International Journal of Pharmacology

2005 | 9,241,751 words

The International Journal of Pharmacology (IJP) is a globally peer-reviewed open access journal covering the full spectrum of drug and medicine interactions with biological systems, including chemical, physiological, and behavioral effects across areas such as cardiovascular, neuro-, immuno-, and cellular pharmacology. It features research on drug ...

Salvadora persica (Meswak): Chewing Stick for Complete Oral Care

Author(s):

Manoj Goyal
Lachoo Memorial College of Science and Technology, Pharmacy Wing, Jodhpur, 342008, Rajasthan, India
D. Sasmal
Department of Pharmaceutical Sciences, BIT Mesra, Ranchi, Jharkhand, India
B. P. Nagori
Lachoo Memorial College of Science and Technology, Pharmacy Wing, Jodhpur, 342008, Rajasthan, India


Read the Summary


Year: 2011 | Doi: 10.3923/ijp.2011.440.445

Copyright (license): Creative Commons Attribution 4.0 International (CC BY 4.0) license.


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[Find the meaning and references behind the names: Life, Data]

Life International Journal of Pharmacology ISSN 1811-7775 Life science alert ansinet Asian Network for Scientific Information

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[Summary: This page introduces Salvadora persica (meswak) as a traditional, inexpensive oral hygiene tool in Afro-Asian communities. It highlights its effectiveness against dental caries, bacterial/fungal growth, and gingival bleeding, comparable to Chlorhexidine. It contains glycosides, sterols, terpenes, flavonoids, alkaloids, fluoride, calcium and phosphorus.]

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International Journal of Pharmacology 7 (4): 440-445. 2011 ISSN 1811-7775 DOI: 10.3923/ijp.2011.110.115 2011 Asian Network for Scientific Information Salvadora persica (Meswak): Chewing Stick for Complete Oral Care Manoj Goyal, D. Sasmal and B.P. Nagori Lachoo Memorial College of Science and Technology, Pharmacy Wing, Jodhpur, 342008, Rajasthan, India Department of Pharmaceutical Sciences, BIT Mesra, Ranchi, Jharkhand, India Abstract: The use of a wood stick Salvadora persica (meswak) for brushing the teeth continues to be an important fool for oral hygiene care in many Afro-Asian communities. It is inexpensive, customary and used for religious reasons as well. The pharmacological studies revealed that Salvadora persica is effective against dental caries, bacterial and fungal growth. Anti-plaque activity of Salvadora persica is comparable with Chlorhexidine gluconate and it is also found to reduce gingival bleeding. Phytochemical screening revealed the occurrence of glycosides, sterols, terpenes, flavonoids and alkaloids. Fluoride, calcium and phosphorus, minerals required for dental health are also present in Salvadora persica. Present review is written with objective to renew interest in use of Salvadora persica toothbrushes as environment friendly and cheap tool for dental care and oral hygiene. Key words: Salvadora persica, gingival bleeding, dental caries, anti-bacterial, anti-plaque