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Biomedical subjects

C Anthony Hart

Publications and source records attributed to C Anthony Hart.

At least 37 records · Page 2Linked to original sources

In vitro synergy and enhanced murine brain penetration of saquinavir coadministered with mefloquine.

Highly active antiretroviral therapy has substantially improved prognosis in human immunodeficiency virus (HIV). However, the integration of proviral DNA, development of viral resistance, and lack of permeability of drugs into sanctuary sites (e.g., brain and lymphocyte) are major limitations to current regimens. Previous studies have indicated that the antimalarial drug chloroquine (CQ) has antiviral efficacy and a synergism with HIV protease inhibitors. We have screened a panel of antimalarial compounds for activity against HIV-1 in vitro. A limited efficacy was observed for CQ, mefloquine (MQ), and mepacrine (MC). However, marked synergy was observed between MQ and saquinavir (SQV), but not CQ in U937 cells. Furthermore, enhancement of the antiviral activity of SQV and four other protease inhibitors (PIs) by MQ was observed in MT4 cells, indicating a class specific rather than a drug-specific phenomenon. We demonstrate that these observations are a result of inhibition of multiple drug efflux proteins by MQ and that MQ also displaces SQV from orosomucoid in vitro. Finally, coadministration of MQ and SQV in CD-1 mice dramatically altered the tissue distribution of SQV, resulting in a >3-fold and >2-fold increase in the tissue/blood ratio for brain and testis, respectively. This pharmacological enhancement of in vitro antiviral activity of PIs by MQ now warrants further examination in vivo.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Heterogeneous distributions of Escherichia coli O157 within naturally infected bovine faecal pats.

Escherichia coli O157 is an important human pathogen for which cattle are considered a reservoir. This paper describes and models the variation in counts of E. coli O157 that exists within individual bovine faecal pats. The presence and concentration of E. coli O157 in faecal samples was determined using a combination of direct spiral plating followed by a more sensitive isolation procedure. The data were modelled using multilevel random effect models, in which the random effects were allowed to be correlated to allow for the fact that pooled and individual samples come from the same pat. Up to a two log difference in the concentration of E. coli O157 was demonstrated in samples from different areas within a faecal pat. Pooling of individual samples from throughout the faecal pat and processing it as one composite sample allows this heterogeneity to be overcome.

Animal Husbandry↗

Production of chemokines in the lungs of infants with severe respiratory syncytial virus bronchiolitis.

BACKGROUND: Respiratory syncytial virus (RSV) bronchiolitis in infants is characterized by a massive neutrophilic infiltrate into the airways. Chemokines direct migration of leukocytes and contribute to the pathogenesis of RSV disease. However, little is known about pulmonary chemokine responses to RSV in humans. Our aim was to characterize the production of chemokines in the lungs of infants with RSV bronchiolitis and how this production changes over time. METHODS: Chemokine mRNA and the concentration of chemokines were measured in nonbronchoscopic bronchoalveolar lavage (BAL) samples from infants with RSV bronchiolitis and from control infants. In infants with RSV bronchiolitis, changes in the concentrations of chemokines during the 7 days after intubation and between the days of intubation and extubation were examined. RESULTS: The production of chemokines within the lower respiratory tract was shown in all patients with RSV bronchiolitis. CXC chemokines (particularly CXCL10/interferon-inducible protein 10 and CXCL8/interleukin-8) were found to be the most abundant, but CC chemokines (CCL2/monocyte chemotactic protein 1 and CCL3/macrophage inflammatory protein-1 alpha) were also present. Concentrations of some of these chemokines remained elevated over the course of the illness, whereas others decreased steadily. No differences in the concentrations were found between the days of intubation and extubation. CONCLUSIONS: CXC chemokines predominate within the RSV-infected lung. Much of this response comes from inflammatory cells within the lower respiratory tract. Chemokine response patterns vary over time, possibly indicating different cellular sources for individual chemokines in the RSV-infected lung.

Bronchiolitis↗

Bacteremia among children admitted to a rural hospital in Kenya.

