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Biomedical subjects

Thomas R Talbot

Publications and source records attributed to Thomas R Talbot.

At least 19 recordsLinked to original sources

Providers' beliefs, attitudes, and behaviors before implementing a computerized pneumococcal vaccination reminder.

BACKGROUND: The emergency department (ED) has been recommended as a suitable setting for offering pneumococcal vaccination; however, implementations of ED vaccination programs remain scarce. OBJECTIVES: To understand beliefs, attitudes, and behaviors of ED providers before implementing a computerized reminder system. METHODS: An anonymous, five-point Likert-scale, 46-item survey was administered to emergency physicians and nurses at an academic medical center. The survey included aspects of ordering patterns, implementation strategies, barriers, and factors considered important for an ED-based vaccination initiative as well as aspects of implementing a computerized vaccine-reminder system. RESULTS: Among 160 eligible ED providers, the survey was returned by 64 of 67 physicians (96%), and all 93 nurses (100%). The vaccine was considered to be cost effective by 71% of physicians, but only 2% recommended it to their patients. Although 98% of physicians accessed the computerized problem list before examining the patient, only 28% reviewed the patient's health-maintenance section. Physicians and nurses preferred a computerized vaccination-reminder system in 93% and 82%, respectively. Physicians' preferred implementation approach included a nurse standing order, combined with physician notification; nurses, however, favored a physician order. Factors for improving vaccination rates included improved computerized documentation, whereas increasing the number of ED staff was less important. Relevant implementation barriers for physicians were not remembering to offer vaccination, time constraints, and insufficient time to counsel patients. The ED was believed to be an appropriate setting in which to offer vaccination. CONCLUSIONS: Emergency department staff had favorable attitudes toward an ED-based pneumococcal vaccination program; however, considerable barriers inherent to the ED setting may challenge such a program. Applying information technology may overcome some barriers and facilitate an ED-based vaccination initiative.

Academic Medical Centers↗

Optimal bandaging of smallpox vaccination sites to decrease the potential for secondary vaccinia transmission without impairing lesion healing.

OBJECTIVE: To assess the optimal method for covering smallpox vaccination sites to prevent transmission of vaccinia. DESIGN: Randomized, nonblinded clinical trial. SETTING: Tertiary care medical center. PARTICIPANTS: Vaccinia-naive and vaccinia-experienced volunteers. INTERVENTIONS: After vaccination, study participants were randomized to receive 1 of 3 types of bandage: gauze, occlusive with gauze lining, or foam. Vaccination sites were assessed every 3 to 5 days until the lesion healed. During each visit, specimens were obtained from the vaccination site, the bandage surface before removal, and the index finger contralateral to the vaccination site and were cultured for vaccinia. Time to lesion healing was assessed. RESULTS: All 48 vaccinia-naive and 47 (87%) of 54 vaccinia-experienced participants developed a vesicle or pustule at the injection site 6-11 days after vaccination. Fourteen (14%) of 102 participants had bandage cultures positive for vaccinia. All but 1 of these vaccinia-positive cultures were of a bandage from participants randomized to the gauze bandage group, and all but 3 were of bandages from vaccinia-naive participants. No finger-specimen cultures were positive for vaccinia. One episode of neck autoinoculation occurred in a vaccinia-naive individual who had vaccinia recovered from his gauze bandage on multiple visits. The foam bandage was associated with more local adverse effects (skin irritation and induration). The time to healing did not differ among the bandage groups. CONCLUSIONS: The potential for transmission of vaccinia from a vaccination site is greater if the site is covered by gauze than if it is covered by occlusive or foam bandages. Use of an occlusive bandage with a gauze lining is the best choice for coverage of smallpox vaccination sites because of a reduced potential for vaccinia transmission and a lower reactogenicity rate. Bandage choice did not affect vaccination lesion healing.

Adult↗

Cellular immune responses to diluted and undiluted aventis pasteur smallpox vaccine.