INTRODUCTION as Toothbrushes are one of the essential items for people. They keep our teeth clean and free from discase causing bacteria which are produced by decaying food remains left in between our teeth. In our country toothbrushes are used by the majority of people in urban areas but in rural areas the use of factory made tooth brushes arc less preferred. Rural people mainly the young use twigs of plants such as Acacia arabica, Acacia senegal, Azadirachta indica, Capparis decidua and Salvadora persica toothbrushes and to treatment of dental problems (Goyal et al., 2009; Kayode and Omotoyinbo, 2009). Clinical studies have shown that chewing sticks when properly used, can be as efficient as toothbrushes in removing dental plaque due to the combined effect of mechanical cleaning and enhanced salivation. It has also been suggested that antimicrobial substances that naturally protect plants against various invading microorganisms or other parasites may leach out into the oral cavity and that these compounds may benefit the users by protection against carcinogenic and periodontopathic bacteria (Cole et al., 1981; Wu et al., 2001). The miswak chewing stick is an oral hygiene device used by the majority of people in developing countries. Despite its widespread use, few studies demonstrated its benefits or applications as an alternative and convenient. means for cleansing the teeth. The review will provides information regarding the unique properties of the miswak chewing stick with objective to renew interest in use of Salvadora persicu (family: Salvadoraceae) toothbrushes as environment friendly and cheap tool for dental care and oral hygiene. Salvadora persica is also know by its Persian name Darakht-i-miswak (tooth brush tree) from the fact that wood is much employed for manufacture of tooth brushes and it is supposed by the natives that tooth brushes made of it strengthen the gum, keep them from becoming spongy (Kirtikar et al, 1975; Manavalan et al., 2010). were The various ethno-medicinal surveys conducted in various parts of desert and semi desert ecosystem documented ethnecological and medicinal value of Salvadora persica (Gupta et al., 2008a, bi Marwat et al., 2009; Alyemeni et al., 2010; Sher et al., 2010; Molhana et al., 2011; Goyal et al., 2011). III ti structured interview conducted with 1200 regular patients at two centers in the city of Makkah, revealed that 65% of the subjects used miswak daily and use of the miswak resulted in significant reductions in plaque (p<0.001), gingival (p<0.01) indices and A. actinomycetemcomitans concentration (Al-Otaibi, 2001). According to Fischman and Yankell (1999) dentifrices (toothpowders, toothpastes and gels) are sold as either cosmetic or therapeutic products. If the purpose of a dentifrice is therapeutic, il musl. reduce some discase process in the mouth. Usually the actual or alleged therapeutic effect is to reduce caries incidence, gingivitis. Corresponding Author: Manoj Goyal, Lachon Memorial College of Science and Technology, Pharmacy Wing, Jodhpur, 342008, Rajasthan, India 440

