Journal of Chinese Integrative Medicine ›› 2013, Vol. 11 ›› Issue (6): 371-376.doi: 10.3736/jintegrmed2013053
• Review • Next Articles
Pawan Kaushik(
), Dhirender Kaushik, Sukhbir Lal Khokra
| [1] | Shah R . Description of Pinus roxburghii Sarg[J]. Nat Med Plants Uttaranchal, 2006,1:18-19 |
| [2] | The wealth of India: A dictionary of Indian raw materials and industrial products.Vol 1[M]. New Delhi: Council of Scientific and Industrial Research, 1985, 69-83 |
| [3] | Price RA, Liston A, Strauss SH. Phylogeny and systematics of Pinus. In: Richardson DM.Ecology and biogeography of Pinus[M]. Cambridge: Cambridge University Press, 1998, 49-68 |
| [4] | Wu ZY, Raven PH, Garden MB. Flora of China. Vol 4. Beijing: Science Press & St Louis: Missouri Botanical Garden Press. 1999. |
| [5] |
Arya S, Kalia RK, Arya ID . Induction of somatic embryogenesis in Pinus roxburghii Sarg[J]. Plant Cell Reports, 2000,19(8):775-780
doi: 10.1007/s002990000197 |
| [6] | Tiwari DN . A monograph on chir pine (Pinus roxburghii Sarg). Dehra Dun: Indian Council of Forestry Reaseach and Education. 1994. |
| [7] | Khare CP . Indian medicinal plants: an illustrated dictionary[M]. Berlin/Heidelberg: Springer Science+Business Media, LLC, 2007, 496-497 |
| [8] | Siddiqui MF, Ahmed M, Wahab M, Khan N, Khan MU, Nazim K, Hussain SS . Phytosociology of Pinus roxburghii Sargent(Chir pine) in lesser Himalayan and Hindukush range of Pakistan[J]. Pak J Bot, 2009,41(5):2357-2359 |
| [9] |
Puri A, Srivastava AK, Singhal B, Mishra SK, Srivastava S, Lakshmi V . Antidyslipidemic and antioxidant activity of Pinus roxburghii needles[J]. Med Chem Res, 2011,20:1589-1593
doi: 10.1007/s00044-010-9424-0 |
| [10] |
Abbasi AM, Khan MA, Ahmad M, Zafar M, Jahan S, Sultana S . Ethnopharmacological application of medicinal plants to cure skin diseases and in folk cosmetics among the tribal communities of North-West Frontier Province. Pakistan[J]. J Ethnopharmacol, 2010,128(2):322-335
doi: 10.1016/j.jep.2010.01.052 |
| [11] | Smaleh M, Sharma OP, Dobhal NP. Chemical composition of turpentine oil from oleoresin (Pinus roxburghii Sargent) tapped by chemical stimulants. Indian Perfumer. 1976; XX(1B):15-19. |
| [12] |
Kunwar RM, Uprety Y, Burlakoti C, Chowdhary CL, Bussmann RW . Indigeneous use and ethanopharmacology of medicinal plants in far-west Nepal[J]. Ethnobot Res Applic, 2009,7:5-28
doi: 10.17348/era.7.0.5-28 |
| [13] |
Gangwar AK, Ramakrishnan PS . Ethnobiological notes on some tribes of Arunachal Pradesh, Northeastern India[J]. Econ Bot, 1990,44(1):94-105
doi: 10.1007/BF02861071 |
| [14] |
Singh H, Saklani A, Lal B . Ethnobotanical observations on some gymnosperms of Garhwal Himalaya, Uttar Pradesh, India[J]. Econ Bot, 1990,44(3):349-354
doi: 10.1007/BF03183917 |
| [15] |
Bhattarai NK . Medical ethnobotany in the Karnali zone. Nepal[J]. Econ Bot, 1992,46(3):257-261
doi: 10.1007/BF02866624 |
| [16] | Joshi K, Joshi R, Joshi AR . Indigenous knowledge and uses of medicinal plants in Macchegaun, Nepal[J]. Indian J Tradi Knowl, 2011,10(2):281-286 |
| [17] | Manandhar NP. Plant and people of Nepal. Portland: Timber Press Inc. 2002. |
| [18] | Murad W, Ahmad A, Gilani SA, Khan MA . Indigenous knowledge and folk use of medicinal plants by the tribal communities of Hazar Nao Forest, Malakand District, North Pakistan[J]. J Med Plant Res, 2011,5(7):1072-1086 |
| [19] | Ajmal SA, Mohammad S, Zahid K, Bakht Z, Habib A, Alam MZ . Ethnomedicinal and phytoeconomic elaboration of Lilownai Valley, District Shangla, Pakistan[J]. Int Res J Pharma, 2012,3(4):164-169 |
