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HPV in Blood Samples From Cervical Cancer Patients.

Can Digital Droplet PCR (ddPCR) on Blood Samples From Patients With HPV Related Cancers Become a Reality in Cancer Treatment and Monitoring?

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03749720
Enrollment
141
Registered
2018-11-21
Start date
2018-06-15
Completion date
2022-10-30
Last updated
2025-04-01

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

Conditions

HPV-Related Carcinoma, HPV-Related Malignancy

Keywords

Cervical Cancer, HPV, Pathology, ddPCR

Brief summary

By means of digital droplet PCR (ddPCR) anf targeted Next Generation Sequencing (NGS), this study examines blood samples from patients newly diagnosed with cervical cancer to investigate whether it is possible to measure the presence and amount of HPV DNA in these blood samples. The first blood sample is taken at time of diagnosis, and follow-up blood samples are collected during treatment- and follow-up visits. We expect to find a correlation between the disease stage and the viral load and also a decline in viral load after treatment. Furthermore, we hope that this method may serve as a way of detecting disease recurrence earlier than what is possible today.

Detailed description

This study hypothesises that in patients with HPV-related cervical cancer, HPV DNA may be released into the bloodstream from tumor cells. These fragments of HPV DNA shed by tumor may therefore be measured in blood samples from the patients. By using the same setting as for real-time PCR with PCR primers and probes for fluorescence detection, the study uses digital droplet PCR (ddPCR), a method based on dilution and partitioning of the blood sample in many reaction chambers or droplets, to measure absolute quantities of HPV DNA fragments in blood samples from women with different stages of cervical cancer. Furthermore, our research group has developed in-house amplicon-based Next Generation Sequencing (NGS) assays for HPV detection and genotyping (the NGS HPV genotyping panel) and HPV integration status and variants (the HPV16 panel), and blood samples are also analysed with the NGS HPV genotyping panel. Cervical tissue samples from primary tumor are collected and analysed with the NGS HPV genotyping panel, and HPV16 positives are further analysed with the NGS HPV16 panel. Patients are recruited at the time of diagnosis, where a baseline blood sample is collected. Follow-up blood samples are collected during treatment and at follow-up visits up to two years after the diagnosis. We expect the HPV DNA load to decrease after treatment, and if an increase in viral load is detected during follow-up, we expect this to be an early sign of a disease recurrence. The method may therefore become an effective monitoring tool in these patients in terms of detecting a ongoing disease recurrence, which gives us the chance to intervene and treat these patients before the disease becomes too disseminated. For included patients experiencing af recurrence of their disease, tissue samples from recurrent disease are collected and analysed with both the NGS HPV genotyping panel, the NGS HPV16 panel (for HPV16 positives), p16 staining, and a panel detecting relevant somatic mutations in the TP53 and RB1 tumor suppressor proteins.

Interventions

OTHERBlood sample

Blood sample taken from cervical cancer patients at time of diagnosis (baseline) and follow-up visits.

Sponsors

University of Aarhus
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
PREVENTION
Masking
NONE

Intervention model description

Case-control study with 141 case patients newly diagnosed cervical cancer and a control group of 10 healthy women with no prior cervical dysplasia and 25 women with cervical dysplasia (CIN3), respectively.

Eligibility

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

Inclusion criteria

cases: * Diagnosed with cervical cancer ≥ stage 1B between june 2018 and june 2020 * \> 18 years of age at the time of diagnosis * There must be available cervical tissue material from the patient to analyse for HPV Inclusion Criteria healthy controls * Women \> 18 years with no prior history of any cervical dysplasia Inclusion Criteria CIN3 controls * Women \> 18 years * Must have a histologically verified severe cervical dysplasia (CIN3) * Is admitted for cervical conisation

Exclusion criteria

cases: * \< 18 years of age at time of cervical cancer diagnosis * Cervical cancer \< stage 1B

Design outcomes

Primary

MeasureTime frameDescription
HPV DNATwo yearsA qualitative and quantitative measure of HPV DNA in blood samples.

Countries

Denmark

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 9, 2026