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INNOSC Theranostics and
            Pharmacological Sciences                                                    Therapeutic value of terpenes



                doi: 10.1016/s0378-8741(01)00172-6             196.  Peana AT, Rubattu P, Piga GG,  et al. Involvement of
                                                                   adenosine A1 and A2A receptors in (-)-linalool-induced
            185.  Menezes IA, Marques MS, Santos TC, et al. Antinociceptive   antinociception. Life Sci. 2006;78(21):2471-2474.
                effect  and acute toxicity of  the  essential oil  of  Hyptis
                fruticosa in mice. Fitoterapia. 2007;78(3):192-195.     doi: 10.1016/j.lfs.2005.10.025
                doi: 10.1016/j.fitote.2006.11.020              197.  Perri F, Coricello A, Adams JD. Monoterpenoids:
                                                                   The next frontier in the treatment of chronic pain?  J.
            186.  Dantas MC, De Oliveira FS, Bandeira SM,  et al. Central   2020;3(2):195-214.
                nervous system effects of the crude extract of  Erythrina
                velutina on rodents. J Ethnopharmacol. 2004;94(1):129-133.     doi: 10.3390/j3020016
                doi: 10.1016/j.jep.2004.05.007                 198.  De Almeida RN, Araújo DAM, Gonçalves JCR,  et al.
                                                                   Rosewood oil induces sedation and inhibits compound
            187.  Singh O, Khanam Z, Misra N, Srivastava M. Chamomile   action  potential  in  rodents.  J   Ethnopharmacol.
                (Matricaria chamomilla L.): An overview. Pharmacogn Rev.   2009;124(3):440-443.
                2011;5(9):82-95.
                                                                   doi: 10.1016/j.jep.2009.05.044
                doi: 10.4103/0973-7847.79103
                                                               199.  Peana AT, D’Aquila, PS, Chessa ML, Moretti MDL,
            188.  Elisabetsky E, Coelho de Souza G, Dos Santos MC,   Serra  G, Pippia  P.  (-)-Linalool  produces  antinociception
                Siquieira IR, Amador TA, Nunes DS. Sedative properties of   in two experimental models of pain.  Eur J Pharmacol.
                linalool. Fitoterapia. 1995;66(5):407-414.         2003;460(1):37-41.
            189.  Do Amaral JF, Silva MIG, de Aquino Neto MRA,  et  al.      doi: 10.1016/s0014-2999(02)02856-x
                Antinociceptive effect of the monoterpene R-(+)-limonene
                in mice. Biol Pharm Bull. 2007;30(7):1217-1220.  200.  Peana AT, Marzocco S, Popolo A, Pinto A. (-)-Linalool
                                                                   inhibits in vitro NO formation: Probable involvement in the
                doi: 10.1248/bpb.30.1217                           antinociceptive activity of this monoterpene compound.
            190.  Santos  F,  Rao  V.  Antiinflammatory  and  antinociceptive   Life Sci. 2006;78(7):719-723.
                effects of 1,8‐cineole a terpenoid oxide present in many      doi: 10.1016/j.lfs.2005.05.065
                plant essential oils. Phytother Res. 2000;14(4):240-244.
                                                               201.  Peana AT, De Montis MG, Nieddu E, Spano MT, D’Aquila, PS,
                doi:        10.1002/1099-1573(200006)14::4<240:aid-  Pippia P. Profile of spinal and supra-spinal antinociception
                ptr573>3.0.co;2-x                                  of (-)-linalool. Eur J Pharmacol. 2004;485(1-3):165-174.
            191.  Liapi C, Anifandis G, Chinou I, Kourounakis A,      doi: 10.1016/j.ejphar.2003.11.066
                Theodosopoulos  S,  Galanopoulou  P.  Antinociceptive   202.  Galeotti N, Di Cesare Mannelli, L, Mazzanti G, Bartolini A,
                properties of 1,8-cineole and beta-pinene, from the   Ghelardini C. Menthol: A  natural analgesic compound.
                essential oil of Eucalyptus camaldulensis Leaves, in Rodents.   Neurosci Lett. 2002;322(3):145-148.
                Planta Med. 2008;74(7):789
                                                                   doi: 10.1016/s0304-3940(01)02527-7
                doi: 10.1055/s-2008-1074563
                                                               203.  Beer AM, Lukanov J, Sagorchev P. Effect of thymol on the
            192.  Parenti A, De Logu F, Geppetti P, Benemei S. What is the   spontaneous  contractile  activity  of  the  smooth  muscles.
                evidence for the role of TRP channels in inflammatory and   Phytomedicine. 2007;14(1):65-69.
                immune cells? Br J Pharmacol. 2016;173(6):953-969.
                                                                   doi: 10.1016/j.phymed.2006.11.010
                doi: 10.1111/bph.13392
                                                               204.  Siqueira-Lima PS, Passos FR, Lucchese AM, et al. Central
            193.  Park SH, Sim YB, Lee JK, et al. The analgesic effects and   nervous system and analgesic profiles of Lippia genus. Rev
                mechanisms of orally administered eugenol. Arch Pharm   Bras Farmacogn. 2019;29:125-135.
                Res. 2011;34:501-507.
                                                                   doi: 10.1016/j.bjp.2018.11.006
                doi: 10.1007/s12272-011-0320-z
                                                               205.  Haeseler G, Maue D, Grosskreutz J,  et al. Voltage-
            194.  Ohkubo T, Shibata M. The selective capsaicin antagonist   dependent block of neuronal and skeletal muscle sodium
                capsazepine abolishes the antinociceptive action of eugenol   channels by thymol and menthol.  Eur J Anaesthesiol.
                and guaiacol. J Dent Res. 1997;76(4):848-851.      2002;19(8):571-579.
                doi: 10.1177/00220345970760040501                  doi: 10.1017/s0265021502000923
            195.  Lee MH, Yeon KY, Park CK,  et al. Eugenol inhibits   206.  Elliott AA, Elliott JR. Voltage-dependent inhibition of
                calcium currents in dental afferent neurons.  J  Dent Res.   RCK1 K+ channels by phenol, p-cresol, and benzyl alcohol.
                2005;84(9):848-851.                                Mol Pharmacol. 1997;51(3):475-483.
                doi: 10.1177/154405910508400913                207.  Mohammadi B, Haeseler G, Leuwer M, Dengler R,


            Volume 7 Issue 3 (2024)                         22                               doi: 10.36922/itps.0332
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