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Bacteremic typhoid fever in children in an urban slum, Bangladesh.


We confirmed a bacteremic bac·te·re·mi·a  
n.
The presence of bacteria in the blood.



bacte·re
 typhoid fever incidence of 3.9 episodes/1,000 person-years during fever surveillance in a Dhaka urban slum. The relative risk for preschool children compared with older persons was 8.9. Our regression model showed that these children were clinically ill, which suggests a role for preschool immunization immunization: see immunity; vaccination. .

**********

Typhoid fever is a major cause of illness; the global incidence in 2000 was an estimated 21,650,974 cases with 216,510 deaths (1). The cause of typhoid fever, Salmonella enterica subspecies subspecies, also called race, a genetically distinct geographical subunit of a species. See also classification.  enterica serotype Typhi (S. Typhi), is both waterborne and foodborne, with an annual incidence approaching 1% in disease-endemic areas (2-4). Peak incidence is reported to occur in children 5-15 years of age; however, in regions where the disease is highly endemic, children <5 years of age may have among the highest infection rates (1,4-6). Population-based data are limited (1) and would be helpful for refining estimates of the impact of disease and for identifying age groups at highest risk, thereby making it possible to optimize vaccination strategies (7,8).

Data on disease severity and sequelae sequelae Clinical medicine The consequences of a particular condition or therapeutic intervention  can contribute to estimating the impact of disease. Most complications--including intestinal perforation and peritonitis peritonitis (pĕr'ĭtənī`tĭs), acute or chronic inflammation of the peritoneum, the membrane that lines the abdominal cavity and surrounds the internal organs. , encephalopathy, intestinal hemorrhage, hepatosplenomegaly, vomiting, and diarrhea (4,9)--are late onset. Whether children <5 years of age (preschool children) have silent infection or clinical disease is controversial (4,5,10), which has important implications for both case management and prevention. We report our findings from prospective, population-based active surveillance.

The Study

Since 1998, the ICDDR ICDDR International Centre for Diarrhoeal Disease Research (Bangladesh) ,B Centre for Health and Population Research has operated a surveillance and intervention site in Kamalapur, an urban slum in Dhaka, Bangladesh. We initiated fever surveillance for dengue fever dengue fever (dĕng`gē, –gā), acute infectious disease caused by four closely related viruses and transmitted by the bite of the Aedes mosquito; it is also known as breakbone fever and bone-crusher disease.  and dengue dengue
 or breakbone fever or dandy fever

Infectious, disabling mosquito-borne fever. Other symptoms include extreme joint pain and stiffness, intense pain behind the eyes, a return of fever after brief pause, and a characteristic rash.
 hemorrhagic fever in August 2000. To identify treatable causes of fever, we obtained blood cultures from December 6, 2000, to October 8, 2001.

The community comprises 7 geographic strata, representing 379 clusters. We selected the surveillance cohort by using stratified stratified /strat·i·fied/ (strat´i-fid) formed or arranged in layers.

strat·i·fied
adj.
Arranged in the form of layers or strata.
 cluster randomization randomization (ranˈ·d·m  and obtained informed written consent from all households.

Field research assistants screened household members for fever in their homes once weekly with a standardized questionnaire. We defined fever as [greater than or equal to] 3 consecutive febrile febrile /feb·rile/ (feb´ril) pertaining to or characterized by fever.

feb·rile
adj.
Of, relating to, or characterized by fever; feverish.
 days (reported) for persons [greater than or equal to] 5 years of age, or any duration of fever for preschool children (<5 years of age). This definition facilitated detection of dengue fever. Field research assistants referred febrile participants to our field clinic, where study physicians confirmed fever and collected clinical data by using a standard form. Patients with an axillary ax·il·lar·y
n.
Relating to the axilla.


Axillary
Located in or near the armpit.

Mentioned in: Mastectomy


axillary

of or pertaining to the armpit.
 temperature of [greater than or equal to] 38[degrees]C were designated as febrile. After collecting blood for serologic tests of dengue and dengue hemorrhagic fever, we collected an additional 1 mL of blood from preschool children and [greater than or equal to] 3 mL from older persons for culture.

Blood cultures were transported within 2 hours to our clinical microbiology laboratory (12 km from the field clinic). Specimens were processed by using standard methods with in-tube lysis centrifugation Centrifugation

A mechanical method of separating immiscible liquids or solids from liquids by the application of centrifugal force. This force can be very great, and separations which proceed slowly by gravity can be speeded up enormously in centrifugal
 (Wampole isolator 1.5, Carter-Wallace, Inc., Cranbury, N J, USA), plated on blood, chocolate, and MacConkey agar and incubated at 37[degrees]C for 16 to 18 hours. Colonies were evaluated with biochemical tests and confirmed by serologic se·rol·o·gy  
n. pl. se·rol·o·gies
1. The science that deals with the properties and reactions of serums, especially blood serum.