| [20] | Hussain M . Medicinal plants of mansehra[M]. Peshawar: Botany Department, University of Peshawar, 1987,174 |
| [21] | Krithikar KR, Basu BD . Indian medicinal plants.2nd ed[M]. Dehardun: International Book Distributors, 1999, 2385-2388 |
| [22] | Arshad M, Ahmad M .Medico-botanical investigation of medicinally important plants from Galliyat areas, NWFP(Pakistan) [J].Ethnobot Leaflets, 2005, 2005(1):Article 23 |
| [23] |
Uniyal SK, Singh KN, Jamwal P, Lal B . Traditional use of medicinal plants among the tribal communities of Chhota Bhangal, Western Himalaya[J]. J Ethnobiol Ethnomed, 2006,2:14
doi: 10.1186/1746-4269-2-14 |
| [24] | Bajracharya MB. Ayurvedic medicinal plants and general treatments[M]. Kathmandu: Jore Ganesh Press Pvt Ltd, 1979,230 |
| [25] | Dash VB, Gupta KK . Materia medica of Ayurveda. New Delhi: Health Harmony, B. Jain Publishers, Ltd. 1991. |
| [26] | Jain SK . Medicinal plants.6th ed[M]. New Delhi: National Book Trust, 1994,216 |
| [27] |
Marles RJ, Farnsworth NR . Antidiabetic plants and their active constituents[J]. Phytomedicine, 1995,2(2):137-189
doi: 10.1016/S0944-7113(11)80059-0 |
| [28] | Chaturvedi S, Dass S . Traditional medicinal and economic uses of gymnosperms[J]. Bull Env Pharmacol Life Sci, 2011,1(1):70-72 |
| [29] |
Kala CP . Indigenous uses and structure of chir pine forest in Uttaranchal Himalaya, India[J]. Int J Sust Dev World Ecol, 2004,11(2):205-210
doi: 10.1080/13504500409469824 |
| [30] |
Chatterjee A, Dhara KP, Rej RN, Ghosh PC . Hexacosylferulate, a phenolic constituent of Pinus roxburghii[J]. Phytochemistry, 1977,16(3):397-398
doi: 10.1016/0031-9422(77)80076-9 |
| [31] | Rawat U, Srivastava B, Semwal S, Sati OP . Xanthones from Pinus roxburghii[J]. J Indian Chem Soc, 2006,83(4):391-392 |
| [32] | Beri RM . Chemical constituents of the bark of Pinus roxburghii Sargent[J]. Indian J Chem, 1970,8(5):469-470 |
| [33] | Willf?r S, Ali M, Karonen M, Reunanen M, Arfan M, Harlamow R . Extractives in bark of different conifer species growing in Pakistan[J]. Holzforschung, 2009,63(5):551-558 |
| [34] |
Coppen JJ, Robinson JM, Kaushal AN . Composition of xylem resin from Pinus wallichiana and P. roxburghii[J]. Phytochemistry, 1988,27(9):2873-2875
doi: 10.1016/0031-9422(88)80679-4 |
| [35] | Naeem I, Taskeen A, Mubeen H, Maimoona A . Characterization of flavonols present in barks and needles of Pinus wallichiana and Pinus roxburghii[J]. Asian J Chem, 2010,22(1):41-44 |
| [36] | Ahmad M, Nazli S, Anwar MM . Studies on tannins from barks of Pinus roxburghii[J]. J Chem Soc Pak, 1989,11(3):213-217 |
| [37] | Satyal P, Paudel P, Raut J, Deo A, Dosoky NS, Setzer WN . Volatile constituents of Pinus roxburghii from Nepal[J]. Pubmed Res, 2013,5(1):43-48 |
| [38] | Zafar I, Fatima A, Khan SJ, Rehman Z, Mehmud S . GC-MS studies of needles essential oil of Pinus roxburghaii and their antimicrobial activity from Pakistan[J]. Electr J Environ Agric Food Chem, 2010,9(3):468-473 |
| [39] | Hassan A, Amjid I . Gas chromatography-mass spectrometric studies of essential oil of Pinus roxburghii stems and their antibacterial and antifungal activities[J]. J Med Plants Res, 2009,3(9):670-673 |
| [40] | Swales M, Dev I . Indian wood turpentine oil: scope, production and chemical composition. Indian Perfumer. 1979; XXIII(2):79-83. |
| [41] |
