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Tracing the origin of disseminated tumor cells in breast cancer using single-cell sequencing
Jonas Demeulemeester1,2, Parveen Kumar2,3, Elen K Møller4
1The Francis Crick Institute, London, UK.
Background:
Single-cell micro-metastases of solid tumors often occur in the bone marrow. These disseminated tumor cells (DTCs) may resist therapy and lay dormant or progress to cause overt bone and visceral metastases. The molecular nature of DTCs remains elusive, as well as when and from where in the tumor they originate. Here, we apply single-cell sequencing to identify and trace the origin of DTCs in breast cancer.
Results:
We sequence the genomes of 63 single cells isolated from six non-metastatic breast cancer patients. By comparing the cells' DNA copy number aberration (CNA) landscapes with those of the primary tumors and lymph node metastasis, we establish that 53% of the single cells morphologically classified as tumor cells are DTCs disseminating from the observed tumor. The remaining cells represent either non-aberrant "normal" cells or "aberrant cells of unknown origin" that have CNA landscapes discordant from the tumor. Further analyses suggest that the prevalence of aberrant cells of unknown origin is age-dependent and that at least a subset is hematopoietic in origin. Evolutionary reconstruction analysis of bulk tumor and DTC genomes enables ordering of CNA events in molecular pseudo-time and traced the origin of the DTCs to either the main tumor clone, primary tumor subclones, or subclones in an axillary lymph node metastasis.
Conclusions:
Single-cell sequencing of bone marrow epithelial-like cells, in parallel with intra-tumor genetic heterogeneity profiling from bulk DNA, is a powerful approach to identify and study DTCs, yielding insight into metastatic processes. A heterogeneous population of CNA-positive cells is present in the bone marrow of non-metastatic breast cancer patients, only part of which are derived from the observed tumor lineages.
Insights
Single-cell sequencing identified disseminated tumor cells (DTCs) in breast cancer bone marrow, revealing their origins from primary tumors or metastases. This approach helps understand early metastatic spread and dormancy.
Area of Science:
- Oncology
- Genomics
- Cell Biology
Background:
- Disseminated tumor cells (DTCs) in bone marrow are linked to cancer metastasis and therapeutic resistance.
- The molecular characteristics and origins of DTCs remain largely unknown.
- Understanding DTCs is crucial for deciphering metastatic processes in breast cancer.
Purpose of the Study:
- To identify and trace the origin of single-cell micro-metastases (DTCs) in the bone marrow of breast cancer patients.
- To investigate the heterogeneity of cells found in bone marrow and their relationship to the primary tumor.
Main Methods:
- Single-cell genome sequencing of 63 cells from bone marrow of six non-metastatic breast cancer patients.
- Comparative analysis of DNA copy number aberration (CNA) landscapes between bone marrow cells, primary tumors, and lymph node metastases.
- Evolutionary reconstruction analysis of bulk tumor and DTC genomes.
Main Results:
- 53% of morphologically identified tumor cells in bone marrow were confirmed as DTCs originating from the primary tumor.
- A significant proportion of bone marrow cells showed aberrant copy number landscapes discordant from the primary tumor, with some being age-dependent and potentially hematopoietic.
- Evolutionary analysis traced DTC origins to the main tumor clone, primary tumor subclones, or axillary lymph node metastasis subclones.
Conclusions:
- Single-cell sequencing combined with intra-tumor heterogeneity profiling is effective for identifying and studying DTCs.
- Bone marrow of non-metastatic breast cancer patients harbors a heterogeneous population of CNA-positive cells, not all derived from the primary tumor.
- This study provides insights into the origins and heterogeneity of early metastatic cells in breast cancer.
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