دورية أكاديمية

Oxidative responses in small juveniles of Colossoma macropomum anesthetized and sedated with Ocimum gratissimum L. essential oil.

التفاصيل البيبلوغرافية
العنوان: Oxidative responses in small juveniles of Colossoma macropomum anesthetized and sedated with Ocimum gratissimum L. essential oil.
المؤلفون: Ferreira AL; Departamento de Zootecnia, Laboratório de Aquacultura, Universidade Federal de Minas Gerais, Avenida Antônio Carlos, 6627, Belo Horizonte, MG, CEP 30161-970, Brazil. andrelimazootecnista@gmail.com., de Souza E Silva W; Escuela de Ciencias del Mar, Pontificia Universidad Católica de Valparaíso, Curauma, Avenida Universidad, 330, Valparaíso, 2373223, Valparaíso, Chile., da Silva HNP; Universidade Federal Do Oeste Do Pará, Instituto de Ciências E Tecnologia das Águas, Rua Vera Paz, S/N, Santarém, PA, 68035-110, Brazil., de Freitas Milarch C; Instituto Superior E Centro Educacional Luterano, Bom Jesus - IELUSC, Rua Princesa Isabel,438, Joinville, SC, CEP 89201-270, Brazil.; Departamento de Fisiologia E Farmacologia, Laboratório de Fisiologia de Peixes, Universidade Federal de Santa Maria, Avenida Roraima, 1000, Santa Maria, RS, CEP 97105-900, Brazil., Palheta GDA; Programa de Pós Graduação Em Aquicultura E Recursos Aquáticos Tropicais, Instituto Socioambiental E Dos Recursos Hídricos, Universidade Federal Rural da Amazônia, Avenida Tancredo Neves, 2501, Belém, PA, CEP 66077-830, Brazil., Heinzmann BM; Departamento de Farmácia Industrial, Laboratório de Extrativos Vegetais, Universidade Federal de Santa Maria, Avenida Roraima, 1000, Santa Maria, RS, CEP 97105-900, Brazil.; Laboratório de Extrativos Vegetais, Universidade Federal de Santa Maria, Programa de Pós-Graduação Em Engenharia Florestal, Avenida Roraima, 1000, Santa Maria, RS, CEP 97105-900, Brazil., Pinheiro CG; Laboratório de Extrativos Vegetais, Universidade Federal de Santa Maria, Programa de Pós-Graduação Em Engenharia Florestal, Avenida Roraima, 1000, Santa Maria, RS, CEP 97105-900, Brazil., Baldisserotto B; Departamento de Fisiologia E Farmacologia, Laboratório de Fisiologia de Peixes, Universidade Federal de Santa Maria, Avenida Roraima, 1000, Santa Maria, RS, CEP 97105-900, Brazil., Favero GC; Departamento de Zootecnia, Laboratório de Aquacultura, Universidade Federal de Minas Gerais, Avenida Antônio Carlos, 6627, Belo Horizonte, MG, CEP 30161-970, Brazil., Luz RK; Departamento de Zootecnia, Laboratório de Aquacultura, Universidade Federal de Minas Gerais, Avenida Antônio Carlos, 6627, Belo Horizonte, MG, CEP 30161-970, Brazil.
المصدر: Fish physiology and biochemistry [Fish Physiol Biochem] 2024 May 09. Date of Electronic Publication: 2024 May 09.