BACKGROUND: There are few epidemiologic data on invasive bacterial infections among children in sub-Saharan Africa. We studied every acute pediatric admission to a rural district hospital in Kenya to examine the prevalence, incidence, types, and outcome of community-acquired bacteremia. METHODS: Between August 1998 and July 2002, we cultured blood on admission from 19,339 inpatients and calculated the incidence of bacteremia on the basis of the population served by the hospital. RESULTS: Of a total of 1783 infants who were under 60 days old, 228 had bacteremia (12.8 percent), as did 866 of 14,787 children who were 60 or more days of age (5.9 percent). Among infants who were under 60 days old, Escherichia coli and group B streptococci predominated among a broad range of isolates (14 percent and 11 percent, respectively). Among infants who were 60 or more days of age, Streptococcus pneumoniae, nontyphoidal salmonella species, Haemophilus influenzae, and E. coli accounted for more than 70 percent of isolates. The minimal annual incidence of community-acquired bacteremia was estimated at 1457 cases per 100,000 children among infants under a year old, 1080 among children under 2 years, and 505 among children under 5 years. Of all in-hospital deaths, 26 percent were in children with community-acquired bacteremia. Of 308 deaths in children with bacteremia, 103 (33.4 percent) occurred on the day of admission and 217 (70.5 percent) within two days. CONCLUSIONS: Community-acquired bacteremia is a major cause of death among children at a rural sub-Saharan district hospital, a finding that highlights the need for prevention and for overcoming the political and financial barriers to widespread use of existing vaccines for bacterial diseases.

Bacteremia↗

Detection and characterization of human caliciviruses in hospitalized children with acute gastroenteritis in Blantyre, Malawi.

The human caliciviruses (HuCVs), including Norovirus and Sapovirus, are recognized causes of acute gastroenteritis in children and adults. A 1-year study was undertaken in Blantyre, Malawi, to examine the prevalence, and genetic diversity, of human caliciviruses (HuCVs) amongst children under 5 years of age hospitalized with acute gastroenteritis. Using the reverse transcription-polymerase chain reaction (RT-PCR), combined with nucleotide sequencing of the RT-PCR products, HuCVs were detected in 34/398 (8.5%) of children. Twelve (35.3%) of the children were co-infected with additional enteric viruses (predominantly rotavirus). The HuCVs comprised 26 Noroviruses (6.5%) and 8 Sapoviruses (2.0%). Each of the Noroviruses belonged to genogroup II, and could be further classified into six genotypes, including GII/3 (18 strains), GII/4 (2 strains), GII/11 (1 strain), GII/13 (1 strain), GII/16 (2 strains), and a putative new genotype GII/20 (2 strains). Each of the Sapoviruses belonged to genogroup GIII. HuCVs are the second most commonly identified viral enteropathogens (after rotavirus) among hospitalized children with gastroenteritis in Malawi.

Acute Disease↗

Increasing prevalence of multidrug-resistant non-typhoidal salmonellae, Kenya, 1994-2003.

Over the last decade there has been a steady increase in the proportion of multidrug resistance among non-typhoidal salmonellae (NTS) isolated from adult patients with bacteraemia in Kenya. The prevalence of NTS multiply resistant to all commonly available drugs including ampicillin, streptomycin, co-trimoxazole, chloramphenicol and tetracycline rose from 31% in 1994 to 42% at present, with concomitantly higher MICs of each drug. Resistance is encoded on large self-transferable 100-110 kb plasmids. Pulsed field gel electrophoresis of XbaI and SpeI digested chromosomal DNA revealed three main digest patterns for Salmonella enterica serotype Typhimurium and two main patterns for Salmonella enterica serotype Enteritidis. Although the genotypes of NTS remained fairly stable over the last decade, the large increase in MICs of all commonly used drugs and increased MICs of ciprofloxacin, poses a major challenge for treatment of invasive NTS infection.

Adult↗

Prognostic value of procalcitonin in children with meningococcal sepsis.

OBJECTIVE: To compare procalcitonin, lactate, and C-reactive protein as prognostic markers in children with meningococcal septic shock. DESIGN: Prospective observational study. SETTING: Alder Hey Children's Hospital, Liverpool, UK. PATIENTS: Children admitted to our hospital during a 16-month period with a diagnosis of meningococcal sepsis. RESULTS: Plasma procalcitonin at admission was significantly higher in children with septic shock (median, 73.80 vs. 16.44 ng/mL), those requiring ventilation (median, 47.02 vs. 12.00 ng/mL), and those with a duration of hospital stay >10 days (median, 131.35 vs. 19.26 ng/mL). Both procalcitonin and lactate reliably discriminated between those children with septic shock (area under the curve [AUC] = 0.85 and 0.84, respectively) and durations of hospital stay exceeding 10 days (AUC = 0.87 and 0.79, respectively) and those without, but C-reactive protein did not. Procalcitonin alone reliably discriminated between those children requiring ventilation and those who did not (AUC = 0.72). CONCLUSION: Procalcitonin is a reliable prognostic marker of septic shock, requirement for ventilation, and prolonged hospital stay in children with meningococcal sepsis and performs better than lactate and C-reactive protein.

