PubMed HealthSearch

Biomedical subjects

E L Anderson

Publications and source records attributed to E L Anderson.

At least 19 recordsLinked to original sources

Differences in the immunogenicity of three Haemophilus influenzae type b conjugate vaccines in infants.

OBJECTIVE: To compare the immunogenicity of three Haemophilus influenzae type b (Hib) conjugate vaccines in infants residing in different geographic areas. DESIGN: A multicenter, randomized immunogenicity trial with sera assayed in one laboratory without knowledge of vaccine brand status. In Minneapolis and Dallas, infants were vaccinated at 2, 4, and 6 months of age; in St. Louis, infants were vaccinated at 2 and 4 months of age. SUBJECTS: A convenience sample of 458 infants recruited largely from private pediatric practices. MEASUREMENTS AND RESULTS: At each of the study sites, the respective trends between the anticapsular antibody responses of the infants assigned to the different conjugate vaccine groups were similar. After one or two doses, Hib polysaccharide conjugated to outer membrane protein complex of Neisseria meningitidis (PRP-OMP) was more immunogenic than Hib polysaccharide-tetanus toxoid conjugate (PRP-T), or Hib oligomers conjugated to the mutant diphtheria toxin CRM197 (HbOC) (p less than 0.001). After two doses, PRP-T was more immunogenic than HbOC (p less than or equal to 0.001). After three doses there was no significant difference in the geometric mean antibody concentrations of the three groups, and 88% to 97% of the infants had greater than 1.0 microgram/ml of antibody. The HbOC vaccine elicited a 10-fold lower antibody response after two doses (0.45 micrograms/ml vs 5.9 micrograms/ml) and a threefold lower antibody response after three doses (6.3 micrograms/ml vs 22.9 micrograms/ml) than observed by us previously with a prelicensure lot of this vaccine (p less than 0.001). Because of these low responses, the infants in St. Louis who received two doses of HbOC were revaccinated with unconjugated PRP at a mean age of 8.9 months. This group was immunologically primed, as evidenced by a 10-fold increase in geometric mean antibody concentration after vaccination at an age when unprimed infants do not normally respond to this vaccine. CONCLUSIONS: In infants in three geographic regions, PRP-OMP elicited earlier acquisition of serum antibody than the other two conjugate vaccines; however, after three doses the antibody concentrations of the three groups were not significantly different. The reason for the markedly lower immunogenicity of HbOC vaccine than reported previously is unknown.

Age Factors

Immunization of infants and young children with live attenuated trivalent cold-recombinant influenza A H1N1, H3N2, and B vaccine.

Seventeen triply seronegative infants and young children, and 15 infants and young children seropositive to all three influenza virus strains were vaccinated intranasally with 10(5) TCID50 of each of three (H1N1, H3N2, and B) live attenuated, cold-adapted influenza vaccine strains. Seventeen controls were given placebo. Vaccination with trivalent influenza vaccine was not associated with adverse reactions in triply seronegative or seropositive children. Overall, 12 (71%), 13 (76%), and 13 (76%) of seronegative children were infected by H1N1, H3N2, or B vaccine viruses, respectively, as indicated by viral shedding or by hemagglutination inhibition assay or ELISA antibody response. Of the triply seronegative children, 47% shed all three viruses; 7 children had an antibody rise to all three vaccine viruses and 4 shed all three viruses. A dose of 10(4.4) - 10(5.0) TCID50 of each of three intranasally administered vaccine viruses was safe, immunogenic and antigenic; however, strategies to increase the proportion of children infected by each of the vaccine viruses should be studied, including higher doses and multiple doses of live trivalent vaccine.

Administration, Intranasal

Evaluation of a live attenuated, cold-adapted parainfluenza virus type 3 vaccine in children.

