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Mucosal delivery of Clostridium spores encoding recombinant overlapping peptides of HPV antigen as therapeutic vaccines for cervical cancer

Mucosal delivery of Clostridium spores encoding recombinant overlapping peptides of HPV antigen as therapeutic vaccines for cervical cancer
编码 HPV 抗原重组重叠肽的梭状芽胞杆菌孢子的粘膜递送作为宫颈癌的治疗疫苗
批准号:
133783
负责人:
金额:
$19.11万
依托单位:
依托单位国家:
英国
项目类别:
Feasibility Studies
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --

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中文摘要
翻译
“HPV是最常见的性传播感染,超过三分之二的人口在生命的某个阶段感染。大多数感染在几个月内无症状清除;然而,感染高危型HPV会导致癌症的发展,例如子宫颈。针对这些高风险类型的疫苗现已可用,这些疫苗正在大多数高收入国家和中国使用,以保护有感染风险的女孩和妇女。虽然这些干预措施被推荐并导致子宫颈癌发病率下降,但这种方法也有缺点。疫苗的稳定性很差,而且疫苗接种的方式(通过注射到肌肉中)不能很好地保护病毒通常进入人体的部位。至关重要的是,这些疫苗的高成本极大地限制了它们在HPV感染最普遍的低收入国家的使用。在这个项目中,CHAIN生物技术有限公司,一家在开发基于梭状菌的治疗方法方面具有专业知识的微生物组公司,正在与牛津大学经验丰富的免疫学研究人员合作,以克服目前可用疫苗的局限性。其目的是开发一种口服疫苗接种方法,以预防HPV感染,并治疗已经感染该病毒的人。通过摄入无害细菌,将疫苗直接送到胃肠道粘膜表面,克服了胃中pH值低和酶富集的环境,而这种环境会破坏其他口服疫苗。如果取得成功,该方法将大大改进目前的疫苗接种战略。它是非侵入性的,可以进行大规模疫苗接种,而不会有因针头损伤而传播血源性感染的风险,并且可以由非医务人员进行给药。如果这一方法取得成功,该项目将有可能将这一技术扩展到开发针对其他病毒和细菌感染的疫苗,这些感染对全球健康构成挑战,例如艾滋病毒、埃博拉病毒或霍乱。还有可能开发出针对癌细胞破坏的治疗性疫苗。”
英文摘要
"HPV is the most commonly sexually transmitted infection with over two-thirds of the population infected at some stage during life. Most infections are cleared without symptoms within a few months; however, infections with high risk types of HPV can lead to development of cancer in for example the cervix. Vaccination against these high-risk types is now available and these vaccines are being used in most high income countries and China to protect girls and women at risk of infection. While such interventions are recommended and have led to a decrease in cervical cancer incidence, the approach also has disadvantages. Stability of the vaccines is poor and the way in which the vaccines are given (by injection into muscle) does not give good protection at the sites where the virus normally enters the body. Critically, the high cost of these vaccines greatly limits their use in low income countries, where HPV infection is most prevalent.In this project, CHAIN Biotechnology Ltd, a microbiome company with expertise in developing _Clostridium_-based therapeutics, is collaborating with experienced immunological researchers from the University of Oxford to overcome limitations of currently available vaccines. The aim is to develop an oral vaccination approach to prevent HPV infection and also to treat people already affected by the virus. Delivery of vaccine directly to the mucosal surfaces of the gastrointestinal tract (GIT) via ingestion of harmless bacteria, overcomes the low pH and enzyme-enriched environment in the stomach that would destroy other oral vaccines. If successful, the approach provides a substantial improvement over the current vaccination strategies. It is non-invasive and would allow mass vaccination without the risk of spreading blood-borne infection by needle injuries, and administration could be performed by non-medical personnel. If the approach is successful, the project will give rise to the possibility of extending this technology to develop vaccines against other viral and bacterial infections that present challenges to global health such as for example HIV, Ebola or cholera. There is also the possibility to develop therapeutic vaccines that target the destruction of cancer cells."
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