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新智慧应对老敌人:西班牙瓦伦西亚 2012 年第 4 届世界流感疫苗大会(IVW)科学研讨会摘要,2012 年 10 月 11 日。

New Wisdom to Defy an Old Enemy: Summary from a scientific symposium at the 4th Influenza Vaccines for the World (IVW) 2012 Congress, 11 October, Valencia, Spain.

机构信息

Mayo Clinic Vaccine Research Group, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Vaccine. 2013 Apr 17;31 Suppl 1:A1-20. doi: 10.1016/j.vaccine.2013.02.033.

Abstract

Both seasonal and pandemic influenza cause considerable morbidity and mortality globally. In addition, the ongoing threat of new, unpredictable influenza pandemics from emerging variant strains cannot be underestimated. Recently bioCSL (previously known as CSL Biotherapies) sponsored a symposium 'New Wisdom to Defy an Old Enemy' at the 4th Influenza Vaccines for the World Congress in Valencia, Spain. This symposium brought together a renowned faculty of experts to discuss lessons from past experience, novel influenza vaccine developments, and new methods to increase vaccine acceptance and coverage. Specific topics reviewed and discussed included new vaccine development efforts focused on improving efficacy via alternative administration routes, dose modifications, improved adjuvants, and the use of master donor viruses. Improved safety was also discussed, particularly the new finding of an excess of febrile reactions isolated to children who received the 2010 Southern Hemisphere (SH) trivalent inactivated influenza vaccine (TIV). Significant work has been done to both identify the cause and minimize the risk of febrile reactions in children. Other novel prophylactic and therapeutic advances were discussed including immunotherapy. Standard IVIg and hIVIg have been used in ferret studies and human case reports with promising results. New adjuvants, such as ISCOMATRIX™ adjuvant, were noted to provide single-dose, prolonged protection with seasonal vaccine after lethal H5N1 virus challenge in a ferret model of human influenza disease. The data suggest that adjuvanted seasonal influenza vaccines may provide broader protection than unadjuvanted vaccines. The use of an antigen-formulated vaccine to induce broad protection between pandemics that could bridge the gap between pandemic declaration and the production of a homologous vaccine was also discussed. Finally, despite the availability of effective vaccines, most current efforts to increase influenza vaccine coverage rates to higher levels (i.e., above 70-80%) have been ineffective in highly developed countries where the vaccine is used, hindered by the public's skepticism towards vaccines in general. New educational and social media methods to increase vaccine acceptance and coverage were discussed. While the first priority should be the development of improved influenza vaccines, a particular focus on the aging global population is critical. It is also important to draw lessons from other academic disciplines that can help to inform vaccine education programs, policy, and communication. By tailoring communications and patient education using an understanding of cognitive bias and the model of preferred cognitive styles, the likelihood of effecting desirable health decisions can be maximized, leading to improved vaccine coverage and control of influenza and other vaccine-preventable diseases.

摘要

季节性流感和大流行性流感在全球范围内都造成了相当大的发病率和死亡率。此外,新兴变异株引发的新的、不可预测的流感大流行的持续威胁不容忽视。最近,生物 CSL(前身为 CSL 生物疗法)在西班牙巴伦西亚举行的第四届世界流感疫苗大会上赞助了一次题为“新智慧战胜旧敌”的研讨会。该研讨会汇集了一批著名的专家学者,讨论了从过去经验中吸取的教训、新型流感疫苗的开发,以及提高疫苗接种率和覆盖率的新方法。审查和讨论的具体主题包括通过改变给药途径、剂量调整、改良佐剂和使用主供体病毒来提高疫苗疗效的新疫苗开发工作。还讨论了提高安全性的问题,特别是发现接受 2010 年南半球(SH)三价灭活流感疫苗(TIV)的儿童中,发热反应的发生率过高。已经做了大量工作来确定发热反应的原因,并最大限度地降低儿童发热反应的风险。还讨论了其他新型预防和治疗进展,包括免疫疗法。在雪貂研究和人类病例报告中,标准 IVIg 和 hIVIg 已被用于治疗,结果令人鼓舞。新型佐剂,如 ISCOMATRIXTM 佐剂,在雪貂流感疾病模型中,在致命的 H5N1 病毒攻击后,用季节性疫苗提供了单剂量、延长的保护作用。数据表明,佐剂流感疫苗可能比非佐剂疫苗提供更广泛的保护。还讨论了使用抗原配方疫苗在大流行之间诱导广泛保护的可能性,这种疫苗可以在宣布大流行和生产同源疫苗之间提供保护。最后,尽管有有效的疫苗,但在发达国家,大多数提高流感疫苗接种率的努力(即达到 70-80%以上)都没有效果,这是由于公众对疫苗普遍持怀疑态度所致。还讨论了提高疫苗接种率和覆盖率的新教育和社交媒体方法。虽然首要任务应该是开发更好的流感疫苗,但特别关注老龄化的全球人口至关重要。从其他可以帮助为疫苗教育计划、政策和沟通提供信息的学术领域吸取经验教训也很重要。通过了解认知偏见和首选认知风格模型来调整沟通和患者教育,可以最大限度地提高产生理想健康决策的可能性,从而提高疫苗接种率,控制流感和其他可通过疫苗预防的疾病。

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