The United States is in the throes of a severe opioid overdose epidemic,primarily fueled by the pervasive use of fentanyl and the emerging threat of xylazine,a veterinary sedative often mixed with fentanyl.The high po...The United States is in the throes of a severe opioid overdose epidemic,primarily fueled by the pervasive use of fentanyl and the emerging threat of xylazine,a veterinary sedative often mixed with fentanyl.The high potency and long duration of fentanyl is compounded by the added risks from xylazine,heightening the lethal danger faced by opioid users.Measures such as enhanced surveillance,public awareness campaigns,and the distribution of fentanylxylazine test kits,and naloxone have been undertaken to mitigate this crisis.Fentanyl-related overdose deaths persist despite these efforts,partly due to inconsistent policies across states and resistance towards adopting harm reduction strategies.A multifaceted approach is imperative in effectively combating the opioid overdose epidemic.This approach should include expansion of treatment access,broadening the availability of medications for opioid use disorder,implementation of harm reduction strategies,and enaction of legislative reforms and diminishing stigma associated with opioid use disorder.展开更多
The aim was to study the pharmacokinetics of xylazine as a stable anesthetic in goats.In this study,goats were injected with xylazine at the rate of 0.3 mL·kg-1 intramusculally,and blood samples were collected at...The aim was to study the pharmacokinetics of xylazine as a stable anesthetic in goats.In this study,goats were injected with xylazine at the rate of 0.3 mL·kg-1 intramusculally,and blood samples were collected at 1,3,5,10,20,30,45,60,90,120,180,and 240 min after administration,respectively.Xylazine was extracted by liquid-liquid extraction and separation method,and blood concentration was determined by high performance liquid chromatography(HPLC).The pharmacokinetic characteristics of xylazine in healthy goats were analyzed by pharmacokinetic software.The results showed that the chromatographic peak time of xylazine chromatography was 9-11 min.The specificity of the method was good.The linear correlation coefficient R2 of the standard curve was 0.9982 when the concentration of xylazine was in the range of 10-1×1000 ng.The pharmacokinetic model of xylazine in goats was a one-chamber model with first-order rate absorption,distribution half-life t1/2Ka was(0.49±0.041)min,elimination half-life t1/2Ke was(23.3±2.5)min,and the peak time(Tp)of the highest concentration was(2.8±0.2)min.The total drug clearance CL/F was(0.00016±0.000016)mg·kg-1·min-1(ng·mL-1),and the minimum effective blood concentration was 56.6 ng·mL-1,which was consistent with the clinical anesthetic effect.The results showed that xylazine had the characteristics of rapid absorption,wide distribution,short peak time,slow clearance rate,and long anesthetic time in goats,which could be used as the basic drug for the development of goat complex anesthetic preparation.展开更多
Neurotransmitters of the central nervous system were the important way to study the mechanism of anesthesia. The effect of different doses of xylazine anesthetic on the glutamate(Glu) and γ-aminobutyric-acid(GABA) we...Neurotransmitters of the central nervous system were the important way to study the mechanism of anesthesia. The effect of different doses of xylazine anesthetic on the glutamate(Glu) and γ-aminobutyric-acid(GABA) were investigated and the mechanism of xylazine anesthetic on the central nervous system were explored in this study. A total of 88 rats were randomly divided into three groups, including normal saline control group, group with low dose of xylazine and group with high dose of xylazine.Cerebrum, cerebellum, hippocampus, thalamus and brainstem were collected. The results showed that the concentration of Glu in the hippocampus, thalamus and brainstem decreased first and then increased, but it increased first and then decreased in the cerebrum and cerebellum during the period of anesthesia. The concentration of GABA in the cerebrum, thalamus, brainstem and hippocampus increased first and then decreased. The results showed that xylazine inhibited Glu and promoted GABA with different dose dependence. The results and methods could provide guides for the clinical use of xylazine.展开更多
为研究噻拉嗪对山羊不同脑区Na+-K+-ATP酶和Ca2+-Mg2+-ATP酶活性的影响,探讨噻拉嗪麻醉山羊的中枢作用机制。试验将25只山羊随机平均分成对照组、诱导组、麻醉组、恢复Ⅰ组和恢复Ⅱ组共5组。对照组肌肉注射生理盐水10 m L,试验组肌肉注...为研究噻拉嗪对山羊不同脑区Na+-K+-ATP酶和Ca2+-Mg2+-ATP酶活性的影响,探讨噻拉嗪麻醉山羊的中枢作用机制。试验将25只山羊随机平均分成对照组、诱导组、麻醉组、恢复Ⅰ组和恢复Ⅱ组共5组。对照组肌肉注射生理盐水10 m L,试验组肌肉注射噻拉嗪12.8 mg/kg体重。10 min后、山羊倒地、翻正反射消失后、翻正反射恢复后和翻正反射恢复后6 h断头取脑组织,采用分光光度法测定山羊各脑区Na+-K+-ATP酶和Ca2+-Mg2+-ATP酶活性。结果大脑皮质、丘脑的Na+-K+-ATP酶活性分别较对照组降低30.1%和21.9%(P<0.01);大脑皮质、海马、丘脑、小脑和脑干内Ca2+-Mg2+-ATP酶活性分别较对照组降低36.5%、38.6%、35.1%、36.9%和37.9%(P<0.01)。恢复Ⅰ组和恢复Ⅱ组两种ATP酶活性的变化与对照组相比差异均无统计学意义(P>0.05)。表明噻拉嗪通过大脑皮质和丘脑Na+-K+-ATP酶及大脑皮质、海马、丘脑、小脑和脑干内Ca2+-Mg2+-ATP酶活性作用的改变起麻醉作用。展开更多
Background: Anesthetic agents are commonly utilized in the handling of non‐human primates for prevent the stress caused in physical exploration or physical restrain. For this reason, the objective of this work was to...Background: Anesthetic agents are commonly utilized in the handling of non‐human primates for prevent the stress caused in physical exploration or physical restrain. For this reason, the objective of this work was to describe the effect of age and dissociative anesthetics (ketamine and tiletamine), and their combinations with acepromazine, xylazine and zolazepam, on the physiological and blood biochemical parameters in Macaca mulatta. Methods: Eighty male Macaca mulatta were divided into four experimental groups depending on the anesthetic mixture applied. Each group of 20 males was divided into five sub‐groups according to age. Physiological parameters were recorded every five minutes during a 30‐minute period. A blood sample was drawn to analyze blood biochemistry. Results: Statistical analyses revealed significant differences in the physiological parameters between the ketamine‐acepromazine and ketamine‐xylazine groups compared to the control group. The analysis of blood biochemistry found significant differences by age and by anesthetic mixture among all groups. Conclusion: These findings contribute to standardizing this animal model in biological research.展开更多
