Investigación morfométrica de los efectos del uso de azoximetano, disulfuro de dialilo y aceite de maíz sobre el desarrollo del húmero y el fémur en ratas

  • Sedat Aydoğdu Selcuk University, Faculty of Veterinary Medicine, Department of Anatomy. Konya, Türkiye
Palabras clave: Azoximetano, aceite de maíz, disulfuro de dialilo, fémur, húmero, morfometria

Resumen

El estudio tuvo como objetivo examinar los efectos del azoximetano (AOM), el disulfuro de dialilo (DADS) y el aceite de maíz en el húmero y el fémur de ratas. En el estudio se utilizaron 40 ratas Wistar Albinas macho, de 12 semanas de edad. Los animales se dividieron en cuatro grupos diferentes (Control, AOM, DADS y Aceite de maíz). Después del período experimental, todos los animales fueron anestesiados y sacrificados mediante dislocación cervical. Húmero y fémur huesos largos resecados de todos los grupos de animales. Se midieron la longitud máxima, el ancho proximal, el ancho distal, el diámetro de la diáfisis, el espesor de la corteza y el diámetro del cavidad medular de los huesos. Después de las mediciones morfométricas, se calcularon el índice 1, el índice 2, el índice de robustez y el índice de peso óseo/longitud ósea para los huesos. No se observaron diferencias en las mediciones e índices morfométricos realizados en el húmero. Se detectó una diferencia estadística en el ancho proximal y el índice de robustez entre los grupos en el fémur. Se observó una diferencia entre el grupo AOM y los grupos Control/aceite de maíz en el ancho proximal. Se detectó diferencia entre el grupo AOM y el grupo Control en el índice de robustez, y se determinó que la AOM provocó una disminución en la densidad y fuerza en los huesos. Se cree que los hallazgos obtenidos en este estudio contribuirán a la evaluación de los efectos de la investigación del cáncer utilizando AOM en huesos de ratas.

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Citas

Dursun N. Veteriner Anatomi. Ankara, Türkiye: Medisan Yayinlari; 2000. p. 67–85.

König HE, Liebich HG. Veterinary Anatomy of Domestic Mammals: Textbook and Colour Atlas. Stuttgart, Germany: Schattauer; 2004. p. 129–148.

Escribano A, Revilla M, Hernández ER, Seco C, González–Riola J, Villa LF, Rico, H. Effects of lead on bone development and bone mass: a morphometric, densitometric, and histomorphometric study in growing rats. Calcif. Tissue Int. [Internet]. 1997; 60:200–203. doi: https://doi.org/cp9ghp

Arslan MS, Besoluk K. The effects of alone and combined treatment of Tarantula cubensis alcoholic extract and Methenolone Enanthate on two long bones of young. Rev. Cientif. Fac. Cien. Vet. [Internet]. 2023; 33(2):1–7. doi https://doi.org/mg7n

Sarı A, Lök S. The Effects of Trenbolone Supplementation on the extremity bones in Running Rats. Turk J. Sport Exe. [Internet]. 2019; 21(2):366–371. doi: https://doi.org/ghpgbk

Özdemir M, Lök S. The Effects of Methenolone Enanthate Supplement with exercise on Rats’ Bones. Turk J. Sport Exe. [Internet]. 2019; 21(2):276–280. doi: https://doi.org/kp7v

Kilci A, Lök S. Morphometric effects of testosterone supplementation on certain extremity bones in young swim–trained rats. Turk J. Sport Exe. [Internet]. 2018; 20(3):140–144. doi: https://doi.org/kp7x

Rosenberg DW, Giardiana C, Tanaka T. Mouse models for the study of colon carcinogenesis. Carcinogenesis. [Internet]. 2009; 30(2):183–196. doi: https://doi.org/c67b57

Al–Henhena N, Khalifa SA, Ying RPY, Ismail S, Hamadi R, Shawter AN, Idris AM, Azizan A, Al–Wajeeh NS, Abdulla MA, El–Seedi HR. Evaluation of chemopreventive potential of Strobilanthes crispus against colon cancer formation in vitro and in vivo. [Internet]. 2015; 15(1):1–11. doi: https://doi.org/f3nhpj

Galeone C, Pelucchi C, Levi F, Negri E, Franceschi S, Talamini R, Giacosa A, La Vecchia C. Onion and garlic use and human cancer. AJCN. [Internet]. 2006; 84(5):1027–1032. doi: https://doi.org/gk4zvq