C-Reactive Protein↗

Absence of bacterial and viral DNA in bladder biopsies from patients with interstitial cystitis/chronic pelvic pain syndrome.

PURPOSE: We examined bladder biopsies from women with interstitial cystitis/chronic pelvic pain syndrome (IC/CPPS) for the presence of bacterial and viral DNA sequences using polymerase chain reaction. MATERIALS AND METHODS: Bladder biopsies were taken during cystoscopy from patients under investigation for IC/CPPS, or controls undergoing colposuspension for stress incontinence. Biopsies were snap frozen to -70C. After DNA extraction, polymerase chain reaction (PCR) using specific primers for the hypoxanthine-guanine phosphoribosyl transferase gene confirmed the presence of human DNA. PCR for bacterial and viral gene sequences was performed using specific primers. Positive reactions were repeated to confirm the signal. RESULTS: A total of 92 patients with IC/CPPS (12 who met the National Institute of Diabetes and Digestive and Kidney Diseases criteria and 80 who did not) and 91 controls were recruited. PCR for hypoxanthine-guanine phosphoribosyl transferase gene was positive in all samples. PCR for the 16S ribosomal RNA gene, as well as for adenovirus, cytomegalovirus, herpes simplex virus types I and II, human papillomavirus (all subtypes) and Chlamydia trachomatis were negative in all samples. CONCLUSIONS: IC/CPPS is not associated with persistence of viral and bacterial DNA in the bladder. A chronic infective etiology for the condition is excluded by these findings.

Chronic Disease↗

Gastrointestinal parasites in the immunocompromised.

PURPOSE OF REVIEW: Parasites and other infections have many effects on the gastrointestinal tract of individuals who are immunocompromised. Few reviews focus on parasitic infections, which are covered here. RECENT FINDINGS: The review first examines recent advances in our understanding of the taxonomy, diagnosis and treatment of pathogens such as cryptosporidia, cyclospora, isospora and microsporidia, which are recognized causes of diarrhoea in the immunocompromised, and discusses possible links between amoebiasis and HIV. The complex interactions of both intact and abnormal immune systems with helminth infections such as hookworm and strongyloidiasis, and with trematode infections such as schistosomiasis, are receiving increasing attention. These are discussed, together with the novel concept of using live helminths to treat inflammatory bowel disease. SUMMARY: Parasitic infections remain a significant problem for immunocompromised individuals in resource-poor settings, and further work is needed to develop accessible diagnostic tests and to improve our understanding and management of their pathogenic effects. New concepts about the interactions of helminths with host immunity suggest the need for collection of further epidemiological and clinical data to unravel the complexities of such immunological interactions.

Animals↗

Genotypic and phenotypic characteristics of Pseudomonas aeruginosa isolates associated with ulcerative keratitis.

A collection of 63 isolates of Pseudomonas aeruginosa associated with ulcerative keratitis, collected from six centres in England, were typed using serotyping and random amplified polymorphic DNA-PCR, and screened for several variable virulence-related genotypes and phenotypes. Sixty-one percent of the isolates were of either serotype O1 or serotype O11, but there was no evidence for a common clone. The majority of isolates (59%) were PCR-positive for exoU rather than for exoS (38%), and carried a-type fliC genes (76%) rather than b-type (24%). Isolates were PCR-positive for pyoverdine-receptor types at a prevalence of 38% for type I, 46 % for type II and 8 % for type III. All but one of the isolates exhibited twitching activity. There was a correlation between the presence of exoS and twitching activity (P = 0.04), suggesting that a combination of exoS genotype and good twitching activity may have a role to play in ExoU-independent corneal virulence.

ADP Ribose Transferases↗

A cystic fibrosis epidemic strain of Pseudomonas aeruginosa displays enhanced virulence and antimicrobial resistance.

The Liverpool epidemic strain (LES) of Pseudomonas aeruginosa is a transmissible aggressive pathogen of cystic fibrosis (CF) patients. We compared transcriptome profiles of two LES isolates with each other and with a laboratory and genetic reference strain (PAO1) after growth to late exponential phase and following exposure to oxidative stress. Both LES isolates exhibited enhanced antimicrobial resistances linked to specific mutations in efflux pump genes. Although transcription of AmpC beta-lactamase was up-regulated in both, one LES isolate contained a specific mutation rendering the ampC gene untranslatable. The virulence-related quorum-sensing (QS) regulon of LES431, an isolate that caused pneumonia in the non-CF parent of a CF patient, was considerably up-regulated in comparison to either isolate LES400, associated with a chronic CF infection, or strain PAO1. Premature activation of QS genes was detected in isolates from both non-CF parents and the CF patient in a previously reported infection episode. LES isolates lacking the up-regulated QS phenotype contained different frameshift mutations in lasR. When fed to Drosophila melanogaster, isolate LES431 killed the fruit flies more readily than either isolate LES400 or strain PAO1, indicating that virulence varies intraclonally. The LES may represent a clone with enhanced virulence and antimicrobial resistance characteristics that can vary or are lost due to mutations during long-term colonization but have contributed to the successful spread of the lineage throughout the CF population of the United Kingdom.

