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5 of 6
[3]  Jedidi S, Rtibi K, Selmi S, Aloui F, Selmi H, Wannes D, Sammari 
H, Dhawe N, Chaâbane A, Sebai H. Phytochemical/Antioxidant 
Properties and Individual/Synergistic Actions of Salvia ocinalis 
L. Aqueous Extract and Loperamide on Gastrointestinal Altering 
Motor Function. J. Med. Food. [Internet]. 2019; 22(12):1235–1245. 
doi: https://doi.org/m6
[4]  Mamache W, Amira S, Ben Souici C, Laouer H, Benchikh F. In vitro 
antioxidant, anticholinesterases, anti‐α‐amylase, and anti‐α‐
glucosidase effects of Algerian Salvia aegyptiaca and Salvia 
verbenaca. J. Food Biochem. [Internet]. 2020; 44(11):e13472. 
doi: https://doi.org/mbkp
[5]  Dolatabadi F, Abdolghaffari AH, Farzaei MH, Baeeri M, Ziarani FS, 
Eslami M, Abdollahi M, Rahimi R. The protective effect of Melissa 
ocinalis L. in visceral hypersensitivity in rat using 2 models of 
acid–induced colitis and stress–induced irritable bowel syndrome: 
a possible role of nitric oxide pathway. J. Neurogastroenterol. 
Motil. [Internet]. 2018; 24(3):490–501. doi: https://doi.org/gdp4jx
[6]  Papathanasopoulos A, Rotondo A, Janssen P, Boesmans W, 
Farré R, Vanden Berghe P, Tack J. Effect of acute peppermint 
oil administration on gastric sensorimotor function and nutrient 
tolerance in health. Neurogastroenterol. Motil. [Internet]. 2013; 
25(4):e263–e271. doi: https://doi.org/m6gm
[7]  Napoli E, Ruberto G, Carrubba A, Sarno M, Muscarà C, Speciale A, 
Cristani M, Cimino F, Saa A. Phenolic Proles, Antioxidant and 
Anti–Inammatory Activities of Hydrodistillation Wastewaters 
from Five Lamiaceae Species. Molecules. [Internet]. 2022; 
27(21):7427. doi: https://doi.org/m6gk
[8]  Kaoudone C, Benchikh F, Abdennour C, Benabdallah H, Mamache 
W, Amira S. Free Radical Scavenging and Antinociceptive 
Activities of the Aqueous Extract from Matricaria chamomillaL. 
Flowers. TURJAF. [Internet]. 2022; 10(10):2076–2080. doi: 
https://doi.org/m6gn
[9]  Yacob T, Shibeshi W, Nedi T. Antidiarrheal activity of 80% 
methanol extract of the aerial part of Ajuga remota Benth 
(Lamiaceae) in mice. BMC Complement. Altern. Med. [Internet]. 
2016; 16(303):1–8. doi: https://doi.org/gkq5vn
[10]  Mehmood MH, Munir S, Khalid UA, Asrar M, Gilani AH. Antidiarrhoeal, 
antisecretory and antispasmodic activities of Matricaria 
chamomilla are mediated predominantly through K+–channels 
activation. BMC Complement. Altern. Med. [Internet]. 2015; 
15(75):1–9. doi: https://doi.org/f69j2p
[11]  Amira S, Soufane S, Gharzouli K. Effect of sodium uoride on 
gastric emptying and intestinal transit in mice. Exp. Toxicol. 
Pathol. [Internet]. 2005; 57(1):59–64. doi: https://doi.org/b9zqdn
[12]  Demireezer LÖ, Gürbüz P, Uğur EPK, Bodur M, Özenver N, 
Uz A, Güvenalp Z. Molecular docking and ex vivo and in vitro 
anticholinesterase activity studies of Salvia sp. and highlighted 
rosmarinic acid. Turkish J. Med. Sci. [Internet]. 2015; 45(5):1141–1148. 
doi: https://doi.org/m6gp
[13]  de Souza ILI, Oliveira GA, Travassos RA, Vasconcelos LHC, Correia 
AC, Martins IRR, dos Santos Júnior MSM, Costa VC, Tavares JF, da 
Silva MS, da Silva BA. Spasmolytic activity of Hyptis macrostachys 
Benth.(Lamiaceae). J. Med. Plants Res. [Internet]. 2013 [cited 20 
Dec 2023]; 7(33):2436–2443. Available in: https://goo.su/p6lFa
[14]  Makrane H, Aziz M, Mekh H, Ziyyat A, Bnouham M, Legssyer 
A, Gressier B, Eto B. Antispasmodic and Myorelaxant Activity 
of Organic Fractions from Origanum majorana L. on Intestinal 
Smooth Muscle of Rodents. Euro. J. Med. Plants. [Internet]. 