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[Summary: This page discusses Salvadora persica's anti-caries effects, referencing a study showing a significant decrease in dental caries in a group using Miswak. It also notes the antibacterial effect against Streptococcus mutans. It highlights studies showing reductions in Plaque, Gingival, and Bleeding Indices with Salvadora persica use.]

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Int. J. Pharmacol., 7 (4): 440-445, 2011 calculus formation, or tooth sensitivity. Salvadora persica is having anti-caries, anti-plaque and antibacterial effects. Anti dental caries effect of Salvadora persica: Anti dental caries effect of Salvadora persica studied by many researchers. Ezoddini-Ardakani (2010) demonstrated efficacy of Miswak in preventing dental caries in the clinical trial carried out on three hundred eighty second years students of high school in the city of Yazd, Iran. The data showed a significant increase (55%) in the rale of dental caries in control group compared to case group. The risk of dental caries for each tooth in control group was 9.35 times more than case group (9.11 and 0.98%, respectively). The antibacterial effect special against Streptococcus mulans is responsible for anti-caries effect. of Salvadora persica (Almas and Al-Zeid, 2001). Effect of Salvadora persica on plaque index (PT), gingival index (GI) and bleeding index (BI): Gingival index and bleeding index have been widely used as indicators of periodontal status (Benamghar et al., 1982). Amoian et al. (2010a) reported significant reduction in the Plaque Index (PI), Gingival Index (GI) and Bleeding Index (BI) by use of Salvadora persica extract chewing gum in a double-masked, randomized trial with 72 cases of moderate gingivitis. (Amoian et al., 2010b). Anti-plaque effect of Salvadora persica and comparison with Chlorhexidine gluconate: Chlorhexidine gluconate (CHX) is the-proven anti-plaque agents (Konig et al, 2002), the comparative studies of Salvadora persica is carried out with Chlorhexidine gluconate. The effect of mouth rinse with different. concentrations of aqueous Salvadora twigs extract and chlorhexidine digluconate on the adhesion of bacterial cells to buccal epithelial cells was investigated by Iammad and Sallal (2005). The mouth rinse with aqueous Salvadora twigs extract causes significant reduction (84%) in the adherence of bacterial cells (Streptococcus mutans) to buccal epithelial cells (IIammad and Sallal, 2005). In the orthodontic patients, orthodontic appliances prevent the removal of plaque by brushing, mastication and salivary flow. Chlorhexidine mouthwash has shown the highest antimicrobial effects in orthodontic patients. however, some complications have limited its widespread use (Jamilian et al., 2008). Comparison of antimicrobial effects against Streptococcus mutans of persica mouthwash and chlorhexidine was made in orthodontic patients. The numbers of Streptococcus mutans colonies available in the elastic rings around the two bracket bases were determined in culture mediums before and immediately after a single application of water mouthwashes and also following their daily uses for three weeks. The use of persica resulted in a significant (p<0.001) reduction in the number of streptococcus mutans colonies, albeit it was not as potent as chlorhexidine. Thirteen and fourty percent of patients using persica mouthwash experienced tooth discoloration and changes in taste, respectively. The corresponding figures for chlorhexidine were 86 and 73%, respectively (Salehi and Danaie, 2006). Almas (2001) reported that Salvador persica chewing stick cause occlusion of dental tubule and posses anti-plaque activity. Under Scanning Electron Microscope dentine treated with Salvador persica showed removal of smear layer. When compared with Chlorhexidine and 50% miswak, the extract showed similar capacity in reducing smear layers (Almas, 2002). Antibacterial effect of Salvadora persica: Antibiotics and antiseptics have been used successfully to treat moderate-to-severe periodontal diseases (Rams and Slots. 1996). It appears that the local application of antimicrobials that are effective against periodontal pathogens (Okuda et al., 1992). Various authors demonstrated antibacterial action of Salvadora persica against different strains of microbes. Almas and Al-Zeid (2004) measured the antibacterial effect of Miswak, Miswak extract, toothbrush and normal saline against Streptococcus mutans and Lactobacilli. The reduction of Streptococcus mutans was significantly greater in group using miswak in comparison to toothbrushing (p 0.013) and there was no significant difference for lactobacilli reduction (p = 0.117) (Almas and Al-Zeid, 2004). Sofrala et al. (2008) reported antibacterial effect of Salvadora persica against oral microorganisms associated with periodontitis and carics such as Streptococcus mutans, Lactobacillus acidophilus, Aggregatibacter actinomycetemcomitans, Porphyromonas gingivalis and Haemophilus influenzae (Sofrata et al., 2008). The study carried out by Daroul et al. (2003) on the levels of 28 oral bacteria in subgingival plaque of adult Sudanese miswak and toothbrush users. The result indicated hal Miswak users harbored significantly higher Streptococcus intermedius, Actibacillus actinomycetemcomitans, Veillonella parvula, Actinomyces israelii and Capnocytophaga gingivalis and significantly lower Selenomonas sputigena, Streptococcus salivarius, naeslundii and Streptococcus oralis toothbrush users (Darout et al., 2003). Actinomyces than did 441

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[Summary: This page explores the antimicrobial and antifungal properties of Salvadora persica extracts. It mentions aqueous extracts inhibit oral pathogens like Staphylococcus aureus and Candida albicans. It mentions studies show miswak extract promotes fibroblast growth while inhibiting cariogenic bacteria. It also mentions fluoride, calcium, phosphorus and silica contents.]

