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Herpes Virus Infections in Kidney Transplant Patients

Investigation of Kidney Transplant Patients for Antibodies and T-cells After Herpes Virus Vaccination and Infection

Status
Active, not recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05604911
Acronym
HINT
Enrollment
280
Registered
2022-11-03
Start date
2023-01-01
Completion date
2030-12-31
Last updated
2026-08-12

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Kidney Transplant; Complications, Vaccine-Preventable Diseases, Varicella Zoster Virus Infection

Keywords

Varicella Zoster Virus, Shingrix, Kidney transplant, Immune response, Varicella Zoster Virus infection, Herpes Zoster, Shingles, Humane Herpes Virus 3

Brief summary

Kidney transplant recipients are at increased risk of infections, including Varicella-zoster virus (VZV) infections. Vaccination against VZV is routinely offered to all kidney transplant recipients and candidates in Denmark. In this exploratory observational study, the VZV specific immune response in kidney transplant candidates and recipients will be characterized at different time points in relation to transplantation, vaccination and infections. More knowledge on the immune reaction to transplantation, VZV vaccination and VZV infections may provide improved strategies for prevention and treatment of VZV infections in kidney transplant candidates and recipients.

Detailed description

Kidney transplantation is a life-saving procedure for patients with kidney failure, and in 2021, 252 kidney transplantations were performed in Denmark. Varicella-zoster virus (VZV) is a vaccine-preventable disease that causes varicella during primary infection and herpes zoster when reactivated later in life. VZV is one of the most common infections after organ transplantation, and kidney transplant recipients have high risk of herpes zoster (annual incidence: 3 per 100). Furthermore, kidney transplant recipients that acquire herpes zoster have high risk of disseminated and severe disease as well as increased risk of post-herpetic neuralgia. Until 2021, the only available VZV/herpes zoster vaccines in Europe were live vaccines, and live vaccines are contraindicated in immunosuppressed individuals due to the risk of infection with the vaccine strain. However, a new, non-live, recombinant subunit herpes zoster vaccine (Shingrix®) that can be used in immunosuppressed individuals was recently approved and became available in Denmark in October 2021. The efficacy of Shingrix® in healthy individuals is excellent (90%) both with regard to preventing herpes zoster and post-herpetic neuralgia. However, organ transplant recipients receive high doses of immunosuppressive medication, and information on efficacy and immunogenicity of Shingrix® in immunosuppressed individuals is sparse. One randomized study found the efficacy of the vaccine to be good (68%) in patients after hematopoietic stem cell transplantation. Furthermore, one phase III randomized, placebo-controlled study was conducted in 246 kidney transplant recipients, and the vaccine was found to be safe and to induce antibody responses, but the study was not powered to demonstrate efficacy. At present, international guidelines recommend vaccination against herpes zoster prior to or after transplantation, but there is no information about the optimal timing of vaccination or duration of the immune response in transplant recipients. Poor or no antibody response after vaccinations are documented among organ transplant recipients. Vaccination prior to transplantation or early post-transplantation may be of benefit because patients are at the highest risk of infections early post-transplantation due to high load of immunosuppressive therapy, however, this is also the period with the highest risk of non-response to vaccines. It is therefore of great importance, for both individual patients and for society, to determine the optimal timing of vaccination, response rates and duration of protection prior to use of vaccines in organ transplant recipients. The investigators will conduct a prospective observational exploratory study including kidney transplant candidates and recipients who are offered Shingrix® vaccination. Shingrix® vaccination is routine care, and vaccination is not a part of the study, and acceptance of vaccination is not mandatory to participate in the study. The study is a national collaboration that includes all Danish kidney transplantation centers and kidney transplant recipients from all Danish regions. The study has potential to contribute with necessary information to design optimal programs for vaccine roll-out and thereby to reduce the incidence of herpes zoster and herpes zoster-related complications including hospital admissions in kidney transplant recipients as well as other solid organ transplant recipients. Furthermore, the investigators will explore differences in the immune systems of kidney transplant recipients who get VZV infections and those who don't. The study aims to include 875 patients, of which 500 will be kidney transplant recipients (250 who are 6-12 months post-transplantation, 125 who are 12-18 months post-transplantation and 125 who are \>24 months post-transplantation) and 375 kidney transplant candidates from the kidney transplant waitlist. For participants on the transplant waitlist, blood will be collected at inclusion and 1, 2, 6 and 12 months post-inclusion, as well as 6 and 12 months post-transplantation and in the case of VZV infection. For participants who are already transplanted at inclusion, blood will be collected at inclusion, and 1, 2, 6 and 12 months post-inclusion and in the case of VZV infection. Plasma and peripheral blood mononuclear cells (PBMC) will be stored in a biobank. All participants will be asked at inclusion to fill out a questionnaire regarding health, lifestyle, and vaccine history. At follow-ups, participants will be asked to fill out a questionnaire regarding changes in VZV infection history, vaccination history, transplant related factors and medication. Furthermore, health data will be collected from hospital records and national registries. Measurement of VZV glycoprotein E antibodies will be done using enzyme-linked immunosorbent assays (ELISA). Identification and phenotyping of VZV-specific T cells will be done through DNA-barcode labelling and flow cytometry. Cytokine profiling will be done using a Luminex MILLIPLEX assay. Analyses will be performed at the Technical University of Denmark.

