Celartics Biopharma's dendritic cell-based vaccine against COVID-19 infection found to efficiently produce viral antigen-specific T lymphocytes

2020-05-22   

Results from ongoing study suggest the major role of Celartics' Cov-DCVax in preventing viral infection of COVID-19 and in controlling progression of the virus-associated diseasesBeijing, May 22, 2020, Celartics Biopharma announced today the filing of a patent application covering a novel dendritic cell (DC)-based vaccine, Cov-DCVax, to fight viral infection of COVID-19. The results, led by Celartics research team, demonstrate that using the proprietary engineered DC technology by targeting nucleoprotein (NP) of COVID-19, NP-specific cytotoxic CD8+ T cells from naive T lymphocytes can be efficiently induced and massively expanded in culture. The antigen-loaded DCs and viral antigen-specific T cells have great potentials in preventing viral infection and in controlling progression of virus-associated diseases, respectively.

Dendritic cells are the most potent professional antigen-presenting cells that can engulf and process viral or tumor antigens. Once DCs are loaded with viral antigen and become activated, they acquire the ability to educate naïve T lymphocytes, promoting these T cells to differentiate into antigen-specific cytotoxic T cells that can fight virus. Primary blood DCs constitute 1% of immune cells in peripheral blood and are not able to grow in culture. Manufacturing clinical grade DC with the conventional DC method, therefore, needs quite large amount of blood and is very costly, limiting DC’s application as a preventive vaccine against viral infection. To overcome various technical hurdles associated with the conventional DC method, Celartics Biopharma has developed an innovative engineered DC technology, which enables primary blood DCs from a few milliliters of peripheral blood to grow in culture, generating large amounts of highly activated DCs suitable for multiple clinical applications. These engineered DCs exhibit vastly improved antigen-loading capability and efficient lymphoid tissue homing ability due to high expression of the chemokine receptor, CCR7. In addition, the manufacturing cost for generating engineered DCs is significantly reduced. “The engineered DCs are safe to use, as demonstrated in animal studies and pilot clinical trial in cancer immunotherapy”, said Yang Yu, CEO of Celartics Biopharma

Current vaccine strategies for COVID-19 include mRNA vaccine, DNA vaccine, adenovirus vector-based vaccine and inactivated virus vaccine, with the goal of generating neutralizing antibody that reacts to Spike, the viral surface protein of COVID-19. The neutralizing antibody blocks entry of virus to host cells through ACE2 receptor. Accumulating evidences have suggested that developing permanent immunity remains challenging, exclusively by targeting heavily glycosylated Spike protein or rapidly mutating viral surface proteins such as influenza HA. Differing from these vaccine strategies, the engineered DCs are designed to empower T cells to fight virus. DC-educated T cells recognize viral antigenic peptides complexed with HLA molecules on the surface of virus-harboring host cells and launch subsequent attack to eliminate virus. Furthermore, a given viral protein in host cells is processed into multiple antigenic peptides that are bound to distinct HLA molecules, this provides many targets for antigen-specific T cells to attack. Unlike Spike protein, the NP protein of COVID-19 is less likely to mutate and also share 91% amino acid sequence homology with the counterpart of SARS virus. “The Cov-DCVax is designed to develop long-lasting protective immunity in human to fight both COVID-19 and SARS viruses”, said Yang Yu.

In last February, Celartics Biopharma announced the development of Human Dendritic Cell and Data Repository (HDCR), in order to meet urgent demands in fighting deadly virus outbreak and cancer. HDCR prepares human blood dendritic cells from healthy individuals in GMP facility, coupled with data analysis covering immunophenotyping and HLA typing. These engineered DCs are stored in liquid nitrogen and are readily available when needed, in supporting cell-based vaccination or immunotherapy. HDCR also serves as the platform technology provider to research institutions and pharmaceutical industries. The ultimate goal of HDCR is to bring in a feasibility of dendritic cells as a new form of preventive vaccines for rapidly evolving viruses. The Cov-DCVax vaccine is intended for generating long-lasting protective immunity in high risk individuals, while the viral antigen-specific T cells provide immediate therapeutic protection in controlling the progression of COVID-19-associated disease. "The current research progress and patent application enhance the spectrum of possible collaborators and partners. We are delighted that our scientific team has made solid progress in developing such unique Cov-DCVax vaccine, which may potentially yield benefits useful to high risk population, considering current global impact and severity of COVID-19 pandemic", said Yang Yu, CEO of Celartics Biopharma.


About Celartics Biopharma, Inc. Celartics Biopharma is a biotechnology company, located at Dongsheng International Science Park, Beijing. The company focuses on developing innovative cell-based immunotherapies for human cancer and viral diseases. The Company seeks rapidly advancing these technologies through pre-clinical and Phase I and II clinical trials, centering on DC therapeutic vaccine and adoptive T cell transfer therapies for treating solid cancer and leukemia. The company also seeks potential collaborators and partners for joint development through the proprietary technology platforms.