2.
 identification with commercial antisera (Denka, Sieken, Co., Ltd., Tokyo, Japan). Antimicrobial susceptibility was determined by disk diffusion using standard NCCLS NCCLS National Committee for Clinical Laboratory Standards  methods (11).

We confirmed typhoid fever if we isolated S. Typhi from blood during a febrile episode. Febrile controls were culture-negative for S. Typhi, Paratyphi, or Salmonella group D during fever.

If S. Typhi was isolated, then we treated the infection with 14 days of standard therapy, adjusting for antimicrobial susceptibility. First-line drugs were amoxicillin amoxicillin /amox·i·cil·lin/ (ah-mok?si-sil´in) a semisynthetic derivative of ampicillin effective against a broad spectrum of gram-positive and gram-negative bacteria.

a·mox·i·cil·lin
n.
 (40 mg/kg up to 1,500 mg orally divided 3 times daily) or cotrimoxazole (10 mg/kg trimethoprim trimethoprim /tri·meth·o·prim/ (-meth´o-prim) an antibacterial closely related to pyrimethamine; almost always used in combination with a sulfonamide, primarily for the treatment of urinary tract infections.  divided into 2 daily doses). When patients remained febrile after 72 hours or new danger signs (e.g., lethargy, inability to drink, cyanosis cyanosis (sī'ənō`sĭs), bluish coloration of the skin, mucous membranes, and nailbeds, resulting from a lack of oxygenated hemoglobin in the blood. , convulsions Convulsions
Also termed seizures; a sudden violent contraction of a group of muscles.

Mentioned in: Heat Disorders
), developed, treatment was considered to have failed. We treated treatment failure in persons >12 years of age with ciprofloxacin ciprofloxacin /cip·ro·flox·a·cin/ (sip?ro-flok´sah-sin) a synthetic antibacterial effective against many gram-positive and gram-negative bacteria; used as the hydrochloride salt.

cip·ro·flox·a·cin
n.
 (500 mg orally twice a day) and referred younger patients to the hospital. We defined recovery as [greater than or equal to] 7 consecutive afebrile afebrile /afe·brile/ (a-feb´ril) without fever.

a·feb·rile
adj.
Apyretic.



afebrile

without fever.

afebrile adjective Feverless
 days after completing therapy.

Statistical analysis was performed by using Stata/SE Release 8.2 (Stata Statistical Software: Release 8.0. 2003, Stata Corporation, College Station, TX, USA). Incidence was determined by dividing the number of cases by person-years of observation, with calculation of exact 95% confidence intervals (CIs). Univariate analysis was performed by using 2-by-2 tables for relative odds (RO) and 95% CIs. We obtained p values by using the Fisher 2-tailed exact test. Multivariate modeling was conducted by stepwise forward logistic regression, using all covariates significantly associated with typhoid fever in univariate analysis. Covariates that were significant when age, sex, and geographic location were controlled for, were retained in the final model. We adjusted models for clustering of repeat patient visits and tested for goodness-of-fit with either Pearson or Hosmer-Lemeshow methods (12). Research Review and Ethical Review Committees of ICDDR,B approved this study.

During the study period, we took blood for culture from 888 (99.9%) of 889 eligible study participants; 54 (6.1%) reported prior medication exposure. All specimens had adequate volume. A microorganism microorganism /mi·cro·or·gan·ism/ (-or´gah-nizm) a microscopic organism; those of medical interest include bacteria, fungi, and protozoa.  was isolated from 65 (7.3%) cultures. Isolation rates were highest in winter. No positive culture reported >1 organism (Table 1), nor did any culture-positive patient have laboratory-confirmed dengue.

S. Typhi was isolated from 26 preschool children (Figure 1) and 23 older study participants (age range 10 months-50 years, median 4.0 years [95% CI 3.0-8.0]). There were 1,393 person-years of observation for preschool children and 11,014 for others. Overall, typhoid fever incidence was 3.9 episodes/1,000 person-years. Typhoid fever incidence among preschool children was 18.7 episodes/l,000 person-years and 2.1 episodes/1,000 person-years among older participants. The incidence rate difference between the 2 age groups was 16.6 cases/1,000 person-years (95% CI 9.4-23.8; p < 0.001). Preschool children's relative risk for typhoid fever was thus 8.9 (95% CI 4.9-16.4). Typhoid fever among preschool children varied by age, with 4% in the first year of life and 85% occurring in those 2 to 4 years of age (Figure 2).