BACKGROUND: Recent primary vaccine trials of diluted Aventis Pasteur smallpox vaccine (APSV) demonstrated that immunization "take" rates, defined by the presence of a vesicle or pustule ("take") at the inoculation site 6-11 days after immunization, did not differ between the dilution groups. To our knowledge, there have been no studies that examine the cellular immune response or that distinguish CD4(+) T cell responses from CD8(+) T cell responses after primary immunization with varying dilutions of APSV. METHODS: In the present study, we examined the cellular immune response in vaccinia-naive healthy adults (n=91) receiving inoculations with an undiluted or diluted (1:5 and 1:10) suspension of the APSV, using an intracellular cytokine staining assay. RESULTS: The diluted vaccine induced vaccinia virus (VV)-specific CD4(+) and CD8(+) T cell responses 1 month after primary immunization that were comparable to those induced by undiluted vaccine. The cellular immune responses were correlated with the reactogenicity profile of subjects and did not differ between dilution groups. Furthermore, expression of the interleukin-7 receptor alpha chain, which has been proposed to distinguish antigen-specific T cells that differentiate into long-lived memory T cells, did not differ among groups, suggesting that dilution of the vaccine does not affect the quantity of VV-specific memory T cells. CONCLUSIONS: APSV is an effective smallpox vaccine inducing strong humoral and cellular immune responses after a primary immunization even at diluted doses.

CD4-Positive T-Lymphocytes↗

Invasive pneumococcal disease among infants before and after introduction of pneumococcal conjugate vaccine.

CONTEXT: Streptococcus pneumoniae is a serious infection in young infants. A heptavalent pneumococcal conjugate vaccine (PCV7) was licensed in 2000 and recommended for all children aged 2 to 23 months. OBJECTIVE: To determine the rates of invasive pneumococcal disease (IPD) in young infants before and after PCV7 was incorporated into the childhood immunization schedule in June 2000. DESIGN, SETTING, AND PARTICIPANTS: A prospective, population-based study of infants aged 0 to 90 days who resided in areas in 8 US states with active laboratory surveillance for invasive S pneumoniae infections from July 1, 1997, to June 30, 2004. MAIN OUTCOME MEASURES: Rates of laboratory-confirmed IPD before (July 1, 1997-June 30, 2000) and after (July 1, 2001-June 30, 2004) PCV7 introduction, excluding a transition year (July 1, 2000-June 30, 2001). RESULTS: There were 146 cases of IPD, 89 before and 57 after PCV7 introduction. Isolated bacteremia occurred in 94 cases (64%), pneumonia in 27 (18%), meningitis in 22 (15%), and septic arthritis and/or osteomyelitis in 3 (2%). Mean rates of IPD for infants aged 0 to 90 days decreased 40% from 11.8 (95% confidence interval [CI], 9.6-14.5) to 7.2 (95% CI, 5.6-9.4; P = .004) per 100 000 live births following PCV7 introduction. Among black infants, mean rates of IPD decreased significantly from 17.1 (95% CI, 11.9-24.6) to 5.3 (95% CI, 2.8-10.1; P = .001) per 100,000 live births, with a nonsignificant decrease from 9.6 (95% CI, 7.3-12.7) to 6.8 (95% CI, 4.9-9.4) per 100,000 live births for white infants. Rates of PCV7-serotype isolates decreased significantly from 7.3 (95% CI, 5.3-10.1) to 2.4 (95% CI, 1.6-3.8; P<.001) per 100,000 live births, while rates of non-PCV7 serotypes remained stable (P = .55). CONCLUSIONS: Since PCV7 introduction, rates of IPD in young infants have decreased significantly, providing evidence that vaccinating children aged 2 to 23 months has led to changes in pneumococcal carriage in infants too young to receive PCV7. With a significant decrease in rates of IPD among black infants, the previous racial difference has been eliminated.

Drug Resistance, Bacterial↗

Influence of broad-spectrum antibiotic prophylaxis on intracranial pressure monitor infections and subsequent infectious complications in head-injured patients.

