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The therapeutic effects of olive leaf extract on Leishmania major infection in BALB/c mice

Yıl 2017, Cilt: 21 Sayı: 4, 837 - 842, 01.12.2017

Öz

At present, no effective vaccine has been found for CL; thus,
the upgrading and improvement of the present drugs and
development of the novel agents have been demonstrated to
be the merely control choice for this disease. The present study
aims to evaluate the effects of olive leaf extract (Olea europaea
L. OLE) on Leishmania major infection in BALB/c mice. OLE
tested on cutaneous leishmaniasis (CL) in male BALB/c mice
with L. major promastigotes (MRHO/IR/75/ER) at the doses of
10, 20, and 30 mg/kg. Results demonstrated that after treatment
of the groups with the concentrations of 10, 20, and 40 mg/
kg of OLE, mean diameter of lesions was reduced by 2.16,
5.87, and 7.61 cm, respectively. Moreover, after 4 weeks of
treatment, 83.3%, 66.64%, and 33.32% recovery was observed
in the infected mice treated with 40, 20, and 10 mg/kg of OLE,
respectively. In conclusion, the present study showed OLE has
potent therapeutic effects on cutaneous leishmaniasis.

Kaynakça

  • 1. World Health Organization (WHO). Control of the leishmaniases. Report of a Meeting of the WHO Expert Committee on the Control of Leishmaniases, WHO Technical Report Series 949, Geneva, 2008, pp. 1-187. 2. Desjeux P. Leishmaniasis: Current situation and new perspectives. Comp Immunol Microbiol Infect Dis 2004; 27: 305-18. 3. Shirzadi MR, Gouya MM. National Guidelines for cutaneous leishmaniasis surveillance in Iran, MOHAME. Zoonoses Control Department, Tehran, I.R. Iran, 2010:1-59. 4. Kheirandish F, Chegeni Sharafi A, Kazemi B, Bandehpour M, Tarahi MJ, Khamesipour A. First molecular identification of Leishmania species in a new endemic area of cutaneous leishmaniasis in Lorestan, Iran. Asian Pac J Trop Med 2013; 6: 713-7. 5. Kheirandish F, Chegeni Sharafi A, Kazemi B, Mohebali M, Sarlak A, Tarahi MJ, Holakouee K, Hajaran H. Identification of Leishmania species using PCR assay on giemsa-stained slides prepared from cutaneous leishmaniasis patients. Iranian J Parasitol 2013; 8: 382-8. 6. Santos DO, Coutinho CE, Madeira MF, Bottino CG, Vieira RT, Nascimento SB, Bernardino A, Bourguignon SC, Corte-Real S, Pinho RT, Rodrigues CR, Castro HC. Leishmaniasis treatment-a challenge that remains: a review. Parasitol Res 2008; 103:1-10. 7. Croft SL, Sundar S, Fairlamb AH. Drug resistance in leishmaniasis. Clin Microb Rev 19:11–26. 8. Rocha LG, Almeida JR, Macedo RO, Barbosa-Filho JM. A review of natural products with antileishmanial activity. Phytomedicine 12:514–35. 9. Kaniewski D, van Campo E, Boiy T, Terral JF, Khadari B, Besnard G. Primary domestication and early uses of the emblematic olive tree: palaeobotanical, historical andmolecular evidence from the Middle East. Biol Rev 2012; 87: 885-99. 10. Hashmi MA, Khan A, Hanif M, Farooq U, Perveen S. Traditional Uses, Phytochemistry, and Pharmacology of Olea europaea (Olive). Evid Based Complement Alternat Med 2015; 541591. 11. Saedi Dezaki E, Mahmoudvand H, Sharififar F, Fallahi S, Monzote L, Ezatkhah F. Chemical composition along with antileishmanial and cytotoxic activity of Zataria multiflora. Pharm Biol 2015; 8: 1-7. 12. Rashidipour M, Heydari R, Feizbakhsh A, Hashemi P. Rapid screening of oleuropein from Olive leaves using matrix solidphase dispersion and high-performance liquid chromatography. J AOAC Int 2014; 97: 1109-13. 13. Ezatpour B, Saedi Dezaki E, Mahmoudvand H, Azadpour M, Ezzatkhah F. In Vitro and in vivo antileishmanial effects of Pistacia khinjuk against Leishmania tropica and Leishmania major. Evid Based Complement Alternat Med 2015; 2015: 149707. 