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Fungal ATP-binding cassette (ABC) transporters in drug resistance & detoxification.

Pleiotropic drug resistance (PDR) is a well-described phenomenon occurring in fungi. PDR shares several similarities with processes in bacteria and higher eukaryotes. In mammalian cells, multidrug resistance (MDR) develops from an initial single drug resistance, eventually leading to a broad cross-resistance to many structurally and functionally unrelated compounds. Notably, a number of membrane-embedded energy-consuming ATP-binding cassette (ABC) transporters have been implicated in the development of PDR/MDR phenotypes. The yeast Saccharomyces cerevisiae genome harbors some 30 genes encoding ABC proteins, several of which mediate PDR. Therefore, yeast served as an important model organism to study the functions of evolutionary conserved ABC genes, including those mediating clinical antifungal resistance in fungal pathogens. Moreover, yeast cells lacking endogenous ABC pumps are hypersensitive to many antifungal drugs, making them suitable for functional studies and cloning of ABC transporters from fungal pathogens such as Candida albicans. This review discusses drug resistance phenomena mediated by ABC transporters in the model system S. cerevisiae and certain fungal pathogens.

ATP-Binding Cassette Transporters↗

Antibiotic efflux pumps.

Active efflux from procaryotic as well as eucaryotic cells strongly modulates the activity of a large number of antibiotics. Effective antibiotic transport has now been observed for many classes of drug efflux pumps. Thus, within the group of primary active transporters, predominant in eucaryotes, six families belonging to the ATP-binding cassette superfamily, and including the P-glycoprotein in the MDR (Multi Drug Resistance) group and the MRP (Multidrug Resistance Protein), have been recognized as being responsible for antibiotic efflux. Within the class of secondary active transporters (antiports, symports, and uniports), ten families of antibiotic efflux pumps have been described, distributed in five superfamilies [SMR (Small Multidrug Resistance), MET (Multidrug Endosomal Transporter), MAR (Multi Antimicrobial Resistance), RND (Resistance Nodulation Division), and MFS (Major Facilitator Superfamily)]. Nowadays antibiotic efflux pumps are believed to contribute significantly to acquired bacterial resistance because of the very broad variety of substrates they recognize, their expression in important pathogens, and their cooperation with other mechanisms of resistance. Their presence also explains high-level intrinsic resistances found in specific organisms. Stable mutations in regulatory genes can produce phenotypes of irreversible multidrug resistance. In eucaryotes, antibiotic efflux pumps modulate the accumulation of antimicrobials in phagocytic cells and play major roles in their transepithelial transport. The existence of antibiotic efflux pumps, and their impact on therapy, must now be taken fully into account for the selection of novel antimicrobials. The design of specific, potent inhibitors appears to be an important goal for the improved control of infectious diseases in the near future.

Anti-Bacterial Agents↗

Medicinal plants for the prevention and treatment of bacterial infections.

Infectious diseases are a significant cause of morbidity and mortality worldwide, accounting for approximately 50% of all deaths in tropical countries and as much as 20% of deaths in the Americas. Despite the significant progress made in microbiology and the control of microorganisms, sporadic incidents of epidemics due to drug resistant microorganisms and hitherto unknown disease-causing microbes pose an enormous threat to public health. These negative health trends call for a global initiative for the development of new strategies for the prevention and treatment of infectious disease. For over 100 years chemical compounds isolated from medicinal plants have served as the models for many clinically proven drugs, and are now being re-assessed as antimicrobial agents. The reasons for this renaissance include a reduction in the new antibacterial drugs in the pharmaceutical pipeline, an increase in antimicrobial resistance, and the need of treatments for new emerging pathogens. Literally thousands of plant species have been tested against hundreds of bacterial strains in vitro and many medicinal plants are active against a wide range of gram positive and gram negative bacteria. However, very few of these medicinal plant extracts have been tested in animal or human studies to determine safety and efficacy. This review focuses on the medicinal plants and bacteria for which there is significant published in vitro, in vivo and clinical data available. The examples provided in this review indicate that medicinal plants offer significant potential for the development of novel antibacterial therapies and adjunct treatments (i.e. MDR pump inhibitors).

