Science & Ingrédients

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Bo, L., Yaling, Z., & Huinan, Y. (1995). Influence of Angelica sinensis and A. acutiloba on Isolated smooth Muscle of Rat Uteri [J]. Pharmacology and Clinics of Chinese Materia Medica, 6

Dai, N., Fang, L., Li, Y. B., Wang, Y. M., Yin, J., & Pu, B. C. (2014). Effect of Jingqian Zhitong Fang on serum sex hormone levels in women with primary dysmenorrhea. Evidence-Based Complementary and Alternative Medicine, 2014

Du, J., Yu, Y., Ke, Y., Wang, C., Zhu, L., & Qian, Z. M. (2007). Ligustilide attenuates pain behavior induced by acetic acid or formalin. Journal of ethnopharmacology, 112(1), 211-214

Fang, L., Lai, X. Y., & Zhang, Y. J. (2011). The clinical observation of JQF for the treatment of primary dysmenorrheal. Chinese Archives of Traditional Chinese Medicine, 29(11), 2480-2481

Hou, Y. Z., Zhao, G. R., Yuan, Y. J., Zhu, G. G., & Hiltunen, R. (2005). Inhibition of rat vascular smooth muscle cell proliferation by extract of Ligusticum chuanxiong and Angelica sinensis. Journal of Ethnopharmacology, 100(1-2), 140-144

Hui, Z. I., & Zhu-hui, Z. Z. Q. (2009). Research on the Decreasing Function of Evodia Rutaecarpa Angelica Sinensis Ethanol Extract on Contractile Activity of Uterine Smooth Muscle Strips of Virginal Rats [J]. Chinese archives of traditional chinese medicine, 4

Li, J., Hua, Y., Ji, P., Yao, W., Zhao, H., Zhong, L., & Wei, Y. (2016). Effects of volatile oils of Angelica sinensis on an acute inflammation rat model. Pharmaceutical biology, 54(9), 1881-1890

Pu, B. C., Fang, L., Gao, L. N., Liu, R., & Li, A. Z. (2015). Animal study on primary dysmenorrhoea treatment at different administration times. Evidence-Based Complementary and Alternative Medicine,2015

Sheng, Y., Guofang, Q., Zhifeng, L., Ke, L., & Jialing, W. (2000). Effect of the oil of angelica sinensis on the contractile function of isolated uterine smooth muscle of mice.Zhong cao yao= Chinese Traditional and Herbal Drugs, 31(8), 604-606

Shi, M., Chang, L., & He, G. (1995). Stimulating action of Carthamus tinctorius L., Angelica sinensis (Oliv.) Diels and Leonurus sibiricus L. on the uterus. Zhongguo Zhong yao za zhi= Zhongguo zhongyao zazhi= China journal of Chinese materia medica, 20(3), 173

Yu, Y., Lin, B. Q., Yu, L., Hua, Y. Q., Duan, J. A., & Li, S. P. (2009). Inhibitory Effects of Two Ferulates from on Platelet Aggregation and Oxytocin-induced Uterine Contraction. The Open Bioactive Compounds Journal, 2(1)

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Adrian L Lopresti, Michael Maes, Garth L Maker, Sean D Hood, Peter D Drummond. Curcumin for the treatment of major depression: a randomised, double-blind, placebo controlled study. Journal of Affective Disorders, 2014

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Linlin Ma, Shouqing Lin, Rong Chen, Ying Zhang, Fengling Chen, Xiuli Wang. Evaluating therapeutic effect in symptoms of moderate-to-severe premenstrual syndrome with Vitex agnus castus (BNO 1095) in Chinese women. Aust N Z J Obstet Gynaecol, 2010

Alsmadi, A. M., Tawalbeh, L. I., Gammoh, O. S., Shawagfeh, M. Q., Zalloum, W., Ashour, A., & Attarian, H. (2018). The effect of Ginkgo biloba and psycho-education on stress, anxiety and fatigue among refugees. Proceedings of Singapore Healthcare, 27(1), 26-32.

Johnson, S. K., Diamond, B. J., Rausch, S., Kaufman, M., Shiflett, S. C., & Graves, L. (2006). The effect of Ginkgo biloba on functional measures in multiple sclerosis: a pilot randomized controlled trial. Explore, 2(1), 19-24.

