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1.
Life Sci ; 346: 122633, 2024 Jun 01.
Article En | MEDLINE | ID: mdl-38615746

AIMS: Systemic administration of ammonium chloride (NH4Cl), an acidifying agent used in human patients and experimental conditions, causes hypothermia in mice, however, the mechanisms of the thermoregulatory response to NH4Cl and whether it develops in other species remained unknown. MAIN METHODS: We studied body temperature (Tb) changes in rats and mice induced by intraperitoneal administration of NH4Cl after blockade of transient receptor potential vanilloid-1 (TRPV1) or ankyrin-1 (TRPA1) channels. KEY FINDINGS: In rats, NH4Cl decreased Tb by 0.4-0.8°C (p < 0.05). The NH4Cl-induced hypothermia also developed in Trpv1 knockout (Trpv1-/-) and wild-type (Trpv1+/+) mice, however, the Tb drop was exaggerated in Trpv1-/- mice compared to Trpv1+/+ controls with maximal decreases of 4.0 vs. 2.1°C, respectively (p < 0.05). Pharmacological blockade of TRPV1 channels with AMG 517 augmented the hypothermic response to NH4Cl in genetically unmodified mice and rats (p < 0.05 for both). In contrast, when NH4Cl was infused to mice genetically lacking the TRPA1 channel, the hypothermic response was significantly attenuated compared to wild-type controls with maximal mean Tb difference of 1.0°C between the genotypes (p = 0.008). Pretreatment of rats with a TRPA1 antagonist (A967079) also attenuated the NH4Cl-induced Tb drop with a maximal difference of 0.7°C between the pretreatment groups (p = 0.003). SIGNIFICANCE: TRPV1 channels limit, whereas TRPA1 channels exaggerate the development of NH4Cl-induced hypothermia in rats and mice, but other mechanisms are also involved. Our results warrant for regular Tb control and careful consideration of NH4Cl treatment in patients with TRPA1 and TRPV1 channel dysfunctions.


Ammonium Chloride , Hypothermia , Mice, Knockout , TRPA1 Cation Channel , TRPV Cation Channels , Animals , TRPV Cation Channels/metabolism , TRPV Cation Channels/genetics , Hypothermia/chemically induced , Hypothermia/metabolism , Mice , Male , Rats , TRPA1 Cation Channel/metabolism , TRPA1 Cation Channel/genetics , Ammonium Chloride/pharmacology , Mice, Inbred C57BL , Rats, Sprague-Dawley , Body Temperature/drug effects
2.
Prostaglandins Other Lipid Mediat ; 172: 106818, 2024 Jun.
Article En | MEDLINE | ID: mdl-38340978

Platelet-activating factor (PAF) plays a significant role in several leucocyte functions, including platelet aggregation and inflammation. Additionally, PAF has a role in the behavioral and physiological changes in mammals. However, the effect of PAF has not been well studied in birds. Therefore, the study aimed to determine if PAF affects feeding behavior, voluntary activity, cloacal temperature, and feed passage through the digestive tract in chicks (Gallus gallus). We also studied the involvement of PAF in the innate immune system induced by lipopolysaccharide (LPS), a cell wall component of gram-negative bacteria. Both intraperitoneal (IP) and intracerebroventricular (ICV) injections of PAF significantly decreased food intake. IP injection of PAF significantly decreased voluntary activity and slowed the feed passage from the crop, whereas ICV injection had no effect. Conversely, ICV injection of PAF significantly increased the cloacal temperature, but IP injection had no effect. The IP injection of LPS significantly reduced the mRNA expression of lysophosphatidylcholine acyltransferase 2, an enzyme responsible for PAF production in the heart and pancreas. On the other hand, LPS significantly increased the mRNA expression of the PAF receptor in the peripheral organs. The present study shows that PAF influences behavioral and physiological responses and is related to the response against bacterial infections in chicks.


Chickens , Cloaca , Lipopolysaccharides , Platelet Activating Factor , Animals , Platelet Activating Factor/pharmacology , Platelet Activating Factor/metabolism , Lipopolysaccharides/pharmacology , Cloaca/drug effects , Cloaca/physiology , Eating/drug effects , Male , Crop, Avian/drug effects , Crop, Avian/metabolism , Receptors, G-Protein-Coupled/metabolism , Receptors, G-Protein-Coupled/genetics , Feeding Behavior/drug effects , Platelet Membrane Glycoproteins/metabolism , Body Temperature/drug effects , Temperature
3.
J Neurol ; 271(5): 2207-2215, 2024 May.
Article En | MEDLINE | ID: mdl-38413464