Bongiorno P, Fratellone P, LoGiudice P. Potential health benefits of garlic (Allium sativum): A Narrative Review. J. Complement. Integr. Med. [Internet]. 2008; 5(1):1–26. doi: https://doi.org/ccxwxj

Tsai CW, Chen HW, Sheen LY, Lii CK. Garlic: Health benefits and actions. BioMed. [Internet]. 2012; 2(1):17–29. doi: https://doi.org/fxtjvp

Block E, Iyer R, Grisoni S, Saha C, Belman S, Lossing FP. Lipoxygenase inhibitors from the essential oil of garlic. Markovnikov addition of the allyldithio radical to olefins. J. Ame. Chem. Soc. [Internet]. 1988; 110(23):7813–7827. doi: https://doi.org/d2gmcr

Yi L, Su Q. Molecular mechanisms for the anti–cancer effects of diallyl disulfide. FCT. [Internet]. 2013; 57:362–370. doi: https://doi.org/mg7r

Gao C, Jiang X, Wang H, Zhao Z, Wang W. Drug metabolism and pharmacokinetics of organosulfur compounds from garlic. J. Drug Metab. Toxicol. [Internet]. 2013; 4(5):1–10. doi: https://doi.org/mg7s

Adaki S, Adaki R, Shah K, Karagir A. Garlic: Review of literature. Indian J. Cancer. [Internet]. 2014; 51(4):577–581. doi: https://doi.org/mg7t

Zhang Y, Liu X, Ruan J, Zhuang X, Zhang X, Li Z. Phytochemicals of garlic: Promising candidates for cancer therapy. Biomed. Pharmacother. [Internet]. 2020; 123:109730. doi: https://doi.org/mg7v

Zai Sw, Gao J. Nutritional value and developing prospect of high–oil corn. Cereal Feed Ind. 2001; 6:41–42.

Karayiğit T, Duman E. The detection of impurities in nanoscale and physico–chemical changes occurring in refined stages of corn oil. ln: Kurt HI, Erzurumlu GS, editors. Engineering and architecture science. Lyon, France: Livre De Lyon; 2022. p. 101–116.

Rohlf FJ, Marcus LF. A revolution morphometrics. Trends Ecol. Evol. [Internet]. 1993; 8(4):129–132. doi: https://doi.org/dt6pzz

Ocakoğlu G, Ercan I. Type I error rate for two–sample tests in statistical shape analysis. Hacet. J. Math. Stat. [Internet]. 2014 [cited 24 Oct 2023]; 43(1):141–152. Available in: https://goo.su/3xyTu

Demircioğlu İ, Koçyiğit A, Demiraslan Y, Yilmaz B, Ince NG, Aydoğdu S, Dayan MO. Digit bones (Acropodium) of Gazella (Gazella subgutturosa); three–dimensional modelling and morphometry. Pak. Vet. J. [Internet]. 2021; 41(4):481–486. doi: https://doi.org/mg7x

Güzel BC, Koçyiğit A, Demircioğlu İ, Demiraslan Y. Investigating metacarpi of Hamdani sheep via different measurement and modelling methods: A methodological study. Anat. Histol. Embryol. [Internet]. 2022; 51(4):484–491. doi: https://doi.org/mg7z

Riesenfeld A. Metatarsal robusticity in bipedal rats. Am. J. Phys. Anthropol. [Internet]. 1972; 36(2):229–233. doi: https://doi.org/ftr6kt

Riesenfeld A. Sexual dimorphism of bone robusticity in different strains of rats. Cells Tissues Organs. [Internet]. 1977; 98(2):206–209. doi: https://doi.org/fdxqvv

Doyle WJ, Kelley C, Siegel MI. The effects of audiogenic stress on the growth of long bones in the laboratory rat (Rattus norvegicus). Growth. 1977; 41(3):183–189.

Bozkurt I, Pepe K, Ozdemir M, Ozdemir O, Coskun A. Morphometric evaluation of the effect of methenolone enanthate on femoral development in adolescent rats. Sci. Res. Essays. [Internet]. 2011 [cited 11 May 2023]; 6(7):1634–1638. Available in: https://goo.su/J0UVQz

Riesenfeld A. Sexual dimorphism of skeletal robusticity in several mammalian orders. Acta anat. [Internet]. 1978; 102(4):392–398. doi: https://doi.org/dbk6xd

Andrews JE, Gray LE. The effects of lindane and linuron on calcium metabolism, bone morphometry and the kidney in rats. Toxicol. [Internet]. 1990; 60(1–2):99–107. doi: https://doi.org/b74dnv

