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EGFR and ALK Targeted Therapy Response in Non-Small Cell Lung Cancer Harboring Rare or Resistant Mutations: A Case
Anju Farsana Abdul Gafoor1, Preena S Parvathy2, C Gopi Mohan2
1Department of Medical Oncology, Amrita Institute of Medical Sciences and Research Centre, Amrita Vishwa Vidhyapeetham, Kochi 682041, India.
Introduction:
The Non-Small Cell Lung Cancer (NSCLC) with rare genomic alterations poses a significant clinical challenge due to a lack of established therapeutic guidelines.
Case Presentation:
We report the application of a precision medicine strategy integrating genomic profiling with in silico molecular docking to guide therapy for two patients harboring such rare mutations. Genomic analysis identified a rare EGFR exon 18/20 insertion in one patient and a resistant ALK C1156Y mutation in another. Selection of the appropriate drug was carried out using molecular docking simulations, which predicted high binding affinity of the irreversible EGFR inhibitor afatinib for the unique EGFR insertion and of the ALK inhibitor alectinib for the C1156Y-mutated kinase. We observed that the computationally-informed choices of afatinib and alectinib subsequently led to notable clinical and radiological improvements in the respective patients.
Conclusion:
The association between the docking predictions and clinical outcomes corroborates the utility of computational modeling for tailoring therapies, although the structural models provide mechanistic insight into drug efficacy against these rare mutations. The present integrated approach emphasizes the value of merging in silico methods into clinical decision-making to overcome the therapeutic uncertainty of uncommon oncogenic driver alterations.
Insights
Precision medicine guided therapy for Non-Small Cell Lung Cancer (NSCLC) with rare mutations using genomic profiling and in silico molecular docking. This approach successfully identified targeted therapies, leading to significant patient improvements.
Area of Science:
- Oncology
- Genomics
- Computational Biology
Background:
- Non-Small Cell Lung Cancer (NSCLC) with rare genomic alterations presents treatment challenges due to limited therapeutic options.
- Developing effective treatment strategies for uncommon oncogenic drivers is crucial for improving patient outcomes.
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