Animals↗

Transimmortalized proximal tubule and collecting duct cell lines derived from the kidneys of transgenic mice.

This review summarizes the strategy of cellular immortalization based on the principle of targeted oncogenesis in transgenic mice, used to establish models of transimmortalized renal proximal tubule cells, referred to as PKSV-PCT and PKSV-PR-cells, and collecting duct principal cells, referred to as mpkCCD(cl4) cells. These cell lines have maintained for long-term passages the main biochemical and functional properties of the parental cells from which they were derived. Proximal tubule PKSV-PCT and PKSV-PR cells have been proved to be suitable cell systems for toxicological and pharmacological studies. They also permitted the establishment of a model of multidrug-resistant (MDR) renal epithelial tubule cells, PKSV-PR(col50), which have served for the study of both MDR-dependent extrusion of chemotherapeutic drugs and inappropriate accumulation of weak base anthracyclines in intracellular acidic organelles. The novel collecting duct cell line mpkCCD(cl4), which has maintained the characteristics of tight epithelial cells, in particular Na(+) absorption stimulated by aldosterone, has been extensively used for pharmacological studies related to the regulation of ion transport. These cells have permitted the identification of several aldosterone-induced proteins playing a key role in the regulation of Na(+) absorption mediated by the epithelial Na(+) channel ENaC. Recent studies have also provided evidence that these cell lines represent valuable cell systems for the study of host-pathogen interactions and the analysis of the role of renal tubule epithelial cells in the induction of inflammatory response caused by uropathogens that may lead to severe renal damage.

Absorption↗

Antimicrobial resistance in isolates of Salmonella spp. from pigs and the characterization of an S. Infantis gene cassette.

One hundred and seven Salmonella isolates of various serotypes were investigated for resistance to a panel of nine antimicrobial agents by standardized methods. Thirty four isolates were susceptible to the selected antimicrobial agents. Thirty-six (of 107) were resistant to three or more antimicrobial agents and defined as multidrug resistant (MDR). Salmonella Typhimurium was the most resistant serotype. All resistant isolates were examined for the presence of class 1 integrons. Thirty-two integron-associated gene cassettes (of varying sizes) were identified. A 1,000-bp amplicon similar to that flanking the distal region of the Salmonella Genomic Island (SGI)-1 in Salmonella Typhimurium was detected in a majority of the S. Typhimurium isolates in this study. In contrast, a 1,800-bp amplicon was identified in all Salmonella Infantis isolates. This amplicon was completely characterized in one isolate. The presence of class 1 integrons in Salmonella spp. in pigs may be important if these zoonotic pathogens were to enter the food chain.

Abattoirs↗

Immunomodulation by macrolide antibiotics.

Macrolide antibiotics are strongly concentrated within host cells, a property that sustains their activity against intracellular pathogens and is likely responsible for the modulation of cell metabolism and function. There is extensive literature on the subject of macrolide-induced modulation of immune responses. Erythromycin A derivatives seem to display anti-inflammatory activity in vitro, in some animal models and in various clinical settings such as diffuse panbronchiolitis (DPB). The underlying mechanisms are not yet fully understood: inflammatory cytokine and oxidant production by phagocytes is down-regulated by these drugs, but other possible targets include bacterial virulence factors, bronchial and epithelial cells, etc. Also, a link has been suggested between the macrolide transmembrane carrier system and the P-glycoprotein family, which comprises MDR (multiple drug resistance) and CFTR (cystic fibrosis transmembrane conductance regulator), which are respectively involved in the chemotherapeutic resistance of cancer cells and in the genesis of cystic fibrosis.

Animals↗

The activity of levofloxacin and other antimicrobials against clinical isolates of Streptococcus pneumoniae collected worldwide during 1999-2002.