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Int. J. Pharmacol., 7 (4): 440-445, 2011 Aqueous and methanol extracts of Salvadora persica was investigated for its antimicrobial activities against. 7 isolated oral pathogens: Staphylococcus aureus. Streptococcus mutans. Streptococcus faecalis, Streptococcus pyogenis, Lactobacillus acidophilus, Pseudomonas aeruginosa and Candida albicans using disc diffusion and micro-well dilution assays. Aqueous extract inhibited all isolated microorganisms, especially the Streptococcus species and was more efficient than the methanol extract which was resisted by Lactobacillus acidophilus And Pseudomonas aeruginosa. The strongest antibacterial activity was observed using the aqueous extract against Streptococcus faecalis. Both extracts had equal antifungal aclivity against C. albicans based on the turbidity test. (Al-Bayati and Sulaiman, 2008). The antimicrobial effects of bark and pulp and entire S. persica extracts at 1, 5, 10 and 50% concentrations were Tested against five different micro-organisms. Result. revealed that 10 and 50% concentrations extracts were effective against Streptococcus faecalis. At 5% concentration only bark and whole miswak extracts were effective against S. faeculis. The study revealed tha miswak is more effective compared with bark or pulp separately (Almas and Al-Bagieh, 1999). Antifungal effect of Salvadora persica: Candida albicans is an important pathogen of humans, the ability to survive in mucosal surface oral cavity and vaginal Inucosa causes disease when given the opportunity (Calderone and Fonzi, 2001). Noumi et al. (2010) reported antifungal activities of Salvadora persico extracts on different. Candida species. Dried leaf extract of Salvadora persica was found effective against Aspergillus niger, A. flavu and A. xylinium (Paliwal et al., 2007; Noumi et al., 2010). Saadabi (2006) also reported antifungal action of Salvadora persica against Aspergillus fumigatus and Candida albicans (Saadabi, 2006). Effects of extract of miswak on proliferation of Balb/C 3T3 fibroblasts and viability of cariogenic bacteria: Aqueous extracts of miswak was prepared and its effects. investigated on growth of Balb/C 3T3 mouse fibroblasts by measuring the mitochondrial succinic dehydrogenase activity. Furthermore, the effects on the viability of various cariogenic bacteria (Streptococcus mutans, Streptococcus salivarius, Lactobacillus casei and Actinomyces viscosus) was also determined. The data revealed that Balb/C 3T3 fibroblasts exposed to aqueous extracts of miswak showed an increase in cell proliferation extracts from miswak had adverse effects on the growth of the cariogenic microorganisms. (Darmani et al., 2006). Phytochemical studies: Salvadora persica contains of fluoride, calcium, phosphorus and silica. Approximately 39% of the total fluoride in the sticks was in a form that could be leached out. The leached calcium and phosphorus averaged 582 μg mL and 34 g mL, respectively, representing 19.6 and 26.4% of their total content in the slicks. There was a substantial amount of silica in the ashes of meswak. It appears that meswak is probably not particularly active against caries through its fluoride content but it does act as a brush for removing dental plaque and polishing the teeth (Hallab, 1997). The structure elucidation by 2D NMR and IIREIMS revealed presence of four benzylamides from a natural source namely butanediamide, N1, N4-bis (phenylmethyl)-2 (S)-hydroxy-butanediamide (T). N-benzyl-2-phenylacetamide (II), N-benzylbenzamide (III) and benzylurea (IV). These compounds found to have inhibitory effect human collagen-induced platelet aggregation and }]. moxlerate antibacterial activity (Khalil, 2006). GC-MS analysis of the volatile compounds in crude Salvadora persica extracts revealed the presence of oleic, linolic and stearic acids in this plant. This study has led to the identification of a variety of low molecular weight compounds most of which are simple secondary metabolites (Abd Elrahman et al., 2003). The oil obtained by hydrodistillation stem of Salvadora persica, when analyzed by GC-MS, a mixture of monoterpene hydrocarbons (11%), oxygenated monoterpenes (54%) and sesquiterpene hydrocarbons (21%) were identified. The major components identified were 1,8-cineole (eucalyplol) (46%), a-caryophellene (13.1%), B-pinene (6.3%) and 9-epi-(E)-caryophellene (Alali et al., 2004). GC-MS analysis of the volatile oil extracted from Salvadora persica leaves, reported the presence of benzyl nitrile, eugenol, thymol, isothymol, eucalyptol, isoterpinolene and B-caryophyllene. Among the compounds identified are esters of fatty acids and of aromatic acids and some terpenoids (Alali and Al-Lafi 2003). Flavanoids isolated from Salvadora persica includes Kaempferol 3-α-L-rhamnosyl-7-B-xylopyranoside. Quercetin and Kaempferol (Kamil et al., 2000). and 5. Five glycosides were isolated from stems of Salvadora persica. Two are new and identified as sodium 1-0-benzyl-SS-d-glucopyranoside-2-sulphate (salvadoside) S-dimethoxylariciresinol 4, 4'bis-O-SS-glucopyranoside (salvadoraside). in1 addition to syringin, liriodendrin and sitosterol 3-O-glucopyranoside (Kamel et al., 1992). A new indole alkaloid salvadoricine (I) has been isolated from Salvadora persica. Its structure Was 442

