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Clinical Trials/NCT05171959
NCT05171959UnknownNot Applicable

Characterization of the Platelet and Immune Response in Adults Receiving SARS-CoV-2 Vaccine

University of Roma La Sapienza1 site in 1 country32 target enrollmentStarted: May 5, 2021Last updated:
Conditions

Trial Snapshot

Phase
Not Applicable
Sponsor
Enrollment
32
Locations
1
Primary Endpoint
Platelet-leukocytes aggregates quantification

Study Overview

Brief Summary

COVID-19 mRNA vaccines, administered with a two-dose regimen, have been shown to provide protection against Covid-19. However, the thromboinflammatory response toward these vaccines has never been explored as they exploit a completely new technology. It was reported that mRNA vaccines are highly reactogenic right after vaccine administration in particular in young adults, but we do not know which cells drive the early immune response to LNP-mRNA vaccines in humans and if platelets become activated as well. Moreover, it is not known if female, who have a heightened immune response to other vaccines, are able to mount a faster response to this new type of vaccines.

Objectives of the study is to characterize the platelet and immune response and the platelet-immune cross-talk in subjects undergoing SARS-CoV-2 vaccination.

Detailed Description

Coronavirus disease 2019 (COVID-19) is a systemic, potentially severe and life-threatening disease, triggered by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Since the first cases of SARSCoV-2 infection were officially diagnosed, in December 2019, more than 280 million cases and 5 million deaths have been declared worldwide. In response to this public health emergency the international scientific community has made an enormous effort to understand the virus and to develop a safe vaccine to prevent the spread of COVID-19. Just few days after the World Health Organization declared the SarsCoV-2 outbreak a global pandemic, it was published the structure of the Spike viral protein [1], which has provided critical clues to design vaccines. Within less than 12 months several vaccines against SARS-CoV-2 have been developed. The first vaccine that has been approved in Europe and that is already being administered in Italy is the COVID-19 RNA vaccine, developed by BioNTech-Pfizer (BNT162b2). Both this vaccine and the one developed by Moderna consist of a lipid nanoparticle (LNP) that deliver a nucleoside-modified messenger RNA (mRNA) encoding the precise genetic information of the immunogen (SARS-CoV-2 full-length spike protein) to antigen presenting cells and elicits potent immune responses. mRNA is transiently expressed, does not integrate into the genome, and is degraded by physiological pathways.mRNA vaccines are molecularly well defined, synthesized efficiently from DNA templates by in vitro transcription, which is cell- and animal-origin material-free. mRNA production and LNP formulation are fast processes of high scalability, rendering this technology suitable for rapid vaccine development and pandemic vaccine supply [2].

Both mRNA vaccines, administered with a two-dose regimen, have been shown to provide a 94-95% protection against Covid-19 in persons 16 years of age or older [3,4]. However, the thromboinflammatory response toward these vaccines has never been explored as they exploit a completely new technology. For instance, it was reported that mRNA vaccines are highly reactogenic right after vaccine administration in particular in young adults [3], but we do not know which cells drive the early immune response to LNP-mRNA vaccines in humans and if platelets become activated as well. Moreover, it is not known if female, who have a heightened immune response to other vaccines, are able to mount a faster response to this new type of vaccines.

AIMS OF THE STUDY

Primary objective To characterize the platelet and immune response and the platelet-immune cross-talk in subjects undergoing SARS-CoV-2 vaccination.

Secondary objective To study the short-term kinetics of the immune and the antibody response in subjects undergoing SARS-CoV-2 vaccination.

Study Design

Study Type
Observational
Observational Model
Cohort
Time Perspective
Prospective

Eligibility Criteria

Ages
18 Years to 80 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Volunteers without signs of SARS-CoV2 infection who will be subjected to SARS-CoV-2 Vaccination

Exclusion Criteria

  • Anti-platelet or anti-coagulant medications in the past 10 days
  • Autoimmune disease
  • Reported severe immunosuppression
  • Pregnancy or breastfeeding
  • Recent transfusions of platelets or plasma

Outcomes

Primary Outcomes

Platelet-leukocytes aggregates quantification

Time Frame: 6 months

Percentage of platelet-leukocytes aggregates (PLA) among blood leukocytes. PLA are identified based on the expression of CD41a in the individual leukocyte subpopulations.

Secondary Outcomes

  • Soluble markers of platelet activation: sP-selectin, sCD40L.(6 months)
  • Immunophenotyping(6 months)
  • Cytokine Array in plasma(6 months)
  • Pro-Inflammatory Chemokines(6 months)
  • Platelet Phenotypic and Functional Analysis(6 months)
  • Detection of Circulating SARS-Cov-2 Neutralization Antibodies(6 months)

Investigators

Sponsor
University of Roma La Sapienza
Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Roberto Cangemi

Prof. Roberto Cangemi

University of Roma La Sapienza

Study Sites (1)

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