A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.

The circumsporozoite protein (CSP) of Plasmodium falciparum is a major surface protein, which forms a dense coat on the sporozoite's surface. Preclinical research on CSP and clinical evaluation of a CSP fragment-based RTS, S/AS01 vaccine have demonstrated a modest degree of protection against P...

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Main Authors: Amy R Noe, Diego Espinosa, Xiangming Li, Jordana G A Coelho-Dos-Reis, Ryota Funakoshi, Steve Giardina, Hongfan Jin, Diane M Retallack, Ryan Haverstock, Jeffrey R Allen, Thomas S Vedvick, Christopher B Fox, Steven G Reed, Ramses Ayala, Brian Roberts, Scott B Winram, John Sacci, Moriya Tsuji, Fidel Zavala, Gabriel M Gutierrez
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4172688?pdf=render
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spelling doaj-3b2cec5996cd4a34b37c5b812f74c3d62020-11-25T01:14:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0199e10776410.1371/journal.pone.0107764A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.Amy R NoeDiego EspinosaXiangming LiJordana G A Coelho-Dos-ReisRyota FunakoshiSteve GiardinaHongfan JinDiane M RetallackRyan HaverstockJeffrey R AllenThomas S VedvickChristopher B FoxSteven G ReedRamses AyalaBrian RobertsScott B WinramJohn SacciMoriya TsujiFidel ZavalaGabriel M GutierrezThe circumsporozoite protein (CSP) of Plasmodium falciparum is a major surface protein, which forms a dense coat on the sporozoite's surface. Preclinical research on CSP and clinical evaluation of a CSP fragment-based RTS, S/AS01 vaccine have demonstrated a modest degree of protection against P. falciparum, mediated in part by humoral immunity and in part by cell-mediated immunity. Given the partial protective efficacy of the RTS, S/AS01 vaccine in a recent Phase 3 trial, further improvement of CSP-based vaccines is crucial. In this report, we describe the preclinical development of a full-length, recombinant CSP (rCSP)-based vaccine candidate against P. falciparum malaria suitable for current Good Manufacturing Practice (cGMP) production. Utilizing a novel high-throughput Pseudomonas fluorescens expression platform, we demonstrated greater efficacy of full-length rCSP as compared to N-terminally truncated versions, rapidly down-selected a promising lead vaccine candidate, and developed a high-yield purification process to express immunologically active, intact antigen for clinical trial material production. The rCSP, when formulated with various adjuvants, induced antigen-specific antibody responses as measured by enzyme-linked immunosorbent assay (ELISA) and immunofluorescence assay (IFA), as well as CD4+ T-cell responses as determined by ELISpot. The adjuvanted rCSP vaccine conferred protection in mice when challenged with transgenic P. berghei sporozoites containing the P. falciparum repeat region of CSP. Furthermore, heterologous prime/boost regimens with adjuvanted rCSP and an adenovirus type 35-vectored CSP (Ad35CS) showed modest improvements in eliciting CSP-specific T-cell responses and anti-malarial protection, depending on the order of vaccine delivery. Collectively, these data support the importance of further clinical development of adjuvanted rCSP, either as a stand-alone product or as one of the components in a heterologous prime/boost strategy, ultimately acting as an effective vaccine candidate for the mitigation of P. falciparum-induced malaria.http://europepmc.org/articles/PMC4172688?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Amy R Noe
Diego Espinosa
Xiangming Li
Jordana G A Coelho-Dos-Reis
Ryota Funakoshi
Steve Giardina
Hongfan Jin
Diane M Retallack
Ryan Haverstock
Jeffrey R Allen
Thomas S Vedvick
Christopher B Fox
Steven G Reed
Ramses Ayala
Brian Roberts
Scott B Winram
John Sacci
Moriya Tsuji
Fidel Zavala
Gabriel M Gutierrez
spellingShingle Amy R Noe
Diego Espinosa
Xiangming Li
Jordana G A Coelho-Dos-Reis
Ryota Funakoshi
Steve Giardina
Hongfan Jin
Diane M Retallack
Ryan Haverstock
Jeffrey R Allen
Thomas S Vedvick
Christopher B Fox
Steven G Reed
Ramses Ayala
Brian Roberts
Scott B Winram
John Sacci
Moriya Tsuji
Fidel Zavala
Gabriel M Gutierrez
A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.
PLoS ONE
author_facet Amy R Noe
Diego Espinosa
Xiangming Li
Jordana G A Coelho-Dos-Reis
Ryota Funakoshi
Steve Giardina
Hongfan Jin
Diane M Retallack
Ryan Haverstock
Jeffrey R Allen
Thomas S Vedvick
Christopher B Fox
Steven G Reed
Ramses Ayala
Brian Roberts
Scott B Winram
John Sacci
Moriya Tsuji
Fidel Zavala
Gabriel M Gutierrez
author_sort Amy R Noe
title A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.
title_short A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.
title_full A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.
title_fullStr A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.
title_full_unstemmed A full-length Plasmodium falciparum recombinant circumsporozoite protein expressed by Pseudomonas fluorescens platform as a malaria vaccine candidate.
title_sort full-length plasmodium falciparum recombinant circumsporozoite protein expressed by pseudomonas fluorescens platform as a malaria vaccine candidate.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The circumsporozoite protein (CSP) of Plasmodium falciparum is a major surface protein, which forms a dense coat on the sporozoite's surface. Preclinical research on CSP and clinical evaluation of a CSP fragment-based RTS, S/AS01 vaccine have demonstrated a modest degree of protection against P. falciparum, mediated in part by humoral immunity and in part by cell-mediated immunity. Given the partial protective efficacy of the RTS, S/AS01 vaccine in a recent Phase 3 trial, further improvement of CSP-based vaccines is crucial. In this report, we describe the preclinical development of a full-length, recombinant CSP (rCSP)-based vaccine candidate against P. falciparum malaria suitable for current Good Manufacturing Practice (cGMP) production. Utilizing a novel high-throughput Pseudomonas fluorescens expression platform, we demonstrated greater efficacy of full-length rCSP as compared to N-terminally truncated versions, rapidly down-selected a promising lead vaccine candidate, and developed a high-yield purification process to express immunologically active, intact antigen for clinical trial material production. The rCSP, when formulated with various adjuvants, induced antigen-specific antibody responses as measured by enzyme-linked immunosorbent assay (ELISA) and immunofluorescence assay (IFA), as well as CD4+ T-cell responses as determined by ELISpot. The adjuvanted rCSP vaccine conferred protection in mice when challenged with transgenic P. berghei sporozoites containing the P. falciparum repeat region of CSP. Furthermore, heterologous prime/boost regimens with adjuvanted rCSP and an adenovirus type 35-vectored CSP (Ad35CS) showed modest improvements in eliciting CSP-specific T-cell responses and anti-malarial protection, depending on the order of vaccine delivery. Collectively, these data support the importance of further clinical development of adjuvanted rCSP, either as a stand-alone product or as one of the components in a heterologous prime/boost strategy, ultimately acting as an effective vaccine candidate for the mitigation of P. falciparum-induced malaria.
url http://europepmc.org/articles/PMC4172688?pdf=render
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