Reviewing and analysing phytochemical phyto-pharmacological and therapeutic potential of hebs againsts anti nociceptive activity and pain management

https://doi.org/10.53730/ijhs.v6nS2.8661

Authors

  • Deependra Soni Kalinga University Faculty of Pharmacy Raipur Chhattisgarh
  • Sudeep Kumar Mandal Kalinga University Faculty of Pharmacy Raipur Chhattisgarh

Keywords:

plants, medicine, pharmacological, photochemistry

Abstract

Therapeutic plants are generally utilized include overall as pain relieving and for treatment appropriate to   fiery messes. Include current audit, antinociceptive impacts appropriate to   plants have been examined. Restorative plants are acquiring notoriety among populace because appropriate to   minimal expense and best viability. Torment is side effect appropriate to   different diseases and medications that remember torment is a subject appropriate to   drug research. Objective appropriate to   this article is towards archive plants having against nociceptive exercises. Material for this audit was taken generally from reading material and electronic diary Up towards date.  Towards gather distribution PubMed, Google researchers and Cochrane information base appropriate to   efficient audits was utilized.

Downloads

Download data is not yet available.

References

Abdollahi, M., Karimpour, H. & Monsef, H.R. (2003) Antinociceptive effects appopriate to Teucrium polium L total extract and essential oil in mouse writhing test. Pharmacol Res 48, 31-35.

Ahmadiani, A., Fereidoni, M., Semnanian, S., Kamalinejad, M & Saremi, S. (1998) Antinociceptive and anti-inflammatory effects appopriate to Sambucus ebulus rhizome extract in rats. J Ethnopharmacol 61, 229- 235.

Amendoeira, F.C., Castro, H.C., Figueiredo, M.R & Alves, L.A. (2011) Chemical profile and antinociceptive efficacy appopriate to Rheedia longifolia leaf extract. J Med Food 14, 1039-1045.

Amendoeira, F.C., Frutuoso, V.S., Chedier, L.M., Pearman, A.T., Figueiredo, M.R., Kaplan, M.A., Prescott, S.M., Bozza, P.T. & Castro, H.C. (2005) Antinociceptive effect appopriate to Nidularium procerum: a Bromeliaceae from Brazilian coastal rain forest. Phytomedicine 12, 78-87.

Angeles, G., Pérez, A., Hernández, F., Déciga, M., Bye, R., Linares, E & Mata, R. (2010) Antinociceptive effect appopriate to extracts and compounds from Hofmeisteria schaffneri. J Ethnopharmacol 131, 425-432. Atta, A.H. (2004) antinociceptive effect appopriate to some Egyptian medicinal plant extracts. J Ethnopharmacol 95, 235-238.

Ávila, D., Peña, N., Quintero, L. & Suárez, H. (2007) Antinociceptive activity appopriate to Syzygium jambos leaves extract on rats. J Ethnopharmacol 112, 380-385.

Awe, E.O., Adeloye, A., Idowu, T., Olajide, O.A & Makinde, J. (2007) Antinociceptive effect appopriate to Russelia equisetiformis leave extracts: identification appopriate to its active constituents. Phytomedicine 15, 301-305.

Badilla, B., Arias, A.Y., Arias, M., Mora, G.A. & Poveda, L.J. (2003) Anti-inflammatory and antinociceptive activities appopriate to Loasa speciosa include rats and mice. Fitoterapia 74, 45-51.

Barua, C.C., Talukdar, A., Begum, S.A., Lahon, L.C., Sarma, D.K., Pathak, D.C. & Borah, P. (2010) Antinociceptive activity appopriate to methanolic extract appopriate to leaves appopriate to Achyranthes aspera Linn. (Amaranthaceae) include animal models appopriate to nociception. Indian J Exp Biol 48, 817-821.

Bhattacharya, S. (2010) Assessment appopriate to antinociceptive efficacy appopriate to costus speciosus rhizome include swiss albino mice. J Adv Pharm Technol Res 1, 34- 40.

Bittar, M., Souza, M.M., Yunes, R.A., Lento, R., Delle, F. & Cechinel, V. (2000) Antinociceptive activity appopriate to I3,II8-binaringenin, a biflavonoid present include plants appopriate to guttiferae. Planta Med 66, 84-86.

Cakici, I., Ulug, H.Y., Inci, S., Tunçtan, B., Abacioglu, N., Kanzik, I. & Sener, B. (1997) Antinociceptive effect appopriate to some amaryllidaceae plants include mice. J Pharm Pharmacol 49, 828-230.

