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The Importance of Long-Term Social Research in Enabling Participation and Developing Engagement Strategies for New Dengue Control Technologies

DOI: 10.1371/journal.pntd.0001785

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Abstract:

Background In recent years, new strategies aimed at reducing the capacity of mosquito vectors to transmit dengue fever have emerged. As with earlier control methods, they will have to be employed in a diverse range of communities across the globe and into the main settings for disease transmission, the homes, businesses and public buildings of residents in dengue-affected areas. However, these strategies are notably different from previous methods and draw on technologies that are not without controversy. Public engagement and authorization are critical to the future success of these programs. Methodology/Principal Findings This paper reports on an Australian case study where long-term social research was used to enable participation and the design of an engagement strategy tailored specifically to the sociopolitical setting of a potential trial release site of Wolbachia-infected Aedes aegytpi mosquitoes. Central themes of the social research, methods used and conclusions drawn are briefly described. Results indicate that different communities are likely to have divergent expectations, concerns and cultural sensibilities with regard to participation, engagement and authorization. Conclusions/Significance The findings show that a range of issues need to be understood and taken into account to enable sensitive, ethical and effective engagement when seeking public support for new dengue control methods.

References

[1]  Ferretti MP (2007) Why public participation in risk regulation? The case of authorizing GMO products in the European Union. Sci Cult (Lond) 16: 377–395. doi: 10.1080/09505430701706723
[2]  Petersen AR, Bunton R (2002) The new genetics and the public's health. London: Routledge.256 p.
[3]  Fenner F, Fantini B (1999) Biological control of vertebrate pests: the history of myxomatosis, an experiment in evolution. 352 p.
[4]  Welsh R, Ervin DE (2006) Precaution as an approach to technology development: the case of transgenic crops. Sci Technol Human Values 31: 153–172. doi: 10.1177/0162243905283638
[5]  Irwin A, Michael M (2003) Science, social theory and public knowledge. Maidenhead: Open University Press.192 p.
[6]  Lavery JV, Harrington LC, Scott TW (2008) Ethical, social, and cultural considerations for site selection for research with genetically modified mosquitoes. Am J Trop Med Hyg 79: 312–318. doi: 10.1177/0162243905283638
[7]  Kilama WL (2009) Health research ethics in public health: trials and implementation of malaria mosquito control strategies. Acta Tropica 112: S37–S47. doi: 10.1016/j.actatropica.2009.08.003
[8]  Touré YT, Oduola AMJ, Sommerfeld J, Morel CM (2003) Bio-safety and risk assessment in the use of genetically modified mosquitoes for disease control. In: Takken W, Scott TW, editors. Ecological aspects for application of genetically modified mosquitoes. Wageningen: Springer/Frontis. pp. 217–222.
[9]  Newman PA (2006) Towards a science of community engagement. Lancet 36: 302. doi: 10.1016/S0140-6736(06)68067-7
[10]  Knols BGJ, Louis C (2006) Bridging laboratory and field research for genetic control of disease vectors. Wageningen: Springer. 238 p
[11]  Macer DRJ (2003) Ethical, legal and social issues of genetically modified disease vectors in public health. Geneva: UNDP/World Bank/WHO Special Program for Research and Training in Tropical Diseases (TDR).