BACKGROUND: Some people with multiple sclerosis (pwMS) avoid exercise due to overheating. Evidence from a variety of cooling treatments shows benefits for pwMS. OBJECTIVE: Conduct a randomized controlled trial of antipyretic treatment before exercise in pwMS. METHODS: Adults over age 18 diagnosed with relapsing-remitting MS reporting heat sensitivity during exercise were randomly assigned to one of six sequences counterbalancing aspirin, acetaminophen, placebo. At each of three study visits separated by ≥ one week, participants received 650-millograms of aspirin, acetaminophen, or placebo before completing a maximal exercise test. Primary outcomes were body temperature change and total time-to-exhaustion (TTE), secondary outcomes were physiological and patient-reported outcomes (PROs). RESULTS: Sixty participants were enrolled and assigned to treatment sequence; 37 completed ≥ one study visit. After controlling for order effects, we found that body temperature increase was reduced after aspirin (+ 0.006 ± 0.32 degrees Fahrenheit, p < 0.001) and after acetaminophen (+ 0.31 ± 0.35; p = 0.004) compared to placebo (+ 0.68 ± 0.35). TTE after aspirin (331.6 ± 76.6 s) and acetaminophen (578.2 ± 82.1) did not differ significantly from placebo (551.0 ± 78.4; p's > 0.05). Aspirin benefited all secondary outcomes compared to placebo (all p's < 0.001); acetaminophen showed broadly consistent benefits. CONCLUSION: These results support antipyretic treatment as effective for reducing overheating during exercise in pwMS and failed to support antipyretics for increasing TTE in the context of a maximal exercise test. Benefits were shown for physiological markers of exercise productivity and PROs of fatigue, pain, and perceived exertion.


Acetaminophen , Antipyretics , Aspirin , Exercise , Humans , Male , Female , Adult , Antipyretics/administration & dosage , Acetaminophen/administration & dosage , Aspirin/administration & dosage , Middle Aged , Exercise/physiology , Multiple Sclerosis, Relapsing-Remitting/drug therapy , Multiple Sclerosis, Relapsing-Remitting/physiopathology , Body Temperature/drug effects , Body Temperature/physiology , Double-Blind Method , Administration, Oral , Exercise Test , Treatment Outcome
4.
J Am Assoc Lab Anim Sci ; 63(2): 182-189, 2024 Mar 01.
Article En | MEDLINE | ID: mdl-38182132

Guinea pigs are often used in translational research, but providing them with safe and effective anesthesia is a challenge. Common methods like inhalant anesthesia and injectable ketamine/xylazine induce surgical anesthesia but can negatively affect cardiovascular, respiratory, and thermoregulatory systems and complicate the interpretation of research outcomes. Several alternative anesthetic regimens have been investigated, but none have consistently achieved a surgical plane of anesthesia. Therefore, identifying an anesthetic regimen that achieves a stable state of the surgical plane of anesthesia while preserving cardiorespiratory function would be a valuable contribution. To address this issue, we compared the efficacy of 3 anesthetic combinations in female Dunkin-Hartley guinea pigs: 1) alfaxalone, dexmedetomidine, and fentanyl (ADF); 2) alfaxalone, midazolam, and fentanyl (AMF); and 3) alfaxalone, midazolam, fentanyl, and isoflurane (AMFIso). We monitored anesthetic depth, heart rate, oxygenation, respiratory rate, respiratory effort, blood pressure, and body temperature every 15 min from injection to recovery. We also recorded the time to loss of righting reflex, duration of anesthesia, and time to achieve a surgical plane. The results showed no statistically significant differences in induction and recovery times among the groups. In the AMFIso group, 100% of the animals achieved a surgical plane of anesthesia, whereas only 10% of the animals in the AMF group reached that level. None of the animals in ADF group reached a surgical plane of anesthesia. Respiratory rate was significantly lower in the AMFIso as compared with the ADF group (P < 0.001) but was not different between the AMF and ADF groups. Temperature was significantly lower in the AMFIso group as compared with both the ADF and AMF groups (P < 0.001). In conclusion, both combinations of solely injectable anesthetics assessed in this study can be used for short, nonpainful procedures without significant cardiorespiratory depression. However, for mildly to moderately painful surgical procedures, the addition of an inhalant anesthetic like isoflurane is necessary for female guinea pigs.


Anesthetics, Combined , Dexmedetomidine , Fentanyl , Isoflurane , Midazolam , Pregnanediones , Animals , Guinea Pigs , Female , Fentanyl/pharmacology , Fentanyl/administration & dosage , Dexmedetomidine/pharmacology , Dexmedetomidine/administration & dosage , Isoflurane/administration & dosage , Pregnanediones/administration & dosage , Pregnanediones/pharmacology , Anesthetics, Combined/administration & dosage , Midazolam/administration & dosage , Midazolam/pharmacology , Anesthesia/veterinary , Anesthesia/methods , Heart Rate/drug effects , Respiratory Rate/drug effects , Body Temperature/drug effects
5.
Int J Sports Physiol Perform ; 17(6): 917-925, 2022 Jun 01.
Article En | MEDLINE | ID: mdl-35240576

PURPOSE: The effect of acetaminophen (ACT, also known as paracetamol) on endurance performance in hot and humid conditions has been shown previously in recreationally active populations. The aim of this study was to determine the effect of ACT on physiological and perceptual variables during steady-state and time-trial cycling performance of trained triathletes in hot and humid conditions. METHODS: In a randomized, double-blind crossover design, 11 triathletes completed ∼60 minutes steady-state cycling at 63% peak power output followed by a time trial (7 kJ·kg body mass-1, ∼30 min) in hot and humid conditions (∼30°C, ∼69% relative humidity) 60 minutes after consuming either 20 mg·kg body mass-1 ACT or a color-matched placebo. Time-trial completion time, gastrointestinal temperature, skin temperature, thermal sensation, thermal comfort, rating of perceived exertion, and fluid balance were recorded throughout each session. RESULTS: There was no difference in performance in the ACT trial compared with placebo (P = .086, d = 0.57), nor were there differences in gastrointestinal and skin temperature, thermal sensation and comfort, or fluid balance between trials. CONCLUSION: In conclusion, there was no effect of ACT (20 mg·kg body mass-1) ingestion on physiology, perception, and performance of trained triathletes in hot and humid conditions, and existing precooling and percooling strategies appear to be more appropriate for endurance cycling performance in the heat.