Streptococcus pneumoniae is the most important causative bacterial pathogen in respiratory infections. Globally, increasing levels of resistant strains highlight the need for continued surveillance programs to guide antibiotic choice. The current study compared susceptibility results of 4,788 strains of S. pneumoniae collected during 2001-2002 to susceptibility results from 3,884 strains collected from the same hospitals during 1999-2000. Participant centers were dispersed throughout five regions. By region, the prevalence of penicillin-resistant S. pneumoniae and percentage change from the previous 1999-2000 study was Mexico (26.0%, 12.5%), Brazil (7.9%; 5.5%), Asia (China, Hong Kong, South Korea, Thailand) (44.1%; 0.8%), Europe (France, Germany, Italy, Spain, UK) (11.1%; -0.6%) and South Africa (7.9; -1.8%). Multidrug-resistant (MDR) strains of S. pneumoniae were most frequently isolated from Asia (36.3%) compared with approximately 5% in the other four regions. Increases in the incidence of MDR isolates in Mexico (13.5%), Brazil (1.7%) and Asia (6.1%) were reported with no increases in MDR in South Africa and Europe. Levofloxacin resistance was rarely associated with MDR phenotypes. Levofloxacin maintained an MIC(90) of 1 microg/ml against the isolates collected from all five regions with no change during the study periods, despite differences in levofloxacin resistance rates between regions or nations (0%-3.2%). The prevalence of levofloxacin resistance (MIC > or =8 microg/ml) increased only slightly over the study period in Europe (0.3%-0.7%) and in Asia (3.0-3.2%), but little or no change was seen in Mexico (3.8%-0%) or Brazil or South Africa, where no levofloxacin resistant isolates were detected in either study period.

Anti-Bacterial Agents↗

Four-year surveillance of major Gram-negative pathogens in a Saudi tertiary hospital: clinical distribution, comorbidity profiles, and antimicrobial resistance.

PURPOSE: To describe four-year diagnostic-distribution, burden, and antimicrobial-resistances of major Enterobacterales and Pseudomonas aeruginosa in a tertiary-care surveillance framework. PATIENTS AND METHODS: We retrospectively studied first non-duplicate-isolate per/patient/organism between 2022-2025 at a Saudi tertiary-care. Diagnostics used automated-platforms with GeneXpert-Carba-R employed parallel to cultures. Susceptibility interpretations used CLSI-breakpoints relevant to test-year. Annual-trends were assessed with grouped-binomial logistic-regression, and Benjamini-Hochberg false-discovery-rate correction was applied within prespecified analysis. RESULTS: Among 1,857 isolates, Klebsiella pneumoniae was most frequent (36.2%), followed by P.&#xa0;aeruginosa (33.4%), Escherichia coli (17.9%), and Enterobacter cloacae (12.3%). Mean patient age was 64.8&#x2009;years, 51.3% isolates were from intensive-care, 37.4% from urine, and 80.8% records had comorbidity. K.&#xa0;pneumoniae showed overall ESBL (76.6%), CRE (59.9%), MDR (69.3%), panel-defined XDR (64.7%), and panel-defined PDR (15.2%) frequencies. Enterobacterales ESBL-positivity increased (58.1% to 76.8%;q&#x2009;<0.001), whereas meropenem non-susceptibility decreased (52.6% to 33.2%;q&#x2009;<0.001). In P.&#xa0;aeruginosa, ceftazidime non-susceptibility increased (55.2% to 78.6%;q&#x2009;<0.001), meropenem decreased (46.8% to 32.9%;q&#x2009;=&#x2009;0.031), and tobramycin increased (22.2% to 45.7%;q&#x2009;=&#x2009;0.030). Crude-comorbidity differences remained insignificant after false-discovery-rate correction. CONCLUSION: We show a persistent species-specific Gram-negative resistance burden, led by K.&#xa0;pneumoniae and accompanied by substantial P.&#xa0;aeruginosa non-susceptibility. This supports organism-specific detections, antibiograms and continued multicenter-surveillance linked to antimicrobial exposure, genomic-data, and patient outcomes.