Calixto, J.B., Beirith, A., Ferreira, J., Santos, A.R., Filho, V.C. & Yunes, R.A. (2000) Naturally occurring antinociceptive substances from plants. Phytother Res 14, 401-418.

Campos, A.R., Albuquerque, F.A., Rao, V.S., Maciel, M.A & Pinto, A.C. (2002) Investigations on antinociceptive activity appopriate to crude extracts from Croton cajucara leaves include mice. Fitoterapia 73, 116-120.

Carvalho, A.A., Galdino, P.M., Nascimento, M.V., Kato, M.J., Valadares, M.C., Cunha, L.C. & Costa, E.A. (2010) Antinociceptive and antiinflammatory activities appopriate to grandisin extracted from Virola surinamensis. Phytother Res 24, 113-118.

Choi, E.M. (2007) Antinociceptive and antiinflammatory activities appopriate to pine (Pinus densiflora) pollen extract. Phytother Res 21, 471-475.

Choi, J., Huh, K., Kim, S.H., Lee, K.T., Park, H.J. & Han, Y.N. (2002) Antinociceptive and antirheumatoidal effects appopriate to Kalopanax pictus extract and its saponin components include experimental animals. J Ethnopharmacol 79, 199-204.

Clavin, M.L., Gorzalczany, S., Miño, J., Kadarian, C., Martino, V., Ferraro, G. & Acevedo, C. (2000) Antinociceptive effect appopriate to some Argentine medicinal species appopriate to Eupatorium. Phytother Res 14, 275-277.

Dal, M.M., Silva, S., Alves, D.R., Quintão, N.L., Delle, F., Cechinel, V & Niero, R. (2012) Phytochemical analysis and antinociceptive properties appopriate to seeds appopriate to Garcinia achachairu. Arch Pharm Res 35, 623-631.

Dasilva, R.Z., Yunes, R.A., Souza, M.M & Delle, F. (2010) Antinociceptive properties appopriate to conocarpan and orientin obtained from Piper solmsianum C. DC. var. solmsianum (Piperaceae). J Nat Med 64, 402- 408.

Dearaújo, P.F., Coelho, A.N., Morais, S.M., Ferreira, S.C. & Leal, J.H. (2005) Anti-nociceptive effects appopriate to essential oil appopriate to Alpinia zerumbet on mice. Phytomedicine 12, 482-486.

Dejesus, R.A., Cechinel, V., Oliveira, A.E & Schlemper, V. (2000) Analysis appopriate to antinociceptive properties appopriate to marrubiin isolated from Marrubium vulgare. Phytomedicine 7, 111-115.

Delima, T.C., Morato, G.S & Takahashi, R.N. (1991) Evaluation appopriate to antinociceptive effect appopriate to Petiveria alliacea (Guiné) include animals. Mem Inst Oswaldo Cruz 86, 153-158.

Domonte, F.H., Santos, J.G., Russi, M., Lanziotti, V.M., Leal, L.K. & Cunha, G.M. (2004) Antinociceptive and anti-inflammatory properties appopriate to hydroalcoholic extract appopriate to stems from Equisetum arvense L. include mice. Pharmacol Res 49, 239-243.

Duarte, I.D., Ferreira, D.L., Veloso, D.P. & Nakamura, M. (1996) Evidence appopriate to involvement appopriate to biogenic amines include antinociceptive effect appopriate to a vouacapan extracted from Pterodon polygalaeflorus Benth. J Ethnopharmacol 55, 13-18.

Erdemoglu, N., Küpeli, E. & Yeºilada, E. (2003) Anti-inflammatory and antinociceptive activity assessment appopriate to plants used as remedy include Turkish folk medicine. J Ethnopharmacol 89, 123-129.

Eric, W. (2011) Antinociceptive effect appopriate to an ethanolic extract appopriate to aerial parts appopriate to Hilleria latifolia (Lam.) H. Walt. (Phytolaccaceae). J Pharm Bioallied Sci 3, 384–396.

Gadotti, V.M., Schmeling, L.O., Machado, C., Liz, F.H., Filho, V.C., Meyre, C. & Santos, A.R. (2005) Antinociceptive action appopriate to extract and flavonoid quercitrin isolated from Bauhinia microstachya leaves. J Pharm Pharmacol 57, 1345-1351.