14. Nahrevanian H, Farahmand M, Aghighi Z, Assmar M, Amirkhani A. Pharmacological evaluation of anti-leishmanial activity by in vivo nitric oxide modulation in Balb/c mice infected with Leishmania major MRHO/IR/75/ER: an Iranian strain of cutaneous leishmaniasis. Exp Parasitol 2007; 116:233- 40. 15. Kheirandish F, Delfan B, Mahmoudvand H, Moradi N, Ezatpour B, Ebrahimzadeh F, Rashidipour M. Antileishmanial, antioxidant, and cytotoxic activities of Quercus infectoria Olivier extract. Biomed Pharmacother 2016; 82: 208-15. 16. Titus RG, Marchand M, Boon T, Louis JA. A limiting dilution assay for quantifying L. major in tissues of infected mice. Parasite Immunol 1985; 7: 545-55. 17. Mahmoudvand H, Tavakoli R, Sharififar F, Minaie K, Ezatpour B, Jahanbakhsh S, Sharifi I. Leishmanicidal and cytotoxic activities of Nigella sativa and its active principle, thymoquinone. Pharm Biol 2015; 53:1052-7. 18. Hadighi R, Mohebali M, Boucher P, Hajjaran H, Khamesipour A, Ouellette M. Unresponsiveness to Glucantime treatment in Iranian cutaneous leishmaniasis due to drug resistant Leishmania tropica parasites. PLOS Med 2006; 3:1201-8. 19. Mahmoudvand H, Sharififar F, Sharifi I, Ezatpour B, Fasihi Harandi M, Makki MS, Zia-Ali N, Jahanbakhsh S. In vitro inhibitory effect of Berberis vulgaris (Berberidaceae) and its main component, berberine against different Leishmania species. Iran J Parasitol 2014; 9:28-36. 20. Sifaoui I, López-Arencibia A, Martín-Navarro CM, Chammem N, Reyes-Batlle M, Mejri M, Lorenzo-Morales J, Abderabba M, Piñero JE. Activity of olive leaf extracts against the promastigote stage of Leishmania species and their correlation with the antioxidant activity. Exp Parasitol 2014; 141: 106-11. 21. Mahmoudvand H, Ezzatkhah F, Sharififar F, Sharifi I, Dezaki ES. Antileishmanial and cytotoxic effects of essential oil and methanolic extract of Myrtus communis L. Korean J Parasitol 2015; 53:21-7. 22. Mahmoudvand H, Shakibaie M, Tavakoli R, Jahanbakhsh S, Sharifi I. In vitro study of leishmanicidal activity of biogenic selenium nanoparticles against Iranian isolate of sensitive and glucantime-resistant Leishmania tropica. Iran J Parasitol 2014; 9: 452-60. 23. Mahmoudvand, Hossein, Ebrahim saedi Dezaki, Ezatpour, Behrouz, Iraj Sharifi, Kheirandish, Farnaz, Marzieh Rashidipour. In vitro and in vivo antileishmanial activities of Pistacia vera essential oil. Planta Med 2016; 82: 279-84. 24. Hay AE, Merza J, Landreau A, Litaudon M, Pagniez F, Le Pape P, Richomme P. Antileishmanial polyphenols from Garcinia vieillardii. Fitoterapia 2008; 79: 42-6. 25. Sidan J, Neeradi D, Choudhary A, Singh B, Foley WJ, Singh IP. Antileishmanial polyphenols from Corymbia maculate. J Chem Sci 2013; 125: 765–75. 26. Sen G, Mukhopadhaya R, Ghosal J, Biswas T. Combination of ascorbate and a-tocopherol as a preventive therapy against structural and functional defects of erythrocytes in visceral leishmaniasis. Free Radic Res 2004; 2: 527-34. 27. Torres-Santos ES, Lopes D, Rodrigues Oliveira R, Carauta JPP, Bandeira Falcao CA, Kaplan MAC, Rossi-Bergmann B. Antileishmanial activity of isolated triterpenoids from Pourouma guianensis. Phytomedicine 2014; 11: 114–20. 28. Omar SH. Oleuropein in olive and its pharmacological effects. Sci Pharm 2010; 78: 133–54. 29. Kyriazis JD, Aligiannis N, Polychronopoulos P, Skaltsounis AL, Dotsika E. Leishmanicidal activity assessment of olive tree extracts. Phytomedicine 2013; 15; 20:275-81. 30. Bisignano G, Tomaino A, Lo Cascio R, Crisafi G, Uccella N, Saija A. On the in-vitro antimicrobial activity of oleuropein and hydroxytyrosol. J Pharm Pharmacol 1999; 51: 971–4. 31. Saija A, Uccella N. Olive biophenols: functional effects on human well-being. Trends Food Sci Technol 2001; 11: 357–63.
Yıl 2017, Cilt: 21 Sayı: 4, 837 - 842, 01.12.2017

