VIRAL ANTIGENS |
Dengue epitope region of E protein of DENV domain I and II (Dengue fever) |
Lettuce |
Not reported |
Cross reaction of antibodies from the sera of dengue patients |
Maldaner et al., 2013
|
Dengue-3 serotype capsid complete premembrane (prM) and truncated envelope (E) protein prM/E (Dengue fever) |
Lettuce |
Not reported |
Not tested |
Kanagaraj et al., 2011
|
Mutated human papillomavirus (HPV)-16 oncoprotein E7 (cervical cancer) |
Chlamydomonas reinhardtii |
Not reported |
Vaccination in mice with algae extracts showed high level of E7-specific antibodies but low activation of E7-specific CD8+ cells |
Vlasák et al., 2013
|
Mutated, attenuated E7 oncoprotein (E7GGG), alone or as a fusion with affinity tags (His6 or FLAG) (cervical cancer) |
Chlamydomonas reinhardtii |
0.12% of total soluble protein (TSP) |
Induction of specific anti-E7 IgGs and E7-specific T-cell proliferation detected in C57BL/6 mice vaccinated with total Chlamydomonas extract and with affinity-purified protein |
Demurtas et al., 2013
|
E7 translationally fused with β-glucuronidase |
Tobacco |
GUS-E7 showed expression between 30 and 40 times higher than previously reported for unfused E7 (0.1% of TSP) |
Not tested |
Morgenfeld et al., 2014
|
Modified HPV-16 L1 gene fused with glutathione-S-transferase (GST) GST-L1_2xCysM (cervical cancer) |
Tobacco |
Not detected |
Not tested |
Hassan et al., 2014
|
Synthetic gene encoding a C4V3 recombinant protein (HIV) |
Tobacco |
~25 μg/g of fresh weight |
Plant-derived C4V3 has elicited both systemic and mucosal antibody responses in BALB/c mice, as well as CD4+ T cell proliferation responses |
Rubio-Infante et al., 2012
|
Multiepitopic protein (Multi-HIV) carrying several neutralizing epitopes from both gp120 and gp41 (AIDS) |
Tobacco |
Protein accumulation levels up to 16 μg/g of fresh tobacco biomass |
Multi-HIV protein was able to elicit humoral responses in mice when orally administered |
Rosales-Mendoza et al., 2014
|
HIV-1 capsid protein p24 alone and in fusion with the negative regulatory protein Nef (p24-Nef) (AIDS) |
Tobacco |
P24 up to ~4% and p24-Nef up to ~40% of TSP |
Subcutaneous immunization with purified chloroplast-derived p24 elicited a strong antigen-specific serum IgG response. Oral administration of a partially purified chloroplast-derived p24-Nef fusion protein, used as a booster after subcutaneous injection with either p24 or Nef, also elicited strong antigen-specific serum IgG responses |
McCabe et al., 2008; Zhou et al., 2008; Gonzalez-Rabade et al., 2011
|
Rotavirus VP6 gene (gastroenteritis) |
Tobacco |
>15% of total leaf protein (TLP) |
Not tested |
Inka Borchers et al., 2012
|
BACTERIAL ANTIGENS |
Cholera toxin subunit B (CTB) fused with acid alpha glucosidase (GAA) CTB-GAA (Cholera, Pompe disease) |
Tobacco |
Between 0.13 and 0.21% of TLP |
CTB-GAA fusion protein significantly suppressed immunoglobulin formation against GAA in Pompe mice |
Su et al., 2015a
|
CTB fused with Mycobacterium tuberculosis antigens ESAT-6 and Mtb72F (a fusion polyprotein from two TB antigens, Mtb32 and Mtb39) (Cholera, TB) |
Tobacco Lettuce |
Maximum expression was 7.5% of TSP in mature tobacco leaves for CTB-ESAT-6 |
Hemolysis assay with purified CTB-ESAT6 protein showed partial hemolysis of red blood cells confirming the functionality of ESAT-6 |
