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Published on: June 7, 2019
Cancer microcell initiation and determination
Zane Simsone1, Tālivaldis Freivalds2, Dina Bēma2,3
1Institute of Cardiology and Regenerative Medicine, University of Latvia, Jelgavas Street 3, Riga, LV-1004, Latvia. z.simsone@gmail.com.
Background:
Cancer remains one of the leading causes of death worldwide, despite the possibilities to detect early onset of the most common cancer types. The search for the optimal therapy is complicated by the cancer diversity within tumors and the unsynchronized development of cancerous cells. Therefore, it is necessary to characterize cancer cell populations after treatment has been applied, because cancer recurrence is not rare. In our research, we concentrated on small cancer cell subpopulation (microcells) that has a potential to be cancer resistance source. Previously made experiments has shown that these cells in small numbers form in specific circumstances after anticancer treatment.
Methods:
In experiments described in this research, the anticancer agents' paclitaxel and doxorubicin were used to stimulate the induction of microcells in fibroblast, cervix adenocarcinoma, and melanoma cell lines. Mainly for the formation of microcells in melanoma cells. The drug-stimulated cells were then characterized in terms of their formation efficiency, morphology, and metabolic activity.
Results:
We observed the development of cancer microcells and green fluorescent protein (GFP) transfection efficiency after stress. In the time-lapse experiment, we observed microcell formation through a renewal process and GFP expression in the microcells. Additionally, the microcells were viable after anticancer treatment, as indicated by the nicotinamide adenine dinucleotide hydrogen phosphate (NADPH) enzyme activity assay results. Taken together, these findings indicate that cancer microcells are viable and capable of resisting the stress induced by anticancer drugs, and these cells are prone to chemical substance uptake from the environment.
Conclusion:
Microcells are not only common to a specific cancer type, but can be found in any tumor type. This study could help to understand cancer emergence and recurrence. The appearance of microcells in the studied cancer cell population could be an indicator of the individual anticancer therapy effectiveness and patient survival.
Insights
Cancer microcells, a resistant subpopulation, emerge after anticancer treatment. These viable microcells can uptake substances and may indicate treatment effectiveness and patient survival, aiding cancer recurrence understanding.
Area of Science:
- Oncology
- Cell Biology
- Cancer Research
Background:
- Cancer's global impact necessitates understanding treatment resistance.
- Tumor heterogeneity and asynchronous cell development complicate therapy.
- Cancer recurrence highlights the need to characterize post-treatment cell populations.
Purpose of the Study:
- Investigate the formation and characteristics of cancer microcells.
- Determine if microcells are a source of cancer resistance.
- Assess the viability and properties of microcells post-anticancer treatment.
Main Methods:
- Induction of microcells using paclitaxel and doxorubicin in fibroblast, cervix adenocarcinoma, and melanoma cell lines.
- Characterization of microcell formation efficiency, morphology, and metabolic activity.
- Observation of microcell development and green fluorescent protein (GFP) transfection via time-lapse experiments.
Main Results:
- Observed microcell development and GFP transfection efficiency post-stress.
- Confirmed microcell viability through nicotinamide adenine dinucleotide hydrogen phosphate (NADPH) enzyme activity assays.
- Demonstrated microcells' resistance to anticancer drugs and propensity for chemical substance uptake.
Conclusions:
- Microcells are not exclusive to specific cancer types and can appear in any tumor.
- The study provides insights into cancer emergence and recurrence mechanisms.
- Microcell appearance may serve as a biomarker for anticancer therapy effectiveness and patient survival.
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