Acetaminophen , Athletic Performance , Bicycling , Hot Temperature , Humidity , Acetaminophen/pharmacology , Athletic Performance/physiology , Bicycling/physiology , Body Temperature/drug effects , Body Temperature/physiology , Cross-Over Studies , Double-Blind Method , Humans
6.
Int J Mol Sci ; 23(4)2022 Feb 10.
Article En | MEDLINE | ID: mdl-35216090

Drugs of abuse can cause local and systemic hyperthermia, a known trigger of endoplasmic reticulum (ER) stress and the unfolded protein response (UPR). Another trigger of ER stress and UPR is ER calcium depletion, which causes ER exodosis, the secretion of ER-resident proteins. In rodent models, club drugs such as 3,4-methylenedioxymethamphetamine (MDMA, 'ecstasy') can create hyperthermic conditions in the brain and cause toxicity that is affected by the environmental temperature and the presence of other drugs, such as caffeine. In human studies, MDMA stimulated an acute, dose-dependent increase in core body temperature, but an examination of caffeine and MDMA in combination remains a topic for clinical research. Here we examine the secretion of ER-resident proteins and activation of the UPR under combined exposure to MDMA and caffeine in a cellular model of hyperthermia. We show that hyperthermia triggers the secretion of normally ER-resident proteins, and that this aberrant protein secretion is potentiated by the presence of MDMA, caffeine, or a combination of the two drugs. Hyperthermia activates the UPR but the addition of MDMA or caffeine does not alter the canonical UPR gene expression despite the drug effects on ER exodosis of UPR-related proteins. One exception was increased BiP/GRP78 mRNA levels in MDMA-treated cells exposed to hyperthermia. These findings suggest that club drug use under hyperthermic conditions exacerbates disruption of ER proteostasis, contributing to cellular toxicity.


Caffeine/pharmacology , Endoplasmic Reticulum Stress/drug effects , Hyperthermia, Induced/adverse effects , N-Methyl-3,4-methylenedioxyamphetamine/pharmacology , Animals , Body Temperature/drug effects , Cell Line , Cells, Cultured , Central Nervous System Stimulants/pharmacology , Female , Humans , Illicit Drugs/pharmacology , Male , Rats , Rats, Sprague-Dawley , Unfolded Protein Response/drug effects
7.
Am J Physiol Endocrinol Metab ; 322(1): E10-E23, 2022 01 01.
Article En | MEDLINE | ID: mdl-34779255

Cholecystokinin (CCK) increases core body temperature via CCK2 receptors when administered intracerebroventricularly (icv). The mechanisms of CCK-induced hyperthermia are unknown, and it is also unknown whether CCK contributes to the fever response to systemic inflammation. We studied the interaction between central CCK signaling and the cyclooxygenase (COX) pathway. Body temperature was measured in adult male Wistar rats pretreated with intraperitoneal infusion of the nonselective COX enzyme inhibitor metamizol (120 mg/kg) or a selective COX-2 inhibitor, meloxicam, or etoricoxib (10 mg/kg for both) and, 30 min later, treated with intracerebroventricular CCK (1.7 µg/kg). In separate experiments, CCK-induced neuronal activation (with and without COX inhibition) was studied in thermoregulation- and feeding-related nuclei with c-Fos immunohistochemistry. CCK increased body temperature by ∼0.4°C from 10 min postinfusion, which was attenuated by metamizol. CCK reduced the number of c-Fos-positive cells in the median preoptic area (by ∼70%) but increased it in the dorsal hypothalamic area and in the rostral raphe pallidus (by ∼50% in both); all these changes were completely blocked with metamizol. In contrast, CCK-induced satiety and neuronal activation in the ventromedial hypothalamus were not influenced by metamizol. CCK-induced hyperthermia was also completely blocked with both selective COX-2 inhibitors studied. Finally, the CCK2 receptor antagonist YM022 (10 µg/kg icv) attenuated the late phases of fever induced by bacterial lipopolysaccharide (10 µg/kg; intravenously). We conclude that centrally administered CCK causes hyperthermia through changes in the activity of "classical" thermoeffector pathways and that the activation of COX-2 is required for the development of this response.NEW & NOTEWORTHY An association between central cholecystokinin signaling and the cyclooxygenase-prostaglandin E pathway has been proposed but remained poorly understood. We show that the hyperthermic response to the central administration of cholecystokinin alters the neuronal activity within efferent thermoeffector pathways and that these effects are fully blocked by the inhibition of cyclooxygenase. We also show that the activation of cyclooxygenase-2 is required for the hyperthermic effect of cholecystokinin and that cholecystokinin is a modulator of endotoxin-induced fever.


