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1.
medrxiv; 2022.
Preprint in English | medRxiv | ID: ppzbmed-10.1101.2022.05.27.22275672

ABSTRACT

It is unclear whether cancer patients show impaired responses to COVID-19 and vaccination. Immune profiling was performed in three cohorts of healthy donors and oncologic patients: infected with SARS CoV-2, BNT162b2-vaccinated, and with previous COVID-19 and subsequently vaccinated. Vaccination was a poor inductor of T cell responses compared to infection, which significantly potentiated vaccination in antibody and T cell responses. T cell major targets in natural infection were the M and S protein, but not the N protein. T cell responses quickly decayed after 6 months post-vaccination, and T cell profiling showed that vaccination expanded effector T cells rather than memory T cell subsets unless the subjects had previous COVID-19. Cancer patients with previous COVID-19 and vaccinated exhibited potent IL-17+ CD4 and CD8 responses and increased neutrophils. Concluding, COVID-19 infection had potent adjuvant effects for vaccination leading to memory T cell differentiation, but with enhanced IL-17 inflammation signatures. Teaser Adjuvancy of SARS CoV-2 in cancer patients.


Subject(s)
Memory Disorders , Arthritis, Experimental , Neoplasms , COVID-19
2.
biorxiv; 2022.
Preprint in English | bioRxiv | ID: ppzbmed-10.1101.2022.02.01.478724

ABSTRACT

One of the most common symptoms in COVID-19 is a sudden loss of smell. SARS-CoV-2 has been detected in the olfactory bulb (OB) from animal models and sporadically in COVID-19 patients. To decipher the specific role over the SARS-CoV-2 proteome at olfactory level, we characterized the in-depth molecular imbalance induced by the expression of GFP-tagged SARS-CoV-2 structural proteins (M, N, E, S) on mouse OB cells. Transcriptomic and proteomic trajectories uncovered a widespread metabolic remodeling commonly converging in extracellular matrix organization, lipid metabolism and signaling by receptor tyrosine kinases. The molecular singularities and specific interactome expression modules were also characterized for each viral structural factor. The intracellular molecular imbalance induced by each SARS-CoV-2 structural protein was accompanied by differential activation dynamics in survival and immunological routes in parallel with a differentiated secretion profile of chemokines in OB cells. Machine learning through a proteotranscriptomic data integration uncovered TGF-beta signaling as a confluent activation node by the SARS-CoV-2 structural proteome. Taken together, these data provide important avenues for understanding the multifunctional immunomodulatory properties of SARS-CoV-2 M, N, S and E proteins beyond their intrinsic role in virion formation, deciphering mechanistic clues to the olfactory inflammation observed in COVID-19 patients.


Subject(s)
Metabolic Diseases , COVID-19 , Seizures , Inflammation
3.
medrxiv; 2020.
Preprint in English | medRxiv | ID: ppzbmed-10.1101.2020.05.24.20111666

ABSTRACT

Objective: As a consequence of the health crisis arising from the SARS-CoV-2 coronavirus pandemic, ozone treatments are being applied as disinfectant in emergency vehicles, without objective evidence on its efficacy. Here we evaluate the efficacy of ozone treatment over bacterial strains and virus-like particles. Method: A preparation of a lentiviral vector (lentivector) and dried cultures of two bacterial strains (gram + Staphylococcus aureus and gram - Salmonella enterica ser. Enteritidis) were placed inside an ambulance at two different locations. The interior of the vehicle was subjected to 10 min and 20 min treatments (3 and 6 times the recommended time by the manufacturer). Following the treatments, lentivector preparations were titrated, and viable bacteria (colony forming units, CFUs) counted and compared to pre-treatment titers and infectious CFUs of the same lysates and cultures. Results: None of the treatments significantly reduced either lentivector titer or the number of viable bacteria. Conclusions: At least in the analyzed conditions and for the microorganisms used in this study, it can be concluded that ozone treatment is not advisable for the disinfection of emergency vehicles.

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