Kan, J., Hu, C., Chen, L., Liu, S., Venzon, D., Murray, M., ... & Du, J. (2020). A botanical product containing cistanche and ginkgo extracts improves chronic fatigue syndrome: a randomized, double-blind, placebo-controlled study.

Kehr, J., Yoshitake, S., Ijiri, S., Koch, E., Nöldner, M., & Yoshitake, T. (2012). Ginkgo biloba leaf extract (EGb 761®) and its specific acylated flavonol constituents increase dopamine and acetylcholine levels in the rat medial prefrontal cortex: possible implications for the cognitive enhancing properties of EGb 761®. International psychogeriatrics, 24(S1), S25.

Mashayekh, A., Pham, D. L., Yousem, D. M., Dizon, M., Barker, P. B., & Lin, D. D. (2011). Effects of Ginkgo biloba on cerebral blood flow assessed by quantitative MR perfusion imaging: a pilot study. Neuroradiology, 53(3), 185-191.

Ozgoli, G., Selselei, E. A., Mojab, F., & Majd, H. A. (2009). A randomized, placebo-controlled trial of Ginkgo biloba L. in treatment of premenstrual syndrome. The Journal of Alternative and Complementary Medicine, 15(8), 845-851.

Reay, J. L., van Schaik, P., & Wilson, C. J. (2019). A systematic review of research investigating the physiological and psychological effects of combining Ginkgo biloba and Panax ginseng into a single treatment in humans: Implications for research design and analysis. Brain and behavior, 9(3), e01217.

Ribeiro, M. L., Moreira, L. M., Arçari, D. P., dos Santos, L. F., Marques, A. C., Pedrazzoli Jr, J., & Cerutti, S. M. (2016). Protective effects of chronic treatment with a standardized extract of Ginkgo biloba L. in the prefrontal cortex and dorsal hippocampus of middle-aged rats. Behavioural Brain Research, 313, 144-150.

Shi, C., Xiao, S., Liu, J., Guo, K., Wu, F., Yew, D. T., & Xu, J. (2010). Ginkgo biloba extract EGb761 protects against aging-associated mitochondrial dysfunction in platelets and hippocampi of SAMP8 mice. Platelets, 21(5), 373-379.

Wesnes, K. W., Faleni, R. A., Hefting, N. R., & Hoogsteen, G. (1997). The cognitive, subjective, and physical effects of a Ginkgo biloba/Panax ginseng combination in healthy volunteers with neurasthenic complaints. Psychopharmacology Bulletin, 33(4), 677.

Wesnes, K. A., Ward, T., McGinty, A., & Petrini, O. (2000). The memory enhancing effects of a Ginkgo biloba/Panax ginseng combination in healthy middle-aged volunteers. Psychopharmacology, 152(4), 353-361.

Zhang, Z. J., Tong, Y., Zou, J., Chen, P. J., & Yu, D. H. (2009). Dietary supplement with a combination of Rhodiola crenulata and Ginkgo biloba enhances the endurance performance in healthy volunteers. Chinese journal of integrative medicine, 15(3), 177-183.

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Christina M Dording, Lauren Fisher, George Papakostas, Amy Farabaugh, Shamsah Sonawalla, Maurizio Fava, David Mischoulon. A double-blind, randomized, pilot dose-finding study of maca root (L. meyenii) for the management of SSRI-induced sexual dysfunction. CNS Neurosci Ther, 2008

Byung-Cheul Shi, Myeong Soo Lee, Eun Jin Yang, Hyun-Suk Lim, Edzard Ernst. Maca (L. meyenii) for improving sexual function: a systematic review. BMC Complement Altern Med, 2010

De Souza, M. C., Walker, A. F., Robinson, P. A., & Bolland, K. (2000). A synergistic effect of a daily supplement for 1 month of 200 mg magnesium plus 50 mg vitamin B6 for the relief of anxiety-related premenstrual symptoms: a randomized, double-blind, crossover study. Journal of women's health & gender-based medicine,9(2), 131-139

Ebrahimi, E., Motlagh, S. K., Nemati, S., & Tavakoli, Z. (2012). Effects of magnesium and vitamin b6 on the severity of premenstrual syndrome symptoms. Journal of caring sciences,1(4), 183

Facchinetti, F., Borella, P., Sances, G., Fioroni, L., Nappi, R. E., & Genazzani, A. R. (1991). Oral magnesium successfully relieves premenstrual mood changes. Obstetrics and Gynecology,78(2), 177-181