ESBL↗

Molecular genetic analysis of a locus required for resistance to antimicrobial peptides in Salmonella typhimurium.

The innate immunity of vertebrates and invertebrates to microbial infection is mediated in part by small cationic peptides with antimicrobial activity. Successful pathogens have evolved mechanisms to withstand the antibiotic activity of these molecules. We have isolated a set of genes from Salmonella typhimurium which are required for virulence and resistance to the antimicrobial peptides melittin and protamine. Sequence analysis of a 5.7 kb segment from the wild-type plasmid conferring resistance to protamine contained five open reading frames: sapA, sapB, sapC, sapD and sapF, organized in an operon structure and transcribed as a 5.3 kb mRNA. SapD and SapF exhibited similarity with the 'ATP binding cassette' family of transporters including the bacterial Opp and SpoOK, involved in the uptake of oligopeptides; the yeast STE6, necessary for the export of a peptide pheromone; and the mammalian mdr, which mediates resistance to chemotherapeutic agents in cancer cells. SapA showed identity with other periplasmic solute binding proteins involved in peptide transport. The SapABCDF system constitutes a novel transporter for enteric bacteria and the first one harboring a periplasmic component with a role in virulence.

ATP-Binding Cassette Transporters↗

Natural occurrence of a slow lytic pseudomonas phage in a Pediatric case of multidrug-resistant P. aeruginosa severe pneumonia.

Pseudomonas aeruginosa (P. aeruginosa) is widely distributed in the environment. As an opportunistic pathogen, it commonly causes infections in immunocompromised individuals, including respiratory tract infections and burn wound infections. P. aeruginosa possesses multiple antibiotic resistance mechanisms, including efflux pumps, resistance genes, and population dynamics. Phage therapy is a potential approach for addressing drug-resistant P. aeruginosa infections; however, clinical experience and standardized guidelines for its application in severe pneumonia remain limited. A 14-month-old infant was hospitalized for pneumonia. Four days later, he developed acute pneumonia and was sent to the ICU for 38&#xa0;days of antibiotic therapy; nonetheless, P. aeruginosa remained detectable in the patient's respiratory secretions. During the clinical course, phage zjk6 was detected from a longitudinal P. aeruginosa isolate in the absence of phage therapy. This finding documents the coexistence of a naturally detected phage and MDR P. aeruginosa during prolonged pneumonia, but does not establish that the phage mediated bacterial clearance or clinical recovery. We performed whole-genome sequencing on P. aeruginosa isolates from patients to ascertain if they were infected by the same infection and assessed their antibiotic resistance using drug sensitivity testing. We isolated phages using the drip technique and double-layer plate method, examined their appearance by transmission electron microscopy, and assessed their biological properties through one-step growth curve analysis and lysis spectrum detection. Genome sequencing and comparative genomic analyses were performed to characterize phage zjk6 and representative bacterial isolates and to evaluate phage-host genomic relatedness. P. aeruginosa was isolated repeatedly during 49&#xa0;days of treatment. Comparative genomic analysis of representative longitudinal isolates revealed multiple strain backgrounds, including distinct ST508 and ST266 lineages and a closely related ST836 lineage. Phage zjk6 was isolated from the fifth clinical isolate, which served as the propagation/reference host. This phage possesses an elongated tail and a limited lysis spectrum, which is capable of gradually lysing the fifth isolated P. aeruginosa strain. Genomic analysis showed that zjk6 formed plaques and displayed slow lytic behavior under the tested conditions, while also carrying lysogeny-associated regulatory modules, indicating temperate potential rather than a strictly lytic lifestyle. A naturally detected slow lytic Pseudomonas phage may coexist with MDR P. aeruginosa during prolonged infection. These findings support further study of phage-bacterium interactions in clinical infections, while the therapeutic significance of zjk6 requires additional validation.

Antibiotic resistance↗

Incidence of bloodstream infections in a speciality hospital in Kuwait: 8-year experience.