[12]  Tindana PO, Singh JA, Tracy CS, Upshur REG, Daar AS, et al. (2004) Grand challenges in global health: community engagement in research in developing countries. PLOS Med 4: e273. doi: 10.1371/journal.pmed.0040273
[13]  Knols BGJ, Bossin HC, Mukabana WR, Robinson AS (2007) Transgenic mosquitoes and the fight against malaria: managing technology push in a turbulent GMO world. Am J Trop Med Hyg 77: 232–42.
[14]  Marris C, Rose N (2010) Open engagment: exploring public participaption in the biosciences. PLoS Biol 8: 1–2.
[15]  Laverack G (2009) Public health: power, empowerment and professional practice. Palgrave Macmillan: New York. 137 p.
[16]  Bibeau G (1997) At work in the fields of public health: the abuse of rationality. Med Anthropol Q 11: 246–252. doi: 10.1525/maq.1997.11.2.246
[17]  Kleinman A, Eisenberg L, Good B (1978) Culture, illness, and care: clinical lessons from anthropologic and cross-cultural research. Ann Inter Med 88: 251–258.
[18]  Kleinman A (1995) The anthropology of medicine. In: Reich WT, editor. Encyclopedia of bioethics. New York: Simon and Schuster. pp. 1667–1672.
[19]  Good BJ (1990) Medicine, rationality and experience: an anthropological perspective. Cambridge: Cambridge University Press. 262 p.
[20]  Agyepong IA (1992) Malaria: ethnomedical perceptions and practice in an Adangbe farming community and implications for control. Soc Sci Med 35: 131–137. doi: 10.1016/0277-9536(92)90160-R
[21]  Winch P, Makemba A, Kamazima S, Lwihula G, Lubega P, et al. (1994) Seasonal variation in the perceived risk of malaria: implications for the promotion of insecticide-impregnated bed nets. Soc Sci Med 39: 63–75. doi: 10.1016/0277-9536(94)90166-X
[22]  Kendall C, Hudelson P, Leontsini E, Winch P, Lloyd L, et al. (1991) Urbanization, dengue, and the health transition: anthropological contributions to international health. Med Anthropol Q 5: 257–268. doi: 10.1525/maq.1991.5.3.02a00050
[23]  Gordon AJ (1988) Mixed strategies in health education and community participation: an evaluation of dengue control in the Dominican Republic. Health Educ Res 3: 399–419. doi: 10.1525/maq.1991.5.3.02a00050
[24]  Suarez RM, Maria S, Olarte F, Ana MFA, Catalina González U (2005) Is what I have just a cold or is it dengue? Addressing the gap between the politics of dengue control and daily life in Villavicencio-Colombia. Soc Sci Med 61: 495–502. doi: 10.1016/j.socscimed.2004.11.069
[25]  Slosek J (1986) Aedes aegypti mosquitoes in the Americas: a review of their interactions with the human population. Soc Sci Med 23: 249–257. doi: 10.1016/0277-9536(86)90345-X
[26]  Gubler DJ, Meltzer M (1999) Impact of dengue/dengue hemorrhagic fever on the developing world. Adv Virus Res 53: 35–70. doi: 10.1016/s0065-3527(08)60342-5
[27]  Manderson L, Abay A (1992) An epidemic in the field? Rapid assessment procedures and health research. Soc Sci Med 35: 839–850. doi: 10.1016/0277-9536(92)90098-B
[28]  McMeniman CJ, Lane RV, Cass BN, Fong AWC, Sidhu M, et al. (2009) Stable introduction of a life-shortening Wolbachia infection into the mosquito Aedes aegypti. Science 323: 141–144. doi: 10.1126/science.1165326
[29]  Sinkins SP, O'Neill SL (2000) Wolbachia as a vehicle to modify insect populations. In: Handler A, James AA, editors. Insect transgenesis: methods and applications. London: CRC Press. pp. 271–287.
[30]  Cook PE, McMeniman CJ, O'Neill SL (2008) Modifying insect population age structure to control vector-borne disease. Adv Exp Med Biol 627: 126–140. doi: 10.1007/978-0-387-78225-6_11
[31]  Moreira LA, Saig E, Turley AP, Ribeiro JMC, O'Neill SL, et al. (2009) Human probing behavior of Aedes aegypti when infected with a life-shortening strain of Wolbachia. PLoS Negl Trop Dis 3: e568. doi: 10.1371/journal.pntd.0000568