Facchinetti, F., Sances, G., Borella, P., Genazzani, A. R., & Nappi, G. (1991). Magnesium prophylaxis of menstrual migraine: effects on intracellular magnesium. Headache: The Journal of Head and Face Pain,31(5), 298-301

Fathizadeh, N., Ebrahimi, E., Valiani, M., Tavakoli, N., & Yar, M. H. (2010). Evaluating the effect of magnesium and magnesium plus vitamin B6 supplement on the severity of premenstrual syndrome. Iranian Journal of Nursing and Midwifery Research,15(Suppl1), 401

Ghalwa, N. A., Qedra, R., & Wahedy, K. (2014). Impact of calcium and magnesium dietary changes on women pain and discomfort from premenstrual syndrome at the Faculty of Pharmacy-Gaza strip. World J Pharm Pharm Sci,3, 981-1005

Kia, A. S., Amani, R., & Cheraghian, B. (2015). The association between the risk of premenstrual syndrome and vitamin D, calcium, and magnesium status among university students: a case control study. Health promotion perspectives,5(3), 225

London, R. S., Bradley, L., & Chiamori, N. Y. (1991). Effect of a nutritional supplement on premenstrual symptomatology in women with premenstrual syndrome: a double-blind longitudinal study. Journal of the American College of Nutrition,10(5), 494-499

Mauskop, A., Altura, B. T., & Altura, B. M. (2002). Serum ionized magnesium levels and serum ionized calcium/ionized magnesium ratios in women with menstrual migraine. Headache: The Journal of Head and Face Pain,42(4), 242-248

Posaci, C., Erten, O., Üren, A., & Acar, B. (1994). Plasma copper, zinc and magnesium levels in patients with premenstrual tension syndrome. Acta obstetricia et gynecologica Scandinavica,73(6), 452-455

Quaranta, S., Buscaglia, M. A., Meroni, M. G., Colombo, E., & Cella, S. (2007). Pilot study of the efficacy and safety of a modified-release magnesium 250mg tablet (Sincromag®) for the treatment of premenstrual syndrome. Clinical drug investigation,27(1), 51-58

Rosenstein, D. L., Elin, R. J., Hosseini, J. M., Grover, G., & Rubinow, D. R. (1994). Magnesium measures across the menstrual cycle in premenstrual syndrome. Biological psychiatry,35(8), 557-561

Sharma, G., & Tandon, P. (2015). Luteal phase serum calcium and serum magnesium levels in causation of premenstrual syndrome. Int J Basic Appl Physiol,4(1), 126

Sherwood, R. A., Rocks, B. F., Stewart, A., & Saxton, R. S. (1986). Magnesium and the premenstrual syndrome. Annals of clinical biochemistry,23(6), 667-670

Stewart, A. (1987). Clinical and biochemical effects of nutritional supplementation on the premenstrual syndrome. The Journal of reproductive medicine,32(6), 435-441

Walker, A. F., De Souza, M. C., Vickers, M. F., Abeyasekera, S., Collins, M. L., & Trinca, L. A. (1998). Magnesium supplementation alleviates premenstrual symptoms of fluid retention. Journal of Women's health,7(9), 1157-1165

Barker, S., Grayhem, P., Koon, J., Perkins, J., Whalen, A., & Raudenbush, B. (2003). Improved performance on clerical tasks associated with administration of peppermint odor. Perceptual and motor skills, 97(3), 1007-1010.

Ho, C., & Spence, C. (2005). Olfactory facilitation of dual-task performance. Neuroscience letters, 389(1), 35-40.

Ilmberger, J., Heuberger, E., Mahrhofer, C., Dessovic, H., Kowarik, D., & Buchbauer, G. (2001). The influence of essential oils on human attention. I: Alertness. Chemical Senses, 26(3), 239-245.

Meamarbashi, A., & Rajabi, A. (2013). The effects of peppermint on exercise performance. Journal of the International Society of Sports Nutrition, 10(1), 15.

Moss, M., Hewitt, S., Moss, L., & Wesnes, K. (2008). Modulation of cognitive performance and mood by aromas of peppermint and ylang-ylang. International Journal of Neuroscience, 118(1), 59-77.

Norrish, M. I. K., & Dwyer, K. L. (2005). Preliminary investigation of the effect of peppermint oil on an objective measure of daytime sleepiness. International journal of psychophysiology, 55(3), 291-298.