Öz

Kaynakça

  • 1. World Health Organization (WHO). Control of the leishmaniases. Report of a Meeting of the WHO Expert Committee on the Control of Leishmaniases, WHO Technical Report Series 949, Geneva, 2008, pp. 1-187. 2. Desjeux P. Leishmaniasis: Current situation and new perspectives. Comp Immunol Microbiol Infect Dis 2004; 27: 305-18. 3. Shirzadi MR, Gouya MM. National Guidelines for cutaneous leishmaniasis surveillance in Iran, MOHAME. Zoonoses Control Department, Tehran, I.R. Iran, 2010:1-59. 4. Kheirandish F, Chegeni Sharafi A, Kazemi B, Bandehpour M, Tarahi MJ, Khamesipour A. First molecular identification of Leishmania species in a new endemic area of cutaneous leishmaniasis in Lorestan, Iran. Asian Pac J Trop Med 2013; 6: 713-7. 5. Kheirandish F, Chegeni Sharafi A, Kazemi B, Mohebali M, Sarlak A, Tarahi MJ, Holakouee K, Hajaran H. Identification of Leishmania species using PCR assay on giemsa-stained slides prepared from cutaneous leishmaniasis patients. Iranian J Parasitol 2013; 8: 382-8. 6. Santos DO, Coutinho CE, Madeira MF, Bottino CG, Vieira RT, Nascimento SB, Bernardino A, Bourguignon SC, Corte-Real S, Pinho RT, Rodrigues CR, Castro HC. Leishmaniasis treatment-a challenge that remains: a review. Parasitol Res 2008; 103:1-10. 7. Croft SL, Sundar S, Fairlamb AH. Drug resistance in leishmaniasis. Clin Microb Rev 19:11–26. 8. Rocha LG, Almeida JR, Macedo RO, Barbosa-Filho JM. A review of natural products with antileishmanial activity. Phytomedicine 12:514–35. 9. Kaniewski D, van Campo E, Boiy T, Terral JF, Khadari B, Besnard G. Primary domestication and early uses of the emblematic olive tree: palaeobotanical, historical andmolecular evidence from the Middle East. Biol Rev 2012; 87: 885-99. 10. Hashmi MA, Khan A, Hanif M, Farooq U, Perveen S. Traditional Uses, Phytochemistry, and Pharmacology of Olea europaea (Olive). Evid Based Complement Alternat Med 2015; 541591. 11. Saedi Dezaki E, Mahmoudvand H, Sharififar F, Fallahi S, Monzote L, Ezatkhah F. Chemical composition along with antileishmanial and cytotoxic activity of Zataria multiflora. Pharm Biol 2015; 8: 1-7. 12. Rashidipour M, Heydari R, Feizbakhsh A, Hashemi P. Rapid screening of oleuropein from Olive leaves using matrix solidphase dispersion and high-performance liquid chromatography. J AOAC Int 2014; 97: 1109-13. 13. Ezatpour B, Saedi Dezaki E, Mahmoudvand H, Azadpour M, Ezzatkhah F. In Vitro and in vivo antileishmanial effects of Pistacia khinjuk against Leishmania tropica and Leishmania major. Evid Based Complement Alternat Med 2015; 2015: 149707. 14. Nahrevanian H, Farahmand M, Aghighi Z, Assmar M, Amirkhani A. Pharmacological evaluation of anti-leishmanial activity by in vivo nitric oxide modulation in Balb/c mice infected with Leishmania major MRHO/IR/75/ER: an Iranian strain of cutaneous leishmaniasis. Exp Parasitol 2007; 116:233- 40. 15. Kheirandish F, Delfan B, Mahmoudvand H, Moradi N, Ezatpour B, Ebrahimzadeh F, Rashidipour M. Antileishmanial, antioxidant, and cytotoxic activities of Quercus infectoria Olivier extract. Biomed Pharmacother 2016; 82: 208-15. 