Body Temperature/drug effects , Cholecystokinin/administration & dosage , Cyclooxygenase 2/metabolism , Hyperthermia/chemically induced , Hyperthermia/metabolism , Signal Transduction/drug effects , Animals , Anorexia/chemically induced , Benzodiazepines/administration & dosage , Body Temperature Regulation/drug effects , Cholecystokinin/adverse effects , Cyclooxygenase 2 Inhibitors/administration & dosage , Disease Models, Animal , Eating/drug effects , Fever/chemically induced , Fever/drug therapy , Hypothalamus/drug effects , Hypothalamus/metabolism , Injections, Intraventricular , Lipopolysaccharides/adverse effects , Male , Proto-Oncogene Proteins c-fos/metabolism , Rats , Rats, Wistar , Receptor, Cholecystokinin B/antagonists & inhibitors , Treatment Outcome
8.
J Ethnopharmacol ; 285: 114896, 2022 Mar 01.
Article En | MEDLINE | ID: mdl-34896207

ETHNOPHARMACOLOGICAL RELEVANCE: 'Cold feeling' is a subjective feeling of unusual coldness that aggravates fatigue, stiffness, and other symptoms, thereby reducing quality of life. Tokishakuyakusan (TSS) is a Kampo medicine reported to improve cold feeling and is used to treat symptoms aggravated by cold feeling. However, the mechanism of action of TSS is unclear. Cold feeling may involve reduced blood flow and subsequent inhibition of heat transport. Therefore, elucidating the effects of TSS on blood flow is one of the most important research topics for clarifying the mechanism of action of TSS. AIM OF THE STUDY: We aimed to evaluate the effect of TSS on recovery from lowered body temperature by the immersion of rats in cold water and to clarify the involvement of blood flow in the action of TSS. MATERIALS AND METHODS: After female Wistar rats underwent 9 days of low room temperature stress loading (i.e. room temperature of 18 °C), they were subjected to immersion in cold water (15 °C) for 15 min. Body surface temperature, rectal temperature, and plantar temperature were measured before and after immersion in cold water. Blood flow was measured before and after immersion in cold water without low room temperature stress loading. TSS (0.5 g/kg or 1 g/kg) or the vehicle (i.e. distilled water) was orally administered once daily for 10 days for the measurement of body temperature or once 30 min before immersion in cold water for the measurement of blood flow. In addition, we examined the effect of TSS on calcitonin gene-related peptide (CGRP) release from dorsal root ganglion (DRG) cells, the effect of TSS ingredients on transient receptor potential (TRP) channels, and the effect of TSS ingredients on the membrane potential of vascular smooth muscle cells and evaluated the mechanism of the effects of TSS on blood flow. RESULTS: Body temperature and blood flow decreased after immersion in cold water and then recovered over time. A comparison of body temperature at each timepoint or area under the curve showed that TSS (1 g/kg) accelerated the recovery of body surface temperature, rectal temperature, and blood flow. TSS significantly increased CGRP release from DRG cells, which disappeared after pretreatment with HC-030031 (a transient receptor potential ankyrin 1 [TRPA1] antagonist). The effects of seven TSS ingredients on TRP channels were examined. The agonistic effect on TRPA1 was observed for atractylodin, atractylodin carboxylic acid and levistolide A. Among the TSS ingredients, atractylodin carboxylic acid had significant hyperpolarising effects. CONCLUSIONS: The mechanism by which TSS accelerates the recovery of lowered body temperature in rats after immersion in cold water may involve the acceleration of the recovery of lowered blood flow. Increased CGRP release from DRG cells by TSS, TRPA1 activation by TSS ingredients, and membrane potential changes in vascular smooth muscle cells caused by TSS ingredients are part of the mechanism of action of TSS. These findings may partly contribute to the interpretation of the beneficial effects of TSS on cold feeling.


Blood Circulation/drug effects , Body Temperature/drug effects , Cold Temperature , Drugs, Chinese Herbal/pharmacology , Animals , Calcitonin Gene-Related Peptide/genetics , Calcitonin Gene-Related Peptide/metabolism , Cells, Cultured , Dose-Response Relationship, Drug , Drugs, Chinese Herbal/chemistry , Female , Ganglia, Spinal/cytology , Gene Expression Regulation/drug effects , Humans , Medicine, Kampo , Myocytes, Smooth Muscle/drug effects , Neurons/drug effects , Neurons/physiology , Rats , Rats, Wistar , Umbilical Arteries/cytology
9.
J Pharm Pharmacol ; 74(2): 236-249, 2022 Feb 01.
Article En | MEDLINE | ID: mdl-34888686

OBJECTIVES: Natural borneol and synthetic borneol were commonly used to treat ischaemic stroke in clinical practice. This study evaluated their different neuroprotective effects on the remodelling and repair of the neurovascular unit (NVU) after cerebral ischaemia. METHODS: We evaluated the different effects of borneol through neurological test and staining methods in cerebral ischaemia injury. Western blot, immunohistochemistry and transmission electron microscopy were used to evaluate the reparative effects of borneol on NVU. KEY FINDINGS: The prevention and treatment of borneol could prolong recovery time, reduce body temperature and cerebral infarction rate and improve pathological conditions. Further investigations revealed that borneol could inhibit the expression of DII4, Hes1, Hes5 and p65 and increase the Nissl body number and microvessel density. They also inhibited the activation of the microglia. It was also observed through an ultramicroelectron microscope that the structural stability of the NVU has also been repaired. Moreover, natural borneol shows better results in most indicators when compared with synthetic borneol. CONCLUSIONS: Natural borneol showed a stronger effectiveness and had better regulation and neuroprotection on the NVU when compared with synthetic borneol, indicating that it may be better to use natural borneol in the prescription of Chinese patent medicine in clinical practice.