Raudenbush, B., Corley, N., & Eppich, W. (2001). Enhancing athletic performance through the administration of peppermint odor. Journal of Sport and Exercise Psychology, 23(2), 156-160.

Raudenbush, B., Grayhem, R., Sears, T., & Wilson, I. (2009). Effects of peppermint and cinnamon odor administration on simulated driving alertness, mood and workload. North American Journal of Psychology, 11(2).

Warm, J. S., Dember, W. N., & Parasuraman, R. (1991). Effects of olfactory stimulation on performance and stress. J. Soc. Cosmet. Chem, 42(3), 199-210.

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Bangratz, M., Abdellah, S. A., Berlin, A., Blondeau, C., Guilbot, A., Dubourdeaux, M., & Lemoine, P. (2018). A preliminary assessment of a combination of rhodiola and saffron in the management of mild–moderate depression. Neuropsychiatric disease and treatment,14, 1821

Bystritsky, A., Kerwin, L., & Feusner, J. D. (2008). A pilot study of Rhodiola rosea (Rhodax®) for generalized anxiety disorder (GAD). The Journal of Alternative and Complementary Medicine,14(2), 175-180

Chatterjee, A., Sen, B., Das, S., & Chatterjee, T. K. (2015). Anti-inflammatory and analgesic activity of methanolic xtract of medicinal plant Rhodiola rosea rhizomes. International Journal of Pharmacolology Resesearch and Review,4(2), 1-8

Chen, Q. G., Zeng, Y. S., Qu, Z. Q., Tang, J. Y., Qin, Y. J., Chung, P., ... & Hägg, U. (2009). The effects of Rhodiola rosea extract on 5-HT level, cell proliferation and quantity of neurons at cerebral hippocampus of depressive rats. Phytomedicine,16(9), 830-838

Darbinyan, V., Kteyan, A., Panossian, A., Gabrielian, E., Wikman, G., & Wagner, H. (2000). Rhodiola rosea in stress induced fatigue—a double blind cross-over study of a standardized extract SHR-5 with a repeated low-dose regimen on the mental performance of healthy physicians during night duty. Phytomedicine,7(5), 365-371

Darbinyan, V., Aslanyan, G., Amroyan, E., Gabrielyan, E., Malmström, C., & Panossian, A. (2007). Clinical trial of Rhodiola rosea L. extract SHR-5 in the treatment of mild to moderate depression. Nordic journal of psychiatry,61(5), 343-348

Edwards, D., Heufelder, A., & Zimmermann, A. (2012). Therapeutic Effects and Safety of Rhodiola rosea Extract WS® 1375 in Subjects with Life‐stress Symptoms–Results of an Open‐label Study. Phytotherapy Research,26(8), 1220-1225

Goyvaerts, B., & Bruhn, S. (2012). Rhodiola rosea-Spezialextrakt SHR-5 bei Burn-out und Erschöpfungssyndrom. Erfahrungsheilkunde,61(02), 79-83

Kasper, S., & Dienel, A. (2017). Multicenter, open-label, exploratory clinical trial with Rhodiola rosea extract in patients suffering from burnout symptoms. Neuropsychiatric disease and treatment,13, 889

Lee, Y., Jung, J. C., Jang, S., Kim, J., Ali, Z., Khan, I. A., & Oh, S. (2013). Anti-inflammatory and neuroprotective effects of constituents isolated from Rhodiola rosea. Evidence-based complementary and alternative medicine, 2013

Lekomtseva, Y., Zhukova, I., & Tartakovsky, I. (2013). Therapy effects and safety of rhodiola rosea extract ws 1375 in subjects with symptoms of chronic fatigue. Бюллетень сибирской медицины,12(5), 73-75

Lekomtseva, Y., Zhukova, I., & Wacker, A. (2017). Rhodiola rosea in subjects with prolonged or chronic fatigue symptoms: results of an open-label clinical trial. Complementary medicine research,24(1), 46-52

Mao, J. J., Li, Q. S., Soeller, I., Xie, S. X., & Amsterdam, J. D. (2014). Rhodiola rosea therapy for major depressive disorder: A study protocol for a randomized, double-blind, placebo-controlled trial. Journal of clinical trials,4, 170