Cold passage 18 (CP18) parainfluenza virus type 3 (PIV-3) vaccine was evaluated in a double-blind, randomized, placebo-controlled study of 95 infants and young children. None of 19 seropositive older children 41 to 124 months old became infected when 10(6) 50% tissue culture infective doses (TCID50) of vaccine virus was administered intranasally. Two of nine and seven of twenty-four young seropositive children given 10(5) or 10(6) TCID50 of CP18 PIV-3, respectively, became infected. Each of four seronegative young children became infected, as indicated by virus shedding and antibody response, when given 10(6) TCID50 of CP18 PIV-3 intranasally. Illness was not observed in seropositive children. Two of the four seronegative children developed a mild illness characterized by rhinorrhea and wheezing on auscultation; none had fever. In one case, vaccine virus spread from a vaccine to a sibling control but did not cause illness. The vaccine is attenuated relative to wild-type PIV-3, but additional attenuation will be required to achieve a satisfactory PIV-3 vaccine.

Adaptation, Physiological

Evaluation of a cold-adapted influenza B/Texas/84 reassortant virus (CRB-87) vaccine in young children.

A cold-adapted (ca) influenza B reassortant virus vaccine that contained the six internal RNA segments from influenza B/Ann Arbor/1/66 ca virus and the neuraminidase and hemagglutinin genes from wild-type influenza B/Texas/1/84 virus was evaluated in children ranging in age from 8 months to 14 years. The children were vaccinated intranasally with doses ranging from 10(3.2) to 10(6.2) 50% tissue culture infective doses (TCID50). Thirty children were seropositive, and 26 were seronegative. Thirty-three children participated as unvaccinated controls. The vaccine was well tolerated by both seronegative and seropositive children. The amount of virus required to infect 50% of seronegative children was approximately 10(4.5) TCID50. Vaccine viruses recovered from airway secretions retained temperature-sensitive and cold-adapted characteristics. The results of this study indicate that the vaccine virus, influenza B/Texas/84 ca reassortant virus, is attenuated, immunogenic, and phenotypically stable when given to young seronegative children.

Adaptation, Biological

Human health risks associated with asbestos abatement.

Upperbound lifetime excess cancer risks were calculated for activities associated with asbestos abatement using a risk assessment framework developed for EPA's Superfund program. It was found that removals were associated with cancer risks to workers which were often greater than the commonly accepted cancer risk of 1 x 10(-6), although lower than occupational exposure limits associated with risks of 1 x 10(-3). Removals had little effect in reducing risk to school populations. Risks to teachers and students in school buildings containing asbestos were approximately the same as risks associated with exposure to ambient asbestos by the general public and were below the levels typically of concern to regulatory agencies. During abatement, however, there were increased risks to both workers and nearby individuals. Careless, everyday building maintenance generated the greatest risk to workers followed by removals and encapsulation. If asbestos abatement was judged by the risk criteria applied to EPA's Superfund program, the no-action alternative would likely be selected in preference to removal in a majority of cases. These conclusions should only be interpreted within the context of an overall asbestos risk management program, which includes consideration of specific fiber types and sizes, sampling and analytical limitations, physical condition of asbestos-containing material, episodic peak exposures, and the number of people potentially exposed.

Air Pollutants

Characteristics of a population volunteering for human immunodeficiency virus immunization. NIAID AIDS Clinical Trials Network.

A total of 166 volunteers for an AIDS vaccine study (Vaxsyn, baculovirus produced recombinant GP160; MicroGeneSys Inc, West Haven, Connecticut, USA) were interviewed and examined. Blood was collected for routine laboratory testing as well as T-cell counts, HIV ELISA (EIA), Western blot (WB) and p24 Ag. Eighty-five men (mean age 22.2 years, range 18-42) and 81 women (mean age 23.9 years, range 17-50) volunteered; 130/166 (78%) were university students. Most had learned of the study from news media (55%), friends or workplace (37%). The most common causes for exclusion were the presence of indeterminate WB (26.5%) or a change of mind after the initial interview (24%). Other causes were abnormal cell count and differential (7.2%), elevated alanine aminotransferase (3.6%), positive hepatitis B antibody (3.6%), abnormal urinalysis (3.4%), recent venereal disease (3.0%), T4 cell count less than 400 (1.9%), abnormal chest X-ray (1.7%), recognized high-risk behaviour (1.7%), multiple sex partners (1.2%), positive rapid plasma reagin test (1.2%), failure to meet age criteria (1.2%), unable to be available for entire study (1.2%), abnormal physical examination (0.6%) and positive p24 Ag (0.6%). No volunteers had positive EIA, but 14.5% had more than one reason for exclusion. Even in a community with low prevalence for HIV, a large majority of healthy heterosexual volunteers can be expected to be ineligible for enrollment in HIV vaccine trials. An average of 4.8 volunteers were screened for each of 12 vaccinees chosen.