Publication Model: Ahead of Print
نوع المنشور: Journal Article
اللغة: English
بيانات الدورية: Publisher: Kluwer Academic Publishers Country of Publication: Netherlands NLM ID: 100955049 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1573-5168 (Electronic) Linking ISSN: 09201742 NLM ISO Abbreviation: Fish Physiol Biochem Subsets: MEDLINE
أسماء مطبوعة: Publication: Dordrecht ; Boston : Kluwer Academic Publishers
Original Publication: Amsterdam ; Berkeley : Kugler, 1986-
مستخلص: This study evaluated the use of essential oil of Ocimum gratissimum (EOOG) for anesthesia and in transport of Colossoma macropomum. Experiment 1, Test 1, anesthesia induction and recovery times were determined using different EOOG concentrations (0, 20, 50, 100, 200, 300 mg L -1 ), with two size classes: Juveniles I (0.86 g) and Juveniles II (11.46 g) (independent tests in a completely randomized design). Based on the results of Test 1, in Test 2 Juveniles II were exposed to EOOG concentrations: 0, 20, 100 mg L -1 . Tissue samples were collected immediately after induction and 1 h post-recovery, to assess oxidative status variables. Experiment 2, Juveniles I (0.91 g) and Juveniles II (14.76 g) were submitted to transport in water with different concentrations of EOOG (0, 5, 10 mg L -1 ) (independent tests in a completely randomized design). The effects on oxidative status variables were evaluated. Concentrations between 50 and 200 mg L -1 EOOG can be indicated for Juveniles I, while concentrations between 50 and 100 mg L -1 EOOG for Juveniles II. The concentration of 100 mg L -1 EOOG was able to prevent oxidative damage in the liver. In Experiment 2, the concentrations of 5 and 10 mg L -1 EOOG added to the transport water caused sedation for both studied size classes of juveniles and did not cause oscillations in water quality variables nor any mortality. The concentration of 10 mg L -1 EOOG improved the oxidative status. It can be concluded that EOOG can be used for anesthesia and transport of C. macropomum.
(© 2024. The Author(s), under exclusive licence to Springer Nature B.V.)
References: Adewale AY, Adeshina I, Yusuf OY (2017) Anaesthetic effect of Ocimum gratissimum extract on Oreochromis niloticus juveniles. Eur Exp Biol 7:2–7.
Araújo-Dairiki TB, Chaves FCM, Dairiki JK (2018) Seeds of sacha inchi (Plukenetia volubilis, Euphorbiaceae) as a feed ingredient for juvenile tambaqui, Colossoma macropomum, and matrinxã, Brycon amazonicus (Characidae). Acta Amaz 48:32–37. https://doi.org/10.1590/1809-4392201700753. (PMID: 10.1590/1809-4392201700753)
Araújo-Lima CARM, Gomes L (2019) Tambaqui Colossoma macropomum. In: Baldisseroto B, Gomes L (eds) Espécies nativas para piscicultura no Brasil, 3ª. UFSM, Santa Maria, pp 147–168.
Alvarenga CMD, Volpato GL (1995) Agonistic profile and metabolism in fry of the Nile tilapia. Physiol Behav 57:75–80. https://doi.org/10.1016/0031-9384(94)00206-K.
Araújo-Lima CARM, Goulding M (1998) So fruitful fish: ecology, conservation, and aquaculture of the Amazon’s tambaqui. Columbia University Press, New York.
Aydın B, Barbas LAL (2020) Sedative and anesthetic properties of essential oils and their active compounds in fish: A review. Aquaculture 520:734999. https://doi.org/10.1016/j.aquaculture.2020.734999. (PMID: 10.1016/j.aquaculture.2020.734999)
Barbas LAL, Maltez LC, Stringhetta GR, Garcia OL, Monserrat JM, Silva DT, Heinzmann BM, Sampaio LA (2017) Properties of two plant extractives as anaesthetics and antioxidants for juvenile tambaqui Colossoma macropomum. Aquaculture 469:79–87. https://doi.org/10.1016/j.aquaculture.2016.12.012. (PMID: 10.1016/j.aquaculture.2016.12.012)
Barbas LAL, Araújo ERL, Torres MF, Maltez LC, Oliveira GL, Heinzmann BM, Sampaio LA (2020) Stress relieving potential of two plant-based sedatives in the transport of juvenile tambaqui Colossoma macropomum. Aquaculture 520:734681. https://doi.org/10.1016/j.aquaculture.2019.734681. (PMID: 10.1016/j.aquaculture.2019.734681)
Becker AG, Luz RK, Mattioli CC, Nakayama CL, Silva WS, Leme FDOP, Baldisserotto B (2017) Can the essential oil of Aloysia triphylla have anesthetic effect and improve the physiological parameters of the carnivorous freshwater catfish Lophiosilurus alexandri after transport? Aquaculture 481:184–190. https://doi.org/10.1016/j.aquaculture.2017.09.007. (PMID: 10.1016/j.aquaculture.2017.09.007)
Becker AJ, Fogliarini CDO, Souza CDF, Becker AG, Mourão RHV, Silva LVFD, Baldisserotto B (2018) Ventilatory frequency and anesthetic efficacy in silver catfish, Rhamdia quelen: a comparative approach between different essential oils. R Bras Zootec 47:e20170185. https://doi.org/10.1590/rbz4720170185. (PMID: 10.1590/rbz4720170185)
Benovit SC, Gressler LT, Silva LL, Garcia OL, Okamoto MH, Pedron JS, Heinzmann BM, Baldisserotto B (2012) Anesthesia and transport of Brazilian flounder, Paralichthys orbignyanus, with essential oils of Aloysia gratissima and Ocimum gratissimum. J World Aquac Soc 43:896–900. https://doi.org/10.1111/j.1749-7345.2012.00604.x. (PMID: 10.1111/j.1749-7345.2012.00604.x)
Berka R (1986) The Transport of Live Fish. A Review, 48th ed. Eifac Technical Paper-FAO. Rome, Italy.
