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Relations of pain threshold and pain tolerance in cold water with scores on Maudsley Personality Inventory and Manifest Anxiety Scale.

Testing 56 Japanese undergraduates, the relationships between pain threshold and pain tolerance in cold water and personality factors were investigated. Significant negative correlations of moderate magnitude between the pain threshold and scores on Maudsley Neuroticism and the Manifest Anxiety Scale were found. On the contrary, significant positive, moderate correlations between pain tolerance and the Maudsley Extraversion were obtained.

Cold Temperature↗

Reversible desensitization of the myocardial contractile apparatus for calcium. A new concept for improving tolerance to cold ischemia in human myocardium?

UNLABELLED: The influence of 2,3-Butanedione monoxime (BDM) on the human myocardium's tolerance to cold ischemia was analyzed in two experimental series. METHODS: I) Left ventricular human muscle fibers (0.6 x 4.0 mm) were obtained from recipient hearts (n = 10) and loaded with the fluorescent dye Fura-2. Simultaneous measurements of intracellular calcium transients ("ratio-method"; excitation wave lengths: 340 nm and 380 nm) and isometric force development of electrically driven (1 Hz) muscle fibers were carried out at BDM concentrations ranging from 0 to 30 mM at a bath temperature of 37 degrees C; II) Left ventricular human muscle strips were obtained from beating recipient hearts (n = 10), and right atrial fibers from patients operated upon for aortic valve stenosis or combined mitral valve disease (n = 14). Muscle strips of these hearts were incubated for parallel measurements in the following solutions: a) a 37 degrees C oxygenated Krebs-Henseleit solution (KHS), b) a 4 degrees C Bretschneider's cardioplegic solution (HTK) without oxygenation and c) a 4 degrees C KHS containing 30 mM BDM without oxygenation (BDM solution). After standardized time intervals the muscle fibers were removed from the storage solutions, reperfused in KHS solution at 37 degrees C and stretched to optimal length (supramaximal electrical stimulation). After obtaining a steady state of force development, the contractile behavior under isometric and isotonic measurement conditions was measured. The influence of the incubation periods and the incubation solution was analyzed. RESULTS: I) BDM reduced the isometric force development of the electrically driven isolated human myocardial muscle strip in a dose-dependent way.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcium↗

Cognitive and physiological feedback on cold pain tolerance.

Results supported the relevancy of cognitive information effects on pain tolerance, in that subjects who were given a rational and accurate explanation of what to expect showed greater tolerance than those who received irrelevant information. Accurate monitoring of hand temperature did not seem necessarily advantagous as an influence on pain tolerance. It appears merely watching a monitor, regardless of the specific contents of the screen, resulted in longer hand immersion times when compared to no monitor. The monitors seem to serve as distractors and specificity of physiological information was not particularly useful. However, neither information nor physiological monitoring emerged as the primary influence on pain tolerance in this study. Instead, the strongest predictors found were motivation and self-efficacy. The subject's own self prediction of anticipated performance with cold induced pain was closely consistent with actual performance. Although these results alone may not generalize to extended field situations, this study does reinforce the general findings of previous research: namely Bandura's (10) evidence on self-efficacy. While it is obvious cold temperatures have measurable physiological consequences, the experience of pain is also psychologically mediated. Pain associated with cold injury and frostbite in hospital studies show personality correlates are significantly related to the frequency, severity and tragedy of subsequent results (15). A replication of this study will include male subjects even though it is anticipated that findings will be consistent, with perhaps longer immersion times. Future research may want to develop training strategies aimed at teaching self-efficacy and realistic expectations of potential consequences in cold environments rather than scare tactics regarding physiological and psychological cold pain tolerance.

Biofeedback, Psychology↗

Bidirectional shifts in Pm20d1 expression impact thermogenesis and metabolism.