Lakshmi et al., 2013
|
Major membrane protein I (mmpI) from Mycobacterium leprae fused with LTB (TB) |
Tobacco |
Not reported |
Not tested |
Hassan et al., 2013
|
EspA and Tir/Intimin antigens from enterohemorrhagic E. coli O157:H7 (hemorrhagic colitis) |
Tobacco |
Up to 1.4% of TSP |
Upon oral administration of tobacco plant leaves high IgG and IgA specific antibodies were detected in serum and feces of mice |
Karimi et al., 2013
|
Domain IV of Bacillus anthracis protective antigen gene [PA(dIV)] (Anthrax) |
Tobacco |
5.3% of TSP |
Antibody titers of >104 were induced upon intraperitoneal (ip) and oral immunizations with plant derived PA(dIV). Mice challenged with B. anthracis showed 60% and 40% protection upon ip and oral immunization with adjuvanted plant PA(dIV) |
Gorantala et al., 2011
|
Anthrax protective antigen (PV) (Anthrax) |
Tobacco |
2.5–4% of TSP |
Intraperitoneal and oral immunization with plant PA in murine model indicated high serum PA specific IgG and IgA antibody titers. Oral immunization experiments demonstrated generation of immunoprotective response in mice |
Gorantala et al., 2014
|
PROTOZOAN ANTIGENS |
Plasmodium falciparum surface protein 25 (Pfs25) and 28 (Pfs28) (Malaria) |
Chlamydomonas reinhardtii |
0.5 and 0.2% of TSP, respectively |
Antibodies to algae-produced Pfs25 were bond to the surface of in vitro cultured P. falciparum sexual stage parasites and exhibited transmission blocking activity |
Gregory et al., 2012
|
Plasmodium falciparum surface protein (Pfs25) fused to the β subunit of the cholera toxin (CtxB) (Malaria) |
Chlamydomonas reinhardtii |
0.09% TSP |
Algae produced CtxB-Pfs25 elicited CtxB-specific serum IgG antibodies and both CtxB- and Pfs25-specific secretory IgA antibodies |
Gregory et al., 2013
|
Toxoplasma gondii surface antigen of (SAG1), alone and in fusion with heat shock Protein of Leishmania infantum (LiHsp83) SAG1, chLiHsp83-SAG1 (Toxoplasmosis) |
Tobacco |
0.1–0.2 μg/g fresh weight |
Human seropositive samples reacted with chloroplast-derived SAG1, oral immunization in mice elicited significant reduction of the cyst burden |
Albarracín et al., 2015
|
T. gondii GRA4 antigen (Toxoplasmosis) |
Tobacco |
0.2% of total protein |
Oral immunization with chlGRA4 resulted in a decrease of 59% in the brain cyst load of mice compared to control mice. ChlGRA4 immunization elicited both mucosal immune responses |
Yácono et al., 2012
|
Sexual stage antigenic surface protein Pfs48/45 antigen of Plasmodium (Malaria) |
Chlamydomonas reinhardtii |
Not reported |
Not tested |
Jones et al., 2013
|
AUTOANTIGENS |
Human proinsulin (A, B, C peptides) containing three furin cleavage sites fused with CTB (CTB-PFx3) (Diabetes type-1) |
Tobacco Lettuce |
47% of TLP in tobacco 53% of TLP in lettuce |
Oral delivery of unprocessed proinsulin bioencapsulated in plant cells or injectable delivery into mice showed reduction in blood glucose levels similar to processed commercial insulin |
Boyhan and Daniell, 2011
|
Human proinsulin gene fused with protein A (Diabetes type-1) |
Tobacco |
0.2% of TSP |
Not tested |
Yarbakht et al., 2015
|
Exendin-4 (EX4) fused with CTB (Diabetes type-2) |
Tobacco |
14.3% of TLP |
Upon oral delivery in mice CTB-EX4 stimulated insulin secretion similar to the intraperitoneal injection of commercial EX4 |
Kwon et al., 2013
|