Mao, J. J., Xie, S. X., Zee, J., Soeller, I., Li, Q. S., Rockwell, K., & Amsterdam, J. D. (2015). Rhodiola rosea versus sertraline for major depressive disorder: A randomized placebo-controlled trial. Phytomedicine,22(3), 394-399

Mattioli, L., Funari, C., & Perfumi, M. (2009). Effects of Rhodiola rosea L. extract on behavioural and physiological alterations induced by chronic mild stress in female rats. Journal of Psychopharmacology,23(2), 130-142

Montiel-Ruiz, R. M., González-Trujano, M. E., & Deciga-Campos, M. (2013). Synergistic interactions between the antinociceptive effect of Rhodiola rosea extract and B vitamins in the mouse formalin test. Phytomedicine,20(14), 1280-1287

Olsson, E. M., von Schéele, B., & Panossian, A. G. (2009). A randomised, double-blind, placebo-controlled, parallel-group study of the standardised extract shr-5 of the roots of Rhodiola rosea in the treatment of subjects with stress-related fatigue. Planta medica,75(02), 105-112

Palmeri, A., Mammana, L., Tropea, M. R., Gulisano, W., & Puzzo, D. (2016). Salidroside, a bioactive compound of rhodiola rosea, ameliorates memory and emotional behavior in adult mice. Journal of Alzheimer's Disease,52(1), 65-75

Perfumi, M., & Mattioli, L. (2007). Adaptogenic and central nervous system effects of single doses of 3% rosavin and 1% salidroside Rhodiola rosea L. extract in mice. Phytotherapy Research: An International Journal Devoted to Pharmacological and Toxicological Evaluation of Natural Product Derivatives,21(1), 37-43

Shevtsov, V. A., Zholus, B. I., Shervarly, V. I., Vol'Skij, V. B., Korovin, Y. P., Khristich, M. P., ... & Wikman, G. (2003). A randomized trial of two different doses of a SHR-5 Rhodiola rosea extract versus placebo and control of capacity for mental work. Phytomedicine,10(2-3), 95-105

Shevtsov, V. A., Zholus, B. I., Shervarly, V. I., Vol'Skij, V. B., Korovin, Y. P., Khristich, M. P., ... & Wikman, G. (2003). A randomized trial of two different doses of a SHR-5 Rhodiola rosea extract versus placebo and control of capacity for mental work. Phytomedicine,10(2-3), 95-105

Spasov, A. A., Wikman, G. K., Mandrikov, V. B., Mironova, I. A., & Neumoin, V. V. (2000). A double-blind, placebo-controlled pilot study of the stimulating and adaptogenic effect of Rhodiola rosea SHR-5 extract on the fatigue of students caused by stress during an examination period with a repeated low-dose regimen. Phytomedicine,7(2), 85-89

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Chemli, R., Toumi, A., Oueslati, S., Zouaghi, H., Boukef, K., & Balansard, G. (1990). Calendula arvensis L. Impact of saponins on toxicity, hemolytic effect, and anti-inflammatory activity. Journal de pharmacie de Belgique, 45(1), 12-16

Della Loggia, R., Tubaro, A., Sosa, S., Becker, H., & Isaac, O. (1994). The role of triterpenoids in the topical anti-inflammatory activity of Calendula officinalis flowers. Planta medica, 60(06), 516-520

Hamburger, M., Adler, S., Baumann, D., Förg, A., & Weinreich, B. (2003). Preparative purification of the major anti-inflammatory triterpenoid esters from Marigold (Calendula officinalis). Fitoterapia, 74(4), 328-338

Shahidi, S., Mahmoodi, M., & Farahmandlou, N. (2012). Antinociceptive properties of hydro-alcoholic extract of calendula officinalis in rat. Basic and Clinical Neuroscience, 3(5), 45-48

Ukiya, M., Akihisa, T., Yasukawa, K., Tokuda, H., Suzuki, T., & Kimura, Y. (2006). Anti-inflammatory, anti-tumor-promoting, and cytotoxic activities of constituents of marigold (Calendula officinalis) flowers. Journal of natural products, 69(12), 1692-1696

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Abraham, G. E., & Hargrove, J. T. (1981). Effect of vitamin B-6 on premenstrual symptomatology in women with premenstrual tension syndromes: a double blind crossover study. Obstetrical & Gynecological Survey, 36(5), 259-261

