Nanoparticles derived from the elongated flexuous capsids of (TuMV) have been shown to be efficient tools for antibody sensing with a very high sensitivity if adequately functionalized with the corresponding epitopes. Taking advantage of this possibility, TuMV virus-like particles (VLPs) have been genetically derivatized with a peptide from the chaperonin Hsp60, a protein described to be involved in inflammation processes and autoimmune diseases. Antibodies against the peptide have been previously shown to have a diagnostic value in at least one autoimmune disease, multiple sclerosis. The functionalized Hsp60-VLPs showed their significant increase in sensing potency when compared to monoclonal antibody detection of the peptide in a conventional immunoassay. Additionally, the developed Hsp60-VLPs allowed the detection of autoantibodies against the Hsp60 peptide in an in vivo mouse model of dextran sodium sulfate (DSS)-induced colitis. The detection of minute amounts of the autoantibodies allowed us to perform the analysis of their evolution during the progression of the disease. The anti-Hsp60 autoantibody levels in the sera of the inflamed mice went down during the induction phase of the disease. Increased levels of the anti-HSP60 autoantibodies were detected during the resolution phase of the disease. An extension of a previously proposed model for the involvement of Hsp60 in inflammatory processes is considered, incorporating a role for Hsp60 autoantibodies. This, and related models, can now be experimentally tested thanks to the autoantibody detection hypersensitivity provided by the functionalized VLPs.
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http://dx.doi.org/10.3390/nano9101438 | DOI Listing |
J Virol
December 2024
National Key Laboratory for Germplasm Innovation and Utilization of Horticultural Crops, Wuhan, China.
is a relatively new viral family that was established nearly 5 years ago, but their viral morphologies (naked or encapsidated) remain controversial since only one member namely, filamentous virus 1 (CcFV1), was identified as being encapsidated in filamentous virions. Here, three novel double-stranded RNA (dsRNA) viruses belonging to the family were identified in three phytopathogenic fungal strains and tentatively named -sinensis polymycovirus 1 (PcsPmV1), and polymycovirus 1 and 2 (PhcPmV1 and 2), respectively. PcsPmV1 and PhcPmVs have five or six genomic dsRNAs, ranging from 1,055 to 2,405 bp, encoding five or seven putative open reading frames (ORFs), of which ORF1 encodes an RNA-dependent RNA polymerase, ORF5 encodes a prolein-alanine-serine-rich (P-A-S-rich) protein behaving as coat protein (CP); and dsRNAs 4 and 6 encode putative proteins with unknown functions and share no detectable identities with known viral sequences.
View Article and Find Full Text PDFis a versatile plant that can be used for both ornamental and medicinal purposes. Its potential in treating a range of diseases is noteworthy and has been studied extensively (Bayles et al. 2009).
View Article and Find Full Text PDFPlant Dis
November 2023
Yuncheng, China;
In recent years, 'Shine Muscat' ( × ) has been the most popular table grape among consumers in Asian countries (Choi et al., 2021). In November 2020, fruit rot was observed in packing house 2 months after cold-stored in Yuncheng (35°16'N, 111°08'E), Shanxi Province, China.
View Article and Find Full Text PDFSci Rep
November 2023
Key Laboratory of Western China's Mineral Resources of Gansu Province, School of Earth Sciences, Lanzhou University, Lanzhou, 730000, People's Republic of China.
The major evolutionary transition from fish to amphibian included Late Devonian tetrapods that were neither fish nor amphibian. They had thick necks and small limbs with many digits on elongate flexuous bodies more suitable for water than land. Habitats of Devonian tetrapods are of interest in assessing selective pressures on their later evolution for land within three proposed habitats: 1, tidal flats, 2, desert ponds, and 3, woodland streams.
View Article and Find Full Text PDFPlant Dis
June 2023
Universidad Autonoma Chapingo, 27761, Laboratorio Nacional de Investigación y Servicio Agroalimentario y Forestal, Km38.5 carretera Mexico-Texcoco, Texcoco, Mexico, Mexico, 56230;
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