BACKGROUND: The benefit of antibiotic prophylaxis for intracranial pressure (ICP) monitors remains controversial, and clinical practice varies widely. Whether any antibiotic coverage, particularly broad-spectrum coverage, reduces monitor-related infections remains unproved, and exposure to antibiotics may affect the susceptibility patterns of pathogens producing subsequent infectious complications. Despite the lack of data supporting its use, our level I trauma center had a long-standing ICP monitor prophylaxis protocol that provided broad-spectrum coverage that included ceftriaxone. In April 2002, a protocol change was instituted that substituted cefazolin for ceftriaxone as single-agent prophylaxis for ICP monitors. HYPOTHESIS: Broader-spectrum antibiotic prophylaxis does not reduce ICP monitor-related infections but is associated with acquisition of more drug-resistant infections than narrow-spectrum prophylaxis. METHODS: To evaluate the influence of broad- versus narrow-spectrum prophylaxis, a three year period encompassing each practice was selected. All injured patients with ICP monitors placed between January 1, 2001, and December 31, 2003 (n = 279), were identified using the Vanderbilt trauma database. Antibiotic prophylaxis for ICP monitors was determined using the hospital financial database to identify all antibiotics given to individual patients and subsequent chart review to identify those antibiotics given solely for ICP prophylaxis. A total of 119 patients received narrow-spectrum (either cefazolin or vancomycin; n = 100) or no (n = 19) prophylaxis, whereas 160 received broad-spectrum prophylaxis (ceftriaxone or ciprofloxacin). The two groups did not differ with respect to baseline demographics, type of ICP monitor, or duration of monitor placement. Infectious complications were determined by continuous infection surveillance utilizing standard U.S. Centers for Disease Control and Prevention National Nosocomial Infection Surveillance System (CDC-NNIS) definitions and maintained in a contemporary database. The influence of broad-spectrum antibiotic prophylaxis on both ICP monitor infections and subsequent infections outside the central nervous system (CNS) was determined. RESULTS: Nine patients (3.2%) developed CNS infections; two of 119 patients (1.7%) who received narrow-spectrum or no prophylaxis versus seven of 160 patients (4.4%) who received broad-spectrum prophylaxis (p = NS). Only the duration of monitor placement and Injury Severity Score were associated with the infection rate. In the total population, 185 infections occurred in 93 patients (33%). Infection rates did not differ between patients who received narrow-spectrum or no prophylaxis (32%) and those who received broad-spectrum prophylaxis (34%). However, patients who received broad-spectrum prophylaxis acquired gram-negative infections with significantly greater antibiotic resistance. CONCLUSIONS: Broad-spectrum antibiotic prophylaxis of ICP monitors does not reduce CNS infections, but is associated with a shift to resistant gram-negative pathogens in subsequent infectious complications. Thus, broad-spectrum antibiotic prophylaxis of ICP monitors should be eliminated or minimized unless data from randomized trials prove its utility.

Adult↗

Asthma as a risk factor for invasive pneumococcal disease.

BACKGROUND: The risk of invasive pneumococcal disease among persons with asthma is unknown. METHODS: We conducted a nested case-control study to examine the association between asthma and invasive pneumococcal disease. The study population included persons 2 to 49 years of age who were enrolled in Tennessee's Medicaid program (TennCare) for more than one year during the study period (1995 through 2002) and who resided in counties participating in a prospective laboratory-based program of surveillance for invasive pneumococcal disease. For each subject with invasive pneumococcal disease, 10 age-matched controls without invasive pneumococcal disease were randomly selected from the same population. TennCare files were queried to identify the presence of coexisting conditions that confer a high risk of pneumococcal disease. For the purpose of our study, asthma was defined by documentation of one or more inpatient or emergency-department diagnoses of asthma, two outpatient diagnoses, or the use of asthma-related medications. High-risk asthma was defined as asthma requiring admission to a hospital or a visit to an emergency department, the use of rescue therapy or long-term use of oral corticosteroids, or the dispensing of three or more prescriptions for beta-agonists within the year before enrollment in the study. RESULTS: A total of 635 persons with invasive pneumococcal disease and 6350 controls were identified, of whom 114 (18.0 percent) and 516 (8.1 percent), respectively, had asthma. Persons with asthma had an increased risk of invasive pneumococcal disease (adjusted odds ratio, 2.4; 95 percent confidence interval, 1.9 to 3.1) as compared with controls. Among those without coexisting conditions, the annual incidence of invasive pneumococcal disease was 4.2 episodes per 10,000 persons with high-risk asthma and 2.3 episodes per 10,000 persons with low-risk asthma, as compared with 1.2 episodes per 10,000 persons without asthma. CONCLUSIONS: Asthma is an independent risk factor for invasive pneumococcal disease. The risk among persons with asthma was at least double that among controls.