BACKGROUND: Peptidase M20 domain containing 1 (PM20D1) is a secreted N-fatty acyl amino synthase and hydrolase that controls tissue and blood levels of N-fatty acyl amino acids. In brown adipocytes, N-fatty acyl amino acids bind to mitochondria and act as uncouplers of mitochondria, independent of UCP1. Interventions aimed at increasing or inhibiting PM20D1 expression considerably impact energy balance and metabolism; however, little is known about naturally occurring variants of the PM20D1/Pm20d1 gene and their impact on phenotype. METHODS: In vivo, gene expression of Pm20d1 in BALB/c, C57BL/6, and Ucp1 KO in brown adipose tissue and other metabolic tissues was measured. In vitro, transcriptional activity of Pm20d1 and brown adipocytes' oxygen consumption in primary culture were assessed. Human PM20D1 circulating levels were quantified. In silico analysis of the Pm20d1 gene sequencing and human polymorphisms associated with PM20D1 was performed. RESULTS: Here, we identified a gain-of-function variant in the Pm20d1 promoter region present in BALB/c mice and absent in C57BL/6 mice. The presence of this variant is accompanied by increased expression of Pm20d1 in brown and white adipose tissues, muscle, liver, and hypothalamus; moreover, it leads to increased cold tolerance and UCP1-independent brown adipose tissue mitochondrial respiration. Inhibition of Pm20d1 in brown adipose tissue results in defective cold tolerance in BALB/c, whereas the brown adipose tissue overexpression of Pm20d1 results in increased cold tolerance in C57BL/6 mice. In humans, variants of the PM20D1 gene are associated with changes in body mass index, whereas at least one variant in the promoter region is associated with increased body mass index and metabolic syndrome. CONCLUSION: Thus, PM20D1 plays a bidirectional role in regulating thermogenesis and body mass, and, at least in part, variants in the promoter region can partially explain the differences in PM20D1 expression and its impact on the metabolic phenotype.

Thermogenesis↗

Effect of ischemic preconditioning on hepatic tolerance to cold ischemia in the rat.

A short warm ischemia before reperfusion has been shown to improve the tolerance of the heart and the liver to a prolonged warm ischaemia. The present experimental study was conducted to evaluate the effect of such preconditioning on hepatic tolerance to an extended cold ischemia. In a model of isolated perfused liver, livers from Wistar rats (250-350 g) were stored for 24 h in UW (4 degrees C) immediately after harvesting and reperfused for 3 h at 37 degrees C. Control livers subjected to a 24-h cold ischemia were compared to livers subjected to preconditioning (defined as a 5- or 10-min clamping of the hepatic pedicle followed by a 10-min reperfusion before liver harvesting) prior to the definitive 24-h cold ischemia. While there was no difference in bile production between the preconditioned groups and the controls, transaminases and LDH release was significantly increased, vascular resistance was enhanced, and preservation injury was more extensive in both preconditioned groups as compared to controls. In contrast to the beneficial effect reported on prolonged warm ischaemia, preconditioning has a deleterious effect on hepatic tolerance to an extended cold ischemia.

Animals↗

The benefit of a single-passage perfusion with a hypertonic citrate solution on the cold ischemia tolerance of epigastric free flaps in Dark-Agouty rats.

In this study the effectiveness of a single-passage perfusion with hypertonic citrate solution on the cold ischemia tolerance in epigastric free flaps in Dark-Agouty rats was investigated. In the control group a significant decline in survival percentage was observed when the storage time was extended from 72 hours to 96 hours. A single (pressure controlled) passage perfusion with hypertonic citrate solution was able to prevent this decline.

Animals↗

Experimentally induced heat- and cold-shock tolerance in adult Panstrongylus megistus (Burmeister) (Hemiptera, Reduviidae).