Beutler E (1984) Superoxide dismutase. In: Beutler E (ed) Red cell metabolism. A manual of biochemical methods. Grune and Stratton, Philadelphia, pp 83–85.
Boaventura TP, Souza CF, Ferreira AL, Favero GC, Baldissera MD, Heinzmann BM, Baldisserotto B, Luz RK (2020) Essential oil of Ocimum gratissimum (Linnaeus, 1753) as anesthetic for Lophiosilurus alexandri: induction, recovery, hematology, biochemistry and oxidative stress. Aquaculture 529:735676. https://doi.org/10.1016/j.aquaculture.2020.735676. (PMID: 10.1016/j.aquaculture.2020.735676)
Boaventura TP, Souza CF, Ferreira AL, Favero GC, Baldissera MD, Heinzmann BM, Luz RK (2021) The use of Ocimum gratissimum L. essential oil during the transport of Lophiosilurus alexandri: water quality, hematology, blood biochemistry and oxidative stress. Aquaculture 531:735964. https://doi.org/10.1016/j.aquaculture.2020.735964. (PMID: 10.1016/j.aquaculture.2020.735964)
Boaventura TP, Pedras PPC, Júlio GSC, Santos FAC, Ferreira AL, Silva WS, Luz RK (2022) Use of eugenol, benzocaine or salt during the transport of panga, Pangasianodon hypophthalmus (Sauvage, 1878): Effects on water quality, haematology and blood biochemistry. Aquac Res 53:1395–1403. https://doi.org/10.1111/are.15672. (PMID: 10.1111/are.15672)
Boijink CL, Queiroz CA, Chagas EC, Chaves FCM, Inoue LAKA (2016) Anesthetic and anthelminthic effects of clove basil (Ocimum gratissimum) essential oil for tambaqui (Colossoma macropomum). Aquaculture 457:24–28. https://doi.org/10.1016/j.aquaculture.2016.02.010. (PMID: 10.1016/j.aquaculture.2016.02.010)
Brandão FR, Melo SDC, Sebastino FA, Chaves FMC, Bizzo RH, O’Sullivan FAL, Chagas EC (2022) Essential oils as anaesthetics and sedatives in native Brazilian fish, with a special emphasis on Colossoma macropomum: A review. Aquac Res 53:767–781. https://doi.org/10.1111/are.15650. (PMID: 10.1111/are.15650)
Bui TM, Phuong NT, Nguyen GH, Silva SS (2013) Fry and fingerling transportation in the striped catfish, Pangasianodon hypophthalmus, farming sector, Mekong Delta, Vietnam: a pivotal link in the production chain. Aquaculture 388–391:70–75. https://doi.org/10.1016/j.aquaculture.2013.01.007. (PMID: 10.1016/j.aquaculture.2013.01.007)
Chagas EC, Brandão FR, Farias CFS, Monteiro PC, Batista E, Souza MDC, Inoue LAKA (2021) Alterações fisiológicas em juvenis de tambaqui transportados em solução de óleo essencial de Ocimum gratissimum. Agrarian 14:102–111. https://doi.org/10.30612/0621/10.30612/agrarian.v14i51.12279. (PMID: 10.30612/0621/10.30612/agrarian.v14i51.12279)
Cheeseman KH, Slater TF (1994) An introduction to free radicals biochemistry. Br Med Bull 31:31–2692. https://doi.org/10.5860/choice.31-2692. (PMID: 10.5860/choice.31-2692)
CONCEA (2018) Diretriz da Prática de Eutanásia do Conselho Nacional de Controle de Experimentação Animal – CONCEA.
