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Influenza vaccine uptake among community-dwelling Italian elderly: results from a large cross-sectional study

Abstract

Background

Flu vaccination significantly reduces the risk of serious complications like hospitalization and death among community-dwelling older people, therefore vaccination programmes targeting this population group represent a common policy in developed Countries. Among the determinants of vaccine uptake in older age, a growing literature suggests that social relations can play a major role.

Methods

Drawing on the socio-behavioral model of Andersen-Newman - which distinguishes predictors of health care use in predisposing characteristics, enabling resources and need factors - we analyzed through multilevel regressions the determinants of influenza immunization in a sample of 25,183 elderly reached by a nationally representative Italian survey.

Results

Being over 85-year old (OR = 1.99; 95% CI 1.77 - 2.21) and suffering from a severe chronic disease (OR = 2.06; 95% CI 1.90 - 2.24) are the strongest determinants of vaccine uptake. Being unmarried (OR = 0.81; 95% CI 0.74 - 0.87) and living in larger households (OR = 0.83; 95% CI 0.74 - 0.87) are risk factors for lower immunization rates. Conversely, relying on neighbors' support (OR = 1.09; 95% CI 1.02 - 1.16) or on privately paid home help (OR = 1.19; 95% CI 1.08 - 1.30) is associated with a higher likelihood of vaccine uptake.

Conclusions

Even after adjusting for socio-demographic characteristics and need factors, social support, measured as the availability of assistance from partners, neighbors and home helpers, significantly increases the odds of influenza vaccine use among older Italians.

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Background

Many studies support the hypothesis that flu vaccination significantly reduces the risk of serious complications, e.g. hospitalization for pneumonia or influenza, and of death among community dwelling elderly persons [1], and suggest that annually repeated vaccine is essential for maintaining vaccine efficacy over time [2]. Despite the methodological quality of studies assessing vaccine efficacy is controversial [3, 4], vaccination programmes targeted at people aged 65 and over represent a common policy in industrialized Countries, and their importance has been recently highlighted [5].

Recent studies suggested that, among the elderly, an important role in predicting immunization is represented also by the availability [6, 7] and quality of social support [8] on which the older person can count. The primary aim of this study is to examine whether the likelihood of vaccine uptake among older Italians is influenced by the level of social support they receive. The secondary aim is to elucidate other factors that may constitute potential predictors of elderly influenza vaccination in the Country.

Methods

The Multi-Purpose survey "Health status of the population and use of health services in Italy" [9] carried out by the Italian National Institute of Statistics (ISTAT), aimed at investigating a variety of aspects concerning the health of the population and the patterns of health care use. The last edition of this survey, carried out between December 2004 and September 2005, gathered data on 25,183 persons aged 65 and older, representative in terms of age and gender of the Italian elderly population [10]. Each person participating to the survey completed first a self-administered questionnaire, and then had a face-to-face interview with ISTAT data collectors. In case the index person was cognitively impaired or not available, the interview was administered to another family member who responded in his/her place. The final dataset was openly available by means of a formal request to ISTAT.

Dependent and independent variables

As a dependent variable, we used the reply (yes/no) to the question: "Did you get vaccinated against influenza in the last 12 months?" Self-report has been shown to be a highly accurate way of assessing past vaccination behavior in elderly populations [11].

We selected independent variables drawing on the socio-behavioral model of Andersen-Newman, which distinguishes the explanatory factors of health care use in predisposing characteristics, enabling resources, and need factors [12, 13]. In this study, we focused primarily on the role of enabling resources, i.e. those variables related to the social supports available to the older person. The ISTAT questionnaire included several items to measure the level of social support benefited by the older person: we considered marital status (married or cohabiting vs. single, widowed, divorced or separated), the availability of informal help from family, friends or neighbors, and the support received from privately paid domestic workers (distinguishing between home helper, i.e. those workers providing support with the housework, and carers, i.e. those providing assistance to the older person with ADL and IADL limitations [14]). Predisposing characteristics were retrieved for each subject: gender, age, education, self-report household wealth and smoking status. Need factors were taken into account by using self-rated health status and the presence of chronic illnesses.