16. Titus RG, Marchand M, Boon T, Louis JA. A limiting dilution assay for quantifying L. major in tissues of infected mice. Parasite Immunol 1985; 7: 545-55. 17. Mahmoudvand H, Tavakoli R, Sharififar F, Minaie K, Ezatpour B, Jahanbakhsh S, Sharifi I. Leishmanicidal and cytotoxic activities of Nigella sativa and its active principle, thymoquinone. Pharm Biol 2015; 53:1052-7. 18. Hadighi R, Mohebali M, Boucher P, Hajjaran H, Khamesipour A, Ouellette M. Unresponsiveness to Glucantime treatment in Iranian cutaneous leishmaniasis due to drug resistant Leishmania tropica parasites. PLOS Med 2006; 3:1201-8. 19. Mahmoudvand H, Sharififar F, Sharifi I, Ezatpour B, Fasihi Harandi M, Makki MS, Zia-Ali N, Jahanbakhsh S. In vitro inhibitory effect of Berberis vulgaris (Berberidaceae) and its main component, berberine against different Leishmania species. Iran J Parasitol 2014; 9:28-36. 20. Sifaoui I, López-Arencibia A, Martín-Navarro CM, Chammem N, Reyes-Batlle M, Mejri M, Lorenzo-Morales J, Abderabba M, Piñero JE. Activity of olive leaf extracts against the promastigote stage of Leishmania species and their correlation with the antioxidant activity. Exp Parasitol 2014; 141: 106-11. 21. Mahmoudvand H, Ezzatkhah F, Sharififar F, Sharifi I, Dezaki ES. Antileishmanial and cytotoxic effects of essential oil and methanolic extract of Myrtus communis L. Korean J Parasitol 2015; 53:21-7. 22. Mahmoudvand H, Shakibaie M, Tavakoli R, Jahanbakhsh S, Sharifi I. In vitro study of leishmanicidal activity of biogenic selenium nanoparticles against Iranian isolate of sensitive and glucantime-resistant Leishmania tropica. Iran J Parasitol 2014; 9: 452-60. 23. Mahmoudvand, Hossein, Ebrahim saedi Dezaki, Ezatpour, Behrouz, Iraj Sharifi, Kheirandish, Farnaz, Marzieh Rashidipour. In vitro and in vivo antileishmanial activities of Pistacia vera essential oil. Planta Med 2016; 82: 279-84. 24. Hay AE, Merza J, Landreau A, Litaudon M, Pagniez F, Le Pape P, Richomme P. Antileishmanial polyphenols from Garcinia vieillardii. Fitoterapia 2008; 79: 42-6. 25. Sidan J, Neeradi D, Choudhary A, Singh B, Foley WJ, Singh IP. Antileishmanial polyphenols from Corymbia maculate. J Chem Sci 2013; 125: 765–75. 26. Sen G, Mukhopadhaya R, Ghosal J, Biswas T. Combination of ascorbate and a-tocopherol as a preventive therapy against structural and functional defects of erythrocytes in visceral leishmaniasis. Free Radic Res 2004; 2: 527-34. 27. Torres-Santos ES, Lopes D, Rodrigues Oliveira R, Carauta JPP, Bandeira Falcao CA, Kaplan MAC, Rossi-Bergmann B. Antileishmanial activity of isolated triterpenoids from Pourouma guianensis. Phytomedicine 2014; 11: 114–20. 28. Omar SH. Oleuropein in olive and its pharmacological effects. Sci Pharm 2010; 78: 133–54. 29. Kyriazis JD, Aligiannis N, Polychronopoulos P, Skaltsounis AL, Dotsika E. Leishmanicidal activity assessment of olive tree extracts. Phytomedicine 2013; 15; 20:275-81. 30. Bisignano G, Tomaino A, Lo Cascio R, Crisafi G, Uccella N, Saija A. On the in-vitro antimicrobial activity of oleuropein and hydroxytyrosol. J Pharm Pharmacol 1999; 51: 971–4. 31. Saija A, Uccella N. Olive biophenols: functional effects on human well-being. Trends Food Sci Technol 2001; 11: 357–63.
Toplam 1 adet kaynakça vardır.

