Attenuated isolated 3' signal: A highly challenging therapy relevant ALK FISH pattern in NSCLC
Gábor Smuk1, Gábor Pajor1, Károly Szuhai2
1Department of Pathology, Medical School and Clinical Center, University of Pécs, Hungary.
Objectives:
Targeted therapies in the management of patients with lung cancer provide significantly better outcome compared to chemotherapy. Detection of the anaplastic lymphoma kinase (ALK) gene rearrangement has great predictive value for treatment with small molecule tyrosine kinase inhibitor (crizotinib and alectinib commonly). Fluorescent in situ hybridisation (FISH) assay is a basic diagnostic test designed for detecting ALK gene rearrangements. Although being considered as gold standard method by IASLC's guideline, it is often regarded as difficult and error prone. Our aim was to examine a unique atypical ALK FISH pattern, revealed during a systematic large-scale monitoring, which carries the great risk of misinterpretation, hence may result in loss of patients eligible for targeted therapy.
Materials And Methods:
Tissue and cytology samples from nearly one thousand patients with advanced stage non-small cell lung cancer (NSCLC, n = 996) were routinely examined by ALK FISH and immunohistochemistry (Ventana ALK-D5F3-CDx assay). Anchored Multiplex PCR based Next Generation Sequencing (AMP-NGS) was used to detect fusion gene transcripts in ambiguous cases.
Results:
Fifty-nine (5,9%) of the cases were positive with ALK FISH test. Three cases showed atypical pattern with a significantly reduced sized red (3') signal and complete loss of green signals. Digital signal measurement confirmed this finding, showing consistent attenuation of 3' signals throughout the tumours. In all three cases AMP-NGS and ALK IHC verified the presence of a fusion gene and expressed oncoprotein, respectively.
Conclusion:
Approximately 5% of the 59 ALK positive cases exhibited atypical attenuated isolated 3' signal pattern. The immunohistochemistry and AMP-NGS examinations helped to clarify the presence of oncoprotein and the fusion gene, respectively. Our results emphasize the importance of extensive exploration of the genetic background of any unexpected FISH finding to avoid false diagnosis. This enables clinicians to indicate the adequate therapy with higher efficiency for patients suffering from NSCLC.
Insights
Anaplastic Lymphoma Kinase (ALK) gene rearrangement detection is crucial for lung cancer targeted therapy. A rare atypical ALK FISH pattern can lead to misdiagnosis, impacting patient treatment. Careful genetic analysis is vital for accurate diagnosis and effective therapy selection.
Area of Science:
- Oncology
- Molecular Diagnostics
- Genetics
Background:
- Targeted therapies offer superior outcomes in lung cancer management compared to traditional chemotherapy.
- Anaplastic Lymphoma Kinase (ALK) gene rearrangement detection is a key predictive biomarker for targeted therapy with tyrosine kinase inhibitors.
- Fluorescent In Situ Hybridisation (FISH) is a standard diagnostic method for ALK rearrangements but can be challenging and prone to errors.
Purpose of the Study:
- To investigate a unique atypical ALK FISH pattern observed during large-scale monitoring.
- To assess the risk of misinterpretation associated with this atypical pattern and its potential impact on patient eligibility for targeted therapy.
Main Methods:
- Analysis of tissue and cytology samples from 996 advanced non-small cell lung cancer (NSCLC) patients.
- Routine examination using ALK FISH and immunohistochemistry (IHC).
- Anchored Multiplex PCR based Next Generation Sequencing (AMP-NGS) for ambiguous cases.
Main Results:
- 5.9% (59/996) of cases tested positive for ALK FISH.
- Three cases exhibited an atypical pattern with reduced 3' signals and absent green signals.
- AMP-NGS and IHC confirmed the presence of fusion genes and expressed oncoprotein in these atypical cases.
Conclusions:
- Approximately 5% of ALK-positive cases showed an atypical attenuated 3' signal pattern.
- IHC and AMP-NGS were crucial in clarifying diagnoses in cases with atypical FISH findings.
- Thorough investigation of unexpected FISH results is essential to prevent misdiagnosis and ensure appropriate targeted therapy for NSCLC patients.
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