Borstkanker

Hogere aantallen grote extracellulaire vesikels correleren met kortere overleving bij gemetastaseerd borstkanker

In een retrospectieve analyse van 72 patiënten met gemetastaseerd borstkanker onderzochten onderzoekers de prognostische waarde van grote extracellulaire vesikels (LEVs) in bloedmonsters. De aantallen LEVs correleerden sterk met circulerende tumorcellen en tumorafgeleide extracellulaire vesikels, en een verhoogd LEV-gehalte bleek significant geassocieerd met een kortere totale overleving (HR per 100 LEVs 1,04; p=0,0015).

Deze bevindingen suggereren dat LEVs naast circulerende tumorcellen een complementaire rol kunnen spelen in de liquid biopsy, met name bij patiënten met een lage tumorcelbelasting. De studie valideert een workflow voor LEV-detectie, maar de kleine steekproef en retrospectieve opzet vereisen bevestiging in grotere prospectieve cohorts.

Abstract (original)

BACKGROUND: Large extracellular vesicles (LEVs) are membrane-bound extracellular particles released by tumour cells into body fluids. Circulating LEVs carry tumour-associated biomaterials and are more abundant than circulating tumour cells (CTCs), representing a valuable liquid biopsy analyte. We evaluated the RareCyte® CTC platform's ability to identify LEVs in blood smears and explored associations with clinicopathological features in a metastatic breast cancer (MBC) cohort. METHODS: MBC patient samples (N = 72) from a previously published prospective comparison study were retrospectively re-analysed to develop and validate an LEV identification and enumeration workflow. Correlations with CellSearch® tumour-derived extracellular vesicle (tdEV) counts and CTC counts were assessed using Spearman's rho. Between-platform comparisons were performed using Wilcoxon's signed-rank test Associations with overall survival (OS) were assessed using Kaplan-Meier analysis and Cox proportional hazards models. Overall survival was defined as the interval between blood collection and death from any cause. RESULTS: Median LEV count [IQR] was 89 [53-208], with detectable LEVs in patients with low or absent CTC counts. LEV counts positively correlated with matched CTC counts (Spearman's ρ = 0.88, p < 0.001) and CellSearch tdEV counts (Spearman's ρ = 0.80, p < 0.001). Higher LEV counts were associated with significantly shorter overall survival (p = 0.04). RareCyte LEV counts were significantly higher than CellSearch tdEV counts, potentially reflecting methodological differences between enrichment workflows. In Cox analysis, higher LEV counts were associated with shorter OS (HR per 100 LEVs = 1.04, p = 0.0015), and CTCs were also significantly associated with OS. CONCLUSION: We developed an operational workflow for LEV detection and quantification using the RareCyte® CTC analysis platform. The inclusion of LEVs into CTC-based liquid biopsy analyses may provide complementary biomarker information, particularly in patients with low CTC burden.

Dit artikel is een samenvatting van een publicatie in The journal of liquid biopsy. Voor het volledige artikel, alle details en referenties verwijzen wij u naar de oorspronkelijke bron.

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DOI: 10.1016/j.jlb.2026.100485