[FIGURES 1-2 OMITTED]

We investigated surveillance bias resulting from fever definition differences between age groups (4). Preschool children's mean fever duration (days) prior to visiting the clinic was 4.0 (95% CI 3.2-4.8) and other patients' mean duration was 4.9 (95% CI 2.9-6.8, p = 0.37). We collected 84.6% of preschool specimens and 78.3% of others' after 3 febrile days, and 96.2% and 86.7%, respectively, by day 7.

A multivariate model showed that typhoid fever patients were more likely than febrile controls to be preschool age (RO 2.04; 95% CI 1.09-3.82; p = 0.03), have [greater than or equal to] 3 days of fever (RO 2.55; 95% CI 1.16-5.63; p = 0.02), have temperature [greater than or equal to] 39[degrees]C (RO 1.95; CI 1.01-3.80; p = 0.04), and have mental status changes (RO 3.94; CI 1.98-7.81; p < 0.02). Another model indicated preschool typhoid fever patients were significantly more likely than older patients to have fever [greater than or equal to] 39[degrees]C (RO 1.62; CI 1.21-2.17), mental status changes (RO 3.54; CI 2.25-5.55), and crepitations (rales) on auscultation auscultation

Procedure for detecting certain defects or conditions by listening for normal and abnormal heart, breath, bowel, fetal, and other sounds in the body. The invention of the stethoscope in 1819 improved and expanded this practice, still very useful despite the
 (RO 4.44; CI 3.11-6.33).

All patients with culture-confirmed typhoid fever recovered, except for 1 child with tuberculosis. Four adults required ciprofloxacin. No hospitalizations, complications, or deaths occurred among confirmed typhoid fever patients.

In vitro antimicrobial susceptibility testing (Table 2) showed a high prevalence of ampicillin ampicillin (ăm'pĭsĭl`ĭn), a penicillin-type antibiotic that is effective against both gram-negative microorganisms and gram-positive microorganisms such as Escherichia coli. , cotrimoxazole, and chloramphenicol chloramphenicol (klōr'ămfĕn`əkŏl'), antibiotic effective against a wide range of gram-negative and gram-positive bacteria (see Gram's stain). It was originally isolated from a species of Streptomyces bacteria.  resistance, with 27 isolates (55.1%) resistant to all 3; ceftriaxone ceftriaxone /cef·tri·ax·one/ (cef?tri-ak´son) a semisynthetic, ß–resistant, third-generation cephalosporin effective against a wide range of gram-positive and gram-negative bacteria, used as the sodium salt.  resistance was found in isolates from 1 preschool child. Routine nalidixic acid testing was not performed, following NCCLS 2000 guidelines.

Conclusions

Our data indicate a high infection ratio in this urban population, which is highest among preschool children. These ratios are comparable to recent regional reports (4,6,13) and indicate that typhoid fever in preschool children may be underappreciated. That preschool children have 8.9 times the risk for S. Typhi infection as older persons corroborates age-specific rates in highly disease-endemic areas (1). The antimicrobial susceptibility data indicate high ratios of in vitro resistance to standard antimicrobial agents, with a high prevalence of multidrug resistance.

The degree of illness of preschool children is controversial; some report benign bacteremia bacteremia: see septicemia.
bacteremia

Presence of bacteria in the blood. Short-term bacteremia follows dental or surgical procedures, especially if local infection or very high-risk surgery releases bacteria from isolated sites.
 (5,14) and others have found clinical illness (4,13). Our multivariate model shows that preschool children are clinically ill. Coexisting conditions, particularly pneumonia, are not only more common in preschool typhoid fever patients but also may result in misclassification and underreporting, as well as contribute to a worsening cycle of repeated infection and deaths. Future studies should explore these issues in this age group.

Substantial clinical illness among preschool children argues the need for them to be enrolled in vaccination programs. The age-specific infection rates suggest vaccination in the first year of life, integrating with existing Expanded Programme on Immunization (EPI EPI

exocrine pancreatic insufficiency.
) schedules. This practice would require either a polysaccharide polysaccharide: see carbohydrate.
polysaccharide

Any of a large class of long-chain sugars composed of monosaccharides. Because the chains may be unbranched or branched and the monosaccharides may be of one, two, or occasionally more kinds,
 protein-conjugate vaccine to stimulate T-cell--dependent responses (15) or a live attenuated Attenuated
Alive but weakened; an attenuated microorganism can no longer produce disease.