Adams, P. W., Wynn, V., Rose, D. P., Seed, M., Folkard, J., & Strong, R. (1973). Effect of pyridoxine hydrochloride (vitamin B6) upon depression associated with oral contraception. The Lancet, 301(7809), 897-904

Barr, W. (1984). Pyridoxine supplements in the premenstrual syndrome. The Practitioner, 228(1390), 425

Brush, M. G., Bennett, T., & Hansen, K. (1988). Pyridoxine in the treatment of premenstrual syndrome: a retrospective survey in 630 patients. The British journal of clinical practice, 42(11), 448-452

Brush MG. Vitamin B6 treatment of premenstrual syndrome. In: Leklem JE, Reynolds RD, eds. Clinical and physiological applications of vitamin B6. New York: Liss, 1988: 363-79. (Current topics in nutrition and disease, vol 19)

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Day, J. B. (1979). Clinical trials in the premenstrual syndrome. Current Medical Research and Opinion, 6(sup5), 40-45

De Souza, M. C., Walker, A. F., Robinson, P. A., & Bolland, K. (2000). A synergistic effect of a daily supplement for 1 month of 200 mg magnesium plus 50 mg vitamin B6 for the relief of anxiety-related premenstrual symptoms: a randomized, double-blind, crossover study. Journal of women's health & gender-based medicine, 9(2), 131-139

Diegoli, M. S. C., Da Fonseca, A. M., Diegoli, C. A., & Pinotti, J. A. (1998). A double‐blind trial of four medications to treat severe premenstrual syndrome. International Journal of Gynecology & Obstetrics, 62(1), 63-67

Doll, H., Brown, S., Thurston, A., & Vessey, M. (1989). Pyridoxine (vitamin B6) and the premenstrual syndrome: a randomized crossover trial. The Journal of the Royal College of General Practitioners, 39(326), 364-368

Ebrahimi, E., Motlagh, S. K., Nemati, S., & Tavakoli, Z. (2012). Effects of magnesium and vitamin b6 on the severity of premenstrual syndrome symptoms. Journal of caring sciences, 1(4), 183

Fathizadeh, N., Ebrahimi, E., Valiani, M., Tavakoli, N., & Yar, M. H. (2010). Evaluating the effect of magnesium and magnesium plus vitamin B6 supplement on the severity of premenstrual syndrome. Iranian Journal of Nursing and Midwifery Research,15(Suppl1), 401

Jia-li, C. (2011, December). Clinical observation about 40 cases of primary dysmenorrheal with the treatment of Marvelon & Vitamin B6. In 2011 IEEE International Symposium on IT in Medicine and Education (Vol. 1, pp. 517-519). IEEE

Kashanian, M., Mazinani, R., Jalalmanesh, S., & Babayanzad Ahari, S. (2007). Pyridoxine (vitamin B6) therapy for premenstrual syndrome. International Journal of Gynecology & Obstetrics, 96(1), 43-44

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Kerr, G. D. (1977). The management of the premenstrual syndrome. Current Medical Research and Opinion, 4(sup4), 29-34

Kiani, F., Sayehmiri, K., Sayehmiri, F., Naghdi, N., Ghafari, M., Asadi-Samani, M., & Bahmani, M. (2016). Effects of vitamin B6 on premenstrual syndrome: A systematic review and meta-Analysis. Journal of Chemical and Pharmaceutical Sciences, 9(3), 1346-1353

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Montiel-Ruiz, R. M., González-Trujano, M. E., & Deciga-Campos, M. (2013). Synergistic interactions between the antinociceptive effect of Rhodiola rosea extract and B vitamins in the mouse formalin test. Phytomedicine, 20(14), 1280-1287

Salehi, L., & Salehi, F. (2007). Comparative study of vitamin B6 versus placebo in premenstrual syndrome

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Chuong, C. J., & Dawson, E. B. (1994). Zinc and copper levels in premenstrual syndrome. Fertility and sterility, 62(2), 313-320

Eby, G. A. (2007). Zinc treatment prevents dysmenorrhea. Medical Hypotheses, 69(2), 297-301

Fathizadeh, S., Amani, R., Haghighizadeh, M. H., & Hormozi, R. (2016). Comparison of serum zinc concentrations and body antioxidant status between young women with premenstrual syndrome and normal controls: A case-control study. International Journal of Reproductive BioMedicine, 14(11), 699

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