Monteagudo M, Hernandez E, Seco C, Gonzalez–Riola J, Revilla M, Villa L, Rico H. Comparison of the bone robusticity index and bone weight/bone length index with the results of bone densitometry and bone histomorphometry in experimental studies. Acta anat. [Internet]. 1997; 160(3):195–199. doi: https://doi.org/c3zh8t

Kara ME, Alpak H. Determination of effect of smoke on pelvic morphometry during growth period in the rat. J. Fac. Vet. Med. Istanbul Univ. [Internet]. 2006 [cited 11 May 2023]; 32(2):107–121. Turkish. Available in: https://goo.su/4xshFzP

Bagi C, Ammann P, Rizzoli R, Miller S. Effect of estrogen deficiency on cancellous and cortical bone structure and strength of the femoral neck in rats. Calcif. Tissue Int. [Internet]. 1997; 61:336–344. doi: https://doi.org/fwb8kt

Bagi C, DeLeon E, Ammann P, Rizzoli R, Miller S. Histo‐anatomy of the proximal femur in rats: Impact of ovariectomy on bone mass, structure, and stiffness. Anat. Rec. [Internet]. 1996; 245(4):633–644. doi: https://doi.org/dffsxn

Bagi C, Miller S, Bowman B, Blomstrom G, France E. Differences in cortical bone in overloaded and underloaded femurs from ovariectomized rats: comparison of bone morphometry with torsional testing. Bone. [Internet]. 1992; 13(1):35–40. doi: https://doi.org/frc6rz

Bagi C, Wilkie D, Georgelos K, Williams D, Bertolini D. Morphological and structural characteristics of the proximal femur in human and rat. Bone. [Internet]. 1997; 21(3):261–267. doi: https://doi.org/ddj575

Er A, Ozdemir O, Coskun D, Dik B, Bahcivan E, Faki HE, Yazar E. Effects of Tarantula cubensis alcoholic extract and Nerium oleander distillate on experimentally induced colon cancer. Revue Méd. Vét. [Internet]. 2019 [cited 1 Sep 2023]; 170(1–3):15–21. Available in: https://goo.su/U7zv

Somade OT, Adedokun AH, Adeleke IK, Taiwo MA, Oyeniran MO. Diallyl disulfide, a garlic–rich compound ameliorates trichloromethane–induced renal oxidative stress, NFkB activation and apoptosis in rats. Clin. Nutr. Exp. [Internet]. 2019; 23:44–59. doi: https://doi.org/mhbj

Driesch A. A guide to the measurement of animal bones from archaeological sites. Cambridge, Massachusetts, USA: Harvard University Press; 1976; 136 p.

Dayan MO, Beşoluk K, Eken E, Aydoğdu S, Turgut N. Three–dimensional modelling of the femur and humerus in adult male guinea pigs (guinea pig) with computed tomography and some biometric measurement values. Folia Morphol. [Internet]. 2019; 78(3):588–594. doi: https://doi.org/mhbk

Pazvant G, Kahvecioğlu K. Studies on homotypic variations of forelimb and hindlimb long bones of guinea pigs. J. Fac. Vet. Med. Istanbul Univ. [Internet]. 2013 [Accessed 3 September 2023]; 35(2):23–29. Turkish. Available in: https://goo.su/8fyueT

Seedor JG, Quartuccio HA, Thompson DD. The bisphosphonate alendronate (MK‐217) inhibits bone loss due to ovariectomy in rats. JBMR. [Internet]. 1991; 6(4):339–346. doi: https://doi.org/dnv58s

Riesenfeld A. Endocrine control of skeletal robusticity. Acta anat. [Internet]. 1975; 91(4):481–499. doi: https://doi.org/cczpmh

Nomina Anatomica Veterinaria. International Committee on Veterinary Gross Anatomical Nomenclature. 6th. ed. Hanover, Germany: Editorial Committee ICVGAN; 2017. 160 p.

Publicado
2024-02-25
Cómo citar
1.
Aydoğdu S. Investigación morfométrica de los efectos del uso de azoximetano, disulfuro de dialilo y aceite de maíz sobre el desarrollo del húmero y el fémur en ratas. Rev. Cient. FCV-LUZ [Internet]. 25 de febrero de 2024 [citado 29 de abril de 2024];34(1):7. Disponible en: https://www.produccioncientificaluz.org/index.php/cientifica/article/view/41695
Sección
Medicina Veterinaria