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Original Articles

Evaluation of the Wound Healing Activity of Chenopodium botrys Leaves Essential Oil in Rats (A Short-Term Study)

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Pages 164-174 | Received 04 Oct 2017, Accepted 26 Feb 2018, Published online: 02 Apr 2018

References

  • Moradi, R., Hajialiani, M., Zangeneh, M.M., Zangeneh, A., Faizi, S., Zoalfaghari, M., Marabi, A. (2017a). Study a plant extract as an antibacterial agent. Int. J. Curr. Med. Pharm. Res. 3(2): 1360–1362.
  • Foroughi, A., Pournaghi, P., Najafi, F., Zangeneh, A., Zangeneh, M.M., Moradi, R. (2016a). Antibacterial effect and phytochemical screening of essential oil of Pimpinella anisum against Escherichia coli O157:H7 and Staphylococcus aureus. Int. J. Curr. Med. Pharm. Res. 7(6): 367–371.
  • Foroughi, A., Pournaghi, P., Najafi, F., Zangeneh, A., Zangeneh, M.M., Moradi, R. (2017). Medicinal Plants: Antibacterial Effects and Chemical Composition of Essential Oil of Foeniculum vulgare. Int. J. Cur. Pharm. Rew. Res. 8(1): 13–17.
  • Moradi, R., Hajialiani, M., Zangeneh, M.M., Zangeneh, A., Tahvilian, R., Hidaryan, H., Rezaeeas, N., Kohneshin, A. (2017b). Antibacterial Properties of an Iranian Ethnomedicinal Plant. Int. J. Ayu. Pharm. Chem. 6(3): 128–137.
  • Hagh-Nazari, L., Goodarzi, N., Zangeneh, M.M., Zangeneh, A., Tahvilin, R., Moradi, R. (2017). Stereological study of kidney in streptozotocin-induced diabetic mice treated with ethanolic extract of Stevia rebaudiana (bitter fraction). Comp. Clin. Pathol. 26(2), 455–463. doi: 10.1007/s00580-016-2398-7
  • Foroughi, A., Zangeneh, M.M., Kazemi, N., Zangeneh, A. (2016b). An in vitro study on antimicrobial properties of Allium noeanumreut ex regel: An ethnomedicinal plant. Iranian J. Publ. Health. 45(2): 32.
  • Faramarzi, E., Zangeneh, M.M., Zangeneh, A., Moradi, R. (2017). Effect of Cinnamomum zelanicum on oil on hyponeophagia anxiety test in Balb C male mice. Onl. J. Vet. Res. 21(2): 77–80.
  • Poorshamohammad, C., Souri, N., Amini, Z., Kosari, F., Jamshidpour, R., Zangeneh, M.M., Zangeneh, A. (2017). Cucurbita moschata: A plant with antibacterial properties. Int. J. Curr. Med. Pharm. Res. 3(2): 1356–1359.
  • Zangeneh, M.M., Tahvilian, R., Zangeneh, A., Moradi, R., Najafi, F., Haghnazari, L. (2017). Effect of Alhagi maurorum oil on anxiety markers in Balb/C male mice. Onl. J. Vet. Res. 21(3): 115–117.
  • Najafi, F., Tahvilian, R., Zangeneh, M.M., Zangeneh, A., Moradi, R. (2016). Screening of essential oil of Allium sativum for antibacterial effects against Bacillus subtilis. Int. J. Rec. Sci. Res. 7(11): 14172–14176.
  • Chitra, S., Patil, M.B., Ravi, K. (2009). Wound healing activity of Hyptis suaveolens (L) poit (Laminiaceae). Int. J. Pharm. Technol. Res. 1(3): 737–744.
  • Buganza-Tepole, A., Kuhl, E. (2013). Systems-based approaches toward wound healing. Pediatr. Res. 73(4): 553–563. doi: 10.1038/pr.2013.3
  • Falanga, V. (2005). Wound healing and its impairment in the diabetic foot. Lancet. 12: 366: 1736–1743.
  • Singh, MP., Sharma, C.S. (2009). Wound healing activity of Terminalia Chebula in experi-mentally induced diabetic rats. Int. J. Pharm. Technol. Res. 4(1): 1267–1270.
  • Hosamani, K.M., Ganjihal, S.S., Chavadi, D.V. (2004). Alternanthera triandra seed oil: A moderate source of ricinoleic acid and its possible industrial utilization. Indus. Crop Prod. 19(2): 133–136. doi: 10.1016/j.indcrop.2003.07.009
  • Schultz, G.S. (1999). Molecular Regulation of Wound Healing. In: Acute and Chronic Wounds: Nursing Management, Bryant, R.A. (Ed.). 2nd Edn, WB Saunders Publisher, USA. 413–429.
  • Nagori, B.P., Solanki, R. (2011). Role of Medicinal Plants in Wound Healing. Res. J. Med. Plants. 5(4): 392–405. doi: 10.3923/rjmp.2011.392.405
  • Foroughi, A., Pournaghi, P., Najafi, F., Zangeneh, M.M., Zangeneh, A., Moradi, R. (2016). Chemical composition and antibacterial properties of Chenopodium botrys L. essential oil. Int. J. Pharm. Phytochem. Res. 8(11): 1881–1885.
  • Quattrocchi, U. (2012). CRC World Dictionary of Medicinal and Poisonous Plants, CRC Press 1504.