Evelson P, Travacio M, Repetto M, Escobar J, Llesuy S, Lissi EA (2001) Evaluation of total reactive antioxidant potential (TRAP) of tissue homogenates and their cytosols. Arch Biochem Biophys 388:261–266. https://doi.org/10.1006/abbi.2001.2292. (PMID: 10.1006/abbi.2001.229211368163)
Favero GC, Silva WDS, Boaventura TP, Leme FDOP, Luz RK (2019) Eugenol or salt to mitigate stress during the transport of juvenile Lophiosilurus alexandri, a Neotropical carnivorous freshwater catfish. Aquaculture 512:734321. https://doi.org/10.1016/j.aquaculture.2019.734321. (PMID: 10.1016/j.aquaculture.2019.734321)
Ferreira AL, Silva WS, Neves CL, Ferreira NS, Takata R, Luz RK (2020) Benzocaine and menthol as anesthetics for the African cichlid Aulonocara nyassae. Aquac Int 28:1837–1846. https://doi.org/10.1007/s10499-020-00561-w. (PMID: 10.1007/s10499-020-00561-w)
Ferreira AL, Favero GC, Boaventura TP, Freitas SC, Ferreira NS, Descovi SN, Baldisserotto B, Heinzmann BM, Luz RK (2021) Essential oil of Ocimum gratissimum (Linnaeus, 1753): efficacy for anesthesia and transport of Oreochromis niloticus. Fish Physiol Biochem 47:135–152. https://doi.org/10.1007/s10695-020-00900-x. (PMID: 10.1007/s10695-020-00900-x33196935)
Ferreira AL, Santos FAC, Souza AS, Favero GC, Baldisserotto B, Pinheiro CG, Pinheiro CG, Heinzmann BM, Luz RK (2022) Efficacy of Hesperozygis ringens essential oil as an anesthetic and for sedation of juvenile tambaqui (Colossoma macropomum) during simulated transport. Aquac Int 30:1549–1561. https://doi.org/10.1007/s10499-022-00868-w. (PMID: 10.1007/s10499-022-00868-w)
Frova C (2006) Glutathione transferases in the genomics era: new insights and perspectives. Biomol Eng 23:149–169. https://doi.org/10.1016/j.bioeng.2006.05.020. (PMID: 10.1016/j.bioeng.2006.05.02016839810)
Golombieski JI, Silva LVF, Baldisserotto B, Silva JHS (2003) Transport of silver catfish (Rhamdia quelen) fingerlings at different times, load densities, and temperatures. Aquaculture 216:95–102. https://doi.org/10.1016/S0044-8486(02)00256-9. (PMID: 10.1016/S0044-8486(02)00256-9)
Hermes-Lima M (2004) Oxygen in biology and biochemistry: role of free radicals. Functional metabolism: regulation and adaptation, pp. 319–366.
Hohlenwerger JC, Baldisserotto B, Couto RD, Heinzmann BM, Silva DTD, Caron BO, Copatti CE (2017) Essential oil of Lippia alba in the transport of Nile tilapia. Cienc Rural 47:e20160040. https://doi.org/10.1590/0103-8478cr20160040. (PMID: 10.1590/0103-8478cr20160040)
Joseph PD, Mannervik B, Montellano PO (1997) Molecular Toxicology. Oxford University Press, New York, pp 152–186.