The survival rate of domestic male and female adult Panstrongylus megistus was studied after sequential heat and cold shocks in order to investigate shock tolerance compared to that previously reported for nymphs. Sequential shocks were such that a milder shock (0 degree C, 5 degrees C, 35 degrees C, or 40 degrees C for 1 h) preceded a severe one (0 degree C or 40 degrees C for 12 h), separated by intervals of 8, 18, 24, and 72 h at 28 degrees C (control temperature). The preliminary thermal shock induced tolerance to the more severe one, although tolerance intensity depended on the initial shock temperature and the interval between treatments. Despite the observed tolerance, the survival rate for insects subjected to both shocks decreased when compared to that of individuals subjected to a single mild shock. When tolerance differed with sex, females showed greater values than males. In contrast to the response detected in nymphs, for which higher heat tolerance values were sustained for intervals of up to 24 h (preliminary shock, 35 degrees C) or even longer (preliminary shock, 40 degrees C) between sequential shocks, significant values were verified in adults only for shock intervals of up to 8 h (preliminary shock, 40 degrees C). While findings for nymphs exhibited considerable cold-shock tolerance under conditions in which preliminary shocks were given at 5 degrees C or 0 degree C and the periods between shocks were up to 72 h long, the adults were shown to be capable of acquiring a substantial tolerance response to a more severe cold shock only when the preliminary shock was given at 0 degree C and shock interval surpassed 18 h. It is assumed that the mechanisms involved in the cellular protection of P. megistus under sequential temperature shocks (heat shock protein action?) may loose effectiveness with insect development.

Animals↗

Low Temperature-Induced Decrease in trans-Delta-Hexadecenoic Acid Content Is Correlated with Freezing Tolerance in Cereals.

The effect of growth at 5 degrees C on the trans-Delta(3)-hexadecenoic acid content of phosphatidyl(d)glycerol was examined in a total of eight cultivars of rye (Secale cereale L.) and what (Triticum aestivum L.) of varying freezing tolerance. In these monocots, low temperature growth caused decreases in the trans-Delta(3)-hexadecenoic acid content of between 0 and 74% with concomitant increases in the palmitic acid content of phosphatidyl(d)glycerol. These trends were observed for whole leaf extracts as well as isolated thylakoids. The low growth temperature-induced decrease in the trans-Delta(3)-hexadecenoic acid content was shown to be a linear function (r(2) = 0.954) of freezing tolerance in these cultivars. Of the six cold tolerant dicotyledonous species examined, only Brassica and Arabidopsis thaliana L. cv Columbia exhibited a 42% and 65% decrease, respectively, in trans-Delta(3)-hexadecenoic acid content. Thus, the relationship between the change in trans-Delta(3)-hexadecenoic acid content of phosphatidyl(d)glycerol and freezing tolerance cannot be considered a general one for all cold tolerant plant species. However, species which exhibited a low growth temperature-induced decrease in trans-Delta(3)-hexadecenoic acid also exhibited a concomitant shift in the in vitro organization of the light harvesting complex II from a predominantly oligomeric form to the monomeric form. We conclude that the proposed role of phosphatidyl(d)glycerol in modulating the organization of light harvesting complex II as a function of growth temperature manifests itself to varying degrees in different plant species. A possible physiological role for this phenomenon with respect to low temperature acclimation and freezing tolerance in cereals is discussed.

Journal Article↗

Influence of gender and menstrual cycle on a cold air tolerance test and its relationship to thermosensitivity.

This investigation evaluated the influence of gender and phase of menstrual cycle [follicular (FOL): Days 2-6) and luteal (LUT: Days 19-24)] on a cold air tolerance test (CATT: 90-min of exposure to 5 degrees C air) in 8 females (22.7 +/- 3.0 yr) and 15 males (22.3 +/- 2.9 yr). In addition, central thermosensitivity (beta; W x kg(-1) x degrees C(-1) [i.e., the slope of the relationship between the decrease in esophageal temperature (Tes) and the increase in heat production (HP)], gathered during a separate water trial in 20 degrees C water, was correlated to the change (delta) in Tes and HP across the 90 min of resting exposure during the CATT. Analysis of variance revealed no significant differences between phase of menstrual cycle or gender for HP, mean skin temperature (Tsk), and insulation; however, a main effect for time for these parameters was demonstrated. Despite these similarities, Tes differed (P < 0.05) between males and females. Additionally, no relationship was found between beta and deltaHP and deltaTes in the males and females. Also, there was no relationship between beta and thermoregulation during the CATT in these subjects. These data suggest that menstrual cycle phase did not cause a differential response in Tes, Tsk, and HP during a CATT. Furthermore, women maintained a higher Tes than men during the CATT despite similarities in HP and Tsk.