Mentioned in: Tuberculin Skin Test


attenuated

having undergone a process of attenuation.
 oral vaccine, since T-cell--independent responses do not mature until the child is 18-24 months of age.

The limitations of this study could result in an underestimate of the incidence of typhoid fever. First, this study was not designed to measure typhoid fever incidence or disease impact. The surveillance program was designed to identify dengue. Thus, febrile episodes for young children were defined differently than for older persons. Although we did not find evidence of preferential selection for young children, future studies may adopt a common fever definition. Second, the blood volume examined, though not inadequate, may not have been optimal. Third, blood culture sensitivity is relatively low, estimated at 25%-50% (1). Fourth, the 6.1% estimate of earlier medicine exposure may be an underestimate, as we did not validate these reports. If these agents were antimicrobial, the number of serovar Typhi isolates recovered from peripheral blood would be reduced. Fifth, we had only 10 months of observation and therefore did not attempt an estimate of disease impact, adjustments for blood culture sensitivity, or exposure to antimicrobial agents. Ours is thus a conservative estimate of incidence. Further observation should allow the impact of disease to be estimated.
Table 1. Distribution of 65 blood culture isolates

Organism                       No. (%)     Cumulative (%)

Salmonella Typhi               49 (75.4)        75.4
Staphylococcus epidermidis      2 (3.1)         78.5
Acinetobacter spp.              4 (6.2)         84.6
Salmonella group D              2 (3.1)         87.7
Viridans-group Streptococcus    2 (3.1)         90.8
Salmonella Paratyphi A          3 (4.6)         95.4
Streptococcus pneumoniae        2 (3.1)         98.5
Enterobacter spp.               1 (1.5)        100.0

Table 2. Antimicrobial resistance patterns of Salmonella
enterica serovar Typhi, Kamalapur, 2001

Antimicrobial agent     % resistance

Ampicillin                  55.1
Cotrimoxazole               57.1
Chloramphenicol             57.1
Ciprofloxacin                0.0
Ceftriaxone                  2.0


Acknowledgments

We gratefully acknowledge Eric Mintz and Pavani Kalluri for their suggestions and assistance with the manuscript preparation.

This study was funded by the International Centre for Tropical Disease Research (ICIDR ICIDR International Collaborations in Infectious Disease Research (Program) ) of the National Institutes of Health, by a cooperative agreement from the U.S. Agency for International Development (HRN-A-00-96-90005-00), and by core donors to the ICDDR,B Centre for Health and Population Research. The funding sources had no involvement in the study design, interpretation, or decision to submit this paper.

Author participation in this article was as follows: W.A. Brooks was the principal investigator and provided the conception, design, execution, and principal data analysis of this study, as well as preparing the manuscript. A. Hossain and K. Alam performed the blood cultures and determined sensitivities. D. Goswami and A. Naheed provided overall supervision of the project operation. A.T. Sharmeen and K. Nahar were responsible for the clinical staff. N. Ahmed supervised field operations. B. Nair, S. Luby, and R. Breiman were senior team members who contributed to the design, interim discussions of the project's progress, data analysis, and manuscript preparation.

Dr. Brooks is a specialist in pediatrics and preventive medicine. He is on faculty at the Bloomberg School of Public Health at Johns Hopkins University Johns Hopkins University, mainly at Baltimore, Md. Johns Hopkins in 1867 had a group of his associates incorporated as the trustees of a university and a hospital, endowing each with $3.5 million. Daniel C.  in Baltimore, Maryland, from where he was seconded to ICDDR,B. He established an urban field site in 1998, from which he conducts surveillance and intervention studies on a variety of infectious diseases, primarily but not exclusively in children, including acute respiratory disease, dengue, typhoid lever, and shigellosis Shigellosis Definition

Shigellosis is an infection of the intestinal tract by a group of bacteria called Shigella. The bacteria is named in honor of Shiga, a Japanese researcher, who discovered the organism in 1897.
.

References

(1) Crump JA, Mintz LS, editors. The Global burden of typhoid fever. Bull World Health Organ. 2004;82:346-53.

(2.) Keddy KH, Klugman K, Hansford CF, Blondeau C, Bouveret le Cam NN. Persistence of antibodies to the Salmonella typhi Vi capsular cap·su·lar  
adj.
Of, relating to, or resembling a capsule.

Adj. 1. capsular - resembling a capsule; "the capsular ligament is a sac surrounding the articular cavity of a freely movable joint and attached to the bones"
 polysaccharide vaccine in South African school children ten years after immunization. Vaccine. 1999;17:110-3.

