Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy

<p>Abstract</p> <p>Background</p> <p>Archaeosomes (ARC), vesicles prepared from total polar lipids (TPL) extracted from selected genera and species from the Archaea domain, elicit both antibody and cell-mediated immunity to the entrapped antigen, as well as efficient cr...

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Main Authors: Morilla Maria, Corral Ricardo S, Roncaglia Diana I, Morelli Irma, Bilen Marcos, Cutrullis Romina A, Higa Leticia H, Gonzalez Raul O, Petray Patricia B, Romero Eder L
Format: Article
Language:English
Published: BMC 2009-08-01
Series:BMC Biotechnology
Online Access:http://www.biomedcentral.com/1472-6750/9/71
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spelling doaj-caba21532e9c4547b43be9386cbe9d572020-11-25T02:50:31ZengBMCBMC Biotechnology1472-67502009-08-01917110.1186/1472-6750-9-71Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancyMorilla MariaCorral Ricardo SRoncaglia Diana IMorelli IrmaBilen MarcosCutrullis Romina AHiga Leticia HGonzalez Raul OPetray Patricia BRomero Eder L<p>Abstract</p> <p>Background</p> <p>Archaeosomes (ARC), vesicles prepared from total polar lipids (TPL) extracted from selected genera and species from the Archaea domain, elicit both antibody and cell-mediated immunity to the entrapped antigen, as well as efficient cross priming of exogenous antigens, evoking a profound memory response. Screening for unexplored Archaea genus as new sources of adjuvancy, here we report the presence of two new <it>Halorubrum tebenquichense </it>strains isolated from grey crystals (<it>GC</it>) and black mood (<it>BM</it>) strata from a littoral Argentinean Patagonia salt flat. Cytotoxicity, intracellular transit and immune response induced by two subcutaneous (sc) administrations (days 0 and 21) with BSA entrapped in ARC made of TPL either form <it>BM </it>(ARC-BM) and from <it>GC </it>(ARC-GC) at 2% w/w (BSA/lipids), to C3H/HeN mice (25 μg BSA, 1.3 mg of archaeal lipids per mouse) and boosted on day 180 with 25 μg of bare BSA, were determined.</p> <p>Results</p> <p>DNA G+C content (59.5 and 61.7% mol <it>BM </it>and <it>GC</it>, respectively), 16S rDNA sequentiation, DNA-DNA hybridization, arbitrarily primed fingerprint assay and biochemical data confirmed that <it>BM </it>and <it>GC </it>isolates were two non-previously described strains of <it>H. tebenquichense</it>. Both multilamellar ARC mean size were 564 ± 22 nm, with -50 mV zeta-potential, and were not cytotoxic on Vero cells up to 1 mg/ml and up to 0.1 mg/ml of lipids on J-774 macrophages (XTT method). ARC inner aqueous content remained inside the phago-lysosomal system of J-774 cells beyond the first incubation hour at 37°C, as revealed by pyranine loaded in ARC. Upon subcutaneous immunization of C3H/HeN mice, BSA entrapped in ARC-BM or ARC-GC elicited a strong and sustained primary antibody response, as well as improved specific humoral immunity after boosting with the bare antigen. Both IgG1 and IgG2a enhanced antibody titers could be demonstrated in long-term (200 days) recall suggesting induction of a mixed Th1/Th2 response.</p> <p>Conclusion</p> <p>We herein report the finding of new <it>H. tebenquichense </it>non alkaliphilic strains in Argentinean Patagonia together with the adjuvant properties of ARC after sc administration in mice. Our results indicate that archaeosomes prepared with TPL from these two strains could be successfully used as vaccine delivery vehicles.</p> http://www.biomedcentral.com/1472-6750/9/71
collection DOAJ
language English
format Article
sources DOAJ
author Morilla Maria
Corral Ricardo S
Roncaglia Diana I
Morelli Irma
Bilen Marcos
Cutrullis Romina A
Higa Leticia H
Gonzalez Raul O
Petray Patricia B
Romero Eder L
spellingShingle Morilla Maria
Corral Ricardo S
Roncaglia Diana I
Morelli Irma
Bilen Marcos
Cutrullis Romina A
Higa Leticia H
Gonzalez Raul O
Petray Patricia B
Romero Eder L
Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy
BMC Biotechnology
author_facet Morilla Maria
Corral Ricardo S
Roncaglia Diana I
Morelli Irma
Bilen Marcos
Cutrullis Romina A
Higa Leticia H
Gonzalez Raul O
Petray Patricia B
Romero Eder L
author_sort Morilla Maria
title Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy
title_short Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy
title_full Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy
title_fullStr Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy
title_full_unstemmed Archaeosomes made of <it>Halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy
title_sort archaeosomes made of <it>halorubrum tebenquichense </it>total polar lipids: a new source of adjuvancy
publisher BMC
series BMC Biotechnology
issn 1472-6750
publishDate 2009-08-01
description <p>Abstract</p> <p>Background</p> <p>Archaeosomes (ARC), vesicles prepared from total polar lipids (TPL) extracted from selected genera and species from the Archaea domain, elicit both antibody and cell-mediated immunity to the entrapped antigen, as well as efficient cross priming of exogenous antigens, evoking a profound memory response. Screening for unexplored Archaea genus as new sources of adjuvancy, here we report the presence of two new <it>Halorubrum tebenquichense </it>strains isolated from grey crystals (<it>GC</it>) and black mood (<it>BM</it>) strata from a littoral Argentinean Patagonia salt flat. Cytotoxicity, intracellular transit and immune response induced by two subcutaneous (sc) administrations (days 0 and 21) with BSA entrapped in ARC made of TPL either form <it>BM </it>(ARC-BM) and from <it>GC </it>(ARC-GC) at 2% w/w (BSA/lipids), to C3H/HeN mice (25 μg BSA, 1.3 mg of archaeal lipids per mouse) and boosted on day 180 with 25 μg of bare BSA, were determined.</p> <p>Results</p> <p>DNA G+C content (59.5 and 61.7% mol <it>BM </it>and <it>GC</it>, respectively), 16S rDNA sequentiation, DNA-DNA hybridization, arbitrarily primed fingerprint assay and biochemical data confirmed that <it>BM </it>and <it>GC </it>isolates were two non-previously described strains of <it>H. tebenquichense</it>. Both multilamellar ARC mean size were 564 ± 22 nm, with -50 mV zeta-potential, and were not cytotoxic on Vero cells up to 1 mg/ml and up to 0.1 mg/ml of lipids on J-774 macrophages (XTT method). ARC inner aqueous content remained inside the phago-lysosomal system of J-774 cells beyond the first incubation hour at 37°C, as revealed by pyranine loaded in ARC. Upon subcutaneous immunization of C3H/HeN mice, BSA entrapped in ARC-BM or ARC-GC elicited a strong and sustained primary antibody response, as well as improved specific humoral immunity after boosting with the bare antigen. Both IgG1 and IgG2a enhanced antibody titers could be demonstrated in long-term (200 days) recall suggesting induction of a mixed Th1/Th2 response.</p> <p>Conclusion</p> <p>We herein report the finding of new <it>H. tebenquichense </it>non alkaliphilic strains in Argentinean Patagonia together with the adjuvant properties of ARC after sc administration in mice. Our results indicate that archaeosomes prepared with TPL from these two strains could be successfully used as vaccine delivery vehicles.</p>
url http://www.biomedcentral.com/1472-6750/9/71
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