Brain Ischemia/drug therapy , Camphanes/pharmacology , Neuroprotective Agents/pharmacology , Animals , Body Temperature/drug effects , Brain Ischemia/pathology , Camphanes/chemistry , Disease Models, Animal , Male , Microglia/drug effects , Microscopy, Electron, Transmission , Neuroprotective Agents/chemistry , Rats , Rats, Sprague-Dawley
10.
Nutrients ; 13(12)2021 Nov 29.
Article En | MEDLINE | ID: mdl-34959861

The current study compared mouth swills containing carbohydrate (CHO), menthol (MEN) or a combination (BOTH) on 40 km cycling time trial (TT) performance in the heat (32 °C, 40% humidity, 1000 W radiant load) and investigates associated physiological (rectal temperature (Trec), heart rate (HR)) and subjective measures (thermal comfort (TC), thermal sensation (TS), thirst, oral cooling (OC) and RPE (legs and lungs)). Eight recreationally trained male cyclists (32 ± 9 y; height: 180.9 ± 7.0 cm; weight: 76.3 ± 10.4 kg) completed familiarisation and three experimental trials, swilling either MEN, CHO or BOTH at 10 km intervals (5, 15, 25, 35 km). The 40 km TT performance did not differ significantly between conditions (F2,14 = 0.343; p = 0.715; η2 = 0.047), yet post-hoc testing indicated small differences between MEN and CHO (d = 0.225) and MEN and BOTH (d = 0.275). Subjective measures (TC, TS, RPE) were significantly affected by distance but showed no significant differences between solutions. Within-subject analysis found significant interactions between solution and location upon OC intensity (F28,196 = 2.577; p < 0.001; η2 = 0.269). While solutions containing MEN resulted in a greater sensation of OC, solutions containing CHO experienced small improvements in TT performance. Stimulation of central CHO pathways during self-paced cycling TT in the heat may be of more importance to performance than perceptual cooling interventions. However, no detrimental effects are seen when interventions are combined.


Athletic Performance/physiology , Bicycling/physiology , Dietary Carbohydrates/administration & dosage , Menthol/administration & dosage , Mouthwashes/administration & dosage , Adult , Body Temperature/drug effects , Body Temperature Regulation/drug effects , Double-Blind Method , Heart Rate/drug effects , Hot Temperature/adverse effects , Humans , Humidity , Male , Mouth , Mouthwashes/chemistry , Thermosensing/drug effects , Thirst/drug effects
11.
Pak J Pharm Sci ; 34(5(Supplementary)): 1879-1884, 2021 Sep.
Article En | MEDLINE | ID: mdl-34836854

The present study was designed to evaluate the antipyretic and antinociceptive activities of R. communis leaves and W. somnifera roots hydroalcoholic extracts in Wistar rats. To assess the antipyretic activity, Brewer's yeast suspension was used to induce hyperthermia. Antinociceptive activity was observed using acetic acid-induced abdominal writhing, formalin-induced paw licking reflex and heat-induced pain models. R. communis and W. somnifera extracts were used at 150, 250 and 500mg/kg. Results showed that administration of both plants significantly (p<0.001) lowered rectal temperature (°C) in a dose-dependent manner from 1h to 4h of study. R. communis and W. somnifera extracts showed a dose-dependent reduction in abdominal writhing induced by acetic acid and decreased the paw licking reflex in formalin-induced nociceptive response. In the heat test, R. communis and W. somnifera extracts exhibited significant (p<0.001) analgesic effects evidenced as an increase in latency time. However, R. communis exhibited prominent antipyretic and antinociceptive activities at 250 and 500mg/kg as compared to W. somnifera. Conclusively, R. communis and W. somnifera could be a potential source of antipyretic and analgesic agents which require further studies.


Analgesics/pharmacology , Antipyretics/pharmacology , Plant Extracts/pharmacology , Ricinus/chemistry , Withania/chemistry , Animals , Body Temperature/drug effects , Dose-Response Relationship, Drug , Female , Hyperthermia/chemically induced , Hyperthermia/drug therapy , Pain Measurement/drug effects , Plant Roots/chemistry , Rats , Rats, Wistar , Saccharomyces cerevisiae
12.
Sci Rep ; 11(1): 21789, 2021 11 08.
Article En | MEDLINE | ID: mdl-34750450

Percutaneously absorbed carbon dioxide enhances blood flow. The mechanism by which it does so is unclear, but we hypothesized that it involves bicarbonate ions. BALB/c mice were bathed in neutral bicarbonate ionized water (NBIW) and showed increased blood bicarbonate levels and blood flow via phosphorylation of peripheral vascular endothelial nitric oxide synthase (eNOS) and production of nitric oxide (NO). Phosphorylation of eNOS and NO production were also increased in human umbilical vein endothelial cells cultured in medium containing NBIW, and NBIW showed reactive oxygen species scavenging activity. In a double-blind, randomized study in men and women aged 30 to 59 years with subjective cold intolerance, bathing in NBIW elevated body temperature faster than bathing in a control solution and improved chills and sleep quality. Taken together, our results show that percutaneously absorbed carbon dioxide changes to bicarbonate ions, which act directly on endothelial cells to increase NO production by phosphorylation of eNOS and thus improve blood flow.


