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López González, Moisés
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Publications (3 of 3) Show all publications
Martínez-Pérez, A., Igea, A., Estévez, O., Ferreira, C. M., Torrado, E., Castro, A. G., . . . González-Fernández, Á. (2021). Changes in the Immune Phenotype and Gene Expression Profile Driven by a Novel Tuberculosis Nanovaccine: Short and Long-Term Post-immunization. Frontiers in Immunology, 11, Article ID 589863.
Open this publication in new window or tab >>Changes in the Immune Phenotype and Gene Expression Profile Driven by a Novel Tuberculosis Nanovaccine: Short and Long-Term Post-immunization
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2021 (English)In: Frontiers in Immunology, E-ISSN 1664-3224, Vol. 11, article id 589863Article in journal (Refereed) Published
Abstract [en]

Deciphering protection mechanisms against Mycobacterium tuberculosis (Mtb) remains a critical challenge for the development of new vaccines and therapies. We analyze the phenotypic and transcriptomic profile in lung of a novel tuberculosis (TB) nanoparticle-based boosting mucosal vaccine Nano-FP1, which combined to BCG priming conferred enhanced protection in mice challenged with low-dose Mtb. We analyzed the vaccine profile and efficacy at short (2 weeks), medium (7 weeks) and long term (11 weeks) post-vaccination, and compared it to ineffective Nano-FP2 vaccine. We observed several changes in the mouse lung environment by both nanovaccines, which are lost shortly after boosting. Additional boosting at long-term (14 weeks) recovered partially cell populations and transcriptomic profile, but not enough to enhance protection to infection. An increase in both total and resident memory CD4 and CD8 T cells, but no pro-inflammatory cytokine levels, were correlated with better protection. A unique gene expression pattern with differentially expressed genes revealed potential pathways associated to the immune defense against Mtb. Our findings provide an insight into the critical immune responses that need to be considered when assessing the effectiveness of a novel TB vaccine.

Keywords
Mycobacterium tuberculosis, nanovaccines, immune protection, lung infection, transcriptomic analysis
National Category
Immunology in the medical area
Identifiers
urn:nbn:se:su:diva-192771 (URN)10.3389/fimmu.2020.589863 (DOI)000616805200001 ()33584654 (PubMedID)2-s2.0-85100804269 (Scopus ID)
Available from: 2021-05-05 Created: 2021-05-05 Last updated: 2024-01-17Bibliographically approved
Adam, L., López-González, M., Björk, A., Pålsson, S., Poux, C., Wahren-Herlenius, M., . . . Spetz, A.-L. (2018). Early Resistance of Non-virulent Mycobacterial Infection in C57BL/6 Mice Is Associated With Rapid Up-Regulation of Antimicrobial Cathelicidin Camp. Frontiers in Immunology, 9, Article ID 1939.
Open this publication in new window or tab >>Early Resistance of Non-virulent Mycobacterial Infection in C57BL/6 Mice Is Associated With Rapid Up-Regulation of Antimicrobial Cathelicidin Camp
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2018 (English)In: Frontiers in Immunology, E-ISSN 1664-3224, Vol. 9, article id 1939Article in journal (Refereed) Published
Abstract [en]

Early clearance of tuberculosis is the successful eradication of inhaled bacteria before the development of an adaptive immune response. We previously showed, by utilizing a non-virulent mycobacteria infection model, that C57BL/6 mice are more efficient than BALB/c in their control of bacterial growth in the lungs during the first weeks of the infection. Here, we assessed early (within 1-3 days) innate immune events locally in the lungs to identify factors that may contribute to the control of non-virulent mycobacterial burden. We confirmed that C57BL/6 mice are more resistant to infection compared with BALB/c after intranasal inoculation with mycobacterium. Transcriptomic analyses revealed a remarkably silent signature in C57BL/6 mice despite effective control of bacterial growth. In contrast, BALB/c mice up-regulated genes associated with neutrophil and myeloid cell chemotaxis and migration. Flow cytometry analyses corroborated the transcriptomic analyses and demonstrated influx of both neutrophil and myeloid cell populations in BALB/c mice, while these did not increase in C57BL/6 mice. We further detected increased release of TNF-alpha from BALB/c lung cells but limited release from C57BL/6-derived cells. However, C57BL/6 mice showed a marked early up-regulation of the Camp gene, encoding the cathelicidin CRAMP peptide, post-mycobacterial exposure. CRAMP (LL-37 in human) expression in the lungs was confirmed using immunofluorescence staining. Altogether, these findings show that C57BL/6 mice can clear the mycobacterial infection early and that this early control is associated with high CRAMP expression in the lungs without concomitant influx of immune cells. The role of CRAMP/LL-37 during mycobacterial infection may be relevant for novel protective strategies, and warrants further studies of human cohorts.