Anti-Bacterial Agents↗

Isolation of Waddlia malaysiensis, a novel intracellular bacterium, from fruit bat (Eonycteris spelaea).

An obligate intracellular bacterium was isolated from urine samples from 7 (3.5%) of 202 fruit bats (Eonycteris spelaea) in peninsular Malaysia. The bacterium produced large membrane-bound inclusions in human, simian, and rodent cell lines, including epithelial, fibroblastlike, and lymphoid cells. Thin-section electron microscopy showed reticulate bodies dividing by binary fission and elementary bodies in the inclusions; mitochondria surrounded the inclusions. The inclusions were positive for periodic acid-Schiff stain but could not be stained by fluorescein-labeled anti-Chlamydia trachomatis major outer membrane protein monoclonal antibody. The bacterium was resistant to penicillin and streptomycin (MICs > 256 mg/L) but susceptible to tetracycline (MIC = 0.25 mg/L) and chloramphenicol (MIC = 0.5 mg/L). Sequence analysis of the 16SrRNA gene indicated that it was most closely related to 2 isolates of Waddlia chondrophila (94% and 96% identity). The 16S and 23S rRNA gene signatures were only 91% identical. We propose this novel bacterium be called W. malaysiensis.

3T3 Cells↗

Methicillin-resistant staphylococci in companion animals.

We determined the molecular characteristics of methicillin-resistant staphylococci from animals and staff at a small animal and equine hospital. Methicillin-resistant Staphylococcus aureus (MRSA) identical to human EMRSA-15 was found in dogs and hospital staff. In contrast, 5 distinct MRSA strains were isolated from horses but not from hospital staff.

Animals↗

Dual infection of infants by human metapneumovirus and human respiratory syncytial virus is strongly associated with severe bronchiolitis.

The association between severe bronchiolitis and dual infection by human metapneumovirus (hMPV) and human respiratory syncytial virus (hRSV) was investigated in <2-year-old infants with bronchiolitis who were admitted to the hospital during the 2001-2002 winter season. hMPV in nasopharyngeal aspirate and/or cells and fluid collected by nonbronchoscopic bronchoalveolar lavage was detected by reverse transcriptase-polymerase chain reaction (RT-PCR). hRSV was detected in nasopharyngeal aspirate and/or cells and fluid collected by nonbronchoscopic bronchoalveolar lavage by enzyme immunoassay, tissue culture, and RT-PCR. Dual infection with hMPV and hRSV confers a 10-fold increase in relative risk (RR) of admission to a pediatric intensive-care unit for mechanical ventilation (RR, 10.99 [95% confidence interval, 5.0-24.12]; P<.001, by Fisher exact test). Dual infection by hMPV and hRSV is associated with severe bronchiolitis.

Bronchiolitis, Viral↗

Proinflammatory cytokines and chemokines in humans with Japanese encephalitis.

BACKGROUND: Japanese encephalitis virus (JEV), the mosquito-borne flavivirus, annually causes an estimated 35,000-50,000 encephalitis cases and 10,000-15,000 deaths in Asia, and there is no antiviral treatment. The role played by the immune response in determining the outcome of human infection with JEV is poorly understood, although, in animal models of flavivirus encephalitis, unregulated proinflammatory cytokine responses can be detrimental. METHODS: We studied the innate, cellular, and humoral immune responses in 118 patients infected with JEV, of whom 13 (11%) died. RESULTS: Levels of interferon (IFN)- alpha , the proinflammatory cytokine interleukin (IL)-6, and the chemokine IL-8 were all higher in the cerebrospinal fluid (CSF) of the nonsurvivors than of the survivors (P=.04, P=.006, and P=.04, respectively), as were both the IL-6 : IL-4 ratio in CSF (a marker of the balance of pro- and anti-inflammatory cytokines) and the level of the chemokine RANTES (regulated on activation, normally T cell expressed and secreted) in plasma (P=.03). In contrast, levels of immunoglobulin (Ig) M and IgG in CSF and of IgM in plasma were higher in the survivors (P=.035, P=.003, and P=.009, respectively). Levels of IFN- gamma and nitric oxide did not vary with outcome. CONCLUSIONS: During JEV infection, elevated levels of proinflammatory cytokines and chemokines are associated with a poor outcome, but whether they are simply a correlate of severe disease or contribute to pathogenesis remains to be determined.

