Keyword search (4,163 papers available)

"prognosis" Keyword-tagged Publications:

Title Authors PubMed ID
1 Microfluidic Liquid Biopsy Minimally Invasive Cancer Diagnosis by Nano-Plasmonic Label-Free Detection of Extracellular Vesicles: Review Neriya Hegade KP; Bhat RB; Packirisamy M; 40650129
ENCS
2 5P Risk Classification Predicts Performance on Self-Reported but Not Objective Clinical Outcomes at 4-Weeks Post-Concussion in Children Teel E; Brossard-Racine M; Corbin-Berrigan LA; Gagnon I; 39988038
HKAP
3 Pattern and Visual Prognostic Factors of Behcet's Uveitis in Northwest Iran Alizadeh Ghavidel L; Bagheri M; Mousavi F; Rezaei L; Hazeri S; Hashemi HS; 35765637
BIOLOGY
4 Circulating miR-1246 Targeting UBE2C, TNNI3, TRAIP, UCHL1 Genes and Key Pathways as a Potential Biomarker for Lung Adenocarcinoma: Integrated Biological Network Analysis Huang S; Wei YK; Kaliamurthi S; Cao Y; Nangraj AS; Sui X; Chu D; Wang H; Wei DQ; Peslherbe GH; Selvaraj G; Shi J; 33050659
CHEMBIOCHEM

 

Title:Microfluidic Liquid Biopsy Minimally Invasive Cancer Diagnosis by Nano-Plasmonic Label-Free Detection of Extracellular Vesicles: Review
Authors:Neriya Hegade KPBhat RBPackirisamy M
Link:https://pubmed.ncbi.nlm.nih.gov/40650129/
DOI:10.3390/ijms26136352
Publication:International journal of molecular sciences
Keywords:cancer diagnosiscancer prognosisexosomesextracellular vesiclesliquid biopsymicrofluidicsminimally invasive diagnosisnano-plasmonic detection
PMID:40650129 Category: Date Added:2025-07-13
Dept Affiliation: ENCS
1 Optical Bio-Microsystems Laboratory, Department of Mechanical and Industrial Engineering, Concordia University, Montreal, QC H3G 1M8, Canada.

Description:

Cancer diagnosis requires alternative techniques that allow for early, non-invasive, or minimally invasive identification. Traditional methods, like tissue biopsies, are highly invasive and can be traumatic for patients. Liquid biopsy, a less invasive option, detects cancer biomarkers in body fluids such as blood and urine. However, early-stage cancer often presents low biomarker levels, making sensitivity a challenge for integrating liquid biopsy into early diagnosis. Recent studies revealed that extracellular vesicles (EVs) secreted by cells are apt markers for liquid biopsy. Detecting extracellular vesicles (EVs) for liquid biopsy faces challenges like low sensitivity, EV subtype heterogeneity, and difficulty isolating pure populations. Label-free methods, such as plasmonic biosensors and Raman spectroscopy, offer potential solutions by enabling direct analysis without markers, improving accuracy, and reducing complexity. This review paper discusses current challenges in EV-based liquid biopsy for cancer diagnosis and prognosis. It addresses the effective use of microfluidics and nano-plasmonic approaches to address these challenges. Enhancing label-free EV detection in liquid biopsy could revolutionize early cancer diagnosis by offering non-invasive, cost-effective, and rapid testing. This could improve patient outcomes through personalized treatment and ease the burden on healthcare systems.





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