Bicarbonates/pharmacology , Blood Circulation/drug effects , Immersion , Adult , Animals , Bicarbonates/pharmacokinetics , Body Temperature/drug effects , Double-Blind Method , Female , Human Umbilical Vein Endothelial Cells/drug effects , Human Umbilical Vein Endothelial Cells/metabolism , Humans , Hydrogen-Ion Concentration , Male , Mice , Mice, Inbred BALB C , Middle Aged , Nitric Oxide/metabolism , Nitric Oxide Synthase Type III/metabolism , Reactive Oxygen Species/metabolism
13.
Bull Exp Biol Med ; 171(5): 572-575, 2021 Sep.
Article En | MEDLINE | ID: mdl-34617175

The role of stable hydrogen isotopes in the thermoregulation and its regulation is poorly studied. We analyzed fluctuations in body temperature and changes in thermoregulation parameters in mice under conditions of reduced deuterium intake. The study was performed on male C57BL/6 mice that consumed water with a low (10 ppm) and normal (146 ppm) deuterium content. In 7 days, fluctuations of body temperature, locomotor activity, and oxygen uptake were assessed. Deuterium depletion in the body reduced the mean value of minute fluctuations of body temperature and the mean spectral density of minute fluctuations in body temperature in the 2-20-min periods. This attested to a stabilizing effect of deuterium depletion on the rhythms of body temperature fluctuations, without significant shifts in the thermogenesis parameters. Thus, drinking water with reduced deuterium content makes them less sensitive to external influences.


Body Temperature Regulation , Deuterium/pharmacokinetics , Drinking Behavior/physiology , Animals , Body Temperature/drug effects , Body Temperature/physiology , Body Temperature Regulation/drug effects , Body Temperature Regulation/physiology , Deuterium/analysis , Deuterium/pharmacology , Drinking Behavior/drug effects , Locomotion/drug effects , Locomotion/physiology , Male , Mice , Mice, Inbred C57BL , Thermogenesis/drug effects , Thermogenesis/physiology , Water/chemistry , Water/metabolism , Water/pharmacology
14.
Pharmacol Biochem Behav ; 211: 173286, 2021 12.
Article En | MEDLINE | ID: mdl-34634300

RATIONALE: Exposure to a drug can subsequently impact its own reactivity as well as that of other drugs. Given that users of synthetic cathinones, i.e., "bath salts", typically have extensive and varied drug histories, an understanding of the effects of drug history on the behavioral and physiological consequences of synthetic cathiones may be important to their abuse liability. OBJECTIVES: The goal of the current work was to assess the effects of an ethanol pre-exposure on the rewarding and aversive effects of α-PVP. METHODS: Adult male Sprague Dawley rats were exposed to ethanol prior to combined conditioned taste avoidance/conditioned place preference training in which rats were injected with 1.5, 3 or 5 mg/kg of racemic α-PVP or vehicle. Following a 7-day washout period, rats were then tested for thermoregulatory effects of α-PVP using subcutaneous probes to measure body temperature changes over the course of 8 h. This was followed 10 days later by assessments for α-PVP-induced locomotor activity and stereotypies over a 1-h session. RESULTS: α-PVP induced significant dose- and trial-dependent taste avoidance that was significantly attenuated by ethanol history and dose- and time-dependent increases in locomotor activity that were significantly increased by ethanol. α-PVP also induced place preferences and dose- and time-dependent increases in body temperature, but these measures were unaffected by ethanol history. CONCLUSIONS: α-PVP's aversive effects (as measured by taste avoidance) were attenuated, while its rewarding effects (as indexed by place preference conditioning) were unaffected, by ethanol pre-exposure. Such a pattern may indicate increased α-PVP abuse liability, as changes in the balance of aversion and reward may impact overall drug effects and likelihood of drug intake. Future self-administration studies will be necessary to explore this possibility.


Avoidance Learning/drug effects , Conditioning, Classical/drug effects , Ethanol/pharmacology , Pentanones/pharmacology , Pyrrolidines/pharmacology , Reward , Substance-Related Disorders/metabolism , Alkaloids/pharmacology , Animals , Body Temperature/drug effects , Central Nervous System Stimulants/pharmacology , Locomotion/drug effects , Male , Rats , Rats, Sprague-Dawley , Self Administration , Taste/drug effects
15.
Toxicology ; 464: 153014, 2021 12.
Article En | MEDLINE | ID: mdl-34718029

Geniposide has been widely found to ameliorate many metabolic diseases. The recruitment and activation of brown/beige adipocytes are effective and promising methods for counteracting obesity and related diseases. However, the effect of geniposide on thermogenesis of adipocytes and its underlying mechanism have not yet been investigated. Here, we demonstrate that geniposide (25 mg/kg) reduces body temperature and cold tolerance of mice via suppressing thermogenic genes in interscapular brown adipose tissue (iBAT) and inguinal white adipose tissue (iWAT). Consistently, geniposide (20 mg/mL) suppresses thermogenic capacity of adipocytes (brown adipocytes and 3T3L1 preadipocyte cells) in vitro. Mechanistically, geniposide reduces the level of protein kinase A (PKA) catalytic subunit and further suppresses transcription activity and protein stability of uncoupling protein 1 (UCP1), leading to reduction of thermogenic capacity in adipocytes. Moreover, pharmacological PKA activation reverses geniposide-induced UCP1 inhibition, which indicated that geniposide suppresses thermogenesis of adipocytes via regulating PKA signaling. Together, our findings suggest that geniposide is an inhibitor of fat thermogenesis, establishing a novel function characteristic of geniposide.