Statistical analysis

Bivariate analysis was performed to analyze the distribution of the outcome and the exposure variables in the sample. Since the Italian NHS has undergone a federalist reform, and regions have some degree of independence in organizing local health services, persons living in same areas tend to experience similar access to health care. Therefore, we used multilevel regression models that consider the connection of the outcome variable among people from the same area, to obtain accurate statistical estimates of vaccine predictors [15]. In the models, the geographical area of residence (categorized as North-East, North-West, Centre, South, and Islands) was included as random-effect parameter. Covariates were included into the models with a forward stepwise procedure. An indicator variable for respondent type was included in the regressions, as index and proxy respondent data were pooled together. Model 1 includes only variables related to the enabling resources, while other two models additionally control for predisposing characteristics (Model 2) and need factors (Model 3). Analyses were performed using STATA, version 10.1 (Stata Corp., College Station, TX, 2007) [16].

Results

Mean age in the sample is 74.7 years (SD ± 7.1). 57.6% (n = 14,515) of the subjects are women and 56.9% (n = 14,318) are married or cohabiting (see Table 1 for further socio-demographic characteristics of the sample). Index subjects completed the interview in 86.6% (n = 21,813) and proxy respondents in 6.8% of cases (n = 1,708), while the remaining 4.9% (n = 1,239) required assistance from other family members to provide information on exposures. Information on respondent type was missing in 1.7% of the sample (n = 482).

Table 1 Immunization rates according to main sociodemographic characteristics among a representative sample of older Italians (n = 25,183)

Overall, 62.6% (n = 25,183) of the sample reported to be vaccinated against seasonal flu. The analysis of vaccine uptake rates stratified according to study variables reveals significant differences between the various subgroups of the sample (Table 1). A higher immunization rate was observed among those older persons relying on the support provided by a private home helper (67.9 vs. 61.9; p < 0.001) or carer (73.6 vs. 62.1; p < 0.001). Among the enabling resources, no association at bivariate level could be found only for marital status (married vs. single, widowed and separated/divorced persons). Considering predisposing variables, immunization rate is higher among very old (85+ years) (73.5%), less educated (66.5%) and less wealthy subjects (65.5%). With regard to need factors, crude rates suggest that those suffering from a severe chronic disease (70.7%) and reporting being in bad health conditions (71.1%) are more frequently immunized against seasonal influenza.

As what concern the fixed effects investigated in the multilevel regression, all enabling resources (model 1) are significantly associated with vaccine uptake, with the exception of marital status (Table 2). In particular, employing a private home carer (OR = 1.52; 95% CI 1.31 - 1.76) or a home helper (OR = 1.26; 95% CI 1.16 - 1.38) is associated to higher vaccination rates. Conversely those living in household with 3 up to 5 persons have a lower likelihood of being immunized (OR = 0.79; 95% CI 0.72- 0.86).

Table 2 Results of multilevel regression models for estimated of factors associated with influenza vaccine uptake in the previous 12 months among a representative sample of older Italians (n = 24,760)

When considering also predisposing characteristics (model 2), older age is the strongest predictor of vaccine uptake. Both a higher education (OR = 0.94; 95% CI 0.90 - 0.97), higher household wealth (OR = 0.95; 95% CI 0.91 - 0.99) and being a smoker (OR = 0.71; 95% CI 0.65 - 0.78) reduce the likelihood of vaccination. In model 2, as a consequence of the adjustment made by predisposing characteristics, help availability from family and friends have no longer influence on influenza immunization while, conversely, not being married becomes a risk factor for undervaccination (OR = 0.82; 95% CI 0.76 - 0.89).

When inserting variables related to need factors (model 3), having a mild (OR = 1.46; 95% CI 1.35 - 1.58) or a severe chronic diseases (OR = 2.06; 95% CI 1.90 - 2.24) and bad self-rated health (OR = 1.08; 95% CI 1.00 - 1.17) are predictors of vaccine uptake, while reporting good health (OR = 0.70; 95% CI 0.66 - 0.75) decreases the odds of influenza immunization. In this last model, employing a private carer no longer determines a higher vaccine uptake.

In model 3, the likelihood of vaccination was lower among both older people who replied through a proxy respondent (OR = 0.73 95% CI 0.65 - 0.81) or thanks to the help from another family member (OR = 0.87 95% CI 0.76 - 0.99).

