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Clinical Trials/NCT04691284
NCT04691284RecruitingNot Applicable

Microbiome in Cancer Patients Undergoing High Dose Chemotherapy With Stem Cell Transplantation

National Cancer Institute, Slovakia1 site in 1 country100 target enrollmentStarted: March 1, 2021Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Recruiting
Sponsor
Enrollment
100
Locations
1
Primary Endpoint
Microbial changes in stool as measured by 16S rRNA gene sequencing in hematological cancer patients before, at time and after hematopoietic cell transplantation and CAR-T cell therapy

Study Overview

Brief Summary

Numerous in vitro and animal studies as well as growing number of clinical studies support the important role of microbiome in carcinogenesis and cancer treatment. Detection of changes in patients´ microbiome following hematopoietic cell transplantation/CAR-T cell therapy and correlations with adverse transplant outcomes, mainly infectious complications, acute and chronic GvHD, disease recurrence etc. could serve as predictive markers of immune recovery and treatment response.

Detailed Description

Currently, available findings coming mainly from allo-HSCT (hhematopoietic cell transplantation) studies, link particular changes in microbiota with overall survival and post-transplant disorders, especially GvHD. According to limited data, further evaluation of associations between the alterations in microbiome composition and toxicities. Detail investigation of both the microbiome and host immune system may help to find microbiome markers useful for very early identification of patients at risk for major transplant-related complications. This might bring the possibility to modulate the gut microbiota in patient´s specific manner to achieve optimal therapeutic outcome and follow-up, while avoiding severe post-transplant complications.

This is prospective, single center, non-randomized, hypothesis generating study. Patients will be asked to provide a sample of blood, urine and stool. This blood will be used for plasma and serum banking for further analysis, including micro RNA (miR) and chemokine detection. Stool will be used for microbiome studies - isolation of total DNA/RNA and 16S (RNA component of the small subunit of a prokaryotic ribosome) rRNA (ribosomal ribonucleic acid) gene sequencing for bacterial taxonomic classification. Furthermore, metagenomic sequencing and subsequent taxonomic and functional classification of microbial genes will be used including characterization of potentially clinically relevant features of the microbiome such as antibiotic resistance and microbial virulence factors.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Basic Science
Masking
None

Eligibility Criteria

Ages
18 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •signed written informed consent
  • •aged 18 years or older
  • •patients planned to be treated by high-dose chemotherapy and hematopoietic cell transplantation or by CAR-T cell therapy in National Cancer Institute, Slovakia

Exclusion Criteria

  • •patients not-matching inclusion criteria

Arms & Interventions

Observational arm

Experimental

Patients will be asked to provide a sample of blood, urine and stool. This blood will be used for plasma and serum banking for further analysis, including miR and chemokine detection. Stool will be used for microbiome studies - isolation of total DNA/RNA and 16S rRNA gene sequencing for bacterial taxonomic classification. Furthermore, metagenomic sequencing and subsequent taxonomic and functional classification of microbial genes will be used. Moreover, we might be able to characterized potentially clinically relevant features of the microbiome such as antibiotic resistance and microbial virulence factors.

Intervention: Blood, urine and stool sampling (Other)

Outcomes

Primary Outcomes

Microbial changes in stool as measured by 16S rRNA gene sequencing in hematological cancer patients before, at time and after hematopoietic cell transplantation and CAR-T cell therapy

Time Frame: 100 days

Microbial changes of stool will be assessed before, at time and after hematopoietic cell transplantation and CAR-T cell therapy

Secondary Outcomes

  • To correlate microbial changes in stool as measured by 16S rRNA gene sequencing with the patients nutrition status(100 days)
  • To correlate microbial changes in stool as measured by 16S rRNA gene sequencing with the post-transplant complications in auto and allogeneic transplant settings (GvHD, diarrhea, infectious complications) and in CAR-T cell therapy(100 days)
  • To correlate microbial changes in stool as measured by 16S rRNA gene sequencing with the patients reported outcomes.(100 days)

Investigators

Sponsor
National Cancer Institute, Slovakia
Sponsor Class
Other Gov
Responsible Party
Sponsor

Study Sites (1)

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