OBJECTIVES: To determine the frequency of isolation and antibiotic-susceptibility patterns of clinically significant bacterial pathogens isolated from blood. MATERIALS AND METHODS: The study was conducted over a period of 8 years (1995-2002) at Infectious Diseases Hospital (IDH), Kuwait. Demographic and clinical data were obtained from medical records. 18,535 blood cultures were analyzed. Disk diffusion method was used to perform antibiotic-susceptibility testing. Minimum inhibitory concentrations of 9 antimicrobials were determined using E-test. Double disk (potentiation) test and E-test ESBL strips were used to detect the production of extended-spectrum beta-lactamases (ESBLs). RESULTS: Salmonella spp. and Brucella spp. were predominant blood isolates, and represented 60.6 and 30.0% of all clinically significant episodes of bloodstream infections, respectively. Among the Salmonella, Salmonella enterica serotypes typhi and paratyphi A were most frequently isolated. The percentage of multidrug resistance (MDR) among them varied from 22 to 51%. A high percentage (40%) of MDR S. enterica serotypes typhi and paratyphi A also showed reduced susceptibility to ceftriaxone and ciprofloxacin. CONCLUSION: During the study period, Salmonella spp. and Brucella spp. were predominant blood isolates. MDR S. enterica serotypes typhi and paratyphi A, with reduced susceptibility to ceftriaxone and ciprofloxacin, are among the most frequent causes of bloodstream infections in IDH, suggesting the need to monitor their susceptibility.

Adolescent↗

Emergence of novel methicillin resistant Staphylococcus pseudintermedius lineages revealed by whole genome sequencing of isolates from companion animals and humans in Scotland.

Staphylococcus pseudintermedius is an opportunistic pathogen in dogs, and infection in humans is increasingly found, often linked to contact with dogs. We conducted a retrospective genotyping and antimicrobial susceptibility testing study of 406 S. pseudintermedius isolates cultured from animals (dogs, cats and an otter) and humans across Scotland, from 2007 to 2020. Seventy-five sequence types (STs) were identified, among the 130 isolates genotyped, with 59 seen only once. We observed the emergence of two methicillin resistant Staphylococcus pseudintermedius (MRSP) clones in Scotland: ST726, a novel locally-evolving clone, and ST551, first reported in 2015 in Poland, possibly linked to animal importation to Scotland from Central Europe. While ST71 was the most frequent S. pseudintermedius strain detected, other lineages that have been replacing ST71 in other countries, in addition to ST551, were detected. Multidrug resistance (MDR) was detected in 96.4% of MRSP and 8.4% of MSSP. A single MRSP isolate was resistant to mupirocin. Continuous surveillance for the emergence and dissemination of novel MDR MRSP in animals and humans and changes in antimicrobial susceptibility in S. pseudintermedius is warranted to minimise the threat to animal and human health.

Animals↗

Inhibition of antibiotic efflux in bacteria by the novel multidrug resistance inhibitors biricodar (VX-710) and timcodar (VX-853).

Inhibitors of mammalian multidrug efflux, such as the plant alkaloid reserpine, are also active in potentiating antibiotic activity by inhibiting bacterial efflux. Based on this precedent, two novel mammalian multiple drug resistance inhibitors, biricodar (VX-710) and timcodar (VX-853), were evaluated for activity in a variety of bacteria. Both VX-710 and VX-853 potentiated the activity of ethidium bromide (EtBr), a model efflux substrate, against three clinically significant gram-positive pathogens: Staphylococcus aureus, Enterococcus faecalis, and Streptococcus pneumoniae. Similar to reserpine, VX-710 and VX-853 directly blocked EtBr efflux in S. aureus. Furthermore, these compounds were effective in lowering the MICs of several clinically used antibiotics, including fluoroquinolones, suggesting that VX-710 and VX-853 are representatives of a new class of bacterial efflux inhibitors with the potential for use in combination therapy.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Will tuberculosis become resistant to all antibiotics?

