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The effect of the PQ1 anti-breast cancer agent on normal tissues
Ying Ding1, Keshar Prasain, Thi D T Nguyen
1Department of Biochemistry, Kansas State University, Manhattan, Kansas 66506, USA.
Abstract:
Gap junctions are intercellular channels connecting adjacent cells, allowing cells to transport small molecules. The loss of gap junctional intercellular communication (GJIC) is one of the important hallmarks of cancer. Restoration of GJIC is related to the reduction of tumorigenesis and increase in drug sensitivity. Previous reports have shown that PQ1, a quinoline derivative, increases GJIC in T47D breast cancer cells, and subsequently attenuates xenograft breast tumor growth. Combinational treatment of PQ1 and tamoxifen can lower the effective dose of tamoxifen in cancer cells. In this study, the effects of PQ1 were examined in normal C57BL/6J mice, evaluating the distribution, toxicity, and adverse effects. The distribution of PQ1 was quantified by high-performance liquid chromatography and mass spectrometry. The expressions of survivin, caspase-8, cleaved caspase-3, aryl hydrocarbon receptor (AhR), and gap junction protein, connexin 43 (Cx43), were assessed using western blot analysis. Our results showed that PQ1 was absorbed and distributed to vital organs within 1 h and the level of PQ1 decreased after 24 h. Furthermore, PQ1 increased the expression of survivin, but decreased the expression of caspase-8 and caspase-3 activity. Interestingly, the expression of AhR increased in the presence of PQ1, suggesting that PQ1 may be involved in the AhR-mediated response. Previously, PQ1 caused an increase in Cx43 expression in breast cancer cells; however, PQ1 induced a decrease in Cx43 in normal tissues. Hemotoxylin and eosin staining of the tissues showed no histological change between the treated and the untreated organs. Our studies indicate that the administration of PQ1 by an oral gavage can be achieved with low toxicity to normal vital organs.
Insights
PQ1, a quinoline derivative, shows low toxicity in normal mice by oral gavage. While increasing survivin and AhR, it decreases caspase activity and connexin 43 in healthy tissues, suggesting a potential therapeutic window for cancer treatment.
Area of Science:
- Pharmacology
- Cancer Biology
- Toxicology
Background:
- Gap junctional intercellular communication (GJIC) loss is a cancer hallmark.
- PQ1, a quinoline derivative, previously enhanced GJIC in breast cancer cells.
- Restoring GJIC can reduce tumor growth and increase drug sensitivity.
Purpose of the Study:
- To evaluate the distribution, toxicity, and adverse effects of PQ1 in normal C57BL/6J mice.
- To investigate PQ1's impact on key protein expressions related to cell survival and apoptosis.
- To assess PQ1's effect on connexin 43 (Cx43) expression in normal tissues.
Main Methods:
- Oral gavage administration of PQ1 to mice.
- Quantification of PQ1 distribution using high-performance liquid chromatography and mass spectrometry.
- Western blot analysis for survivin, caspase-8, cleaved caspase-3, aryl hydrocarbon receptor (AhR), and Cx43 expression.
- Histological examination using Hemotoxylin and eosin staining.
Main Results:
- PQ1 was rapidly absorbed and distributed to vital organs within 1 hour, with levels decreasing after 24 hours.
- PQ1 increased survivin expression and AhR levels, while decreasing caspase-8 and caspase-3 activity.
- PQ1 reduced Cx43 expression in normal tissues, contrasting with its effect in cancer cells.
- No significant histological changes were observed in treated organs.
Conclusions:
- PQ1 exhibits low toxicity in normal mice following oral administration.
- PQ1 modulates protein expression related to apoptosis and cell signaling pathways.
- The differential effect of PQ1 on Cx43 in normal versus cancer tissues warrants further investigation for therapeutic applications.
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