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Keywords = 2,6-xylidine

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19 pages, 873 KB  
Review
Xylazine, a Drug Adulterant Whose Use Is Spreading in the Human Population from the U.S. to the U.K. and All Europe: An Updated Review
by Domenico Iacopetta, Alessia Catalano, Francesca Aiello, Inmaculada Andreu, Maria Stefania Sinicropi and Giovanni Lentini
Appl. Sci. 2025, 15(6), 3410; https://doi.org/10.3390/app15063410 - 20 Mar 2025
Cited by 11 | Viewed by 15237
Abstract
Xylazine, commonly called “tranq” or “sleep cut”, is a strong α2-adrenergic agonist used in veterinary practice as a sedative, analgesic, and muscle-relaxing agent. It has never been approved by the Food and Drug Administration for human use, but its use by people is [...] Read more.
Xylazine, commonly called “tranq” or “sleep cut”, is a strong α2-adrenergic agonist used in veterinary practice as a sedative, analgesic, and muscle-relaxing agent. It has never been approved by the Food and Drug Administration for human use, but its use by people is on the rise. In the last decades, due to its low cost and ease of availability, it has often been illicitly used due to its abuse potential as a drug for attempted sexual assault and intended poisoning. In addition, xylazine’s presence in the human body has also been related to domestic accidental events. Generally, it is combined with multiple other drugs, typically by intravenous injection, potentiating the doping effects. Xylazine’s mechanism of action is different from that of other illicit opioids, such as heroin and fentanyl, and it has no known antidote approved for use in humans. The combination with fentanyl prolongs the euphoric sensation and may heighten the risk of fatal overdose. Furthermore, it may cause adverse effects, including central nervous system (CNS) and respiratory depression, bradycardia, hypotension, and even death. Recent reports of xylazine misuse have risen alarmingly and describe people who become “zombies” because of the drug’s harmful effects on the human body, including serious wound formation that could even lead to limb amputation. This paper is an extensive review of the existing literature about xylazine and specifically deals with the chemistry, pharmacokinetics, pharmacodynamic, and toxicological aspects of this compound, highlighting the most recent studies. Full article
(This article belongs to the Special Issue Drugs of Abuse and Beyond)
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13 pages, 15864 KB  
Article
A Glycoproteinaceous Secretion in the Seminal Vesicles of the Termite Coptotermes gestroi (Isoptera: Rhinotermitidae)
by Lara T. Laranjo, Ives Haifig and Ana Maria Costa-Leonardo
Insects 2019, 10(12), 428; https://doi.org/10.3390/insects10120428 - 26 Nov 2019
Cited by 5 | Viewed by 4294
Abstract
Coptotermes gestroi is a subterranean termite with colonies generally headed by a pair of primary reproductives, although neotenics may occur. In this study, the male reproductive system was compared during different life stages of nymphs, alates, neotenic reproductives, and kings of C. gestroi [...] Read more.
Coptotermes gestroi is a subterranean termite with colonies generally headed by a pair of primary reproductives, although neotenics may occur. In this study, the male reproductive system was compared during different life stages of nymphs, alates, neotenic reproductives, and kings of C. gestroi, focusing on the modifications of this system along the maturation of these individuals. The structure of the male reproductive system follows the pattern described for insects, although C. gestroi males do not exhibit conspicuous penises and differentiated accessory glands. In kings, each testis consisted of about seven lobes, significantly increased in size as compared to younger males. The spermatogenesis begins in third-instar nymphs, which already presented spermatozoa in the testes. The seminal vesicles are individualized in C. gestroi and have a secretory distal portion and a proximal portion with a role in spermatozoa storage. The secretion of the seminal vesicles is strongly periodic acid Schiff (PAS)-positive, whereas the xylidine Ponceau test revealed proteins that increase in quantity while the males become older. This is the first record of glycoproteins in the lumen of seminal vesicles in termites. Further studies will clarify how they are produced and interact in the physiology and nutrition of the non-flagellate spermatozoa of C. gestroi. Full article
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14 pages, 1650 KB  
Article
Biotransformation and Detoxification of Xylidine Orange Dye Using Immobilized Cells of Marine-Derived Lysinibacillus sphaericus D3
by Prabha Devi, Solimabi Wahidullah, Farhan Sheikh, Rochelle Pereira, Niteen Narkhede, Divya Amonkar, Supriya Tilvi and Ram Murthy Meena
Mar. Drugs 2017, 15(2), 30; https://doi.org/10.3390/md15020030 - 8 Feb 2017
Cited by 14 | Viewed by 6336
Abstract
Lysinibacillus sphaericus D3 cell-immobilized beads in natural gel sodium alginate decolorized the xylidine orange dye 1-(dimethylphenylazo)-2-naphthol-6-sulfonic acid sodium salt in the laboratory. Optimal conditions were selected for decolorization and the products formed were evaluated for toxicity by disc diffusion assay against common marine [...] Read more.
Lysinibacillus sphaericus D3 cell-immobilized beads in natural gel sodium alginate decolorized the xylidine orange dye 1-(dimethylphenylazo)-2-naphthol-6-sulfonic acid sodium salt in the laboratory. Optimal conditions were selected for decolorization and the products formed were evaluated for toxicity by disc diffusion assay against common marine bacteria which revealed the non-toxic nature of the dye-degraded products. Decolorization of the brightly colored dye to colorless products was measured on an Ultra Violet-Vis spectrophotometer and its biodegradation products monitored on Thin Layer Chromatographic plate and High Performance Liquid Chromatography (HPLC). Finally, the metabolites formed in the decolorized medium were characterized by mass spectrometry. This analysis confirms the conversion of the parent molecule into lower molecular weight aromatic phenols and sulfonic acids as the final products of biotransformation. Based on the results, the probable degradation products of xylidine orange were naphthol, naphthylamine-6-sulfonic acid, 2-6-dihydroxynaphthalene, and bis-dinaphthylether. Thus, it may be concluded that the degradation pathway of the dye involved (a) reduction of its azo group by azoreductase enzyme (b) dimerization of the hydrazo compound followed by (c) degradation of monohydrazo as well as dimeric metabolites into low molecular weight aromatics. Finally, it may be worth exploring the possibility of commercially utilizing L. sphaericus D3 for industrial applications for treating large-scale dye waste water. Full article
(This article belongs to the Special Issue Biotransformations Utilizing Marine/Marine-Derived Bacteria and Fungi)
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