Mishra AN, Soman R, Dev S . Monoterpenoids-VI: On the optical purity of(+)-car-3-ene from Pinus roxburghi and the source of racemization of(-)-menthol derived therefrom[J]. Tetrahedron, 1988,44:6941-6946
doi: 10.1016/S0040-4020(01)86224-4 |
| [42] | Ahmad M, Nazli S, Mohammad B . Separation and analysis of sugars from Pinus roxburghii bark[J]. Pak J Sci Ind Res, 1990,33(12):558-560 |
| [43] | Maimoona A, Naeem I, Shujaat S, Saddiqe Z, Mughal T, Mehmood T . Comparison of radical scavenging capacity of different extracts of bark and needles of Pinus roxburghii and Pinus wallichiana[J]. Asian J Chem, 2011,23(2):819-822 |
| [44] | Maimoona A, Naeem I, Saddiqe Z, Ali N, Ahmed G, Shah I . Analysis of total flavonoids and phenolics in different fractions of bark and needle extracts of Pinus roxburghii and Pinus wallichiana[J]. J Med Plant Res, 2011,5(13):2724-2728 |
| [45] | Khan I, Singh V, Chaudhary AK . Hepatoprotective activity of Pinus roxburghii Sarg. wood oil against carbon tetrachloride and ethanol induced hepatotoxicity[J]. Bangladesh J Pharmacol, 2012,7(2):94-99 |
| [46] | Bissa S, Bohra A, Bohra A . Antibacterial potential of three naked-seeded(Gymnosperm) plants[J]. Indian J Nat Prod Radiance, 2008,7(5):420-425 |
| [47] | Parihar P, Parihar L, Bohra A . Antibacterial activity of extracts of Pinus roxburghii Sarg[J]. Bangladesh J Bot, 2006,35(1):85-86 |
| [48] | Chaudhary KA, Ahmad S, Mazumder A . Study of antibacterial and antifungal activity of traditional Cedrus deodara and Pinus roxburghii Sarg[J]. TANG, 2012,2(4):e37 |
| [49] | Melkania NP, Singh JS, Bisht KKS . Allelopathic potential of Artemisia vulgaris L. and Pinus roxburghii Sargent: A bioassay study[J]. Proc Indian Nat Sci Acad B, 1982,48(5):685-688 |
| [50] | Kaushik D, Kumar A, Kaushik P, Rana AC . Analgesic and anti-inflammatory activity of Pinus roxburghii Sarg[J]. Adv Pharmacol Sci, 2012,2012:245431 |
| [51] | Kaushik D, Kumar A, Kaushik P, Rana AC . Anticonvulsant activity of alcoholic extract of bark of Pinus roxburghii Sarg[J]. J Chin Integr Med, 2012,10(9):1056-1060 |
| [52] | Kaushik DK . Phytochemical and pharmacological evaluation of Pinus roxburghii Sarg. Kurukshetra: Kurukshetra University. 2011. |
| [53] |
Mahajan VK, Sharma NL . Occupational airborne contact dermatitis caused by Pinus roxburghii sawdust[J]. Contact Dermat, 2011,64(2):110-111
doi: 10.1111/cod.2011.64.issue-2 |
| [54] | Chaudhary AK, Ahmad S , Mazumder A. Cognitive enhancement in aged mice after chronic administration of Cedrus deodara Loud. and Pinus roxburghii Sarg. with demonstrated antioxidant properties. J Nat Med. 2013 May 5. Epub ahead of print. |
| [55] | Azmat A, Ahmed KZ, Ahmed M, Tariq B . Antinociceptive effects of poly herbal oil extract(PHOE)[J]. Pak J Pharmacol, 2006,23(2):1-7 |
| [56] | Rastogi S, Shukla A, Kolhapure SA . Evaluation of the clinical efficacy and safety of RG-01(Rumalaya gel) in the management of chronic sub-acute inflammatory joint disorder[J]. Med Update, 2004,12(1):31-37 |
| [57] | Sharma A, Kolhapure SA . Evaluation of the efficacy and safety of Rumalaya gel in the management of acute and chronic inflammatory musculoskeletal disorders: an open, prospective, noncomparative, phase III clinical trial[J]. Med Update, 2005,12(10):39-45 |
| [58] |
Ahmad R, Rao RAK, Masood MM . Removal and recovery of Cr(VI) from synthetic and industrial wastewater using bark of Pinus roxburghii as an adsorbent[J]. Water Qual Res J Canada, 2005,40(4):462-468
doi: 10.2166/wqrj.2005.049 |
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