AIDS Vaccines

Evaluation of cold-recombinant influenza A/Korea (CR-59) virus vaccine in infants.

Twenty-four infants 5 to 13 months of age were intranasally vaccinated with a live cold-recombinant influenza A/Korea (CR-59, H3N2) virus vaccine. Nineteen infants served as controls. The inocula ranged from 10(3.2) to 10(6.2) 50% tissue culture infective doses (TCID50) per infant. Zero of six, one of four, seven of ten, and four of four infants receiving 10(3.2), 10(4.2), 10(5.2), and 10(6.2) TCID50, respectively, were infected by the intranasal vaccine. The amount of virus required to infect 50% of infants was calculated to be 10(4.6) TCID50. The occurrence of fever, respiratory illness, and otitis media was common among both controls and vaccinees in the postinoculation period. Maternal antibody was present in low titers in some infants and did not inhibit replication of the vaccine virus.

Administration, Intranasal

Scientific trends in risk assessment research.

The use of risk assessment approaches to evaluate the effects of toxic chemicals had its primary origin in 1976 when the U.S. Environmental Protection Agency (EPA) adopted the first federal guidelines to commit a major regulatory agency to risk assessment approaches for the evaluation of suspect carcinogens. The accompanying policy statement also adopted a risk management policy, which acknowledged that the agency would accept risk in making public health policy decisions; in essence, this represented a primary departure from the zero-risk goal that had dominated the first half of the environmental movement of the 70s. The approach adopted in 1976 was based on the experience of risk assessment approaches used for assessing low-dose-radiation effects on human health. To be certain that no public health risk be underestimated, particularly in light of the prior zero-risk goal, the practice of risk assessment for the first decade relied heavily on extremely protective assumptions in all aspects of the assessment process. For example, these assumptions included ranking the weight-of-evidence according to results in all related studies without regard for distinctions of tumor end point relevance to humans and the possibility that low-dose effects at environmental exposures might not be the same as high-dose effects. For low-dose-response characterization, the practice has been to characterize a plausible upper bound on risk by the use of a low-dose linear non-threshold dose-response curve. Exposure assessment likewise relied on maximum plausible assumptions to characterize exposure. More recently, more attention is being paid to developing accurate scientific databases that advance almost every aspect of the risk assessment process in the direction of more accurate risk characterization. This paper will discuss the recent trends in weight-of-evidence characterization, dose-response modeling, and exposure assessment and will compare the outcomes of these refined assessments to those evaluations that have relied on the earlier, conservative approaches. In essence, if the practices of the first decade for establishing plausible upper bounds on the risk were accurate, improved scientific data by and large should be expected to lower the overall theoretical risk. Indeed, this is the case when recent risk assessment research is applied but there are examples to the contrary. This paper represents a survey of recent trends and applications.

Animals

Prevention of pertussis.

Pertussis (whooping cough) is an acute respiratory disease caused by Bordetella pertussis. It occurs worldwide and is an important cause of morbidity and mortality in areas where immunization rates are low, particularly among children less than 1 year of age. The characteristic presentation of pertussis is paroxysmal coughing followed by a long inspiratory effort that produces the classic whoop. Lymphocytosis is frequently present. Complications include pneumonia and seizures secondary to hypoxia. The paroxysmal and convalescent stages of the illness can each last several weeks. Transmission occurs readily by respiratory droplets, and atypical or mild cases in older children and adults can be important in spread of the infection. Isolation, early erythromycin therapy, and erythromycin prophylaxis can reduce transmission, but vaccination is the primary means of control. An inactivated whole cell suspension of the bacterium has been an effective vaccine for protecting against pertussis since the 1950s, but whole cell vaccine may allow mild infections to occur and has been associated with local and systemic reactions that have eroded public acceptance. Component or acellular pertussis vaccines that are less reactogenic have been in use in Japan since 1981 and appear to be effective there. Development of an acellular preparation that is equally or more efficacious than whole cell vaccine may be possible, but clinical trials for measurement of protection against pertussis are difficult and trials with new pertussis vaccines will have to be carefully performed to avoid the controversies generated by earlier trials.