2018; 23(2):1–11. doi: https://doi.org/m6gr
[15]  Capasso R, Borrelli F, Zjawiony J, Kutrzeba L, Aviello G, Sarnelli G, 
Capasso F, Izzo AA. The hallucinogenic herb Salvia divinorum and 
its active ingredient salvinorin A reduce inammation–induced 
hypermotility in mice. Neurogastroenterol. Motil. [Internet]. 
2008; 20(2):142–148. doi: https://doi.org/bnqgt5
[16]  Tack J. Gastric motor disorders. Best Pract. Res. Clin. Gastroenterol. 
[Internet]. 2007; 21(4):633–644. doi: https://doi.org/bx6s4m
[17]  Goyal RK, Guo Y, Mashimo H. Advances in the physiology of 
gastric emptying. Neurogastroenterol. Motil. [Internet]. 2019; 
31(4):e13546. doi: https://doi.org/gg6px4
[18]  Ishiguchi T, Nakajima M, Sone H, Tada H, Kumagai AK, Takahashi 
T. Gastric distension–induced pyloric relaxation: central nervous 
system regulation and effects of acute hyperglycaemia in the rat. J. 
Physiol. [Internet]. 2001; 533(3):801–813. doi: https://doi.org/ddg8s4
[19]  Yuan SY, Costa M, Brookes SJ. Neuronal control of the pyloric 
sphincter of the guinea–pig. Neurogastroenterol. Motil. 
[Internet]. 2001; 13(3):187–198. doi: https://doi.org/dfs4zr
[20]  Carnevali TR,  Waller SB, Ferrasso MM,  Rosa Júnior  AS, 
Carapeto LP, Freitag RA, Schuch LFD, Cleff MB. Radiological 
determination of gastric motility in experimental model treated 
with Rosmarinus ocinalis Linn. (Lamiaceae) extracts. Indian 
J. Exp. Biol. [Internet]. 2019 [cited 18 Jan 2024]; 57(9):708–714. 
Available in: https://goo.su/ib1n
[21]  Aydin S, Seker E. Effect of an aqueous distillate of Origanum onites 
L. on isolated rat fundus, duodenum and ileum: evidence for the role 
of oxygenated monoterpenes. Pharmazie. [Internet]. 2005 [cited 
08 Jan 2024]; 60(2):147–150. Available in: https://goo.su/zlqM
[22]  Ghayur MN, Khan AH, Gilani AH. Ginger facilitates cholinergic 
activity possibly due to blockade of muscarinic autoreceptors in 
rat stomach fundus. Pak. J. Pharm. Sci. [Internet]. 2007 [cited 
10 Jan 2024]; 20(3):231–235. Available in: https://goo.su/t4bVs
[23]  Badary OA, Awad AS, Sherief MA, Hamada FMA. In vitro and in 
vivo effects of ferulic acid on gastrointestinal motility: inhibition 
of cisplatin–induced delay in gastric emptying in rats. World J. 
Gastroenterol. [Internet]. 2006; 12(33):5363–5367. doi: https://
doi.org/m6gx
[24]  Wang X, Zhang C, Zheng M, Gao F, Zhang J, Liu F. Metabolomics 
Analysis of L–Arginine Induced Gastrointestinal Motility Disorder in 
Rats Using UPLC–MS After Magnolol Treatment. Front. Pharmacol. 
[Internet]. 2019; 10(183):1–14. doi: https://doi.org/gnpdcd
[25]  Wu Z, Zhang S, Li P, Lu X, Wang J, Zhao L, Wang Y. Effect of 
Aurantii fructus immaturus flavonoid on the contraction of 
isolated gastric smooth muscle strips in rats. Evid. Based 
Complement. Alternat. Med. [Internet]. 2016; 2016(5616905):1–7. 
doi: https://doi.org/f8vs3z
[26]  Baggio CH, Freitas CS, Mayer B, dos Santos AC, Twardowschy 
A, Potrich FB, Cipriani TR, de Souza LM, Sassaki GL, Iacomini M, 
Marques MCA, Mesia–Vela S. Muscarinic–dependent inhibition of