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Using an Automated Cell Counter to Simplify Gene Expression Studies: siRNA Knockdown of IL-4 Dependent Gene Expression in Namalwa Cells
Published on: April 14, 2010
Resistance-breaking profiling and gene expression analysis on an organometallic ReI-phenanthridine complex reveal
Marcel König1, Daniel Siegmund2, Lukasz J Raszeja2
1Department of Paedriatic Oncology , Children's Hospital Cologne , Amsterdamer Strasse 59 , 50735 Cologne , Germany.
Abstract:
Emerging resistances of tumors against multiple anti-cancer agents are a major concern in the chemotherapeutical treatment of various cancers. Clearly, this raises the need for novel therapeutics with new modes of action. Herein, we report on the favorable in vitro anti-proliferative properties of a phenanthridine-containing ReI(CO)3 complex (compound 1, also abbreviated LR-166) and identify major contributions to its mode of action. The complex induces apoptosis in low micromolar concentrations even in drug-resistant Burkitt-like lymphoma (BJAB) and leukemia (Nalm-6) cell lines with known overexpression of p-glycoproteins as was confirmed by measuring the amount of hypodiploid DNA via FACS Scan analysis. Importantly, a gene expression analysis in combination with toxicity studies on a number of modified cell lines (leukemia: NALM-6, lymphoma: BJAB, melanoma: MelHO) and the reduction of mitochondrial membrane potential (determined by adding JC-1 dye, followed by FACS analysis) confirmed the activation of both, the extrinsic and the intrinsic apoptotic pathway. Finally, the mechanism of action was shown not to be influenced by overexpression of the anti-apoptotic factor Bcl-2 in Mel-HO cells which are known to be resistant to a variety of drugs. All taken together, our experiments underscore the unique opportunities inherent in this novel lead structure of Re complexes to act as an effective chemotherapeutic agent in a combination therapy to overcome documented drug resistances in tumors.
Insights
A novel rhenium complex, LR-166, shows potent anti-cancer activity against drug-resistant cell lines by inducing apoptosis through both extrinsic and intrinsic pathways, offering new therapeutic potential.
Area of Science:
- Medicinal Chemistry
- Oncology
- Biochemistry
Background:
- Tumor resistance to multiple anti-cancer drugs is a significant clinical challenge.
- Novel therapeutics with distinct mechanisms of action are urgently needed.
Purpose of the Study:
- To investigate the anti-proliferative properties and mechanism of action of a novel phenanthridine-containing Rhenium(I) complex, LR-166.
- To evaluate its efficacy against drug-resistant cancer cell lines.
Main Methods:
- In vitro anti-proliferative assays.
- Flow cytometry analysis (FACS) to measure hypodiploid DNA and mitochondrial membrane potential.
- Gene expression analysis and toxicity studies on modified cell lines.
Main Results:
- LR-166 demonstrated favorable in vitro anti-proliferative activity at low micromolar concentrations.
- The complex induced apoptosis in drug-resistant leukemia (Nalm-6) and lymphoma (BJAB) cell lines, even those overexpressing p-glycoproteins.
- Activation of both extrinsic and intrinsic apoptotic pathways was confirmed.
- The mechanism was independent of Bcl-2 overexpression in resistant melanoma cells (MelHO).
Conclusions:
- LR-166 exhibits unique potential as a chemotherapeutic agent.
- This novel Rhenium complex can overcome documented drug resistances in tumors.
- LR-166 may be a valuable candidate for combination therapy strategies.
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