Keene JI, Noakes DIG, Moccia RD, Soto GC (1998) The efficacy of clove oil as an anesthetic for rainbow trout, Oncorhynchus mykiss (Walbaum). Aquac Res 29:89–101. https://doi.org/10.1046/j.1365-2109.1998.00927.x. (PMID: 10.1046/j.1365-2109.1998.00927.x)
Kehrer JP (1993) Free radicals as mediators of tissue injury and disease. Crit Rev Toxicol 23:21–48. https://doi.org/10.3109/10408449309104073. (PMID: 10.3109/104084493091040738471159)
Li ZH, Xie S, Wang JX, Sales J, Li P, Chen DQ (2009) Effect of intermittent starvation on growth and some antioxidant indexes of Macrobrachium nipponense (De Haan). Aquac Res 40:526–532. https://doi.org/10.1111/j.1365-2109.2008.02123.x. (PMID: 10.1111/j.1365-2109.2008.02123.x)
Morais IDS, O’sullivan FDA (2017) Biology, habitat and farming of tambaqui Colossoma macropomum (CUVIER, 1816). Sci Amazon 6:81–93.
Neves LC, Silva WS, Ferreira AL, Favero GC, Beier SL, Palheta GDA, Melo NFAC, Luz RK (2022) Physiological responses of juvenile Colossoma macropomum after different periods of air exposure. Aquaculture 548:e737583. https://doi.org/10.1016/j.aquaculture.2021.737583. (PMID: 10.1016/j.aquaculture.2021.737583)
Nico L, Neilson M (2020) Colossoma macropomum (Cuvier, 1816): Nonindigenous Aquatic Species Database. Nonindigenous Aquatic Species Database, U.S. Geological Survey, Gainesville, FL.
Ohkawa H, Ohishi N, Yagi K (1979) Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. Anal Biochem 95:351–358. https://doi.org/10.1016/0003-2697(79)90738-3. (PMID: 10.1016/0003-2697(79)90738-336810)
Okey IB, Igiri MR, Ekpenyong JJ, Inya FU (2022) Haematological and Biochemical responses in African catfish (Clarias gariepinus) juveniles immobilized with clove basil (Ocimum gratissimum) powder anaesthetic. J Aquat Sci Oceanogr 3:1–20.
Paranhos CO, Neves LDC, Silva WS, Luz RK (2021) Transport of killifish Hypsolebias flagellatus: effects of salt use and previous feeding in association with transport time. J Appl Aquac 35:100–111. https://doi.org/10.1080/10454438.2021.1943102. (PMID: 10.1080/10454438.2021.1943102)
Penna MAH, Villacorta-Corrêa MA, Walter T, Petrere Junior M (2005) Growth of the tambaqui Colossoma macropomum (Cuvier) (Characiformes: Characidae): which is the best model? Braz J Biol 65:129–139. https://doi.org/10.1590/S1519-69842005000100017. (PMID: 10.1590/S1519-6984200500010001716025912)
Poli G, Leonarduzzi G, Biasi F, Chiarpotto E (2012) Oxidative stress and cell signalling. Curr Med Chem 11:1163–1182. https://doi.org/10.2174/0929867043365323. (PMID: 10.2174/0929867043365323)
Prabhu KS, Lobo R, Shirwaikar AA, Shirwaikar A (2009) Ocimum gratissimum: A review of its chemical, pharmacological and ethnomedicinal properties. J Tradit Complement Med 1:1–15. https://doi.org/10.2174/1876391X00901010001. (PMID: 10.2174/1876391X00901010001)
Purbosari N, Warsiki E, Syamsu K, Santoso J (2019) Natural versus synthetic anesthetic for transport of live fish: A review. Aquac Fish 4:129–133. https://doi.org/10.1016/j.aaf.2019.03.002. (PMID: 10.1016/j.aaf.2019.03.002)
Read SM, Northcote DH (1981) Minimization of variation in the response to different proteins of the Coomassie blue G dye-binding assay for protein. Anal Biochem 116:53–64. https://doi.org/10.1016/0003-2697(81)90321-3. (PMID: 10.1016/0003-2697(81)90321-37304986)