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[Summary: This page discusses toothbrushes and Salvadora persica. It mentions that Salvadora persica is effective against dental caries, bacterial and fungal growth. It is comparable with Chlorhexidine gluconate. It contains glycosides, sterols, terpenes, flavonoids, alkaloids and eugenol. It contains fluoride, calcium and phosphorus.]

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Int. J. Pharmacol., 7 (4): 440-445, 2011 elucidated by spectral analysis and confirmed by synthesis. This constitutes the first report of naturally occuring 3-acetylindole alkaloid (Malik et al., 1987). Fatty acid tocopherol, sterol and total phenolic compounds of Salvadora percica seeds as well as the potential antioxidant activity of the leaves, GammaLocopherol. Bela-sitosterol, campesterol, stigmasterol and A5-avenasterol were predominant (Mariod et al., 2009). DISCUSSION Toothbrushes are one of the essential items for people. They keep our teeth clean and free from disease causing bacteria which are produced by decaying food remains lef in between our teeth. In rural areas the use of factory made tooth brushes are less preferred. Rural people mainly the young use twigs of plants such Salvadora persica as toothbrushes. The use of these twigs (chewing sticks) have benefits of both toothbrush and toothpaste, keep the teeth healthy and make the teeth whiter so they look good. that The pharmacological studies revealed Salvadora persica is effective against dental caries. bacterial and fungal growth. Anti-plaque activity of Salvadora persica is comparable with Chlorhexidine gluconate and it is also found to reduce gingival bleeding. Phytochemical screening revealed the occurrence of glycosides, sterols, terpenes, flavonoids and alkaloids. Plant also contains eugenol, Eugenol-containing dental materials are frequently used in clinical dentistry. Zinc Oxide-Eugenol (70E) is applied to a dentinal cavity as temporary filling and as a cement for provisional restorations. Eugenol-soaked pellets are occasionally placed on vital exposed pulps as a sedative dressing. eugenol exert antibacterial, anti-inflammatory and local anesthetic effects on the dental pulp (Markowitz et al., 1992). The presence of fluoride, calcium and phosphorus has multifunctional advantage, these minerals are required for normal growth of teeth as well as they works as protective factors against dental caries and reverse the damage. Fluoride works primarily via topical mechanisms which include (1) inhibition of demineralization at the crystal surfaces inside the tooth (2) enhancement of remineralization at the crystal surfaces (the resulting remineralized layer is very resistant to acid attack) and (3) inhibition of bacterial enzymes. The effect of systemically ingested fluoride on caries is minimal (Featherstone, 1999). Fluoride supplements can be best used as a topical delivery system by sucking or chewing and that is quiet. possible with tooth sticks. In addition, Salvadora persica reduce adhesion of bacterial cells to buccal epithelial cells and reduce the possibility periodontitis and dental caries. In our country factory made plastic toothbrushes and abrasive based toothpaste are used by the majority of people in urban areas. The different types of toothpastes are there for different need such as sensitivity, shining or anti-plaque and antibacterial etc. For children's fluoride fortified tooth paste is also available. Using plastic brushes and tooth paste have no disadvantage but. neither have advantage. Salvadora persica is advocated since these are biodegradable, environment friendly and cheap in costing and offers benefits of both toothbrush and toothpaste. CONCLUSIONS Regular removal of dental plaque and food deposits is an essential factor in the prevention of dental caries and periodontal disease. Despite the widespread use of toothbrushes and toothpastes, natural methods of tooth cleaning using chewing sticks of Salvadora persica have been practised for thousands of years in Asia, Africa, the Middle East and the Americas. Selected clinical studies have shown that Salvadora persica chewing sticks when properly used, can be as efficient as toothbrushes in removing dental plaque due to the combined effect of mechanical cleaning and enhanced salivation. It has also been reported for antimicrobial, antifungal, anti-plaque and anti-caries properties, it also helpful in gingivitis and other periodontal infections. Hence, Salvadora persica should be considered as a tool for complete oral care. REFERENCES Abd Elrahman, H.F., N. Skang, A.M. Whyall and G.W. Francis, 2003. Volatile compounds in crude Salvadora persicu extracts. Pharm. Biol., 41: 399-404. Al-Bayati, F.A. and K.D. Sulaiman, 2008. In vitro antimicrobial activity of Salvadora persica L. extracts against some isolated oral pathogens in Iraq. Turkish J. Biolo., 32: 57-62. Al-Otaibi, M., 2004. The miswak (chewing stick) and oral health. Studies on oral hygiene practices of urban Saudi Arabians. Swedish Dental J. Suppl., pp: 2-75. Alali, F. and T. Al-Lafi, 2003. GC-MS analysis and bioactivity testing of the volatile oil from the leaves of the toothbrush tree Salvadora persica L. Nat. Prod. Res., 17: 189-191. Alali, F., M. Hudaib, T. Aburjai, K. Khairallah and N. Al-Hadidi, 2001. GC-MS analysis and antimicrobial activity of the essential oil from the stem of the Jordanian toothbrush tree Salvadora persica. Pharm. Biol., 42: 577-580. 443