The discovery of high prevalences of antibiotic resistance in some pathogens, in some parts of the world, has provoked fears of a widespread loss of drug efficacy. Here, we use a mathematical model to investigate the evolution of resistance to four major anti-tuberculosis drugs (isoniazid, rifampicin, ethambutol and streptomycin) in 47 sites around the world. The model provides a new method of estimating the relative risk of treatment failure for patients carrying drug-resistant strains and the proportion of patients who develop resistance after failing treatment. Using estimates of these two quantities together with other published data, we reconstructed the epidemic spread of isoniazid resistance over the past 50 years. The predicted median prevalence of resistance among new cases today was 7.0% (range 0.9-64.3%), close to the 6.3% (range 0-28.1%) observed. Predicted and observed prevalences of resistance to isoniazid plus rifampicin (multidrug-resistant or MDR-TB) after 30 years of combined drug use were also similar, 0.9% (0.1-5.9%) and 1.0% (range 0-14.1%), respectively. With current data, and under prevailing treatment practices, it appears that MDR-TB will remain a localized problem, rather than becoming a global obstacle to tuberculosis control. To substantiate this result, further measurements are needed of the relative fitness of drug-resistant strains.

Antitubercular Agents↗

Skin and soft tissue infections in Latin American medical centers: four-year assessment of the pathogen frequency and antimicrobial susceptibility patterns.

We report the results of pathogen frequency and antimicrobial susceptibility of isolates collected from skin and soft tissue infections (SSTIs) in Latin American medical centers during the first 4 years (1997-2000) of the SENTRY Antimicrobial Surveillance Program. Ten laboratories participated each year distributed among nine cities in six countries. A total of 1,789 bacterial isolates were susceptibility tested by reference broth microdilution at the coordinating central laboratory. Results from isolates collected during the year 2000 were compared with those from isolates collected during the prior three years. Selected carbapenem-resistant Pseudomonas aeruginosa were genotyped by automated ribotyping to evaluate the occurrence of clonal, epidemic dissemination. The five most frequently isolated species were (n/%): Staphylococcus aureus (584/32.8%), Escherichia coli (233/13.1%), P. aeruginosa (211/11.9%), Enterococcus spp. (137/7.7%), and Klebsiella spp. (127/5.8%). The most problematic antimicrobial resistances were related to the high prevalence of multi-drug resistant (MDR) Gram-negative bacilli. Carbapenem resistance among non-fermentative Gram-negative bacilli was much higher than that reported in other regions evaluated in the SENTRY Program. Only 74.9% of P. aeruginosa and 84.9% of Acinetobacter spp. were considered susceptible to imipenem. The antimicrobial susceptibility rates of P. aeruginosa decreased during the study period for most antimicrobial agents evaluated. More than 40% of K. pneumoniae and nearly 10% of E. coli showed an extended spectrum beta-lactamase phenotype. Only 73.4% of E. coli and 76.0% of Enterobacter spp. were susceptible to ciprofloxacin. The molecular typing of carbapenem-resistant P. aeruginosa demonstrated clonal dissemination in two institutions. These reported results indicate that rates of resistance among isolates causing SSTI continue to raise in Latin America, with specific concerns for the high prevalence of MDR Gram-negative bacilli. National and international surveillance programs as a guide to focusing intervention strategies should assist in the control of escalating antimicrobial resistance in this geographic area.

Anti-Bacterial Agents↗

[Acinetobacter baumannii pandrug-resistant: update in epidemiological and antimicrobial managing issues].

In the last two decades Acinetobacter baumannii has emerged as a major relevant world nosocomial pathogen. A. baumannii can be a causal agent of diseases like pneumonia, bacteremia, meningitis, soft tissue and urinary tract infections, associating to high mortality. Several national and foreign communications reveal the isolation of A. baumannii resistant to almost all commercially available antimicrobial agents, drastically limiting the therapeutic options. To optimize the therapy of these infections, the need of development of new antibacterial agents is raised as is the revival of certain forgotten compounds, as the polymyxins. In order to check and evaluate the information on the management of multi-resistant A. baumannii infections, we performed a systematical review of the medical scientific literature, that included Medline and LILACS, identifying and categorizing the clinical relevancy of the sources gathered to the date of this investigation. Clinically relevant epidemiological aspects, microbiological information and clinical studies in patients with pandrug (AB-PDR) or multidrug resistant (AB-MDR) A. baumannii infections were reviewed. The response adapted to the management of AB-PDR infection is complex, its eradication needs adherence to suitable practices of infection control and the prudent and effective use of antimicrobial therapy. Potential options of therapy could be colistin, betalactam associations with sulbactam and tetracyclines, but there are no random and controlled studies in the matter.