Readman GD, Owen SF, Knowles TG, Murrell JC (2017) Species specific anaesthetics for fish anaesthesia and euthanasia. Sci Rep 7:1–7. https://doi.org/10.1038/s41598-017-06917-2. (PMID: 10.1038/s41598-017-06917-2)
Ribeiro PAP, Miranda Filho KC, Melo DCD, Luz RK (2015) Efficiency of eugenol as anesthetic for the early lifestages of Nile tilapia (Oreochromis niloticus). An Acad Bras Cienc 87:529–535. https://doi.org/10.1590/00013765201520140024. (PMID: 10.1590/0001376520152014002425806995)
Ribeiro AS, Batista EDS, Dairiki JK, Chaves FCM, Inoue LAKA (2016) Anesthetic properties of Ocimum gratissimum essential oil for juvenile matrinxã. Acta Sci Anim Sci 38:1–7. https://doi.org/10.4025/actascianimsci.v38i1.28787. (PMID: 10.4025/actascianimsci.v38i1.28787)
Ribeiro PAP, Melo HDC, Oliveira CG, Della FMAL, Luz RK (2019) Eugenol and benzocaine as anesthetics for Lophiosilurus alexandri juvenile, a freshwater carnivorous catfish. Aquac Int 27:313–321. https://doi.org/10.1007/s10499-018-0326-3. (PMID: 10.1007/s10499-018-0326-3)
Ross LG, Ross B (2008) Anaesthetic and sedative techniques for aquatic animals. Blackwell Science, Oxford. (PMID: 10.1002/9781444302264)
Sampaio FDF, Freire CA (2016) An overview of stress physiology of fish transport: changes in water quality as a function of transport duration. Fish Fish 17:1055–1072. https://doi.org/10.1111/faf.12158. (PMID: 10.1111/faf.12158)
Sedlak J, Lindsay RH (1968) Estimation of total, protein-bound, and nonprotein sulfhydryl groups in tissue with Ellman’s reagent. Anal Biochem 25:192–205. (PMID: 10.1016/0003-2697(68)90092-44973948)
Sena AC, Teixeira RR, Ferreira EL, Heinzmann BM, Baldisserotto B, Caron BO, Copatti CE (2016) Essential oil from Lippia alba has anaesthetic activity and is effective in reducing handling and transport stress in tambacu (Piaractus mesopotamicus×Colossoma macropomum). Aquaculture 465:374–379. https://doi.org/10.1016/j.aquaculture.2016.09.033. (PMID: 10.1016/j.aquaculture.2016.09.033)
Silva CAD, Fujimoto RY (2015) Tambaqui growth in response to stocking density in cages. Acta Amaz 45:323–332. https://doi.org/10.1590/1809-4392201402205. (PMID: 10.1590/1809-4392201402205)
Silva LL, Parodi TV, Reckziegel P, Oliveira GV, Bürger ME, Baldisserotto B, Pereira AMS, Heinzmann BM (2012) Essential oil of Ocimum gratissimum L.: Anesthetic effects, mechanism of action and tolerance in silver catfish. Rhamdia Quelen Aquaculture 350:91–97. https://doi.org/10.1016/j.aquaculture.2012.04.012. (PMID: 10.1016/j.aquaculture.2012.04.012)
Silva LDL, Garlet QI, Koakoski G, Abreu MSD, Mallmann CA, Baldisserotto B, Barcellos LJG, Heinzmann BM (2015) Anesthetic activity of the essential oil of Ocimum americanum in Rhamdia quelen (Quoy & Gaimard, 1824) and its effects on stress parameters. Neotrop Ichthyol 13:715–722. https://doi.org/10.1590/1982-0224-20150012. (PMID: 10.1590/1982-0224-20150012)
Silva HNPD, Carvalho BCFD, Maia JLDS, Becker AG, Baldisserotto B, Heinzmann BM, Silva LVFD (2019) Anesthetic potential of the essential oils of Lippia alba and Lippia origanoides in tambaqui juveniles. Cienc Rural 49:e20181059. https://doi.org/10.1590/0103-8478cr20181059. (PMID: 10.1590/0103-8478cr20181059)