文摘The United States is in the throes of a severe opioid overdose epidemic,primarily fueled by the pervasive use of fentanyl and the emerging threat of xylazine,a veterinary sedative often mixed with fentanyl.The high potency and long duration of fentanyl is compounded by the added risks from xylazine,heightening the lethal danger faced by opioid users.Measures such as enhanced surveillance,public awareness campaigns,and the distribution of fentanylxylazine test kits,and naloxone have been undertaken to mitigate this crisis.Fentanyl-related overdose deaths persist despite these efforts,partly due to inconsistent policies across states and resistance towards adopting harm reduction strategies.A multifaceted approach is imperative in effectively combating the opioid overdose epidemic.This approach should include expansion of treatment access,broadening the availability of medications for opioid use disorder,implementation of harm reduction strategies,and enaction of legislative reforms and diminishing stigma associated with opioid use disorder.
基金the Natural Science Foundation of Heilongjiang Province(LH2023C025,YQ2023C015)。
文摘The aim was to study the pharmacokinetics of xylazine as a stable anesthetic in goats.In this study,goats were injected with xylazine at the rate of 0.3 mL·kg-1 intramusculally,and blood samples were collected at 1,3,5,10,20,30,45,60,90,120,180,and 240 min after administration,respectively.Xylazine was extracted by liquid-liquid extraction and separation method,and blood concentration was determined by high performance liquid chromatography(HPLC).The pharmacokinetic characteristics of xylazine in healthy goats were analyzed by pharmacokinetic software.The results showed that the chromatographic peak time of xylazine chromatography was 9-11 min.The specificity of the method was good.The linear correlation coefficient R2 of the standard curve was 0.9982 when the concentration of xylazine was in the range of 10-1×1000 ng.The pharmacokinetic model of xylazine in goats was a one-chamber model with first-order rate absorption,distribution half-life t1/2Ka was(0.49±0.041)min,elimination half-life t1/2Ke was(23.3±2.5)min,and the peak time(Tp)of the highest concentration was(2.8±0.2)min.The total drug clearance CL/F was(0.00016±0.000016)mg·kg-1·min-1(ng·mL-1),and the minimum effective blood concentration was 56.6 ng·mL-1,which was consistent with the clinical anesthetic effect.The results showed that xylazine had the characteristics of rapid absorption,wide distribution,short peak time,slow clearance rate,and long anesthetic time in goats,which could be used as the basic drug for the development of goat complex anesthetic preparation.
基金Supported by the National Natural Science Foundation of China(Topic 31572580)
文摘Neurotransmitters of the central nervous system were the important way to study the mechanism of anesthesia. The effect of different doses of xylazine anesthetic on the glutamate(Glu) and γ-aminobutyric-acid(GABA) were investigated and the mechanism of xylazine anesthetic on the central nervous system were explored in this study. A total of 88 rats were randomly divided into three groups, including normal saline control group, group with low dose of xylazine and group with high dose of xylazine.Cerebrum, cerebellum, hippocampus, thalamus and brainstem were collected. The results showed that the concentration of Glu in the hippocampus, thalamus and brainstem decreased first and then increased, but it increased first and then decreased in the cerebrum and cerebellum during the period of anesthesia. The concentration of GABA in the cerebrum, thalamus, brainstem and hippocampus increased first and then decreased. The results showed that xylazine inhibited Glu and promoted GABA with different dose dependence. The results and methods could provide guides for the clinical use of xylazine.
文摘Background: Anesthetic agents are commonly utilized in the handling of non‐human primates for prevent the stress caused in physical exploration or physical restrain. For this reason, the objective of this work was to describe the effect of age and dissociative anesthetics (ketamine and tiletamine), and their combinations with acepromazine, xylazine and zolazepam, on the physiological and blood biochemical parameters in Macaca mulatta. Methods: Eighty male Macaca mulatta were divided into four experimental groups depending on the anesthetic mixture applied. Each group of 20 males was divided into five sub‐groups according to age. Physiological parameters were recorded every five minutes during a 30‐minute period. A blood sample was drawn to analyze blood biochemistry. Results: Statistical analyses revealed significant differences in the physiological parameters between the ketamine‐acepromazine and ketamine‐xylazine groups compared to the control group. The analysis of blood biochemistry found significant differences by age and by anesthetic mixture among all groups. Conclusion: These findings contribute to standardizing this animal model in biological research.