[32]  Moreira LA, Iturbe-Ormaetxe I, Jeffery JA, Lu G, Pyke AT, et al. (2009) A Wolbachia symbiont in Aedes aegypti limits infection with Dengue, Chikungunya, and Plasmodium. Cell 139: 1268–1278. doi: 10.1016/j.cell.2009.11.042
[33]  Australian Bureau of Statistics (2006) Australian census. Canberra: Australian Government Publishing Sevice.
[34]  Compass Research (2009) Community telephone survey. Report prepared for James Cook University School of Public Health, Cairns.
[35]  Compass Research (2010) Community telephone survey. Report repared for James Cook University School of Public Health, Cairns.
[36]  McNaughton D (2009) The importance of social research for public engagement in bio-control releases: the case of the Eliminate Dengue Project. In: Crawford VL, Reza JN, editors. Progress and prospects for the use of genetically modified mosquitoes to inhibit disease transmission. Geneva: World Health Organization. pp. 48–50.
[37]  McNaughton D, Clough A, Johnson P, Ritchie S, O'Neill SJ (2010) Beyond the ‘back yard’: lay knowledge about Aedes aegypti in northern Australia and its implications for policy and practice. Acta Tropica 116: 74–80. doi: 10.1016/j.actatropica.2010.05.012
[38]  Popovici J, Moreira LA, Poinsignon A, Iturbe-Ormaetxe I, McNaughton D, et al. (2011) Assessing the safety of a Wolbachia-based biological control strategy to control dengue transmission by Aedes mosquitoes. Memorias do Instituto Oswaldo Cruz 105: 957–964. doi: 10.1590/S0074-02762010000800002
[39]  Murphy B, Jansen C, Murray J, De Barro P (2012) Risk analysis on the Australian release of Aedes aegypti (L.) (Diptera: Culicidae) containing Wolbachia. Brisbane: CSIRO Report. Available: http://eliminatedengue.com/en/RESEARCH/P?rogramPublications.aspx. Accessed 2012 Jun 18
[40]  Briese DT, McLaren DA (1997) Community involvement in the distribution and evaluation of biological control agents: Landcare and similar groups in Australia. Biocontrol News and Information 18: 39–49.
[41]  Shepherd RL, Urquhart LM (1991) Attitudes to pests and pest control methods, Research Report No. 210. Canterbury, New Zealand: Lincoln University Agribusiness and Economics Research Unit.
[42]  Fitzgerald G, Saunders L (1994) Doing good, doing harm: public perceptions and issues in the biological control of possums and rabbits. Report by NZ Institute for Social Research and Development. Christchurch, New Zealand: Ministry of Agriculture and Forestry Policy and Landcare Research.
[43]  Andres LA (1981) Conflicting interests and the biological control of weeds. Proceedings V International Symposium on Biological Control of Weeds, 22–27 July 1980, Australia. Melbourne: CSIRO.
[44]  Cullen JM, Delfosse ES (1985) Echium plantagineum: catalyst for conflict and change in Australia. Proceedings VI International Symposium on Biological Control of Weeds, 19–25 August 1984, Canada. Vancouver: Agriculture Canada.
[45]  Field RP, Bruzzese E (1985) Biological control of blackberries: resolving a conflict in Australia. Proceedings VI International Symposium on Biological Control of Weeds, 19–25 August 1984, Canada. Vancouver: Agriculture Canada.
[46]  Munro R, Williams R (1994) Rabbit haemorrhagic disease: issues in assessment for biological control. Canberra: Bureau of Resource Sciences.
[47]  Johnston MJ, Marks CA (1997) Attitudinal survey on vertebrate pest management in Victoria. Report Series No. 3. Frankston: Department of Natural Resources and Environment.
[48]  Lavery JV, Tindana PO, Scott TW, Harrington LC, Ramsey JM, et al. (2012) Towards a framework for community engagement in global health research. Trends Parasitol 26: 279–283. doi: 10.1016/j.pt.2010.02.009

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