Adolescent↗

Overwintering adaptations in the lettuce root aphid Pemphigus bursarius (L.).

Pemphigus bursarius (L.) is a host alternating root-feeding aphid with a proportion of the population overwintering as asexual hiemalis in the soil. These hiemalis must be sufficiently cold tolerant to survive at the temperatures they would experience in winter, and also be able to overcome a period of prolonged starvation brought about by the absence of secondary host plants. Cold tolerance experiments showed field collected hiemalis to be considerably more cold hardy than laboratory summer apterae, with an LTemp(50) of -13.1 degrees C compared with 2.3 degrees C. In a constant exposure at 0 degrees C some field collected hiemalis survived for 18 days, while no summer apterae survived more than 8 h. Hiemalis, collected from the field in winter and induced in the laboratory, had significantly higher levels of triglycerides, 12.8% fresh weight (39.9% dry wt.) and 11.4% fresh weight (43.7% dry wt.), respectively, compared with summer apterae with a value of 7.1% fresh weight (32.5% dry wt.). These two adaptations of increased cold tolerance and accumulation of energy reserves confirm that the hiemalis morph is adapted for overwintering and hence physiologically distinct from summer morphs, and in turn, contribute to the success of the asexual life cycle strategy in this species.

Journal Article↗

Overexpression of a zinc-finger protein gene from rice confers tolerance to cold, dehydration, and salt stress in transgenic tobacco.

Stress perception and signal transduction leading to tolerance involve a complex interplay of different gene products. We describe here the isolation and characterization of an intronless gene (OSISAP1) from rice encoding a zinc-finger protein that is induced after different types of stresses, namely cold, desiccation, salt, submergence, and heavy metals as well as injury. The gene is also induced by stress hormone abscisic acid. Overexpression of the gene in transgenic tobacco conferred tolerance to cold, dehydration, and salt stress at the seed-germination/seedling stage as reflected by the percentage of germination/green seedlings, the fresh weight of seedlings, and their developmental pattern. Thus, OSISAP1 seems to be an important determinant of stress response in plants.

Adaptation, Physiological↗

INP51, a yeast inositol polyphosphate 5-phosphatase required for phosphatidylinositol 4,5-bisphosphate homeostasis and whose absence confers a cold-resistant phenotype.

Sequence analysis of Saccharomyces cerevisiae chromosome IX identified a 946 amino acid open reading frame (YIL002C), designated here as INP51, that has carboxyl- and amino-terminal regions similar to mammalian inositol polyphosphate 5-phosphatases and to yeast SAC1. This two-domain primary structure resembles the mammalian 5-phosphatase, synaptojanin. We report that Inp51p is associated with a particulate fraction and that recombinant Inp51p exhibits intrinsic phosphatidylinositol 4,5-bisphosphate 5-phosphatase activity. Deletion of INP51 (inp51) results in a "cold-tolerant" phenotype, enabling significantly faster growth at temperatures below 15 degreesC as compared with a parental strain. Complementation analysis of an inp51 mutant strain demonstrates that the cold tolerance is strictly due to loss of 5-phosphatase catalytic activity. Furthermore, deletion of PLC1 in an inp51 mutant does not abrogate cold tolerance, indicating that Plc1p-mediated production of soluble inositol phosphates is not required. Cells lacking INP51 have a 2-4-fold increase in levels of phosphatidylinositol 4,5-bisphosphate and inositol 1,4, 5-trisphosphate, whereas cells overexpressing Inp51p exhibit a 35% decrease in levels of phosphatidylinositol 4,5-bisphosphate. We conclude that INP51 function is critical for proper phosphatidylinositol 4,5-bisphosphate homeostasis. In addition, we define a novel role for a 5-phosphatase loss of function mutant that improves the growth of cells at colder temperatures without alteration of growth at normal temperatures, which may have useful commercial applications.

Cold Temperature↗

Cucumber carbohydrate metabolism and translocation under chilling night temperature.

