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The Combination of Three Natural Compounds Effectively Prevented Lung Carcinogenesis by Optimal Wound Healing
Linxin Liu1, Hong Li1, Zhenzhen Guo1
1Institute of Pharmacy, Pharmacy College of Henan University, Jinming District, Kaifeng, Henan Province 475004, China.
Abstract:
The tumor stroma has been described as "normal wound healing gone awry". We explored whether the restoration of a wound healing-like microenvironment may facilitate tumor healing. Firstly, we screened three natural compounds (shikonin, notoginsenoside R1 and aconitine) from wound healing agents and evaluated the efficacies of wound healing microenvironment for limiting single agent-elicited carcinogenesis and two-stage carcinogenesis. The results showed that three compounds used alone could promote wound healing but had unfavorable efficacy to exert wound healing, and that the combination of three compounds made up treatment disadvantage of a single compound in wound healing and led to optimal wound healing. Although individual treatment with these agents may prevent cancer, they were not effective for the treatment of established tumors. However, combination treatment with these three compounds almost completely prevented urethane-induced lung carcinogenesis and reduced tumor burden. Different from previous studies, we found that urethane-induced lung carcinogenesis was associated with lung injury independent of pulmonary inflammation. LPS-induced pulmonary inflammation did not increase lung carcinogenesis, whereas decreased pulmonary inflammation by macrophage depletion promoted lung carcinogenesis. In addition, urethane damaged wound healing in skin excision wound model, reversed lung carcinogenic efficacy by the combination of three compounds was consistent with skin wound healing. Further, the combination of these three agents reduced the number of lung cancer stem cells (CSCs) by inducing cell differentiation, restoration of gap junction intercellular communication (GJIC) and blockade of the epithelial-to-mesenchymal transition (EMT). Our results suggest that restoration of a wound healing microenvironment represents an effective strategy for cancer prevention.
Insights
Restoring a wound healing microenvironment with a combination of three natural compounds effectively prevented lung cancer and reduced tumor burden by targeting cancer stem cells. This approach shows promise for cancer prevention strategies.
Area of Science:
- Oncology
- Wound Healing Research
- Natural Products Chemistry
Background:
- Tumor stroma resembles dysregulated wound healing.
- Investigating if mimicking wound healing can aid tumor suppression.
Purpose of the Study:
- To evaluate if a wound healing microenvironment can prevent or treat cancer.
- To screen natural compounds for wound healing properties and anti-cancer efficacy.
Main Methods:
- Screened shikonin, notoginsenoside R1, and aconitine for wound healing.
- Assessed compound efficacy in limiting carcinogenesis and tumor burden.
- Investigated urethane-induced lung carcinogenesis and its relation to inflammation and wound healing.
- Analyzed effects on lung cancer stem cells (CSCs), gap junction intercellular communication (GJIC), and epithelial-to-mesenchymal transition (EMT).
Main Results:
- A combination of the three compounds optimized wound healing.
- This combination significantly prevented urethane-induced lung carcinogenesis and reduced tumor burden.
- Lung carcinogenesis was linked to lung injury, not inflammation.
- The combination therapy reduced lung CSCs via differentiation, restored GJIC, and blocked EMT.
Conclusions:
- Restoring a wound healing microenvironment is a viable strategy for cancer prevention.
- Combination therapy with shikonin, notoginsenoside R1, and aconitine shows significant anti-cancer effects.
- Targeting CSCs, GJIC, and EMT pathways contributes to the observed anti-carcinogenic effects.
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