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[Summary: This page concludes that Salvadora persica chewing sticks are as efficient as toothbrushes for removing dental plaque and offer antimicrobial, antifungal, anti-plaque, and anti-caries properties. It is helpful in gingivitis and other periodontal infections. It should be considered as a tool for complete oral care.]

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Int. J. Pharmacol., 7 (4): 440-445, 2011 Almas, K. and N.H. Al-Bagieh, 1999. The antimicrobial effects of bark and pulp extracts of miswak. Salvadora persica. Biomed. Lell., 60: 71-75. Almas, K., 2001. The effects of extracts of chewing sticks (Salvadora persica) on healthy and periodontally involved human dentine: A SEM study. Indian J. Deril. Res., 12: 127-132. Almas, K., 2002. The effect of Salvadora persica extract (miswak) and chlorhexidine gluconate on human dentin: A SEM study. J. Contemp. Dental Pract.. 3: 27-35 Almas, K. and Z. Al-Zeid, 2001. The immediate antimicrobial effect of a toothbrush and miswak on cariogenic bacteria: A clinical study. J. Contemp Dent Pracl, 5: 105-114. Alyemeni, MN, H. Sher and L. Wijaya, 2010. Some observations on Saudi medicinal plants of veterinary importance. J. Med. Plant Res., 4: 2298-2304. Amoian, B., A.A. Moghadama, S. Barzi. S. Sheykholeslami and A. Rangiani, 2010a. Salvadora persica extract chewing gum and gingival health: Improvement of gingival and probe-bleeding index. Complementary Therapies Clin. Pract. 16: 121-123. Amoian B.. A.A. Moghadamnia, S. Barzi. S. Sheykholeslami and A. Rangiami, 2010b. Salvadora persica extract chewing gun and gingival health: Improvement of gingival and probe-bleeding index. Complement. Ther. Clin Pract., 16: 121-123. Benamghar, L., J. Penaud, P. Kaminsky, F. Abt and J. Martin, 1982. Comparison of gingival index and sulcus bleeding index as indicators of periodontal status. Bull. World Health Organ, 60: 147-151. Calderone, R. and W. Fonzi, 2001. Virulence factors of Candida albicans. Trends Microbiol., S: 327-335. Cole, T.C., E. Muller and H. Becker, 1981. Chowing stickspopular for tooth care and tooth brushing. Pharm. Unserer. Zeit., 10: 150-155, (In German). Darmam, II., T. Nusayr and A. S. Al-Iliyasat, 2006. Effects of extracts of miswak and derum on proliferation of Balb C 3T3 fibroblasts and viability of cariogenic bacteria. Int. J. Dent Hyg, 1: 62-66. Darout, I.A., N. Skaug and J.M. Albandar, 