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1. Simultaneous determination for 5 human urinary metabolites of UR-144 and XLR-11 by LC-MS/MS.

2. UR-144, synthetic cannabinoid receptor agonist, induced cardiomyoblast toxicity mechanism comprises cytoplasmic Ca2+ and DAPK1 related autophagy and necrosis.

3. Synthetic cannabinoids JWH-018, JWH-122, UR-144 and the phytocannabinoid THC activate apoptosis in placental cells.

4. Acute Pharmacological Effects and Oral Fluid Biomarkers of the Synthetic Cannabinoid UR-144 and THC in Recreational Users

6. Pyrolysis of UR-144, a synthetic cannabinoid, augments an af?nity to human CB1 receptor and cannabimimetic effects in mice.

7. Synthetic cannabinoids JWH-018, JWH-122, UR-144 and the phytocannabinoid THC activate apoptosis in placental cells

8. Determination of urinary metabolites of XLR-11 by liquid chromatography-quadrupole time-of-flight mass spectrometry.

9. Acute Pharmacological Effects and Oral Fluid Biomarkers of the Synthetic Cannabinoid UR-144 and THC in Recreational Users

10. The paths of syntheses, chemical characteristics and stability tests for selected synthetic cannabinoids: 5F-PB-22, NM-2201, UR-144, and AB-CHMINACA

11. UR-144, synthetic cannabinoid receptor agonist, induced cardiomyoblast toxicity mechanism comprises cytoplasmic Ca 2+ and DAPK1 related autophagy and necrosis.

12. Synthetic cannabimimetics in Bulgaria 2010-2013.

13. The Influence of Synthetic Cannabinoid UR-144 on Human Psychomotor Performance--A Case Report Demonstrating Road Traffic Risks.

14. Acute Pharmacological Effects and Oral Fluid Biomarkers of the Synthetic Cannabinoid UR-144 and THC in Recreational Users

15. Determination of the Synthetic Cannabinoids JWH-122, JWH-210, UR-144 in Oral Fluid of Consumers by GC-MS and Quantification of Parent Compounds and Metabolites by UHPLC-MS/MS

16. Découverte d'un laboratoire de conditionnement de nouveaux produits de synthèse en France.

17. Investigation on the consumption of synthetic cannabinoids among teenagers by the analysis of herbal blends and urine samples

18. Metabolism of Nine Synthetic Cannabinoid Receptor Agonists Encountered in Clinical Casework: Major in vivo Phase I Metabolites of AM-694, AM-2201, JWH-007, JWH-019, JWH-203, JWH-307, MAM-2201, UR-144 and XLR-11 in Human Urine Using LC-MS/MS

19. Cannabinoids in disguise: Δ9-Tetrahydrocannabinol-like effects of tetramethylcyclopropyl ketone indoles.

20. Analysis of UR-144 and its pyrolysis product in blood and their metabolites in urine.

21. UR-144 in products sold via the Internet: Identification of related compounds and characterization of pyrolysis products.

22. Vesicular particles directly assembled from the cyclodextrin/UR-144 supramolecular amphiphiles

23. Identification of (1-pentylindol-3-yl)-(2,2,3,3-tetramethylcyclopropyl)methanone and its 5-pentyl fluorinated analog in herbal incense seized for drug trafficking.

24. Detection of urinary metabolites of AM-2201 and UR-144, two novel synthetic cannabinoids.

25. Pyrolysis of UR-144, a synthetic cannabinoid, augments an affinity to human CB1 receptor and cannabimimetic effects in mice

26. New challenges in toxicology of new psychoactive substances exemplified by fatal cases after UR-144 and UR-144 with pentedrone administration determined by LC-ESI-MS-MS in blood samples

27. Identification of (1H-indol-3-yl)(2,2,3,3-tetramethylcyclopropyl)methanone (DP-UR-144) in a herbal drug product that was commercially available in the Tokyo metropolitan area

28. Structural Elucidation of Metabolites of Synthetic Cannabinoid UR-144 by Cunninghamella elegans Using Nuclear Magnetic Resonance (NMR) Spectroscopy

29. Determination of urinary metabolites of XLR-11 by liquid chromatography–quadrupole time-of-flight mass spectrometry

30. Effects of Bioisosteric Fluorine in Synthetic Cannabinoid Designer Drugs JWH-018, AM-2201, UR-144, XLR-11, PB-22, 5F-PB-22, APICA, and STS-135

31. Concentrations of APINACA, 5F-APINACA, UR-144 and its degradant product in blood samples from six impaired drivers compared to previous reported concentrations of other synthetic cannabinoids

32. Activity-based detection of consumption of synthetic cannabinoids in authentic urine samples using a stable cannabinoid reporter system

33. XLR-11 and UR-144 in Washington State and State of Alaska Driving Cases

34. Quantitative Measurement of XLR11 and UR-144 in Oral Fluid by LC–MS-MS

35. Investigation on the consumption of synthetic cannabinoids among teenagers by the analysis of herbal blends and urine samples.

36. Acute Pharmacological Effects and Oral Fluid Biomarkers of the Synthetic Cannabinoid UR-144 and THC in Recreational Users.

37. Analysis of UR-144 and its pyrolysis product in blood and their metabolites in urine

38. UR-144 in products soldviathe Internet: Identification of related compounds and characterization of pyrolysis products

39. Découverte d’un laboratoire de conditionnement de nouveaux produits de synthèse en France

40. The effects of synthetic cannabinoid UR-144 on the human body-A review of 39 cases

41. İdrarda UR-144 ve metabolitlerinin LC-MS/MS ile tayinleri

42. Identification of (1-pentylindol-3-yl)-(2,2,3,3-tetramethylcyclopropyl)methanone and its 5-pentyl fluorinated analog in herbal incense seized for drug trafficking

43. Detection of urinary metabolites of AM-2201 and UR-144, two novel synthetic cannabinoids

44. Enzyme-linked immunosorbent assay (ELISA) for the detection of use of the synthetic cannabinoid agonists UR-144 and XLR-11 in human urine

45. Cannabinoids in disguise: Δ9-tetrahydrocannabinol-like effects of tetramethylcyclopropyl ketone indoles

46. Gas and Liquid Chromatography-Mass Spectrometry Detection of the Urinary Metabolites of UR-144 and Its Major Pyrolysis Product

47. Indol-3-ylcycloalkyl ketones: effects of N1 substituted indole side chain variations on CB(2) cannabinoid receptor activity

48. The effects of synthetic cannabinoid UR-144 on the human body-A review of 39 cases.

49. New challenges in toxicology of new psychoactive substances exemplified by fatal cases after UR-144 and UR-144 with pentedrone administration determined by LC-ESI-MS-MS in blood samples.

50. Pyrolysis of UR-144, a synthetic cannabinoid, augments an affinity to human CB 1 receptor and cannabimimetic effects in mice.

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