Related Experiment Video
Updated: Jan 20, 2026

A Cell Culture Model for Producing High Titer Hepatitis E Virus Stocks
Published on: June 26, 2020
Display of malaria transmission-blocking antigens on chimeric duck hepatitis B virus-derived virus-like particles
David Wetzel1,2, Jo-Anne Chan3, Manfred Suckow1
1ARTES Biotechnology GmbH, Langenfeld, Germany.
Background:
Malaria caused by Plasmodium falciparum is one of the major threats to human health globally. Despite huge efforts in malaria control and eradication, highly effective vaccines are urgently needed, including vaccines that can block malaria transmission. Chimeric virus-like particles (VLP) have emerged as a promising strategy to develop new malaria vaccine candidates.
Methods:
We developed yeast cell lines and processes for the expression of malaria transmission-blocking vaccine candidates Pfs25 and Pfs230 as VLP and VLP were analyzed for purity, size, protein incorporation rate and expression of malaria antigens.
Results:
In this study, a novel platform for the display of Plasmodium falciparum antigens on chimeric VLP is presented. Leading transmission-blocking vaccine candidates Pfs25 and Pfs230 were genetically fused to the small surface protein (dS) of the duck hepatitis B virus (DHBV). The resulting fusion proteins were co-expressed in recombinant Hansenula polymorpha (syn. Pichia angusta, Ogataea polymorpha) strains along with the wild-type dS as the VLP scaffold protein. Through this strategy, chimeric VLP containing Pfs25 or the Pfs230-derived fragments Pfs230c or Pfs230D1M were purified. Up to 100 mg chimeric VLP were isolated from 100 g dry cell weight with a maximum protein purity of 90% on the protein level. Expression of the Pfs230D1M construct was more efficient than Pfs230c and enabled VLP with higher purity. VLP showed reactivity with transmission-blocking antibodies and supported the surface display of the malaria antigens on the native VLP.
Conclusion:
The incorporation of leading Plasmodium falciparum transmission-blocking antigens into the dS-based VLP scaffold is a promising novel strategy for their display on nano-scaled particles. Competitive processes for efficient production and purification were established in this study.
Related Concept Videos
10:28A Cell Culture Model for Producing High Titer Hepatitis E Virus Stocks
02:50Suppressing Hepatitis B Virus Replication Using Viral Antigen-Specific T Cells
13:04A Protocol for Analyzing Hepatitis C Virus Replication
04:27The Virus-Like Particles Capture Assay: A Method to Isolate Antigen-Displaying VLPs from a Sample Using Neutralizing Antibody-Conjugated Magnetic Beads
05:15Detection of Neutralization-sensitive Epitopes in Antigens Displayed on Virus-Like Particle (VLP)-Based Vaccines Using a Capture Assay
04:46Targeting Liver Tumors with Oncolytic Viruses via the Hepatic Artery