Adipocytes/drug effects , Cyclic AMP-Dependent Protein Kinases/metabolism , Iridoids/pharmacology , Thermogenesis/drug effects , 3T3-L1 Cells , Adipocytes/metabolism , Adipose Tissue, Brown/metabolism , Adipose Tissue, White/metabolism , Animals , Body Temperature/drug effects , Catalytic Domain , Cold Temperature , Male , Mice , Mice, Inbred C57BL , Signal Transduction/drug effects , Uncoupling Protein 1/metabolism
16.
Sci Rep ; 11(1): 17954, 2021 09 13.
Article En | MEDLINE | ID: mdl-34518616

Ghrelin, a circulating orexigenic hormone secreted from the stomach, stimulates appetite and food intake by activating the hypothalamic arcuate nucleus. Administration of exogenous ghrelin exerts anabolic effects, causing weight gain, increased adiposity, and decreased metabolism. Body temperature (BT), which is determined by the balance of heat production and heat loss, must be strictly regulated to maintain proper cellular function and metabolism. However, the role of ghrelin in thermoregulation remains unclear. In this study, we found that ghrelin was essential for decreasing BT when mice are placed under calorie restriction. Elevated ghrelin concentrations induced by fasting correlated with significant decreases in BT, a hibernation-like state called torpor. Ghrelin-deficient (Ghrl-/-) animals could not enter torpor. The BT of Ghrl-/- mice also remained high under restricted feeding, but the animals gradually entered precipitous hypothermia, indicating thermoregulatory impairment. These effects of ghrelin on thermoregulation were the result of suppression of sympathetic nervous system activity input to brown adipose tissue; in the absence of ghrelin, it was not possible to suppress uncoupling protein 1 (ucp1) expression and decrease BT in low-energy states. Together, these findings demonstrate that ghrelin is an essential circulating hormone involved in lowering BT.


Body Temperature Regulation/physiology , Body Temperature/physiology , Energy Metabolism/physiology , Fasting/physiology , Ghrelin/metabolism , Torpor/physiology , Adiposity/physiology , Animals , Appetite/drug effects , Appetite/physiology , Blood Glucose , Body Temperature/drug effects , Body Temperature Regulation/drug effects , Circadian Rhythm/drug effects , Circadian Rhythm/physiology , Energy Metabolism/drug effects , Ghrelin/genetics , Mice , Mice, Knockout , Oligopeptides/pharmacology , Torpor/drug effects , Uncoupling Protein 1/metabolism , Weight Gain/drug effects , Weight Gain/physiology
17.
Neuropharmacology ; 200: 108795, 2021 12 01.
Article En | MEDLINE | ID: mdl-34555367

Previous studies in rodents have repeatedly demonstrated that the centrally-projecting Edinger-Westphal nucleus (EWcp) is highly sensitive to alcohol and is also involved in regulating alcohol intake and body temperature. Historically, the EWcp has been known as the main site of Urocortin 1 (Ucn1) expression, a corticotropin-releasing factor-related peptide, in the brain. However, the EWcp also contains other populations of neurons, including neurons that express the vesicular glutamate transporter 2 (Vglut2). Here we transduced the EWcp with adeno-associated viruses (AAVs) encoding Designer Receptors Exclusively Activated by Designer Drugs (DREADDs) to test the role of the EWcp in alcohol drinking and in the regulation of body temperature. Activation of the EWcp with excitatory DREADDs inhibited alcohol intake in a 2-bottle choice procedure in male C57BL/6J mice, whereas inhibition of the EWcp with DREADDs had no effect. Surprisingly, analysis of DREADD expression indicated Ucn1-containing neurons of the EWcp did not express DREADDs. In contrast, AAVs transduced non-Ucn1-containing EWcp neurons. Subsequent experiments showed that the inhibitory effect of EWcp activation on alcohol intake was also present in male Ucn1 KO mice, suggesting that a Ucn1-devoid population of EWcp regulates alcohol intake. A final set of chemogenetic experiments showed that activation of Vglut2-expressing EWcp neurons inhibited alcohol intake and induced hypothermia in male and female mice. These studies expand on previous literature by indicating that a glutamatergic, Ucn1-devoid subpopulation of the EWcp regulates alcohol consumption and body temperature.


Body Temperature/drug effects , Designer Drugs/pharmacology , Edinger-Westphal Nucleus/drug effects , Ethanol/pharmacology , Vesicular Glutamate Transport Protein 2/drug effects , Alcohol Drinking/pathology , Animals , Body Temperature Regulation/drug effects , Dependovirus , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Urocortins/drug effects
18.
Mol Metab ; 53: 101324, 2021 11.
Article En | MEDLINE | ID: mdl-34418595

OBJECTIVE: Administration of FGF21 to mice reduces body weight and increases body temperature. The increase in body temperature is generally interpreted as hyperthermia, i.e. a condition secondary to the increase in energy expenditure (heat production). Here, we examine an alternative hypothesis: that FGF21 has a direct pyrexic effect, i.e. FGF21 increases body temperature independently of any effect on energy expenditure. METHODS: We studied the effects of FGF21 treatment on body temperature and energy expenditure in high-fat-diet-fed and chow-fed mice exposed acutely to various ambient temperatures, in high-fat diet-fed mice housed at 30 °C (i.e. at thermoneutrality), and in mice lacking uncoupling protein 1 (UCP1). RESULTS: In every model studied, FGF21 increased body temperature, but energy expenditure was increased only in some models. The effect of FGF21 on body temperature was more (not less, as expected in hyperthermia) pronounced at lower ambient temperatures. Effects on body temperature and energy expenditure were temporally distinct (daytime versus nighttime). FGF21 enhanced UCP1 protein content in brown adipose tissue (BAT); there was no measurable UCP1 protein in inguinal brite/beige adipose tissue. FGF21 increased energy expenditure through adrenergic stimulation of BAT. In mice lacking UCP1, FGF21 did not increase energy expenditure but increased body temperature by reducing heat loss, e.g. a reduced tail surface temperature. CONCLUSION: The effect of FGF21 on body temperature is independent of UCP1 and can be achieved in the absence of any change in energy expenditure. Since elevated body temperature is a primary effect of FGF21 and can be achieved without increasing energy expenditure, only limited body weight-lowering effects of FGF21 may be expected.