(3.) Simanjuntak CH, Paleologo FP, Punjabi NH, Darmowigoto R, Soeprawoto, Totosudirjo H, et al. Oral immunisation against typhoid lever in Indonesia with Ty21a vaccine. Lancet. 1991;338:1055-9.

(4.) Sinha A, Sazawal S, Kumar R, Sood S, Reddaiah VP, Singh B, et al. Typhoid fever in children aged less than 5 years. Lancet. 1999;354:734-7.

(5.) Ferreccio C, Levine MM, Manterola A, Rodriguez G, Rivara I, Prenzel I, et al. Benign bacteremia caused by Salmonella typhi and paratyphi in children younger than 2 years. J Pediatr. 1984;104:899-901.

(6.) Lin FY, Vo AH, Phan VB, Nguyen TT, Dryla D, Tran CR, et al. The epidemiology of typhoid fever in the Dong Thap Province Đồng Tháp Province pronunciation  is a province in Vietnam. The eastern part of the province is largely dominated by Dong Thap Muoi marsh. , Mekong Delta region of Vietnam. Am J Trop Med Hyg. 2000;62:644-8.

(7.) Clemens J, Hoffman S, Ivanoff B, Klugman K, Levine MM, Neira M, et al. Typhoid lever vaccines. Vaccine. 1999;17:2476-8.

(8.) Levine MM, Noriega F. A review of the current status of enteric vaccines. P N G Med J. 1995;38:325-31.

(9.) Agarwal KS, Singh SK, Kumar N, Srivastav R, Rajkumar. A study of current trends in enteric fever. J Commun Dis. 1998;30:171-4

(10.) Butler T, Islam A, Kabir I, Jones PK. Patterns of morbidity and mortality Morbidity and Mortality can refer to:
  • Morbidity & Mortality, a term used in medicine
  • Morbidity and Mortality Weekly Report, a medical publication
See also
  • Morbidity, a medical term
  • Mortality, a medical term
 in typhoid fever dependent on age and gender: review of 552 hospitalized patients with diarrhea. Rev Infect Dis. 1991;13:85-90.

(11.) NCCLS. M2-A7-disk diffusion. Performance standards for antimicrobial disk susceptibility test, in CLS (Common Language Specification) The structure and syntax of .NET and CLI programming languages. See .NET.  document M2-A7. Wayne (PA): NCCLS; 2000.

(12.) Selvin S. Statistical analysis of epidemiological data. 2nd ed. Monographs in epidemiology and biostatistics. Vol. 25. New York: Oxford University Press, Inc.; 1996. p. 467.

(13.) Saha SK, Baqui AH, Hanif M, Darmstadt GL, Rahulamin M, Nagatake T, et al. Typhoid fever in Bangladesh: implications for vaccination policy. Pediatr Infect Dis J. 2001;20:521-4.

(14.) Morris JG Jr, Ferreccio C, Garcia J, Lobos H, Black RE, Rodriguez H, et al. Typhoid fever in Santiago, Chile: a study of household contacts of pediatric patients. Am J Trop Med Hyg. 1984;33:1198-202.

(15.) Lin FY, Ho VA, Khiem HB, Trach DD Bay PV, Thanh TC, et al. The efficacy of a Salmonella Typhi Vi conjugate vaccine in two-to-five-year-old children. N Engl J Med. 2001;344:1263-9.

Address for correspondence: W. Abdullah Brooks, ICDDR,B: Centre for Health and Population Research, GPO Box 128, Mohakhali, Dhaka 1000, Bangladesh; fax:503.210.0453; email: abrooks@icddrb.org

W. Abdullah Brooks, * Anowar Hossain, * Doli Goswami, * Amina Tahia Sharmeen, * Kamrun Nahar, * Khorshed Alam, * Noor Ahmed, * Aliya Naheed, * G. Balakrish Nair G. Balakrish Nair is an Indian microbiologist who is currently the Director, Laboratory Sciences Division, at the International Center for Diarrhoeal Diseases Research, Bangladesh (ICDDR,B), Dhaka, Bangladesh. , * Stephen Luby, * and Robert F. Breiman *

* ICDDR,B Centre for Health and Population Research, Dhaka, Bangladesh
COPYRIGHT 2005 U.S. National Center for Infectious Diseases
No portion of this article can be reproduced without the express written permission from the copyright holder.
Copyright 2005, Gale Group. All rights reserved. Gale Group is a Thomson Corporation Company.

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Title Annotation:Dispatches
Author:Breiman, Robert F.
Publication:Emerging Infectious Diseases
Geographic Code:9BANG
Date:Feb 1, 2005
Words:2617
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