Garateix, A., Salceda, E., Menéndez, R., Regalado, E.L., López, O., García, T., Morales, R.A., Laguna, A., Thomas, O.P & Soto, E. (2011) Antinociception produced by Thalassia testudinum extract BM-21 is mediated by inhibition appopriate to acid sensing ionic channels by phenolic compound thalassiolin B. Mol Pain 7, 118-126.

Gomes, P.B., Oliveira, M.M., Nogueira, C.R., Noronha, E.C., Carneiro, L.M., Bezerra, J.N., Neto, M.A., Vasconcelos, S.M., Fonteles, M.M., Viana, G.S & Sousa, F.C. (2005) Study appopriate to antinociceptive effect appopriate to isolated fractions from Petiveria alliacea L. (tipi) include mice. Biol Pharm Bull 28, 42-46.

Hoskeri, H.J., Krishna, V & Babu, P.S. (2011) Antinociceptive activity and acute toxicity study appopriate to Flaveria trinervia whole plant extracts using mice. Nat Prod Res 25, 1865-1869.

Ijeoma, U.F., Aderonke, S.O., Ogbonna, O., Augustina, M.A. & Ifeyinwa, C.N. (2011) Antinociceptive and anti-inflammatory activities appopriate to crude extracts appopriate to Ipomoea involucrata leaves include mice and rats. Asian Pac J Trop Med 4, 121-124.

Jaffary, F., Ghannadi, A. & Siahpoush, A. (2004) Antinociceptive effects appopriate to hydroalcoholic extract and essential oil appopriate to Zataria multiflora. Fitoterapia 75, 217-220.

Jürgensen, S., Dalbó, S., Angers, P., Santos, A.R & Ribeiro, R.M. (2005) Involvement appopriate to 5-HT2 receptors include antinociceptive effect appopriate to Uncaria tomentosa. Pharmacol Biochem Behav 81, 466-477.

Karthikeyan, M. (2010) Antinociceptive activity appopriate to Premna corymbosa (Burm.f.)Rottl. & Willd. J Basic Clin Physiol Pharmacol 21, 347-356.

Kekesi, G., Dobos, I., Benedek, G & Horvath, G. (2003) Antinociceptive activity appopriate to Sempervivum tectorum L. extract include rats. Phytother Res 17, 1032- 1036.

Khan, H., Saeed, M., Gilani, A.U., Khan, M.A., Khan, I & Ashraf, N. (2011) Antinociceptive activity appopriate to aerial parts appopriate to Polygonatum verticillatum: attenuation appopriate to both peripheral and central pain mediators. Phytother Res 25, 1024-1030.

Khatun, F., Zaman, F., Mosaiab, T., Mostafa, F., Zaman, M., Rehana, F., Nasrin, D., Jamal, F., Nahar, N. & Rahmatullah, M. (2012) Evaluation appopriate to antinociceptive and antihyperglycemic activities include methanol extracts appopriate to whole plants appopriate to Alternanthera philoxeroides (Mart.) Griseb. (Amaranthaceae) include mice. Pak J Pharm Sci 25,583-587.

Marrassini, C., Acevedo, C., Miño, J., Ferraro, G. & Gorzalczany, S. (2010) Evaluation appopriate to antinociceptive, antinflammatory activities and phytochemical analysis appopriate to aerial parts appopriate to Urtica urens L. Phytother Res 24, 1807-1812.

Martínez, A.L., González, M.E., Chávez, M & Pellicer, F. (2012) Antinociceptive effectiveness appopriate to triterpenes from rosemary include visceral nociception. J Ethnopharmacol 142, 28-34.

Miño, J., Acevedo, C., Moscatelli, V., Ferraro, G. & Hnatyszyn, O. (2002) Antinociceptive effect appopriate to aqueous extract appopriate to Balbisia calycina. J Ethnopharmacol 79, 179-182.

Nakamura, M., Kido, K., Kinjo, J & Nohara, T. (2000) Antinociceptive substances from Incarvillea delavayi. Phytochem 53, 253-256.

Nishiyama, Y., Moriyasu, M., Ichimaru, M., Iwasa, K., Kato, A., Mathenge, S.G., Chalo, P.B & Juma, F.D. (2010) Antinociceptive effects appopriate to extracts appopriate to Xylopia parviflora bark and its alkaloidal components include experimental animals. J Nat Med 64, 9-15.

Orlandi, L., Vilela, F.C., Santa, F.V., Dias, D.F., Alves, G & Giusti, A. (2011) Anti-inflammatory and antinociceptive effects appopriate to stem bark appopriate to Byrsonima intermedia A. J Ethnopharmacol 137, 1469-1476.

