayo: III. Multidisciplinary management.

Although pancreas transplantation is a complicated procedure, a good level of success has been achieved because of the introduction of cyclosporine for immunosuppression, improved methods for diagnosing rejection, and a multidisciplinary approach to management. Our immunosuppressive regimen was quadruple therapy with induction by using Minnesota antilymphoblastic globulin. A biopsy technique was instituted in which the pancreas specimens were obtained under cystoscopic direction during episodes of hypoamylasuria. The criteria for rejection episodes were not only biochemical abnormalities but also histologic confirmation and a follow-up to exclude other causes of graft dysfunction. Infectious disease management included use of oral selective bowel decontamination for 3 weeks after transplantation. At the Mayo Clinic between October 1987 and December 1988, 16 patients received pancreaticoduodenal allografts (both kidney and pancreas in 13 and pancreas only in 3 after a prior successful kidney transplantation). In two pancreas and one kidney allograft, function was lost. One patient died of multiorgan failure. The cystoscopically directed biopsy technique was performed 23 times with minimal complications and a 93% success rate. The metabolic results have been excellent; the glycosylated hemoglobulin level was normal 3 to 6 months after transplantation. The quality of life was significantly improved in almost all patients. Nutritional assessment revealed little deterioration after transplantation. With a multidisciplinary approach, the needed answers about the effect of pancreas transplantation on the degenerative complications of diabetes should be forthcoming.

Adult

Bacterial interference by anaerobic species isolated from human feces.

Eighty-four anaerobic fecal isolates obtained from five healthy volunteers were tested for their ability to inhibit in vitro growth of eight species of Enterobacteriaceae, four species of faculative gram-positive cocci, and Pseudomonas aeruginosa. Forty-nine of the 84 anaerobic isolates (58%) inhibited the growth of at least one indicator bacterium. Isolates of Bacteroides and Bifidobacterium spp. were most consistently inhibitory. Anaerobic cocci and clostridia were infrequently inhibitory; eubacteria showed no inhibitory activity. Serratia marcescens was the indicator most often inhibited; 54% of all anaerobic isolates tested, all of nine Bifidobacterium isolates and 33 of 43 Bacteroides isolates inhibited this organism. No anaerobes inhibited the growth of Escherichia coli, Klebsiella pneumoniae, Klebsiella oxytoca, Citrobacter freundii, Citrobacter diversus or Streptococcus faecalis.

Adult