Interventions

None listed

Sponsors

Susanne Dam Nielsen, MD, DMSc
Lead SponsorOTHER
Technical University of Denmark
CollaboratorOTHER
Aarhus University Hospital
CollaboratorOTHER
Odense University Hospital
CollaboratorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Kidney transplant recipient transplanted after 2019-01-01 OR on the kidney transplant waitlist * Has been offered Shingrix® vaccination

Exclusion criteria

* Lack of informed consent * Inability to understand the study information

Design outcomes

Primary

MeasureTime frameDescription
Change in levels of antibodies against Varicella-Zoster virus12 monthsMeasurement of the change in levels of antibodies against Varicella-Zoster virus glycoprotein E using enzyme-linked immunosorbent assays (ELISA). The change will be assessed at regular intervals up to 12 months after inclusion or transplantation as well as well as in the case of infection.
Change in presence and function of Varicella-Zoster virus-specific T cells12 monthsIdentification, phenotyping and cytokine profiling of Varicella-Zoster virus-specific T cells using DNA-barcode marking, flow cytometry and plasma cytokine profiles at regular intervals up to 12 months after inclusion or transplantation as well as in the case of infection.

Countries

Denmark

Contacts

PRINCIPAL_INVESTIGATORSusanne D Nielsen, MD, DMSc

Department of Infectious Diseases, Copenhagen University Hospital - Rigshospitalet

STUDY_CHAIRSøren S Sørensen, MD, DMSc

Department of Nephrology, Copenhagen University Hospital - Rigshospitalet

STUDY_CHAIRClaus Bistrup, MD, PhD

Department of Nephrology, Odense University Hospital

STUDY_CHAIRHenrik Birn, MD, PhD, DMSc

Department of Nephrology, Aarhus University Hospital

STUDY_CHAIRSine R Hadrup, MSc, PhD

Department of Health Technology, Technical University of Denmark

STUDY_DIRECTORAnnemette Hald, RN

Department of Infectious Diseases, Copenhagen University Hospital - Rigshospitalet

STUDY_DIRECTORSunil K Saini, MSc, PhD

Department of Health Technology, Technical University of Denmark

STUDY_DIRECTORIsik S Johansen, MD, DMSc

Department of Infectious Diseases, Odense University Hospital

STUDY_DIRECTORHelle Bruunsgaard, MD, PhD, DMSc

Department of Clinical Immunology, Copenhagen University Hospital - Rigshospitalet

STUDY_DIRECTORCarsten S Larsen, MD, DMSc

Department of Infectious Diseases, Aarhus University Hospital

STUDY_DIRECTORZitta B Harboe, MD, PhD

Department of Pulmonary and Infectious Diseases, Copenhagen University Hospital - North Zealand

STUDY_DIRECTORMoisés A Suarez Zdunek, MD

Department of Infectious Diseases, Copenhagen University Hospital - Rigshospitalet

STUDY_DIRECTORSebastian R Hamm, BSc.med.

Department of Infectious Diseases, Copenhagen University Hospital - Rigshospitalet

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 13, 2026