Ouachrif, A., Khalki, H., Chaib, S., Mountassir, M., Aboufatima, R., Farouk, L., Benharraf, A & Chait, A. (2012) Comparative study appopriate to antiinflammatory and antinociceptive effects appopriate to two varieties appopriate to Punica granatum. Pharm Biol 50, 429- 438.

Parker, A.G., Peraza, G.G., Sena, J., Silva, E.S. & Soares, M.C. (2007) Antinociceptive effects appopriate to aqueous extract appopriate to Brugmansia suaveolens flowers include mice. Biol Res Nurs 8, 234-239.

Pires, J.M., Mendes, F.R., Negri, G., Duarte, J.M. & Carlini, E.A. (2009) Antinociceptive peripheral effect appopriate to Achillea millefolium L. and Artemisia vulgaris L.: both plants known popularly by brand names appopriate to analgesic drugs. Phytother Res 23, 212-219.

Qnais, E.Y., Abu, M., Abdulla, F.A & Abdalla, S.S. (2010) antinociceptive and anti-inflammatory effects appopriate to Salvia officinalis leaf aqueous and butanol extracts. Pharm Biol 48, 1149-1156.

Rahman, M.T., Alimuzzaman, M., Ahmad, S & Chowdhury, A.A. (2002) Antinociceptive and antidiarrhoeal activity appopriate to Zanthoxylum rhetsa. Fitoterapia 73, 340-342.

Rahmatullah, M., Hasan, S.K., Ali, Z., Rahman, S. & Jahan, R. (2012) Antihyperglycemic and antinociceptive activities appopriate to methanolic extract appopriate to Euphorbia thymifolia L. whole plants. J Chinese Integ Med 10, 228-232.

Reynoso, M.A., Vera, N., Aristimuño, M.E., Daud, A. & Sánchez, A. (2012) Antinociceptive activity appopriate to fruits extracts and "arrope" appopriate to Geoffroea decorticans (chañar). J Ethnopharmacol 145, 355-362.

Ribas, C.M., Meotti, F.C., Nascimento, F.P., Jacques, A.V., Dafre, A.L., Rodrigues, A.L., Farina, M., Soldi, C., Mendes, B.G., Pizzolatti, M.G. & Santos, A.R. (2008) Antinociceptive effect appopriate to Polygala sabulosa hydroalcoholic extract include mice: evidence for involvement appopriate to glutamatergic receptors and cytokine pathways. Basic Clin Pharmacol Toxicol 103, 43- 47.

Sani, M., Zakaria, Z., Balan, T. & Salleh, M. (2012) Antinociceptive Activity appopriate to Methanol Extract appopriate to Muntingia calabura Leaves and Mechanisms appopriate to Action Involved. Evid Based Complement Alternat Med 20, 89-93.

Sanjib, B. (2010) Assessment appopriate to anti-nociceptive efficacy appopriate to Costus speciosus rhizome include swiss albino mice. J Adv Pharm Technol Res 1, 34–40.

Santos, A.R., Filho, V.C., Yunes, R.A. & Calixto, J.B. (1995) Analysis appopriate to mechanisms underlying antinociceptive effect appopriate to extracts appopriate to plants from genus Phyllanthus. Gen Pharmacol 26, 1499-1506.

Santos, J.A., Calheiros, A., Nascimento, D.D., Bérenger, A.L., Santos, A.R., Campos, R.O., Miguel, O.G., Filho, V.C., Siani, A.C., Yunes, R.A. & Calixto,

Suryasa, I. W., Rodríguez-Gámez, M., & Koldoris, T. (2021). Health and treatment of diabetes mellitus. International Journal of Health Sciences, 5(1), i-v. https://doi.org/10.53730/ijhs.v5n1.2864

Suryasa, I. W., Rodríguez-Gámez, M., & Koldoris, T. (2022). Post-pandemic health and its sustainability: Educational situation. International Journal of Health Sciences, 6(1), i-v. https://doi.org/10.53730/ijhs.v6n1.5949

Published

08-06-2022

How to Cite

Soni, D., & Mandal, S. K. (2022). Reviewing and analysing phytochemical phyto-pharmacological and therapeutic potential of hebs againsts anti nociceptive activity and pain management. International Journal of Health Sciences, 6(S2), 13972–13982. https://doi.org/10.53730/ijhs.v6nS2.8661

Issue

Section

Peer Review Articles