Ayrıntılar

Konular Sağlık Kurumları Yönetimi
Bölüm Makaleler
Yazarlar

Farnaz Kheırandısh Bu kişi benim

Hossein Mahmoudvand Bu kişi benim

Ali Khamesıpour Bu kişi benim

Farzad Ebrahımzadeh Bu kişi benim

Farnaz Behrahı Bu kişi benim

Setareh Rezaeı Bu kişi benim

Bahram Delfan Bu kişi benim

Yayımlanma Tarihi 1 Aralık 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 21 Sayı: 4

Kaynak Göster

APA Kheırandısh, F., Mahmoudvand, H., Khamesıpour, A., Ebrahımzadeh, F., vd. (2017). The therapeutic effects of olive leaf extract on Leishmania major infection in BALB/c mice. Marmara Pharmaceutical Journal, 21(4), 837-842.
AMA Kheırandısh F, Mahmoudvand H, Khamesıpour A, Ebrahımzadeh F, Behrahı F, Rezaeı S, Delfan B. The therapeutic effects of olive leaf extract on Leishmania major infection in BALB/c mice. mpj. Aralık 2017;21(4):837-842.
Chicago Kheırandısh, Farnaz, Hossein Mahmoudvand, Ali Khamesıpour, Farzad Ebrahımzadeh, Farnaz Behrahı, Setareh Rezaeı, ve Bahram Delfan. “The Therapeutic Effects of Olive Leaf Extract on Leishmania Major Infection in BALB/C Mice”. Marmara Pharmaceutical Journal 21, sy. 4 (Aralık 2017): 837-42.
EndNote Kheırandısh F, Mahmoudvand H, Khamesıpour A, Ebrahımzadeh F, Behrahı F, Rezaeı S, Delfan B (01 Aralık 2017) The therapeutic effects of olive leaf extract on Leishmania major infection in BALB/c mice. Marmara Pharmaceutical Journal 21 4 837–842.
IEEE F. Kheırandısh, “The therapeutic effects of olive leaf extract on Leishmania major infection in BALB/c mice”, mpj, c. 21, sy. 4, ss. 837–842, 2017.
ISNAD Kheırandısh, Farnaz vd. “The Therapeutic Effects of Olive Leaf Extract on Leishmania Major Infection in BALB/C Mice”. Marmara Pharmaceutical Journal 21/4 (Aralık 2017), 837-842.
JAMA Kheırandısh F, Mahmoudvand H, Khamesıpour A, Ebrahımzadeh F, Behrahı F, Rezaeı S, Delfan B. The therapeutic effects of olive leaf extract on Leishmania major infection in BALB/c mice. mpj. 2017;21:837–842.
MLA Kheırandısh, Farnaz vd. “The Therapeutic Effects of Olive Leaf Extract on Leishmania Major Infection in BALB/C Mice”. Marmara Pharmaceutical Journal, c. 21, sy. 4, 2017, ss. 837-42.
Vancouver Kheırandısh F, Mahmoudvand H, Khamesıpour A, Ebrahımzadeh F, Behrahı F, Rezaeı S, Delfan B. The therapeutic effects of olive leaf extract on Leishmania major infection in BALB/c mice. mpj. 2017;21(4):837-42.