2003. Subgingival microbiotic levels and their associations with periodontal status at the sampled sites in an adult Sudanese population using miswak toothbrush regularly. Acta Odontologica Scandinavica, 61: 115-122. or Ezocklin-Ardakari, F., 2010. Efficacy of Miswak (Salvadora persica) in preventing dental caries. IIealth, 2: 199-503. Featherstone, J.D.B., 1999. Prevention and reversal of dental caries: Role of low level fluoride. Commun. Dentistry Oral Epidemiol., 27: 31-40. Fischman, S.L. and S.L. Yankell, 1999. Dentifrices, Mouth Rinses and Tooth Whiteners. In: Primary Preventive Dentistry, Harris, N.Q. and F. Garcia-Godoy (Eds.). 5th Ed. Appleton and Lange, USA., ISBN- 13: 9780838581 292, pp: 103-124. Goyal, M., B.P. Nagori and D. Sasmal, 2009. 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Clinical effects of 2% chlorhexidine gel on patients undergoing orthodontic treatment.. Orthodontic Waves, 67: 162-166. Kamel, M.S., K. Ohtami, M.H. Assaf, R. Kasai and M.A. El-Shanawam et al., 1992. Lignan glycosides from stems of Salvadora persica. Phytochemistry, 31: 2169-2171. Kamil, M., F. Ahmad, A.F. Jayaraj, C. Gunasekhar, S. Thomas, M. Habibullah and K. Chan, 2000. Isolation and identification of a flavonol glycoside using high speed counter current chromatographic technique from the leaves of Salvadora persica. Pakistan J. Sci. Ind. Res., 43: 255-257. Kayode, J. and M.A. Omotoyinbo, 2009. Ethnobotanical utilization and conservation of chewing sticks plants species in Ekiti State, Nigeria. Res. J. Bol., 4: 1-9. Khalil, A.T., 2006. Benzylamides from Salvadora persica. Arch Phan. Res.. 29: 952-956. Kirtikar, K.R., B.D. Basu and E. Blaller, 1975. Indian Medicinal Plans. Periodical Experts, Delhi. pp: 1537-1539. Konig, J. V. Storcks, T. Kocher, K. Bossmann and H.C. Plagmann, 2002. Anti-plaque effect of tempered 0.2% chlorhexidine rinse: An in vivo study. J. Clin. Periodontol., 29: 207-210. Malik, S., S.S. Ahmad, S.I. Haider and A. Muzaffar, 1987. Salvadoricine: A new indole alkaloid from the leaves of Salvadora persica. Tetrahedron Lett., 28: 163-164. 444

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[Summary: This page provides references for the study, citing various research articles and publications related to Salvadora persica, its chemical composition, antimicrobial properties, and ethnobotanical uses. The references span from 1987 to 2011, indicating a range of research over the years.]