Adult

Productivity measurement for clinical nurse specialists.

The clinical nurse specialists (CNSs) at an 814-bed tertiary care center have collaborated to develop a method for measuring and evaluating productivity of the CNS role. This method, which uses the CIPP Evaluation Model as a framework, parallels the nursing process and is outcome oriented. The applicability of this method to other fixed positions may be of interest to nursing managers and administrators.

Efficiency

Differences in reactogenicity and antigenicity of acellular and standard pertussis vaccines combined with diphtheria and tetanus in infants.

Clinical and serological responses of infants to primary immunization with diphtheria-tetanus-pertussis (DTP) vaccine containing components of acellular pertussis vaccine (DTP-AC) were compared in a double-blind study with responses of infants receiving whole-cell DTP vaccine (DTP-WC). Three doses of either DTP-AC containing lymphocytosis-promoting factor (LPF) and filamentous hemagglutinin (FHA) or DTP-WC vaccine were given to infants at two, four, and six months of age. Nineteen infants received DTP-AC vaccine, and 20 infants received DTP-WC vaccine. Significantly more infants who received DTP-WC vaccine manifested fever, swelling, and/or total reactions than did infants who received DTP-AC vaccine. Infants who received DTP-AC vaccine had comparable antibody titers to LPF and significantly higher titers to FHA after three immunizations, as compared with the infants who received DTP-WC vaccine (P less than or equal to .001). The DTP-WC vaccine stimulated higher pertussis agglutination titers (P = .04) than did DTP-AC. The DTP-AC vaccine was immunogenic and significantly less reactogenic in infants than was the currently used DTP-WC vaccine.

Antibodies, Bacterial

Human-rhesus reassortant rotavirus vaccines: safety and immunogenicity in adults, infants, and children.

Human-rhesus reassortant rotavirus vaccines derived from rhesus rotavirus and human rotavirus serotypes 1, 2, or 4 were administered to adults, children, and infants after they had been given sodium bicarbonate buffer. Over 70% of infants and children developed antibody responses to or shed the candidate vaccine viruses. Individuals with prevaccination serum neutralization antibody titers less than or equal to 1:160 had significantly (P less than .0001) higher response rates than did individuals with prevaccination titers greater than or equal to 1:320. Similarly, shedding of vaccine viruses occurred significantly (P = .03) more often in children than adults and was inversely correlated with prevaccination antibody titers. No illnesses were observed in adults, and the vaccines were well tolerated in children. An increased rate of low-grade, transient fever (38.0-38.8 C) was noted only in children given serotype 2 vaccine, compared with controls (P = .006). No significant differences in the average number of unformed stools passed during the seven days after vaccination were noted in vaccinees versus controls. These vaccine strains are currently undergoing further evaluation in expanded clinical trials.

Adult

Clinical and serologic responses to acellular pertussis vaccine in infants and young children.

We administered diphtheria, tetanus, and pertussis (DTP) vaccine containing acellular (lymphocytosis promoting factor and filamentous hemagglutinin) pertussis vaccine to three groups of 20 children each (4 to 6 years, 17 to 21 months, and 5 to 9 months of age). All the children tolerated the vaccine well; no reactions occurred that contraindicated further immunization. Older children had significantly more local (redness or swelling) and systemic (fever or fretfulness) reactions than younger children. Eighty percent to 90% of the children in the two older age groups had fourfold or greater increases in antibody titers to DTP antigens one month after vaccination. The postvaccine concentrations of antibody to tetanus and diphtheria were greater than 0.01 IU/mL in all children. Serologic responses to lymphocytosis promoting factor and filamentous hemagglutinin varied with age; significantly more older children than younger children had four-fold or greater increases. Acellular pertussis DTP vaccine was antigenic in young children and was less reactogenic than standard whole cell DTP vaccine according to rates reported in previous studies.

Antibodies

Pharmacokinetics of a single dose of rimantadine in young adults and children.

