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Silicon Microsieve Device vs Cell Surface Marker-based Platform for the Isolation of Pancreatic Cancer CTCs

A Head-to-head Comparison of a Novel Silicon Microsieve Device Against a Cell Surface Marker-based Platform for the Isolation of Portal Vein Circulating Tumor Cells in Pancreatic Cancer

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04638868
Enrollment
26
Registered
2020-11-20
Start date
2020-11-17
Completion date
2021-12-31
Last updated
2020-11-23

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

Conditions

Pancreatic Cancer

Keywords

Circulating Tumor Cells, Endoscopic Ultrasound, Portal vein blood sampling, Fine needle aspiration, Microsieve

Brief summary

The study aims to compare the use of a microsieve device vs a cell surface marker-based platform for the isolation of pancreatic cancer circulating tumor cells

Detailed description

Circulating tumor cells (CTCs) aid prognostication of cancer by predicting the presence of microscopic metastases. This is important in pancreatic cancer, which is associated with a poor prognosis even in resectable disease, due to microscopic metastases that are not detectable on pre-operative cross-sectional imaging. In pancreatic cancer, blood is sampled from the portal circulation to overcome the hepatic sieve effect, where CTCs are filtered out in the capillary beds of the liver before entering the peripheral circulation. Minimally invasive blood sampling from the portal vein can now be done via endoscopic ultrasound (EUS) guidance, allowing CTC analyses to be done pre-operatively. CTCs have traditionally been isolated in various cancers using a cell surface marker-based platform (CellSearch™). This involves the use of antibodies to identify, isolate and quantify CTCs based on presence of specific epithelial cell markers. However, CTCs are now known to undergo epithelial-mesenchymal transformation. The current epithelial cell surface marker-based method of CTC isolation is limited by its inability to detect mesenchymal-type CTCs, potentially under estimating the CTC count, affecting quantification and subsequent CTC molecular analyses. The use of a novel silicon microsieve device will overcome these limitations. It will simplify the isolation of CTCs by its characteristic size, enable both epithelial and mesenchymal types of CTCs to be isolated and results in greater cell viability, aiding in subsequent cell culture and organoid growth. The investigators will compare a novel silicon microsieve size-based cell filtration device against the cell surface marker label-based CellSearch™ platform for the identification of pancreatic cancer CTCs in portal venous blood obtained via an Endoscopic Ultrasound (EUS)-guided puncture. The investigators will compare the yield of epithelial-type CTCs isolated using both methods. The investigators will investigate whether the isolation of mesenchymal-type CTCs via a sized-based cell filtration device leads to a significant increase in total CTC yield. The investigators expect our study to show that the new technique of size-based CTC isolation improves CTC yield in pancreatic cancer. This preliminary data would be crucial for future research into patient selection for neoadjuvant chemotherapy and individualized treatment from patient-specific tumor tissue, which the investigators intend to embark upon.

Interventions

DEVICEMicrosieve device

Both portal venous and peripheral blood will be processed through a label-free size-based silicon microsieve microfiltration device, which will isolate both epithelial-type and mesenchymal-type pancreatic cancer circulating tumor cells. Downstream mutational analyses will be performed to confirm identity of the cells.

DEVICECell surface marker-based platform

Both portal venous and peripheral blood will be processed through a cell surface marker-based platform, which contains antibodies for epithelial cell markers on pancreatic cancer circulating tumor cells. Downstream mutational analyses will be performed to confirm identity of the cells.

Sponsors

Agency for Science, Technology and Research
CollaboratorOTHER
Singapore General Hospital
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

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

Inclusion criteria

1. Age 21 years and older 2. All inpatients with solid pancreatic lesions referred for Endoscopic Ultrasound - Fine Needle Aspiration (EUS-FNA) 3. Solid lesions confirmed by at least a single investigational modality, mainly CT, MRI or endoscopy 4. Able to comply with the study procedure and provide informed consent.

Exclusion criteria

1. Presence of active bleeding 2. Presence of coagulopathy as evidenced by INR \>1.5 and platelets \<50,000 3. Poor patient tolerance to procedure 4. Concurrent intake of anticoagulants and thienopyridine (e.g.Clopidogrel) in patients who require antiplatelet therapy 5. Pregnancy 6. Presence of portal vein thrombus 7. Patients with liver cirrhosis and /or other structural abnormalities in the liver or the stomach

Design outcomes

Primary

MeasureTime frameDescription
Number of circulating tumor cellsImmediately following procedureThe number of circulating tumor cells isolated via both methods (microsieve device and cell surface marker-based platform)

Contacts

Primary ContactDamien Meng Yew Tan, MBBS
damien.tan.m.y@singhealth.com.sg+6582995594
Backup ContactClement Chun Ho Wu, MBBS
clementwu.ch@gmail.com+6592995216

Outcome results

None listed

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