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The Correlation Between Circulatory Tumor Cells and Venous Thrombosis

The Correlation Between Circulatory Tumor Cells and Venous Thrombosis

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT06672250
Enrollment
120
Registered
2024-11-04
Start date
2024-05-28
Completion date
2027-04-30
Last updated
2025-09-24

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

Conditions

Tumor Cells, Circulating, Venous Thrombosis

Keywords

Cancer, Thrombosis, Venous thromboembolism, Circulating tumor cells, Endovascular therapy

Brief summary

Research indicates a strong correlation between cancer and thrombosis, with approximately 20% of blood clots in the U.S. being cancer-related, according to CDC data. Cancer patients face a 4-7 times higher risk of thrombosis compared to non-cancer individuals. Certain cancer treatments, such as chemotherapy and targeted therapy, elevate the likelihood of venous thromboembolism (VTE). Cancer patients with VTE exhibit a significantly higher hazard ratio (H.R.) of 3.4 compared to those without VTE. This study aims to explore three main topics: (1) Comparing the differences and similarities of leukocyte populations between cancer-associated thrombosis (CAT) and venous thromboembolism (VTE). (2) Characterizing the factors contributing to increased incidence of cancer-associated thrombosis (CAT), with the hypothesis that circulating tumor microemboli (CTM) may express more thrombosis-related proteins than CTCs. (3) Understanding the effects of aspirin or NOACs on cancer-associated thrombosis and CTM formation.

Detailed description

Research indicates a strong correlation between cancer and thrombosis, with approximately 20% of blood clots in the U.S. being cancer-related, according to CDC data. Cancer patients face a 4-7 times higher risk of thrombosis compared to non-cancer individuals. Certain cancer treatments, such as chemotherapy and targeted therapy, elevate the likelihood of venous thromboembolism (VTE). Cancer patients with VTE exhibit a significantly higher hazard ratio (H.R.) of 3.4 compared to those without VTE. The mechanisms underlying cancer-related thrombosis are intricate. Cancer cells can directly activate coagulation and platelets through various factors, including tissue factor (T.F.), particularly prevalent in specific cancers like pancreatic and ovarian, correlating with a heightened VTE risk and poorer prognosis. Additionally, factors such as podoplanin (PDPN), plasminogen activation inhibitor-1 (PAI-1), and cancer procoagulant (C.P.) further promote coagulation. Inflammatory cytokines originating from tumor cells and cancer-derived factors stimulate neutrophil extracellular traps, contributing to thrombosis. Metastatic tumors facilitate cancer cell dissemination and entry into blood vessels, leading to thrombosis in certain instances. Analyzing circulating tumor cells (CTCs) from biopsies aids in comprehending cancer metastasis and identifying treatment targets. However, isolating these rare CTCs from blood presents a challenge. Endovascular therapy has made strides in thrombosis treatment, with endovascular thrombectomy showing promise in severe thrombosis cases. It is proposed that aspirating thrombi during this procedure could yield CTCs for further examination regarding the impact of cancer cells on thrombogenesis. This study aims to explore three main topics: (1) Comparing the differences and similarities of leukocyte populations between cancer-associated thrombosis (CAT) and venous thromboembolism (VTE). (2) Characterizing the factors contributing to increased incidence of cancer-associated thrombosis (CAT), with the hypothesis that circulating tumor microemboli (CTM) may express more thrombosis-related proteins than CTCs. (3) Understanding the effects of aspirin or NOACs on cancer-associated thrombosis and CTM formation.

Interventions

PROCEDURECTCs/CTMs culture

Collect the thrombosis from participants underwent catheter-based thrombectomy.To characterized by cancer-specific surface markers successfully and identify within the culture

Sponsors

Chang Gung Memorial Hospital
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
Yes

Inclusion criteria

1. age≧18 2. participants (1)participants without cancer: without cancer in five years (2)participants with cancer:pathology reveal have malignant tumor 3. patients who underwent catheter-based thrombectomy 4. agree do the thrombectomy

Exclusion criteria

1. participants without cancer (1).shock (2).severe sepsis (3).with cancer in five years 2. participants with cancer (1).shock (2).severe sepsis

Design outcomes

Primary

MeasureTime frameDescription
cell culturebaselinecancer-specific surface markers
RNA-seqbaselineDNA/RNA extraction of sorted cells as instruments' maneuvers and do the RNA-seq

Countries

Taiwan

Contacts

Primary ContactHsin-Fu Lee, PhD
8805033@cgmh.org.tw0975366105
Backup ContactChia-Hsun Hsieh, PhD
wisdom5000@cgmh.org.tw0975366137

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026