Discussion

Results concerning vaccine uptake rates are consistent with the Italian Ministry of Health's estimates, according to which vaccine coverage among the older population was about 63.4% in 2003/2004 and 66.6% in 2004/2005, thus confirming the representativeness of the sample [17].

Our results suggest that social support contributes to explain influenza vaccine use among the older population, although also other factors have an important role in predicting influenza immunization. The multivariate analysis that we performed in three different steps (i.e. 1. considering enabling resources per se; 2. inserting predisposing characteristics; and 3. considering need factors) allowed us to assess the influence of social support, controlling for possible confounding associations on vaccine uptake.

The geographical area of residence, treated as a random effect parameter, had a significant effect in all three models, this justifying the choice of using multilevel rather than traditional logistic regressions.

Interestingly, even if marital status and vaccine are not associated at a bivariate level, after adjusting for age, we found that married elderly have a significant immunization edge compared to their non-married counterparts. These findings are coherent with other studies asserting that married older people are more frequently using preventive services [18]. In addition, the lower likelihood of older people living in larger household (from 3 to 5 persons) to be immunized confirms that older people living in couples are those more frequently vaccinated.

Good relations with friends no longer predict a lower vaccination uptake in model 2, hinting that a confounding caused by age takes place at bivariate analysis, since younger old people tend at the same time to be less vaccinated and to be in stronger friendship networks.

We noticed also that people with good relations with their neighbors (i.e. who can count on their help in case of need) have higher odds of vaccination. A similar effect was acknowledged in the US and UK using area-based indexes of deprivation, where lower uptake has been recorded in socially deprived areas [19–21].

As what concerns the role of the formal support received by the older persons in their households, we acknowledged that the association between immunization and private care work is only the result of a confounding caused by age (in model 2, the OR of vaccination for those privately hiring a care worker decreases from 1.57 to 1.22) and health conditions (in model 3, this OR is no longer significant). This occurs because in Italy those who rely more frequently on private care work are the older people with severe health problems, which, in turn, are already those more frequently immunized.

Conversely, in all the models an independent association between influenza vaccine uptake and the employment of a private home helper was observed. The process of "bridging" has been proposed to explain the higher odds of using health care services among older people relying on family caregivers; in this model, it is hypothesized that informal carers may act as advocate in acquiring formal help services for their older relatives [22]. Since family support in Italy is declining and older people increasingly rely on the care provided in their household by private workers [23], our findings suggest that a similar process of bridging may occur also in the case of privately-purchased support. However, further specific analyses on this issue are required.

The effects of predisposing characteristics and need factors are consistent with previous studies. Older age is a strong predictor of being vaccinated in different national contexts [7, 24, 25], as this is clearly shown also by the ISTAT data. In line with existing evidence for the Italian context [24, 26], neither a positive nor a negative effect for gender was found in our study.

The role of socioeconomic factors is discussed controversially in the literature. In the US and UK, higher occupational status and education [20, 25] and good housing conditions [6] are predictors of vaccination uptake. Our study, using two traditional indicators of socioeconomic positions like educational level and self-reported household wealth, shows that people in higher social position have less chances of being immunized. These results seem to confirm that in Italy, differently from what occurs in other Countries, seasonal influenza vaccination programmes are equity-oriented [26, 27]. Finally, the role of need variables in predicting vaccine uptake is confirmed by our findings, which are consistent with studies establishing that worse physical conditions (as for instance suffering from a chronic disease) result strongly associated with immunization [28, 29]. Reporting being in good health in our study is a risk factor for a lower vaccine uptake, suggesting that in Italy like in other Countries [30], this constitutes one of the most common reasons for non uptake.

The likelihood of flu vaccination is lower when the interview is carried out through a proxy respondent or thanks to the help from another family member (although this occurs only in the final model, when adjusting also for health-related variables). In order to understand these predictors, we stratified our sample according to respondent type, finding that subjects requiring assistance during the interview are mostly very old (mean age 80.7 years), women (62.6%) and in bad health status (67.2% reported severe chronic conditions and 50.1% bad self-rated health). This socio-demographic profile can explain the progressive changes in this exposure variable effects observed in the three regression models, but not why the inability to respond autonomously represents a risk factor for non vaccination. Plausibly, this could relate to an underreporting bias, as suggested by Nelson et al. [31], occurring when health care use is reported by a proxy respondent. Although more focused studies are required in this respect, our results strongly suggest that it is necessary to take into account the respondent type variable when analyzing health care use patterns in older populations.