Ph.D., Chief Technology Officer, Celartics Biopharma, Inc.

Company :Celartics Biopharma Inc., Ltd.  

Contact: Huan Zhang,

Phone:010-6295 5880

Email: lily@celartics.com

Web:http://www.celartics.com/


免责声明:本文转载自其它媒体,转载目的在于传递更多信息,并不代表本网赞同其观点和对其真实性负责,亦不负任何法律责任。 本站所有资源全部收集于互联网,分享目的仅供大家学习与参考,如有版权或知识产权侵犯等,请给我们留言。

最新

  • 儿童过敏营养科学发展高峰论坛落幕,活莱维新品发布引领行业创新

    近日,由儿童过敏防治与免疫调理领军企业HOLLYWISE活莱维主办的“整合医学·儿童过敏营养科学发展高峰论坛暨儿童过敏干预营养医学实践班(第一期)”在南京凯宾斯基酒店隆重举行。会议汇聚了儿科医学、营养学、免疫学、中医调理等领域知名专家、学者及行业代表,围绕儿童过敏疾病的预防、识别、干预及营养医学应用展开深度探讨,并同步启动多项行业合作与创新项目,为儿童过敏防治领域注入新动能。
  • 56歲仍活躍在AI 領域?這位Stonex分析師用AI重新定義“資深”

    當同齡人開始規劃退休生活時,李健新正忙着給Stone AI的學員講解“機器學習如何預測外匯波動”。作爲Stonex集團服務超17年的元老級金融分析師,他罕見地兼具傳統金融功底與AI技術實踐能力——這源於他1990年初入職場時,在颱灣凱基証券公司打下的紥實基礎。
  • 田蜜佳人:溯源自然,“寻蜜’每一滴纯净与温暖

    在四川洪雅县高庙乡黑山村的云雾深处,72岁的养蜂人老张正用布满裂痕的手掌轻抚蜂箱。这位与蜜蜂相伴四十余载的老知青,用蜂蜜的甜润滋养着身患智残的女儿,也用坚守诠释着养蜂人的生命哲学。这是田蜜佳人和惠蜂人寻蜜之旅的一个缩影——当城市霓虹闪烁时,总有一群人甘愿跨越山川湖海,以“播种爱、传递爱、收获爱”为使命,深入中国偏远的蜜源地,只为追溯每一滴蜂蜜的纯粹,让自然的馈赠与人文的温度在舌尖交融。
  • 百斑容颜轻疗肤,科技与美学并重,开启肌肤管理新篇章

    颜值经济时代,消费者对肌肤健康与美丽的追求,已超越单纯外在妆饰范畴,而是如古人云“清水出芙蓉,天然去雕饰”般,更注重内在调理与自然之美。然而,环境污染、生活压力等现代生活因素,却给肌肤带来了斑、敏、痘、疣、皱、粗、黑、黄等诸多问题,也成为消费者关注的焦点。基于此,百斑容颜以科技为翼,自然为基,将千年草本疗药智慧与现代科技巧妙融合,为消费者解锁肌肤美丽密码。
  • 上门康养服务总是争议不断,爱尚往约如何正确规范?

    伴随着新一代消费者偏好的悄然转变,以及互联网+、大数据等新技术深度融入民生服务领域的趋势下,催生了一个以“点对点”上门服务为核心的新业态,从宠物照料、收纳整理到康养保健,广泛渗透至日常生活的方方面面,精准对接现代人对便捷生活的追求。然而,正如多数新兴行业在发展过程中必经的考验一样,上门服务在带来便捷与舒适的同时,也逐渐浮现出诸多亟待解决的问题。近年来,关于其服务质量的负面报道屡见不鲜,多次引起官方关注并被公开点名,频繁触动公众神经。
  • 华北制药华维健康纳滤甘泉,一瓶水装着百姓健康!

    水,是生命之源,更是健康之本。然而,在工业文明与城市化进程加速的今天,人类赖以生存的水源正面临前所未有的考验。从工业废水渗透到农业面源污染,从化学微污染到管网二次污染,每一滴水从源头到入口的旅程都暗藏隐忧。
  • REPECHAGE瑞波琴创始人Lydia Sarfati:凭可持续海藻科技开拓中国高端院线市场

    当海洋植物邂逅肌肤护理,会碰撞出怎样的火花?当传统美容理念遭遇创新科技,将迎来何种变革?当全球市场需求呈现多元态势,品牌又该如何精准布局?第66届广州美博会期间,美国海藻专业修护品牌REPECHAGE瑞波琴创始人Lydia Sarfati女士接受专访,分享了品牌45年来以海藻技术为核心的美容护肤理念,以及其如何通过创新与专业性持续引领全球沙龙护肤市场。

友情链接

Back to top
      联系我们   SiteMap