  • Pereira, M.C., Nelson, D. L., Stoianoff, M.A.R., Santos, S.G., Nogueira, L.J., Coutinho, S.C., Carvalho, M.A.R., Barbosa, L.C.A. (2015). Chemical Composition and Antimicrobial Activity of the Essential Oil from Microlicia crenulate. J. Essent. Oil Bearing Plants. 18(1): 18–28. doi: 10.1080/0972060X.2014.935055
  • Oryan, A., Mohammadalipour, A., Moshiri, A., Mohammad, R., Tabandeh, M.R. (2015). Avocado/soybean unsaponifiables: a novel regulator of cutaneous wound healing, modelling and remodeling. Int. Wound J. 12(6): 674–685. doi: 10.1111/iwj.12196
  • Najafi, F., Tahvilian, R., Zangeneh, M.M., Zangeneh, A., Moradi, R. (2016). Screening of essential oil of Allium sativum for antibacterial effects against Bacillus subtilis. Int. J. Rec. Sci. Res. 7(11): 14172–14176.
  • Zangeneh, M.M., Najafi, F., Tahvilian, R., Haghnazari, L., Zangeneh, A., Abiari, M., Moradi, R. (2016). Study on the in vitro antibacterial properties of alcoholic extract of Stevia rebaudiana in west of Iran. Int. J. Sci. Eng. Res. 7(11): 1352–1359.
  • Tahvilian, R., Moradi, R., Hajialiani, M., Zangeneh, M.M., Zangeneh, A., Yazdani, H., Zhaleh, H. (2017). Evaluation of antibacterial properties of essential oil of Pistacia khinjuk. Int. J. Res. Pharm. Sci. 7(1): 1–6.
  • Geethalakshmi, R., Sakravarthi, C., Kritika, T., Arul-Kirubakaran, M., Sarada, D.V.L. (2013). Evaluation of antioxidant and wound healing potentials of Sphaeranthus amaranthoides Burm.f. Biomed. Res. Int. doi:10.1155/2013/607109.
  • Barku, V.Y.A., Boye, A., Erzah, F., Tsamenyi, F. (2016). In-vitro antioxidant and wound healing properties of Combretum dolichopetalum Engl. And Diels (Combretaceae). J. Appl. Pharm. Sci. 6(5): 185–192. doi: 10.7324/JAPS.2016.60529
  • Karabörklü, S., Ayvaz, A., Yilmaz, S., Akbulut, M. (2011). Chemical composition and fumigant toxicity of some essential oils against Ephestia kuehniella. J. Econ. Entomol. 104(4): 1212–1219. doi: 10.1093/jee/104.4.1212
  • Feizbakhsh, A.R., Sedaghat, S., Tehrani, M.S., Rustaiyan, A.H., Masoudi, S. (2003). Chemical Composition of the Essential Oils of Chenopodium botrys L. from Two Different Locations in Iran. J. Essent. Oil Res. 15(3): 193–194. doi: 10.1080/10412905.2003.9712110
  • Mahboubi, M., Ghazian-Bidgoli, F., Farzin, N. (2011). Chemical Composition and Antimicrobial Activity of Chenopodium botrys L. Essential Oil. J. Essent. Oil Bearing Plants. 14(4): 498–503. doi: 10.1080/0972060X.2011.10643608
  • Morteza-Semnani, K., Babanezhad, E. (2017). Essential oil composition of Chenopodium botrys L. from Iran, J. Essent. Oil Bearing Plants. 10(4): 314–317. doi: 10.1080/0972060X.2007.10643561
  • Shin, D., Minn, K.W. (2004). The effect of myofibroblast on contracture of hypertrophic scar. Plast Reconstr. Surg. 113(2): 633–40. doi: 10.1097/01.PRS.0000101530.33096.5B
  • Langton, A.K., Herrick, S.E., Headon, D.J. (2008). An extended epidermal response heals cutaneous wounds in the absence of a hair follicle stem cell contribution. J. Invest. Dermatol. 128(5): 1311–1318. doi: 10.1038/sj.jid.5701178
  • Courtois, M.C., Sapoval, M., Del-Giudice, C., Ducloux, R., Mirault, T., Messas, E. (2015). Distal revascularization in diabetic patients with chronic limb ischemia. J. Mal. Vasc. 40(1): 24–36. doi: 10.1016/j.jmv.2014.12.007
  • Nayak, B.S., Pinto-Pereira, L.M. (2006). Catharanthus roseus flower extract has wound-healing activity in Sprague Dawley rats. Complement Altern. Med. 21(6): 41–47. doi: 10.1186/1472-6882-6-41
  • Oryan, A., Tabatabaieinaieni, A., Moshiri, A., Mohammadalipoor, A., Tabandeh, M.R. (2012). Modulation of cutaneous wound healing by Silymarin in rats. J. Wound Care. 21(9): 457–464. doi: 10.12968/jowc.2012.21.9.457
  • Kumar, M.S., Sripriya, R., Raghavan, H.V., Sehgal, P.K. (2006). Wound healing potential of Cassia fistula on infected albino rat model. J. Surg. Res. 131(2): 283–289. doi: 10.1016/j.jss.2005.08.025
  • Maksimoviæ, Z.A., Dordeviæ, S., Mraoviæ, M. 2005. Antimicrobial activity of Chenopodium botrys Essential Oil. Fitoterapia. 76(1): 112–114. doi: 10.1016/j.fitote.2004.10.005
  • Lyubenova, M., Geneva, Y., Chiplska, L., Hadjieva, P., ChanevChr. (2006). Biological active components of Chenopodium botrys L. Phytomass. J. Balkan Ecol. 9(3): 289–295.

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