Limits of the study and policy implications

A major strength of the study is the size of the sample and its representativeness of the Italian older population; furthermore, the questionnaire used by the ISTAT is based on well-validated instruments and received several improvements since the first edition in 1980.

Nevertheless, this study has some limitations that must be considered. First, since ISTAT survey is a cross-sectional one, we were able to assess only epidemiological associations between variables, rather than causal pathways. Secondly, the study is an observational one, and even if we included in the models important covariates, residual confounding may have still influenced results. During statistical analysis we took into consideration several variables not presented in the final models, such as specific chronic diseases (e.g. diabetes, COPD), hospital and GP use, and other health related habits (e.g. physical exercises, diets). However, no meaningful changes occurred in our results. A third limitation relates to the lack of stronger standardized measure of social support, as for instance the Multidimensional Scale of Perceived Social Support or other measures of caregivers' burden. Nonetheless, most of the social risk factors identified from our study are basic socio-demographic characteristics (e.g. marital status, household size, employment of private domestic workers) that can be easily assessed by health professionals responsible for vaccine administration.

Conclusions

In our study, we found several predictors of flu vaccination related both to demographic characteristics (e.g. older age) and health status (e.g. suffering from a chronic disease). Even when controlling for several confounders, variables reflecting the strength of social support - measured in terms of assistance made available by partners, neighbors and home helpers - increase significantly the odds of influenza vaccine use among older Italians.

In Italy, the coverage level of flu vaccination remains well below that recommended by the WHO [32] (62.6% in the sample vs. 75.0%). If further increase in the coverage wants to be reached, previous studies demonstrated the effectiveness among older population of specifically targeted interventions (for instance special vaccination hours for elderly people, television advertising, and GP's reminder programmes) [33]. In this regard, the predictors identified by this study should be taken into account in order to identify the groups of population which such interventions should primarily address.

References

  1. Nichol KL, Nordin JD, Nelson DB, Mullooly JP, Hak E: Effectiveness of influenza vaccine in the community-dwelling elderly. N Engl J Med. 2007, 357: 1373-1381. 10.1056/NEJMoa070844.

    Article  CAS  PubMed  Google Scholar 

  2. Thijs C, Beyer WE, Govaert PM, Sprenger MJ, Dinant GJ, Knottnerus A: Mortality benefits of influenza vaccination in elderly people. Lancet Infect Dis. 2008, 8: 460-461. 10.1016/S1473-3099(08)70161-0.

    Article  PubMed  Google Scholar 

  3. Simonsen L, Taylor RJ, Viboud C, Miller MA, Jackson LA: Mortality benefits of influenza vaccination in elderly people: an ongoing controversy. Lancet Infect Dis. 2007, 7: 658-666. 10.1016/S1473-3099(07)70236-0.

    Article  PubMed  Google Scholar 

  4. Villari P, Manzoli L, Boccia A: Methodological quality of studies and patient age as major sources of variation in efficay estimates of influenza vaccination in healthy adults: a meta-analysis. Vaccine. 2004, 22: 3475-3486. 10.1016/j.vaccine.2004.01.068.

    Article  CAS  PubMed  Google Scholar 

  5. Fiore AE, Uyeki TM, Broder K, Finelli L, Euler GL, Singleton JA, Iskander JK, Wortley PM, Shay DK, Bresee JS, Cox NJ, Centers for Disease Control and Prevention (CDC): Prevention and control of influenza with vaccines: recommendations of the Advisory Committee on Immunization Practices (ACIP). MMWR Recomm Rep. 2010, 59: 1-62.

    PubMed  Google Scholar 

  6. Sambamoorthi U, Findley PA: Who are the elderly who never receive influenza immunization?. Prev Med. 2005, 40: 469-478. 10.1016/j.ypmed.2004.07.017.