Keywords
mycobacterial infection, BCG, innate immunity, lung infection, CRAMP, Camp, alveolar epithelial cells (AEC)
National Category
Immunology in the medical area
Identifiers
urn:nbn:se:su:diva-160209 (URN)10.3389/fimmu.2018.01939 (DOI)000443612600001 ()
Available from: 2018-09-25 Created: 2018-09-25 Last updated: 2024-01-17Bibliographically approved
López-González, M., Meza-Sanchez, D., Garcia-Cordero, J., Bustos-Arriaga, J., Velez-Del Valle, C., Marsch-Moreno, M., . . . Cedillo-Barróna, L. (2018). Human keratinocyte cultures (HaCaT) can be infected by DENV, triggering innate immune responses that include IFN lambda and LL37. Immunobiology, 223(11), 608-617
Open this publication in new window or tab >>Human keratinocyte cultures (HaCaT) can be infected by DENV, triggering innate immune responses that include IFN lambda and LL37
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2018 (English)In: Immunobiology, ISSN 0171-2985, E-ISSN 1878-3279, Vol. 223, no 11, p. 608-617Article in journal (Refereed) Published
Abstract [en]

The skin is the first anatomical region that dengue virus (DENV) encounters during the natural infection. Although the role of some skin resident cells like dendritic cells and fibroblasts has been demonstrated to be crucial to elucidate the role of resident cells and molecules participating during the early events of the innate immune response, the participation of keratinocytes during DENV infection has not been fully elucidated. In this paper we aimed to evaluate the use of the HaCaT cell line as a model to study the immune responses of skin keratinocytes to DENV infection. We demonstrated productive DENV-2 infection of HaCaT cells and their capability to establish an antiviral response through production of type I and type III interferons (IFN-beta and IFN-lambda). The production of these cytokines by HaCaT cells correlated with upregulation of IFN-inducible transmembrane protein-3 (IFITM3) and viperin in bystander, uninfected cells. We also observed an increase in secretion of IL-6 and IL-8. Skin keratinocytes are known to secrete antimicrobial peptides (AMPs) during viral infections. In our model, DENV-2 infected HaCaT cells upregulate the production of cytoplasmic LL-37. We evaluated the dual role of LL-37, HBD2, and HBD3 antiviral activity and immunoregulation during DENV-2 infection of HaCaT cells and found that LL-37 significantly reduced DENV-2 replication. This indicates that the HaCaT cell line can be used as a model for studying the innate response of keratinocytes to DENV infection. Our results also suggest that skin keratinocytes play an important role in the skin microenvironment after DENV infection by secreting molecules like type I and type III IFNs, pro-inflammatory molecules, and LL-37, which may contribute to the protection against arboviral infections.

Keywords
Dengue, Keratinocytes, Interferon lambda, LL-37 dengue, Innate immunity, Interferon, Keratinocytes, Viperin
National Category
Biological Sciences Immunology in the medical area
Identifiers
urn:nbn:se:su:diva-162119 (URN)10.1016/j.imbio.2018.07.006 (DOI)000446807400002 ()30007822 (PubMedID)
Available from: 2018-11-14 Created: 2018-11-14 Last updated: 2022-02-26Bibliographically approved
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