Single doses of rimantadine were given to children and young adults to evaluate the safety and pharmacokinetics of this antiviral compound. The half-life of rimantadine in young adults was 27.7 +/- 4.9 h for tablets and 27.8 +/- 8.0 h for syrup preparations. A total of 10 children, 5 to 8 years old, received a syrup preparation of rimantadine. The half-life of rimantadine in children was 24.8 +/- 9.4 h. A single dose of rimantadine was well tolerated in young adults and children.

Adamantane

Immunogenicity in infants of Haemophilus influenzae type B polysaccharide in a conjugate vaccine with Neisseria meningitidis outer-membrane protein.

63 children, aged 2-17 months, were given a new conjugate vaccine composed of the capsular polysaccharide of Haemophilus influenzae type b linked to a Neisseria meningitidis outer-membrane protein. Subjects under 7 months received two injections separated by 1 month, and older subjects received either one or two injections. There were no systemic reactions to this vaccine when it was given with aluminium hydroxide. A single injection of vaccine was highly immunogenic; the geometric mean serum anticapsular antibody concentrations before immunisation and 1 month later were 0.35 microgram/ml and 0.98 microgram/ml for babies of 2-3 months, 0.12 microgram/ml and 1.85 micrograms/ml for those of 4-6 months, and 0.15 microgram/ml and 4.1 micrograms/ml for those of 8-17 months (p less than or equal to 0.003 for each age group). After a second injection of vaccine, 80% and 76% of infants of 2-3 and 4-6 months, respectively, had antibody concentrations greater than 1.0 micrograms/ml. Most subjects showed evidence of IgG responses as measured by enzyme-linked immunosorbent assay. 6-12 months after immunisation, serum antibody levels had fallen (p less than 0.05) but they remained higher than those of unimmunized controls (p less than 0.001).

Adult

Evaluation of rhesus rotavirus vaccine (MMU 18006) in infants and young children.

Orally administered rhesus rotavirus vaccine was evaluated in a placebo-controlled study in young children and infants (ages, eight months to 61 months). Thirteen children received the rotavirus vaccine, and ten children served as the control group. The vaccine was well tolerated. There were no significant differences between the vaccine recipients and the control group in the number of child-days with temperatures greater than or equal to 37.8 C, vomiting, diarrhea, or cough. There were significantly more child-days of rhinorrhea among the vaccine recipients than there were among the control group. The vaccine recipients under two years of age passed a larger number of stools than did the children in the control group, and vaccine recipients had significantly more semiformed and unformed stools than did the children receiving the placebo. All twelve of the children tested were positive for viral shedding. Peak viral shedding occurred on days three and five postvaccination. On day eight, over one-half of the children from whom a stool specimen was obtained were still shedding rotavirus. Children less than two years old shed more rotavirus in their stool than did children more than two years old. All 13 vaccine recipients had a fourfold or greater rise in titer of antibody as measured by plaque reduction, tube neutralization, complement fixation, and/or immune adherence hemagglutination.

Antibodies, Viral

Beta-lactamase-positive strains of Haemophilus influenzae: susceptibility to and inactivation of beta-lactam antibiotics.

Susceptibility and time-kill studies were done with low and high inocula of both beta-lactamase-positive and -negative strains of Haemophilus influenzae with cefamandole, ampicillin, cefoperazone, mezlocillin, moxalactam, and ceftriaxone. Bioassay was done to test for antibiotic inactivation by beta-lactamase-positive strains. All six antibiotics were highly active against the low inoculum (10(4) to 10(5) colony-forming units/ml) of beta-lactamase-negative strains; ceftriaxone, moxalactam, and cefoperazone were equally active against the same inoculum concentration of beta-lactamase-positive strains. In contrast, cefamandole, mezlocillin, and ampicillin were less active against the low inoculum of beta-lactamase-positive H influenzae. A marked inoculum effect occurred with the high inoculum (10(7) to 10(8) CFU/ml) with all six antibiotics, regardless of beta-lactamase production. In time-kill studies, marked differences in bacterial killing resulted after low and high inocula. Ampicillin, cefamandole, cefoperazone, and mezlocillin were rapidly inactivated by the high inoculum of beta-lactamase-positive H influenzae.

Ampicillin