Adolescent↗

Differential regulation of granzyme and perforin in effector and memory T cells following smallpox immunization.

Primary immunization of healthy adults with vaccinia virus induces a local vesicle or "take" in the majority of vaccinees that previously has been shown to correlate with protection against smallpox. However, the immunologic mechanisms underlying this protective response in humans are not well characterized. We have studied human CD8+ T cells for the expression patterns of phenotypic markers and cytolytic effector molecules before and after primary smallpox immunization using nine-color polychromatic flow cytometry. One month after immunization, vaccinees developed vaccinia virus-specific CD8+ T cells with an effector cell phenotype containing both granzyme A and granzyme B. One year after immunization, we found a significant decrease in granzyme B containing cells and an increased memory cell phenotype in virus-specific CD8+ T cells. Perforin was rarely expressed directly ex vivo, but was highly expressed after Ag-specific activation in vitro. Together, these data suggest an important role for effector CD8+ T cells in controlling poxvirus infection, and have implications for our understanding of human CD8+ T cell differentiation.

Adult↗

Smallpox vaccination does not elevate systemic levels of prothrombotic proteins associated with ischemic cardiac events.

BACKGROUND: During the recent smallpox vaccination campaigns, ischemic cardiac complications were observed after vaccination. To examine a possible association between the smallpox vaccine and postvaccination ischemic events, we investigated alterations in levels of prothrombotic proteins (plasminogen activator inhibitor type 1 [PAI-1] and soluble CD40 ligand [sCD40L]) in recently vaccinated individuals. METHODS: Vaccinia-naive (cohort N; aged 18-32 years) and vaccinia-experienced (cohort E; aged 33-49 years) healthy adults were vaccinated with a 1 : 5 dilution of the Aventis Pasteur smallpox vaccine. Plasma levels of PAI-1 and sCD40L were measured in 30 subjects (cohort N, n=15; cohort E, n=15) at baseline and twice after vaccination (between days 7 and 9 and between days 26 and 30). RESULTS: Baseline mean PAI-1 levels significantly differed between cohorts N and E (P=.04). Within each exposure cohort, mean PAI-1 levels did not significantly change after vaccination. Baseline sCD40L levels did not differ between cohorts N and E. In cohort N, sCD40L levels significantly decreased after vaccination but returned to baseline levels within 1 month. Vaccination did not significantly alter levels of sCD40L in cohort E. CONCLUSIONS: Levels of PAI-1 and sCD40L did not significantly increase after smallpox vaccination. Vaccine-induced alterations in levels of these prothrombotic proteins do not appear to play a role in ischemic events observed after smallpox vaccination.

Adolescent↗

Diabetes mellitus and cardiothoracic surgical site infections.

Persons afflicted with diabetes mellitus compose over one fourth of patients undergoing cardiothoracic surgery and create a particular challenge to surgical and critical care practitioners. This paper reviews the impact of diabetes mellitus on cardiothoracic surgical site infection (SSI) risk, with specific attention to recent data regarding the role of perioperative hyperglycemia as well as the use of continuous insulin infusion for SSI risk reduction in the cardiothoracic surgical population.

Cardiac Surgical Procedures↗

Seasonality of invasive pneumococcal disease: temporal relation to documented influenza and respiratory syncytial viral circulation.