Adolescent↗

Sequence divergence in type III secretion gene clusters of the Burkholderia cepacia complex.

The Burkholderia cepacia complex (BCC) comprises a group of bacteria associated with opportunistic infections, especially in cystic fibrosis patients. B. cenocepacia J2315, of the transmissible ET12 lineage, contains a type III secretion (TTS) gene cluster implicated in pathogenicity. PCR and hybridisation assays indicate that the TTS gene cluster is present in all members of the BCC except B. cepacia (formerly genomovar I). The TTS gene clusters of B. cenocepacia J2315 and B. multivorans are similar in organisation but have variable levels of gene identity. Nucleotide sequence data obtained for the equivalent region of the B. cepacia genome indicate the absence of TTS structural genes due to a rearrangement likely to involve more than one step.

Bacterial Proteins↗

Detection of elements of the staphylococcal cassette chromosome (SCC) in a methicillin-susceptible (mecA gene negative) homologue of a fucidin-resistant MRSA.

OBJECTIVES: To determine the DNA relatedness of an outbreak of community-acquired fucidin-resistant methicillin-resistant Staphylococcus aureus (MRSA) and methicillin-susceptible S. aureus (MSSA) isolated from intravenous drug users (IVDUs). MATERIALS AND METHODS: Relatedness was determined by PFGE analysis of macro-restricted chromosome, together with a variety of PCR methods, to determine polymorphisms in the accessory gene regulator (agr) locus, the structure of the staphylococcal cassette chromosome (SCCmec) and the presence or absence of the gene encoding Panton-Valentine leucocidin (PVL). RESULTS: Clonality of the MRSA and MSSA was established by PFGE, a finding further supported by agr analysis. By PCR, the MRSA contained the typical genetic organization of SCCmec type-1. However, the MSSA, though mecA-negative, contained certain fragments of the SCC. Genes encoding PVL were not detected. CONCLUSIONS: This outbreak involved a community-acquired fucidin-resistant MRSA and its methicillin-susceptible homologue. The MSSA did not contain the mecA gene but did contain elements of the mobile type-I SCC. The MSSA were associated with a change in PFGE pattern with a deletion in fragment size of approximately 215-195 kb.

Bacteremia↗

Interleukin 9 production in the lungs of infants with severe respiratory syncytial virus bronchiolitis.

BACKGROUND: Respiratory syncytial virus (RSV) bronchiolitis is the most prevalent acute wheezing disorder in infants and is associated with recurrent wheeze and asthma in childhood. Interleukin 9, a type 2 cytokine has been proposed as a key cytokine in susceptibility to asthma. We aimed to investigate whether interleukin 9 was produced in the lungs of infants with severe RSV disease and if found, from which cells it originated. METHODS: We did 150 non-bronchoscopic bronchoalveolar lavages during the course of ventilation in 24 term infants and 21 preterm infants ventilated for RSV bronchiolitis. We also did 10 bronchoalveolar lavages on the day of intubation in 10 control infants ventilated for non-respiratory causes. We measured pulmonary interleukin 9 mRNA and protein in samples from all groups. We used immunostaining to identify the cells that produce interleukin 9. FINDINGS: Interleukin 9 mRNA expression, which persisted over the course of ventilation, was noted in all infants with bronchiolitis. Three of the control group also showed interleukin 9 mRNA expression. Median interleukin 9 protein concentration on day 1 (1.9 microg/L [range 0.1-36.2]) was significantly greater in term infants with bronchiolitis than either preterm infants (0.4 microg/L [0.1-2.9]; p<0.05) or the control group (0.7 microg/L [0.4-2.5]; p<0.05). There was a trend for interleukin 9 protein concentrations in term, but not preterm infants to decrease over time. Immunostained cell smears showed that most interleukin 9 expression in bronchoalveolar lavage was by neutrophils. INTERPRETATION: In term infants with RSV bronchiolitis, we noted large amounts of interleukin 9 mRNA and interleukin 9 protein. Neutrophils seem to be the main source of this type 2 cytokine. Interleukin 9 production by neutrophils may contribute to the pathogenesis of RSV disease. These findings may be relevant to other disease processes in the lung where neutrophils are the predominant inflammatory cell type.

Acute Disease↗