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Photostimulation by Femtosecond Laser Activates Extracellular-signal-regulated Kinase ERK Signaling or Mitochondrial Events in Target Cells
Published on: July 6, 2019
Multiregion Quantification of Extracellular Signal-regulated Kinase Activity in Renal Cell Carcinoma
Christian R Hoerner1, Rustin Massoudi2, Thomas J Metzner3
1Division of Oncology, Department of Medicine, Stanford University School of Medicine, Stanford, CA, USA; The Kidney Cancer Research Program, Stanford University School of Medicine, Stanford, CA, USA.
Abstract:
To personalize treatment for renal cell carcinoma (RCC), it would be ideal to confirm the activity of druggable protein pathways within individual tumors. We have developed a high-resolution nanoimmunoassay (NIA) to measure protein activity with high precision in scant specimens (eg, fine needle aspirates [FNAs]). Here, we used NIA to determine whether protein activation varied in different regions of RCC tumors. Since most RCC therapies target angiogenesis by inhibiting the vascular endothelial growth factor (VEGF) receptor, we quantified phosphorylation of extracellular signal-regulated kinase (ERK), a downstream effector of the VEGF signaling pathway. In 90 ex vivo FNA biopsies sampled from multiple regions of 38 primary clear cell RCC tumors, ERK phosphorylation differed among patients. In contrast, within individual patients, we found limited intratumoral heterogeneity of ERK phosphorylation. Our results suggest that measuring ERK in a single FNA may be representative of ERK activity in different regions of the same tumor. As diagnostic and therapeutic protein biomarkers are being sought, NIA measurements of protein signaling may increase the clinical utility of renal mass biopsy and allow for the application of precision oncology for patients with localized and advanced RCC. PATIENT SUMMARY: In this report, we applied a new approach to measure the activity of extracellular signal-regulated kinase (ERK), a key cancer signaling protein, in different areas within kidney cancers. We found that ERK activity varied between patients, but that different regions within individual kidney tumors showed similar ERK activity. This suggests that a single biopsy of renal cell carcinoma may be sufficient to measure protein signaling activity to aid in precision oncology approaches.
Insights
A new nanoimmunoassay (NIA) precisely measures protein activity in kidney cancer biopsies. Results show consistent extracellular signal-regulated kinase (ERK) activity within individual tumors, supporting single biopsies for precision oncology.
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- Personalized treatment for renal cell carcinoma (RCC) requires confirmation of protein pathway activity within individual tumors.
- Current methods may not offer the precision needed for scant specimens like fine needle aspirates (FNAs).
Purpose of the Study:
- To develop and apply a high-resolution nanoimmunoassay (NIA) for precise protein activity measurement in RCC specimens.
- To investigate intratumoral heterogeneity of extracellular signal-regulated kinase (ERK) phosphorylation, a key downstream effector of VEGF signaling, in clear cell RCC.
Main Methods:
- Development of a high-resolution nanoimmunoassay (NIA) for protein activity quantification.
- Sampling of 90 ex vivo FNA biopsies from multiple regions of 38 primary clear cell RCC tumors.
- Quantification of ERK phosphorylation as a marker of VEGF pathway activity.
Main Results:
- ERK phosphorylation levels varied significantly among different RCC patients.
- Limited intratumoral heterogeneity of ERK phosphorylation was observed within individual tumors.
- A single FNA biopsy may be representative of ERK activity across different regions of the same tumor.
Conclusions:
- NIA enables precise measurement of protein signaling in scant specimens, increasing the clinical utility of renal mass biopsies.
- The limited intratumoral heterogeneity of ERK phosphorylation supports the use of single biopsies for guiding precision oncology in RCC.
- This approach may facilitate personalized treatment strategies for patients with localized and advanced RCC.
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