BACKGROUND: Seasonal fluctuation in the incidence of invasive pneumococcal disease has been attributed to winter virus exposure (e.g., influenza and respiratory syncytial virus [RSV]). Evidence of a direct correlation of invasive pneumococcal disease with laboratory-confirmed virus seasons, however, is limited. Using two prospective surveillance networks, the temporal relation between invasive pneumococcal disease and isolation of circulating winter viruses was explored. METHODS: Episodes of invasive pneumococcal disease in five Tennessee counties were collected prospectively from January 1995 through June 2002. Virus seasons were defined using prospective laboratory-based surveillance. Correlation between weekly identification of invasive pneumococcal disease and laboratory isolation of RSV and influenza, as well as comparisons of the frequencies of invasive pneumococcal disease episodes during viral and nonviral seasons were determined. RESULTS: A total of 4147 invasive pneumococcal disease episodes were identified. Weekly frequency of invasive pneumococcal disease correlated directly with the weekly frequency of isolation of RSV (r = 0.56, P <0.001) and influenza (r= 0.40, P <0.001). The average weekly frequency of invasive pneumococcal disease during RSV and influenza seasons was higher than during the nonviral seasons (P <0.001 for each year). CONCLUSION: Weekly episodes of invasive pneumococcal disease correlated temporally with laboratory-confirmed weekly isolation of RSV and influenza, and the incidence of invasive pneumococcal disease was increased when these viruses were circulating in the community.

Adolescent↗

Influenza vaccination of healthcare workers and vaccine allocation for healthcare workers during vaccine shortages.

Influenza causes substantial morbidity and mortality annually, particularly in high-risk groups such as the elderly, young children, immunosuppressed individuals, and individuals with chronic illnesses. Healthcare-associated transmission of influenza contributes to this burden but is often under-recognized except in the setting of large outbreaks. The Centers for Disease Control and Prevention has recommended annual influenza vaccination for healthcare workers (HCWs) with direct patient contact since 1984 and for all HCWs since 1993. The rationale for these recommendations is to reduce the chance that HCWs serve as vectors for healthcare-associated influenza due to their close contact with high-risk patients and to enhance both HCW and patient safety. Despite these recommendations as well as the effectiveness of interventions designed to increase HCW vaccination rates, the percentage of HCWs vaccinated annually remains unacceptably low. Ironically, at the same time that campaigns have sought to increase HCW vaccination rates, vaccine shortages, such as the shortage during the 2004-2005 influenza season, present challenges regarding allocation of available vaccine supplies to both patients and HCWs. This two-part document outlines the position of the Society for Healthcare Epidemiology of America on influenza vaccination for HCWs and provides guidance for the allocation of influenza vaccine to HCWs during a vaccine shortage based on influenza transmission routes and the essential need for a practical and adaptive strategy for allocation. These recommendations apply to all types of healthcare facilities, including acute care hospitals, long-term-care facilities, and ambulatory care settings.

Communicable Disease Control↗

Duration of virus shedding after trivalent intranasal live attenuated influenza vaccination in adults.

OBJECTIVE: To characterize the probability and duration of viral shedding among adults given trivalent live attenuated influenza vaccine (LAIV). DESIGN: Prospective surveillance study. METHODS: Nasal wash samples were collected from adult volunteers at baseline and on days 3, 7, and 10 and between days 17 and 21 following intranasal LAIV vaccination. The presence, titer, and identification of each specific strain of influenza virus shed were determined by standard methodology. RESULTS: Twenty subjects received LAIV. No samples were positive for influenza virus at baseline. After LAIV vaccination, influenza virus was recovered from 10 of 20 vaccinees on day 3, from 1 of 18 vaccinees on day 7, and from none of the samples on days 10 or 17 through 21. Vaccinees who shed vaccine virus were significantly younger than those who did not (mean age, 26.4 vs 38.6 years; P < .01). Although the presence of specific mucosal immunoglobulin A to influenza B was associated with significantly less shedding of influenza B after vaccination (P = .02), associations of shedding with other measures of immunity were not detected. CONCLUSION: The duration of shedding of vaccine virus after LAIV in adults i s limited and may be associatedwith an individual's prior influenza vaccination history.

Administration, Intranasal↗