    Article  PubMed  Google Scholar 

  7. Landi F, Onder G, Carpenter I, Garms-Homolova V, Bernabei R: Prevalence and predictors of influenza vaccination among frail, community-living elderly patients: An International Observational Study. Vaccine. 2005, 23: 3896-3901. 10.1016/j.vaccine.2005.03.008.

    Article  PubMed  Google Scholar 

  8. Thorpe JM, Sleath BL, Thorpe CT, Van Houtven CH, Blalock SJ, Landerman LR, Campbell WH, Clipp EC: Caregiver psychological distress as a barrier to influenza vaccination among community-dwelling elderly with dementia. Med Care. 2006, 44: 713-721. 10.1097/01.mlr.0000215905.36968.76.

    Article  PubMed  Google Scholar 

  9. Italian National Institute of Statistics - ISTAT. Condizioni di salute e utilizzo dei servizi sanitari, anno 2005. [http://www.istat.it/dati/dataset/20080131_00/]

  10. Italian National Institute of Statistics - ISTAT. Popolazione in Italia - Anno 2005. [http://www.demo.istat.it]

  11. Zimmerman RK, Raymund M, Janosky JE, Nowalk MP, Fine J: Sensitivity and Specificity of Patient Self- Report of Influenza and Pneumococcal Polysaccharide Vaccinations among Elderly Outpatients in Diverse Patient Care Strata. Vaccine. 2003, 21: 1486-1491. 10.1016/S0264-410X(02)00700-4.

    Article  PubMed  Google Scholar 

  12. Andersen RM: Revisiting the behavioral model and access to medical care: does it matter?. J Health Soc Behav. 1995, 36: 1-10. 10.2307/2137284.

    Article  CAS  PubMed  Google Scholar 

  13. Andersen RM, Newman JF: Societal and individual determinants of medical care utilization in the United States. Milbank Mem Fund Q Health Soc. 1973, 51: 95-124. 10.2307/3349613.

    Article  CAS  PubMed  Google Scholar 

  14. Katz S, Downs TD, Cash HR, Grotz RC: Progress in development of the index of ADL. Gerontologist. 1970, 10: 20-30.

    Article  CAS  PubMed  Google Scholar 

  15. Austin PC, Goel V, van Walraven C: An introduction to multilevel regression models. Can J Public Health. 2001, 92: 150-154.

    CAS  PubMed  Google Scholar 

  16. Hamilton LC: Statistics with Stata (Updated for version 10). 2008, Belmont: Thomson - Brooks/Cole

    Google Scholar 

  17. Italian Ministry of Health. Dati sulla copertura vaccinale. [http://www.ministerosalute.it/influenza/paginaInternaMenuInfluenza.jsp?id=679&menu=strumentieservizi]

  18. Lu PJ, Singleton JA, Rangel MC, Wortley PM, Bridges CB: Influenza vaccination trends among adults 65 years or older in the United States, 1989-2002. Arch Intern Med. 2005, 165: 1849-1856. 10.1001/archinte.165.16.1849.

    Article  PubMed  Google Scholar 

  19. Breeze E, Mangtani P, Fletcher AE, Price GM, Kovats S, Roberts J: Trends in influenza vaccination uptake among people aged over 74 years, 1997-2000: Survey of 73 general practices in Britain. BMC Fam Pract. 2004, 5: 8-13. 10.1186/1471-2296-5-8.

    Article  PubMed  PubMed Central  Google Scholar 

  20. Coupland C, Harcourt S, Vinogradova Y, Smith G, Joseph C, Pringle M, Hippisley-Cox J: Inequalities in uptake of influenza vaccine by deprivation and risk group: Time trends analysis. Vaccine. 2007, 25: 7363-7371. 10.1016/j.vaccine.2007.08.032.

    Article  PubMed  Google Scholar 

  21. Mangtani P, Breeze E, Kovats S, Ng E, Roberts JA, Fletcher A: Inequalities in influenza vaccine uptake among people aged over 74 years in Britain. Prev Med. 2005, 41: 545-553. 10.1016/j.ypmed.2005.02.001.

    Article  PubMed  Google Scholar 

  22. Geerlings SW, Margriet Pot A, Twisk JWR, Deeg DH: Predicting transitions in the use of informal and professional care by older adults. Ageing Soc. 2005, 25: 111-130. 10.1017/S0144686X04002740.