Silva HNPD, Souza RND, Sousa EMDO, Mourão RHV, Baldisserotto B, Silva LVFD (2020) Citral chemotype of the Lippia alba essential oil as an additive in simulated transport with different loading densities of tambaqui juveniles. Cienc Rural 50:e20190815. https://doi.org/10.1590/0103-8478cr20190815. (PMID: 10.1590/0103-8478cr20190815)
Small BC (2003) Anesthetic efficacy of metomidate and comparison of plasma cortisol responses to tricaine methanesulfonate, quinaldine and clove oil anesthetized channel catfish Ictalurus punctatus. Aquaculture 218:177–185. https://doi.org/10.1016/S0044-8486(02)00302-2. (PMID: 10.1016/S0044-8486(02)00302-2)
Souza CF, Baldissera MD, Bianchini AE, Silva EG, Mourão RHV, Silva LVF, Baldisserotto B (2018) Citral and linalool chemotypes of Lippia alba essential oil as anesthetics for fish: a detailed physiological analysis of side effects during anesthetic recovery in silver catfish (Rhamdia quelen). Fish Physiol Biochem 44:21–34. https://doi.org/10.1007/s10695-017-0410-z. (PMID: 10.1007/s10695-017-0410-z)
Souza CDF, Baldissera MD, Baldisserotto B, Heinzmann BM, Martos-Sitcha JA, Mancera JM (2019) Essential oils as stress-reducing agents for fish aquaculture: a review. Front Physiol 10:785–802. https://doi.org/10.3389/fphys.2019.00785. (PMID: 10.3389/fphys.2019.00785312812646596282)
Storey KB (1996) Oxidative stress: animal adaptations in nature. Braz J Med Biol Res 29:1715–1733. (PMID: 9222437)
Tarkhani R, Imani A, Jamali H, Farsani HG (2017) Anaesthetic efficacy of eugenol on various size classes of angelfish (Pterophyllum scalare Schultze, 1823). Aquac Res 48:5263–5270. https://doi.org/10.1111/are.13339. (PMID: 10.1111/are.13339)
Velisek J, Stara A, Li ZH, Silovska S, Turek J (2011) Comparison of the effects of four anaesthetics on blood biochemical profiles and oxidative stress biomarkers in rainbow trout. Aquaculture 310:369–375. https://doi.org/10.1016/j.aquaculture.2010.11.010. (PMID: 10.1016/j.aquaculture.2010.11.010)
Zhang X, Shan P, Sasidhar M, Chupp GL, Flavell RA, Choi AM, Lee PJ (2003) Reactive oxygen species and extracellular signal-regulated kinase 1/2 mitogen-activated protein kinase mediate hyperoxia-induced cell death in lung epithelium. Am J Respir Cell Mol Biol 28:305–315. https://doi.org/10.1165/rcmb.2002-0156OC. (PMID: 10.1165/rcmb.2002-0156OC12594056)
معلومات مُعتمدة: 150950/2022-5; 402952/2021-9; 308547/2018-7; 301225/2017-6 Conselho Nacional de Desenvolvimento Científico e Tecnológico; 150950/2022-5; 402952/2021-9; 308547/2018-7; 301225/2017-6 Conselho Nacional de Desenvolvimento Científico e Tecnológico; 150950/2022-5; 402952/2021-9; 308547/2018-7; 301225/2017-6 Conselho Nacional de Desenvolvimento Científico e Tecnológico; 150950/2022-5; 402952/2021-9; 308547/2018-7; 301225/2017-6 Conselho Nacional de Desenvolvimento Científico e Tecnológico; 062.1187/2017 Fundação de Amparo à Pesquisa do Estado do Amazonas; 465540/2014-7 Instituto Nacional de Ciência e Tecnologia Centro de Estudos das Adaptações da Biota Aquática da Amazônia; APQ-01531-21 Fundação de Amparo à Pesquisa do Estado de Minas Gerais
فهرسة مساهمة: Keywords: Anesthesia; Biometric handling; Essential plant oil; Oxidative status; Simulated transport
تواريخ الأحداث: Date Created: 20240509 Latest Revision: 20240509
رمز التحديث: 20240510
DOI: 10.1007/s10695-024-01350-5
PMID: 38722480
قاعدة البيانات: MEDLINE
الوصف
تدمد:1573-5168
DOI:10.1007/s10695-024-01350-5