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1. Myrtenol Inhalation Mitigates Asthma-Induced Cognitive Impairments: an Electrophysiological, Behavioral, Histological, and Molecular Study.

2. Effect of Relative Humidity on the Rate of New Particle Formation for Different VOCs.

5. The effects of foliar application of some important micronutrient elements on essential oil content and components of Dracocephalum kotschyi Boiss.

6. The effects of foliar application of some important micronutrient elements on essential oil content and components of Dracocephalum kotschyi Boiss.

7. Preparation and Evaluation of Preventive Effects of Inhalational and Intraperitoneal Injection of Myrtenol Loaded Nano-Niosomes on Lung Ischemia-Reperfusion Injury in Rats.

8. Immunomodulatory effect of Myrtenol on benzo (a) pyrene‐induced lung cancer in Swiss albino mice via modulation of tumor markers, cytokines and inhibition of PCNA expression.

9. The Role of Inhaled Estradiol and Myrtenol, Alone and in Combination, in Modulating Behavioral and Functional Outcomes Following Traumatic Experimental Brain Injury: Hemodynamic, Molecular, Histological and Behavioral Study.

10. Myrtenol Protects Against Acute Kidney Injury Induced by Cisplatin in Mice

11. Myrtenyl-bispidine containing azole: synthesis and antifungal activity.

12. Effect of Relative Humidity on the Rate of New Particle Formation for Different VOCs

13. N -(((1 S ,5 R)-6,6-Dimethylbicyclo[3.1.1]hept-2-en-2-yl)methyl)-3-dodecan/tetradecanamido- N , N -dimethylpropan-1-aminium Bromide.

14. N-(((1S,5R)-6,6-Dimethylbicyclo[3.1.1]hept-2-en-2-yl)methyl)-3-dodecan/tetradecanamido-N,N-dimethylpropan-1-aminium Bromide

15. Myrtenol Inhibits Biofilm Formation and Virulence in the Drug-Resistant Acinetobacter baumannii: Insights into the Molecular Mechanisms

16. N -(((1 S ,5 R)-6,6-Dimethylbicyclo[3.1.1]hept-2-en-2-yl)methyl)-3-((1 R ,5 S)-6,6-dimethylbicyclo[3.1.1]hept-2-ene/ane-2-carboxamido)- N , N -dimethylpropan-1-aminium Bromide.

17. Myrtenol Ameliorates Recognition Memories' Impairment and Anxiety-Like Behaviors Induced by Asthma by Mitigating Hippocampal Inflammation and Oxidative Stress in Rats.

18. Niosome nanocarrier enhances the ameliorating effects of myrtenol in the lungs of rats with experimental asthma

19. N-(((1S,5R)-6,6-Dimethylbicyclo[3.1.1]hept-2-en-2-yl)methyl)-3-((1R,5S)-6,6-dimethylbicyclo[3.1.1]hept-2-ene/ane-2-carboxamido)-N,N-dimethylpropan-1-aminium Bromide

20. Increasing the Efficacy of Treatment of Staphylococcus aureus – Candida albicans Mixed Infections with Myrtenol.

21. Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae.

22. Myrtenol Reduces Orofacial Nociception and Inflammation in Mice Through p38-MAPK and Cytokine Inhibition.

23. Myrtenol Reduces Orofacial Nociception and Inflammation in Mice Through p38-MAPK and Cytokine Inhibition

24. Ayurvedic Medicinal Plants Against COVID-19: An In Silico Analysis.

25. Myrtenol alleviates oxidative stress and inflammation in diabetic pregnant rats via TLR4/MyD88/NF-κB signaling pathway.

26. Increasing the Efficacy of Treatment of Staphylococcus aureus–Candida albicans Mixed Infections with Myrtenol

27. Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae

28. تجویز داخلصفاقی میرتنول باعث کاهش آسیب ایسکمی ریه-پرفیوژن مجدد در موش بزرگ آزمایشگاهی میشود.

29. مقایسه اثرات درمانی فرمهای ساده و نیوزومی میرتنول در آسیب خون رسانی مجدد ایسکمی ریه.

30. بررسی تأثیر داروی میرتنول بر آسیب حاد ریوی ناشی از سم پاراکوات استنشاقی در موشهای سفید بزرگ آزمایشگاهی نر.

31. فرموالسیون نیوزوم حاوی میرتنول و ارزیابی اثرات آن بر ریههای موشهای بزرگ آزمایشگاهی مبتال به آسم تجربی.

32. Influence of molecular structure of oleoresin-derived compounds on flame properties and emissions from laminar flames.

33. Presence and roles of myrtenol, myrtanol and myrtenal in Dendroctonus armandi (Coleoptera: Curculionidae: Scolytinae) and Pinus armandi (Pinales: Pinaceae: Pinoideae).

34. One-Pot Myrtenol Amination over Au, Au–Pd and Pd Nanoparticles Supported on Alumina.

35. Myrtenol Attenuates MRSA Biofilm and Virulence by Suppressing sarA Expression Dynamism

36. Myrtenol Attenuates MRSA Biofilm and Virulence by Suppressing sarA Expression Dynamism.

37. Anti-Inflammatory and Anti-Oxidative Effects of Myrtenol in the Rats with Allergic Asthma.

38. Rotational spectra of the low energy conformers observed in the (1R)-(−)-myrtenol monomer.

39. Hydroformylation of biomass-based hydroxyolefins in eco-friendly solvents: New fragrances from myrtenol and nopol.

40. Evaluation of the composition and fumigant toxicity against Plodia interpunctella of essential oils from Ajania potaninii and Ajania fruticulosa

41. Antibacterial and Antibiofilm Activity of Myrtenol against Staphylococcus aureus

42. Myrtenol complexed with β‐cyclodextrin ameliorates behavioural deficits and reduces oxidative stress in the reserpine‐induced animal model of Parkinsonism

43. New chlorin-terpene conjugates bearing triethylene glycol and cationic tetraalkylammonium fragments.

44. Structural changes at the myrtenol backbone reverse its positive allosteric potential into inhibitory GABAA receptor modulation.

45. Myrtenol protects against myocardial ischemia-reperfusion injury through antioxidant and anti-apoptotic dependent mechanisms.

46. The anticancer effect of Salvia pisidica essential oil through promotion intrinsic and extrinsic apoptosis pathways in human cancer cell lines

47. Volatile profiles of the orpines roots: Hylotelephium telephium (L.) H. Ohba, H. maximum (L.) Holub and H. spectabile (Boreau) H. Ohba x telephium (L.) H. Ohba.

48. Scientific Opinion on Flavouring Group Evaluation 73, Revision 4 (FGE.73Rev4): consideration of alicyclic alcohols, aldehydes, acids and related esters evaluated by JECFA (59th and 63rd meeting) structurally related to primary saturated or unsaturated alicyclic alcohols, aldehydes, acids and esters evaluated by EFSA in FGE.12Rev5

49. N-Alkylation

50. Antibiofilm and antivirulence efficacy of myrtenol enhances the antibiotic susceptibility of Acinetobacter baumannii

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