[Find the meaning and references behind the names: Liu, Oliver, Yemeni, Geetha, Plan, Khan, Rehman, Dis, Sharma, Daru, Western, Seed, Arabian, Soc, North, Chem, Slow, Siddiqui, Shah, Moynihan, Part, Gustafsson, Linn, Zafar, Snoussi, Pocket, Chauhan, Sultana, Kim, Chemical, Wende, Claesson, Wolff, Woody, Mario, Hussein, Strong, Valentin, Mothana, Regia, Osborn, Pak]

Int. J. Pharmacol., 7 (4): 440-445, 2011 Manavalan, R., D. Venkappaya and K. Geetha, 2010. Pharmacognostical standardisation of aerial parts of Salvadora persica. Pharmacogn. J., 2: 13-21. Mario A.A., B. Malhaus and T.H. Hussein, 2009. Chemical characterization of the seed and antioxidant activity of various parts of Salvadora persica. J. Am. Oil Chem. Soc., 86: 857-865. Markowitz, K., M. Moynihan, M. Liu and S. Kim, 1992. Biologic properties of eugenol and zinc oxideeugenol: A clinically oriented review. Oral Surg. Oral Med. Oral Pathol., 73: 729-737. Marwal, S.K., M.A. Khan, M.A. Khan, M. Ahmad M. Zafar, FL. Rehman and S. Sultana. 2009. Salvadora persica. Tamarix aphylla and Zizyphus mauritiana-three woody plan species mentioned in Iloly Quran and Iladith and their ethnobotanical uses in North Western part (D.I.Khan) of Pakistan. Pak. J. Nutr., 8: 542-517. Mothana, R.A., S. Kriegisch, M. IIarms, K. Wende and U. Lindequist, 2011. Assessment of selected Yemeni medicinal plants for their in vitro antimicrobial. anticancer and antioxidant activities. Pharm. Biol., 49: 200-210. Noumi, E., M. Snoussi, II. IIajlaoui, E. Valentin and A. Bakhrouf, 2010. Antifungal properties of Salvadora persica and Juglans regia L. extracts against oral Candida strains. Eur. J. Clin. Microbiol. Trifectious Dis., 29: 81-88. Okuda, K., L. Wolff, R. Oliver, J Osborn and J. Stoltenberg et al., 1992. Minocycline slow-release Commulation effect QTI subgingival J. Periodontol., 63: 73-79. bacteria. Paliwal, S., R. Chauhan, A.A. Siddiqui, S. Paliwal and J. Sharma, 2007. Evaluation of antifungal activity of Salvadora persica Linn, leaves. Nat. Product Radiance. 6: 372-374. Rams, T.E. and J. Slots, 1996. Local delivery of antimicrobial agents in the periodontal pocket. J. Clin. Periodontol., 10: 139-159. Saadabi, A.M.A., 2006. Antifungal activity of some saudi plants used in traditional medicine. Asian J. Plant Sci., 5: 907-909. Salehi, P. and S.M. Danaie, 2006. Comparison of the antibacterial effects of persica mouthwash with chlorhexidine on Streptococcus mutans in orthodontic patients. Daru, 14: 178-182. Sher, H., M.N. Al-Yemeni, Y.S. Masrahi and Shah, 2010. Ethnomedicinal and ethnoecological evaluation of Salvadora persica L.: A threatened medicinal plant in Arabian Peninsula. J. Med. Plant Res., 1: 1209-1215. Sofrata, A.II., R.L.K. Claesson, P.K. Lingstrom and A.K. Gustafsson, 2008. Strong antibacterial effect of miswak against oral microorganisms associated with periodontitis and caries. J. Periodontol.. 79: 1474-1479. Wu, C.D., I.A. Darout and N. Skaug, 2001. Chewing sticks: Timeless natural toothbrushes for oral cleansing. J. Periodontal Res., 36: 275-28-1. 445

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