Publications
Department of Medicine faculty members published more than 3,600 peer-reviewed articles in 2024.
2011
2011
2011
2011
The relationship between malnutrition and malaria in young children is under debate, and no studies evaluating the association between malnutrition and response to artemisinin-based combination therapies (ACTs) have been published. We evaluated the association between malnutrition and response to antimalarial therapy in Ugandan children treated with ACTs for repeated episodes of malaria. Children aged 4 to 12 months diagnosed with uncomplicated malaria were randomized to dihydroartemisinin-piperaquine (DP) or artemether-lumefantrine (AL) and followed for up to 2 years. All HIV-exposed and HIV-infected children received trimethoprim-sulfamethoxazole prophylaxis (TS). The primary exposure variables included height-for-age and weight-for-age z scores. Outcomes included parasite clearance at days 2 and 3 and risk of recurrent parasitemia after 42 days of follow-up. Two hundred ninety-two children were randomized to DP or AL, resulting in 2,013 malaria treatments. Fewer than 1% of patients had a positive blood smear by day 3 (DP, 0.2%; AL, 0.6% [P = 0.18]). There was no significant association between height-for-age or weight-for-age z scores and a positive blood smear 2 days following treatment. For children treated with DP but not on TS, decreasing height-for-age z scores of <-1 were associated with a higher risk of recurrent parasitemia than a height-for-age z score of >0 (hazard ratio [HR] for height-for-age z score of <-1 and ≥-2 = 2.89 [P = 0.039]; HR for height-for-age z score of <-2 = 3.18 [P = 0.022]). DP and AL are effective antimalarial therapies in chronically malnourished children in a high-transmission setting. However, children with mild to moderate chronic malnutrition not taking TS are at higher risk for recurrent parasitemia and may be considered a target for chemoprevention.
View on PubMed2011
2011
2011
Pseudomonas aeruginosa biofilms exhibit increased antimicrobial resistance compared with planktonic isolates and are implicated in the pathogenesis of both acute and chronic lung infections. Whilst antibiotic choices for both infections are based on planktonic antibiotic susceptibility results, differences in biofilm-forming ability between the two diseases have not previously been explored. The aim of this study was to compare differences in biofilm formation and antibiotic resistance of P. aeruginosa isolated from intubated patients and from patients with chronic pulmonary disease associated with cystic fibrosis (CF). The temporal evolution of antibiotic resistance in clonal P. aeruginosa strains isolated from CF patients during periods of chronic infection and acute pulmonary exacerbation was also evaluated. Biofilm formation and biofilm antibiotic susceptibilities were determined using a modified microtitre plate assay and were compared with antibiotic susceptibility results obtained using traditional planktonic culture. Clonality was confirmed using random amplified polymorphic DNA polymerase chain reaction (RAPD-PCR) analysis. Pseudomonas aeruginosa isolates collected from intubated patients produced substantially more biofilms compared with CF isolates. There was considerable heterogeneity in biofilm-forming ability amongst the CF isolates and this was unrelated to pulmonary status. Biofilm antibiotic resistance developed rapidly amongst clonal CF isolates over time, whilst traditional antibiotic resistance determined using planktonic cultures remained stable. There was a significant positive correlation between imipenem/cilastatin and ceftazidime resistance and biofilm-forming ability. The variability in biofilm-forming ability in P. aeruginosa and the rapid evolution of biofilm resistance may require consideration when choosing antibiotic therapy for newly intubated patients and CF patients.
View on PubMed2011
2011
INTRODUCTION
The controlled expression of many genes, including G-protein coupled receptors (GPCRs), is important for delineating gene functions in complex model systems. Binary systems for inducible regulation of transgene expression are widely used in mice. One system is the tTA/TRE expression system, composed of a tetracycline-dependent DNA binding factor and a separate tetracycline operon. However, the requirement for two separate transgenes (one for each tTA or TRE component) makes this system less amenable to models requiring directed cell targeting, increases the risk of multiple transgene integration sites, and requires extensive screening for appropriately-functioning clones.
METHODS
We developed a single, polycistronic tetracycline-inducible expression platform to control the expression of multiple cistrons in mammalian cells. This platform has three basic constructs: regulator, responder, and destination vectors. The modular platform is compatible with both the TetOff (tTA) and TetOn (rtTA) systems. The modular Gateway recombineering-compatible components facilitate rapidly generating vectors to genetically modify mammalian cells. We apply this system to use the elongation factor 1α (EF1α) promoter to drive doxycycline-regulated expression of both the fluorescent marker mCherry and an engineered Gs-coupled GPCR "Rs1" separated by a 2A ribosomal skip site.
RESULTS
We show that our combined expression construct drives expression of both the mCherry and Rs1 transgenes in a doxycycline-dependent manner. We successfully target the expression construct into the Rosa26 locus of mouse embryonic stem (ES) cells. Rs1 expression in mouse ES cells increases cAMP accumulation via both basal and ligand-induced Gs mechanisms and is associated with increased embryoid body size. Heterozygous mice carrying the Rs1 expression construct showed normal growth and weight, and developed small increases in bone formation that could be observed in the calvaria.
CONCLUSIONS
Our results demonstrate the feasibility of a single-vector strategy that combines both the tTA and TRE tetracycline-regulated components for use in cells and mouse models. Although the EF1α promoter is useful for driving expression in pluripotent cells, a single copy of the EF1α promoter did not drive high levels of mCherry and Rs1 expression in the differentiated tissues of adult mice. These findings indicate that promoter selection is an important factor when developing transgene expression models.
View on PubMed2011