Body Temperature/drug effects , Energy Metabolism/drug effects , Fibroblast Growth Factors/pharmacology , Uncoupling Protein 1/metabolism , Animals , Diet, High-Fat/adverse effects , Fibroblast Growth Factors/administration & dosage , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Uncoupling Protein 1/deficiency
19.
Pak J Pharm Sci ; 34(2): 521-527, 2021 Mar.
Article En | MEDLINE | ID: mdl-34275825

Fragaria ananassa (garden strawberry) and Actinidia deliciosa (kiwi) fruits are widely consumed due to their taste and nutritive value however several studies also supports their medicinal uses. Current study was designed to assess the In-Vivo analgesic, anti-inflammatory and antipyretic activity of ethanol extract of Fragaria ananassa (EEFA), Actinidia deliciosa (EEDA) and their 1:1 combination. Albino Wistar rats were divided into five groups (n=5) for each study comprising of vehicle control, reference standards *(aspirin and paracetamol 100 mg/kg/day), EEFA (800 mg/kg/day), EEAD (800 mg/kg/day) and 1:1 combination of EEFA and EEAD (400 + 400mg/kg/day). The results revealed significant anti-inflammatory potential of EEAD and their combination with 79.35% and 82.03% inhibition in carrageenan induced paw edema whereas 52.54% inhibition was produced by EEFA against control. However most powerful analgesic effect was produced by EEFA with 52.23% at 60 min followed by EEAD (48.38%) and EEFA+ EEAD combination (44.09%). Similarly, EEFA, EEAD and their combination also lowered the rectal temperature in highly significant manner (p< 0.01) against control. These results suggested the possible role of garden strawberry and kiwi in treating the ailments related to pain, inflammation and fever however further studies are required to elucidate the constituents responsible for it and their exact mechanism.


Actinidia , Analgesics/pharmacology , Anti-Inflammatory Agents/pharmacology , Antipyretics/pharmacology , Body Temperature/drug effects , Fragaria , Fruit , Nociception/drug effects , Plant Extracts/pharmacology , Animals , Carrageenan , Drug Evaluation, Preclinical , Edema , Rats , Rats, Wistar
20.
Pharmacol Res Perspect ; 9(4): e00830, 2021 08.
Article En | MEDLINE | ID: mdl-34302721

α2 -Adrenoceptor agonists such as clonidine and dexmedetomidine are used as adjuvants to local anesthetics in regional anesthesia. Fadolmidine is an α2 -adrenoceptor agonist developed especially as a spinal analgesic. The current studies investigate the effects of intrathecally administered fadolmidine with a local anesthetic, bupivacaine, on antinociception and motor block in conscious rats and dogs. The antinociceptive effects of intrathecal fadolmidine and bupivacaine alone or in combination were tested in the rat tail-flick and the dog's skin twitch models. The durations of motor block in rats and in dogs were also assessed. In addition, the effects on sedation, mean arterial blood pressure, heart rate, respiratory rate and body temperature were evaluated in telemetrized dogs. Concentrations of fadolmidine in plasma and spinal cord were determined after intrathecal and intravenous administration in rats. Co-administration of intrathecal fadolmidine with bupivacaine increased the magnitude and duration of the antinociceptive effects and prolonged motor block without hypotension. The interaction of the antinociceptive effect was synergistic in its nature in rats. Concentration of fadolmidine in plasma was very low after intrathecal dosing. Taken together, these studies show that fadolmidine as an adjuvant to intrathecal bupivacaine provides enhanced sensory-motor block and enables a reduction of the doses of both drugs. The results indicate that co-administration of fadolmidine with intrathecal bupivacaine was able to achieve an enhanced antinociceptive effect without hypotension and could thus represent a suitable combination for spinal anesthesia.


Adjuvants, Anesthesia/administration & dosage , Adrenergic alpha-2 Receptor Agonists/administration & dosage , Analgesics/administration & dosage , Anesthesia, Spinal , Anesthetics, Local , Bupivacaine , Imidazoles/administration & dosage , Indans/administration & dosage , Adjuvants, Anesthesia/blood , Adjuvants, Anesthesia/pharmacokinetics , Adrenergic alpha-2 Receptor Agonists/blood , Adrenergic alpha-2 Receptor Agonists/pharmacokinetics , Analgesics/blood , Analgesics/pharmacokinetics , Animals , Arterial Pressure/drug effects , Body Temperature/drug effects , Dogs , Female , Heart Rate/drug effects , Imidazoles/blood , Imidazoles/pharmacokinetics , Indans/blood , Indans/pharmacokinetics , Male , Rats, Sprague-Dawley , Respiratory Rate/drug effects , Rotarod Performance Test , Spinal Cord/metabolism
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