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Study on Gene Evolution in Glioma Under Stress Therapy

Study on Gene Evolution and Anti-VEGF Treatment Response of Different Subtypes of Glioma Based on ctDNA

Status
Not yet recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05512325
Enrollment
100
Registered
2022-08-23
Start date
2022-12-17
Completion date
2026-12-31
Last updated
2022-09-27

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

Conditions

Genetic Change

Keywords

gene evolution, ctDNA, molecular response, Bevacizumab

Brief summary

Little is known about the evolution of genetic and epigenetic changes that occur in the progression of glioma. We inferred the evolution trajectories of matched pairs of primary tumors and progression tumor in situ fluid (TISF) based on deep whole-genome-sequencing data (ctDNA). A monocentric, Gene grouping controlled trial design was used to select patients. and to compare gene evolution of different subtypes of glioma under therapy. To predict the molecular reaction of bevacizumab treatment, clarify the mechanism of drug resistance of bevacizumab treatment.

Detailed description

Patient: Adult glioma, pathological diagnosis combined with molecular diagnosis (i.e. IDH- mutant glioma, IDH- mutant glioma with 1p/19q- co-deletion, glioblastoma). The patients were divided into three groups: group A (IDH mutant glioma), group B (IDH mutant with 1p/19q co-deletion oligodendroglioma ) and group C (IDH wild glioblastoma). From the first day after surgery, the ctDNA was extracted with TISF before concurrent chemoradiotherapy as the baseline, and the ctDNA was detected again after concurrent chemoradiotherapy. For the third time, ctDNA was detected in temozolomide intensive chemotherapy. ctDNA was detected for the fourth time when the image showed tumor progression. After the progress, temozolomide combined with bevacizumab was used for chemotherapy. ctDNA was detected 6 weeks after the application of bevacizumab, and ctDNA was re-measured every 6 weeks during the treatment of bevacizumab. At the same time, imaging examination was performed to determine the tumor progress. Check and record adverse events and drug use in detail, and evaluate the compliance of subjects; After TISF tissue extraction, the retained blood samples were sent to simcere Company and Beijing Genetron Health Technology Co. Ltd for ctDNA quantification and detection. To study the differences of gene evolution of different subtypes of glioma under pressure therapy, to clarify the differences of molecular responses of different subtypes of glioma to bevacizumab, and to evaluate the therapeutic effect and safety.

Interventions

DRUGGene evolution and molecular response under Bevacizumab treatment

Patients with glioma were routinely treated with temozolomide chemotherapy from the 4th week after operation, for 5 days continuously, once every 4 weeks, with a single dose as follows: Single dose = BSA (body surface area) \* 150mg/m2/day BSA(Body Surface Area)=\[weight (kg)\* height (cm)/3600\]2, According to the molecular pathological grade (WHO CNS5 grade), it is decided whether to combine radiotherapy (GBM combined with radiotherapy) and temozolomide combined with bevacizumab (600mg) in the course of tumor progression, Recording image changes

Sponsors

Henan Provincial People's Hospital
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* Age 18 to 75 years, both male and female (including 18 and 75 years old) glioma; * Willing to accept treatment and sign informed consent.

Exclusion criteria

* Participants with other infection disease or immunodeficiency disease; * other central infectious diseases; * malignant tumor of non-nervous system; * drug abuse; * severe psychiatric disease; * uncontrolled diabetes;

Design outcomes

Primary

MeasureTime frameDescription
Different subtypes of glioma have different therapeutic responses to bevacizumab96 weeksWe evaluated the efficacy of bevacizumab on different subtypes of glioma at recurrence according to delta-VAF and Ratio combined with imaging.The mean change in VAF (delta-VAF) was calculated per patient as the sum of the ontreatmentVAF minus the pretreatment VAF for each detected SNV or indel divided by the number of detected SNVs or indels, we found that the molecular responce model could generally be represented in simpler terms through a ratio of ontreatment VAF to pretreatment VAF
the molecular mechanism of bevacizumab resistance in vivo.144 weeksWe compared and analyzed the genes before and after bevacizumab treatment according to the gene evolution of ctDNA.To clarify the molecular mechanism of bevacizumab resistance.

Countries

China

Contacts

Primary ContactXingyao Bu, Ph.D
xingyaob@zzu.edu.cn18538297990
Backup ContactHuibin Ning, Ph.D
situhailuo@163.com15981849054

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 8, 2026