The Anticancer Role of Capsaicin in Experimentallyinduced Lung Carcinogenesis
Objectives: Capsaicin (CAP) is the chief pungent principle found in the hot red peppers and the chili peppers that have long been used as spices, food additives and drugs. This study investigated the anticancer potential of CAP through its ability to modify extracellular matrix components and protea...
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doaj-a72d2fca35274257ae11cb56d299585d2020-11-25T01:38:25ZengKorean Pharmacopuncture InstituteJournal of Pharmacopuncture2093-69662234-68562015-06-01182192510.3831/KPI.2015.18.011DHOCBS_2015_v18n2_19The Anticancer Role of Capsaicin in Experimentallyinduced Lung CarcinogenesisPandi Anandakumar0Sattu Kamaraj1Sundaram Jagan2Gopalakrishnan Ramakrishnan3Selvamani Asokkumar4Chandrashekar Naveenkumar5Subramanian Raghunandhakumar6Manickam Kalappan Vanitha7Thiruvengadam Devaki8Department of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaDepartment of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaDepartment of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaDepartment of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaDepartment of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaDepartment of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaDepartment of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaDepartment of Medical Biochemistry, University of Madras, Taramani Campus, Chennai, IndiaDepartment of Biochemistry, University of Madras, Guindy Campus, Chennai, IndiaObjectives: Capsaicin (CAP) is the chief pungent principle found in the hot red peppers and the chili peppers that have long been used as spices, food additives and drugs. This study investigated the anticancer potential of CAP through its ability to modify extracellular matrix components and proteases during mice lung carcinogenesis. Methods: Swiss albino mice were treated with benzo(a) pyrene (50 mg/kg body weight dissolved in olive oil) orally twice a week for four successive weeks to induce lung cancer at the end of 14th week. CAP was administrated (10 mg/kg body weight dissolved in olive oil) intraperitoneally. Extracellular matrix components were assayed; Masson’s trichome staining of lung tissues was performed. Western blot analyses of matrix metalloproteases 2 and 9 were also carried out. Results: In comparison with the control animals, animals in which benzo(a)pyrene had induced lung cancer showed significant increases in extracellular matrix components such as collagen (hydroxy proline), elastin, uronic acid and hexosamine and in glycosaminoglycans such as hyaluronate, chondroitin sulfate, keratan sulfate and dermatan sulfate. The above alterations in extracellular matrix components were effectively counteracted in benzo(a)pyrene along with CAP supplemented animals when compared to benzo(a) pyrene alone supplemented animals. The results of Masson’s trichome staining for collagen and of, immunoblotting analyses of matrix metalloproteases 2 and 9 further supported the biochemical findings. Conclusion: The apparent potential of CAP in modulating extracellular matrix components and proteases suggests that CAP plays a chemomodulatory and anti- cancer role working against experimentally induced lung carcinogenesis.http://dx.doi.org/10.3831/KPI.2015.18.011benzo(a)pyrenecapsaicincollagenglycosaminoglycanslung cancermatrix metalloproteases |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pandi Anandakumar Sattu Kamaraj Sundaram Jagan Gopalakrishnan Ramakrishnan Selvamani Asokkumar Chandrashekar Naveenkumar Subramanian Raghunandhakumar Manickam Kalappan Vanitha Thiruvengadam Devaki |
spellingShingle |
Pandi Anandakumar Sattu Kamaraj Sundaram Jagan Gopalakrishnan Ramakrishnan Selvamani Asokkumar Chandrashekar Naveenkumar Subramanian Raghunandhakumar Manickam Kalappan Vanitha Thiruvengadam Devaki The Anticancer Role of Capsaicin in Experimentallyinduced Lung Carcinogenesis Journal of Pharmacopuncture benzo(a)pyrene capsaicin collagen glycosaminoglycans lung cancer matrix metalloproteases |
author_facet |
Pandi Anandakumar Sattu Kamaraj Sundaram Jagan Gopalakrishnan Ramakrishnan Selvamani Asokkumar Chandrashekar Naveenkumar Subramanian Raghunandhakumar Manickam Kalappan Vanitha Thiruvengadam Devaki |
author_sort |
Pandi Anandakumar |
title |
The Anticancer Role of Capsaicin in Experimentallyinduced Lung Carcinogenesis |
title_short |
The Anticancer Role of Capsaicin in Experimentallyinduced Lung Carcinogenesis |
title_full |
The Anticancer Role of Capsaicin in Experimentallyinduced Lung Carcinogenesis |
title_fullStr |
The Anticancer Role of Capsaicin in Experimentallyinduced Lung Carcinogenesis |
title_full_unstemmed |
The Anticancer Role of Capsaicin in Experimentallyinduced Lung Carcinogenesis |
title_sort |
anticancer role of capsaicin in experimentallyinduced lung carcinogenesis |
publisher |
Korean Pharmacopuncture Institute |
series |
Journal of Pharmacopuncture |
issn |
2093-6966 2234-6856 |
publishDate |
2015-06-01 |
description |
Objectives: Capsaicin (CAP) is the chief pungent principle found in the hot red peppers and the chili peppers that have long been used as spices, food additives and drugs. This study investigated the anticancer potential of CAP through its ability to modify extracellular matrix components and proteases during mice lung carcinogenesis. Methods: Swiss albino mice were treated with benzo(a) pyrene (50 mg/kg body weight dissolved in olive oil) orally twice a week for four successive weeks to induce lung cancer at the end of 14th week. CAP was administrated (10 mg/kg body weight dissolved in olive oil) intraperitoneally. Extracellular matrix components were assayed; Masson’s trichome staining of lung tissues was performed. Western blot analyses of matrix metalloproteases 2 and 9 were also carried out. Results: In comparison with the control animals, animals in which benzo(a)pyrene had induced lung cancer showed significant increases in extracellular matrix components such as collagen (hydroxy proline), elastin, uronic acid and hexosamine and in glycosaminoglycans such as hyaluronate, chondroitin sulfate, keratan sulfate and dermatan sulfate. The above alterations in extracellular matrix components were effectively counteracted in benzo(a)pyrene along with CAP supplemented animals when compared to benzo(a) pyrene alone supplemented animals. The results of Masson’s trichome staining for collagen and of, immunoblotting analyses of matrix metalloproteases 2 and 9 further supported the biochemical findings. Conclusion: The apparent potential of CAP in modulating extracellular matrix components and proteases suggests that CAP plays a chemomodulatory and anti- cancer role working against experimentally induced lung carcinogenesis. |
topic |
benzo(a)pyrene capsaicin collagen glycosaminoglycans lung cancer matrix metalloproteases |
url |
http://dx.doi.org/10.3831/KPI.2015.18.011 |
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