Acinetobacter Infections↗

The significance of Mycobacterium avium complex cultivation in the sputum of patients with pulmonary tuberculosis.

Mycobacterium avium-intracellulare complex (MAC) is a ubiquitous environmental microorganism whose pathogenicity ranges from innocuous colonization to disease, in immunocompetent as well as immunocompromised individuals. We sought to determine the clinical significance of MAC in sputum cultures of patients with pulmonary tuberculosis (TB). A retrospective analysis between January 1994 and March 1995 at Bellevue Hospital Center revealed both Mycobacterium tuberculosis and MAC in 35 patients (11% of all patients with TB). Of 27 patients reviewed, 52% were HIV-1 infected (median CD4 + 25 cells per microliter). Radiographic manifestations in patients with TB and MAC were similar to those seen in patients with TB alone. Both mycobacteria were cultured primarily from respiratory sources. M tuberculosis was usually cultured first or concurrent with MAC, and in nearly all cases, both species were recovered within 2 months of each other. Most patients improved clinically, bacteriologically, and radiographically with standard antituberculous therapy, except those with advanced AIDS, multidrug-resistant TB (MDR-TB), or disseminated MAC. We conclude that recovery of MAC in sputum is common in patients with pulmonary TB, regardless of HIV-1 infection, MDR-TB, or other clinical, bacteriologic, or radiographic attributes. MAC cultivation in most of these patients likely represents transient colonization, and in most cases is not clinically significant.

Adult↗

Non-typhi salmonella in children with severe malaria.

OBJECTIVE: To determine the association between Plasmodium falciparum malaria and non-typhi Salmonella in children. DESIGN: Cross-sectional hospital based study. SETTING: Kilifi District Hospital (KDH) between January 1997 and June 2001. SUBJECTS: Children aged between three months to 123 months (mean age 28.28 months) and who had been admitted to the paediatric or High Dependency Research Ward (HDRW) of the KDH. METHODS: A total of 19, 118 blood cultures routinely obtained for all admissions and 1,820 clinically indicated stools samples were obtained from 9,147 children admitted with malaria. The specimens were cultured and antibiotic sensitivity done using standard laboratory procedures with stringent internal and external quality control in place. RESULTS: The total bacterial pathogens isolated from blood and stool were 1,395/19,118 (7.3%) and 342/1,820 (19%) respectively. Non-typhi salmonella consisted of 260/1,395 (18.6%) of the positive blood cultures and 92/324 (28.4%) of the stool cultures out of which a total of 101 NTS occurred in children with severe malaria. Out of the 9,147 malaria cases admitted, 101/9,147 (1.10%) had concomitant NTS infection. NTS with severe malaria as a proportion of all malaria admissions for the period varied between 0.8% and 1.5%. There was a significant association (p-value=0.032) between clinical outcome of death and female sex of the patient. The NTS isolates which occurred with severe malaria showed various levels of antibiotic resistance. They were resistant to ampicillin (35%), chloramphenicol (18%), gentamicin (22%), cefuroxime (29%), sulphamethoxazole-trimethoprim (39%), ciprofloxacin (3%), cefotaxime (14%), amoxycillin-clavulanic acid (26%) and tobramycin (18.0%). Multidrug resistance (MDR) was seen in 34 (33.6%) of the isolates. CONCLUSIONS: NTS and severe malaria occurring together are a problem in this area and that a large number of the isolates are MDR. An elaborate case-controlled study is required to elucidate the chain of events of both NTS and malaria parasite co-existence.

Age Distribution↗