    Article  Google Scholar 

  23. Lamura G, Mnich E, Nolan M, Wojszel B, Krevers B, Mestheneos L, Döhner H: Family carers' experiences using support services in Europe: empirical evidence from the EUROFAMCARE study. The Gerontologist. 2008, 48: 752-771.

    Article  PubMed  Google Scholar 

  24. Endrich MM, Blank PR, Szucs TD: Influenza vaccination uptake and socioeconomic determinants in 11 European countries. Vaccine. 2009, 27: 4018-4024. 10.1016/j.vaccine.2009.04.029.

    Article  PubMed  Google Scholar 

  25. Bonito AJ, Lenfestey NF, Eicheldinger C, Iannacchione VG, Campbell L: Disparities in Immunizations Among Elderly Medicare Beneficiaries, 2000 to 2002. Am J Prev Med. 2004, 27: 153-160. 10.1016/j.amepre.2004.04.004.

    Article  PubMed  Google Scholar 

  26. Damiani G, Federico B, Visca M, Agostini F, Ricciardi W: The impact of socioeconomic level on influenza vaccination among Italian adults and elderly: A cross-sectional study. Prev Med. 2007, 45: 373-379. 10.1016/j.ypmed.2007.07.007.

    Article  CAS  PubMed  Google Scholar 

  27. Chiatti C, Di Rosa M, Barbadoro P, Lamura G, Di Stanislao F, Prospero E: Socioeconomic determinants of influenza vaccination among older adults in Italy. Prev Med. 2010, 51: 333-334. 10.1016/j.ypmed.2010.06.008.

    Article  Google Scholar 

  28. Jimenez-Garcia R, Hernandez-Barrera V, Carrasco-Garrido P, Lopez de Andres A, Gil de Miguel: Predictors of influenza vaccination in adults with chronic bronchitis. Respiratory Medicine. 2009, 103: 1518-1525. 10.1016/j.rmed.2009.04.006.

    Article  PubMed  Google Scholar 

  29. Kohlhammer Y, Schnoor M, Schwartz M, Raspe H, Schäfer T: Determinants of influenza and pneumococcal vaccination in elderly people: a systematic review. Public Health. 2007, 12: 742-751. 10.1016/j.puhe.2007.02.011.

    Article  Google Scholar 

  30. Mangtani P, Breeze E, Stirling S, Hanciles S, Kovats S, Fletcher A: Cross-sectional survey of older peoples' views related to influenza vaccine uptake. BMC Public Health. 2006, 11 (6): 249-10.1186/1471-2458-6-249.

    Article  Google Scholar 

  31. Nelson LM, Longstreth WT, Koepsell TD, van Belle G: Proxy respondents in epidemiologic research. Epidemiol Rev. 1990, 12: 71-86.

    CAS  PubMed  Google Scholar 

  32. Mereckiene J, Cotter S, Nicoll A, Levy-Bruhl D, Ferro A, Tridente G Zanoni G, Berra P, Salmaso S, O'Flanagan D, Flanagan D: National seasonal influenza vaccination survey in Europe, 2008. Euro Surveill. 2008, 13 (43):

  33. Arthur AJ, Matthews RJ, Jagger C, Clarke M, Hipkin A, Bennison DP: Improving uptake of influenza vaccination among older people: a randomised controlled trial. Br J Gen Pract. 2002, 52: 717-722.

    PubMed  PubMed Central  Google Scholar 

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Correspondence to Carlos Chiatti.

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The authors declare that they have no competing interests.

Authors' contributions

CC, PB, GL and EP conceived and designed the study. CC, PB, GL and LP performed most of the analyses on collected data, suggested and elaborated most of data interpretation criteria, and drafted the manuscript. CC and PB performed most of the final statistical analyses. FDS, MD, GL and EP relevantly contributed to manuscript revision. EP, FDS and MD were involved in critical evaluation, interpretation and discussion of data, as well as in critical revision of the final manuscript and its revision. All authors read and approved the final version of the present manuscript.

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Chiatti, C., Barbadoro, P., Lamura, G. et al. Influenza vaccine uptake among community-dwelling Italian elderly: results from a large cross-sectional study. BMC Public Health 11, 207 (2011). https://doi.org/10.1186/1471-2458-11-207

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