A cold-tolerant line (NY-1) and a cold-sensitive cultivar (Jinyan 4) of cucumber (Cucumis sativus) were treated with temperatures of 28 degrees C/22 degrees C or 28 degrees C/12 degrees C (day/night) in a 10-h photoperiod. Carbohydrates and related enzymes were assayed from 0 to 4 h after the start of the dark period. Compared to the normal night temperature (22 degrees C, control), sucrose, stachyose and galactinol increased in mature leaves under cold-night treatment (12 degrees C) while sucrose, glucose and fructose in fruits remained unchanged. In peduncles, where stachyose is catabolized to sucrose after long-distance transport, cold nights simultaneously induced a significant increase of stachyose (substrate) and a decrease of sucrose (product), indicating that the metabolic step from stachyose to sucrose in peduncles is crucial to translocation inhibition in cold nights. This decrease was more pronounced in the cold-sensitive cultivar. Similar growth rates of fruits on one-fruit and two-fruit plants under cold-night treatment further confirmed that it is sink activity rather than source supply that is limiting the source-sink translocation. No significant genotypic differences in enzyme activities involved in the stachyose-sucrose conversion, including alkaline alpha-galactosidase, acid alpha-galactosidase, galactokinase, uridine diphosphate (UDP)-galactose pyrophosphorylase, UDP-glucose-4'-epimerase and sucrose synthase, were observed when assayed in an adenosine triphosphate (ATP)-rich in vitro environment. However, the ATP concentration was much higher in peduncles of the cold-tolerant line, indicating that a limiting ATP supply may be partially responsible for the stronger inhibition of the stachyose-sucrose pathway observed in the cold-sensitive cultivar (Jinyan 4).

Carbohydrate Metabolism↗

Selection of RAPD marker for growth of seedlings at low temperature in rice.

We have developed a polymerase chain reaction (PCR)-based assay that could effectively reduce the time period required to screen and select the cold tolerance gene of rice seedlings under field conditions. The two specific random amplified polymorphic DNA (RAPD) fragments for the assay were identified on the basis of quantitative trait loci (QTL) analysis which were found to be tightly linked to cold sensitivity. The two RAPD fragments, OPT8(600) in the cold sensitivity rice cultivar 'Dular (indica)' and OPU20(1200) in the resistance rice cultivar 'Toyohatamochi (japonica)', were identified after screening 11 RAPD fragments using 2 random primers on the genomic DNAs of 'Dular' and 'Toyohatamochi'. These primers, when used in a multiplexed PCR, specifically amplified a 0.6 kb and a 1.2 kb fragment in the sensitive and resistant rice cultivars, respectively. When this assay was performed on the genomic DNAs of 16 japonica, 3 Tongil (indica/ japonica), and 2 indica rice cultivars, the primers amplified a 0.6 kb fragment in all of the cold sensitivity rice cultivars or 1.2 kb fragment in all of the resistance ones. These markers can be of potential use in the marker-assisted selection (MAS) for cold tolerance in rice seedling. As screening for resistance can now be conducted independent of the availability of low temperature, the breeding of cold tolerance cultivars can be hastened.

Acclimatization↗

Establishment of a cBSA-mediated miRNA delivery system in Camellia sinensis and functional validation of the Cs-miR163/CsSK1 module in cold stress response.

Cold stress severely limits tea (Camellia sinensis) yield and quality. MicroRNAs (miRNAs) are key post-transcriptional regulators of plant cold responses; however, in vivo functional validation in tea plants is hindered by the lack of efficient genetic transformation and nucleic acid delivery systems. In this study, a cationized bovine serum albumin (cBSA)-mediated miRNA delivery system was established in tea plants. The cold-responsive miRNA Cs-miR163 and its target gene CsSK1 (a negative regulator of cold tolerance) were used as a model. Direct cleavage of CsSK1 mRNA by Cs-miR163 was confirmed by 5' RLM-RACE and GUS transient expression assays, and enhanced cold tolerance was demonstrated in Arabidopsis overexpression lines. The cBSA preparation protocol was optimized, yielding stable cBSA/miRNA complexes with high protective capacity across temperatures of 15-35&#x202f;&#xb0;C and pH 4.5-7.2. Delivery parameters were systematically evaluated; optimal conditions were determined as 2&#x202f;mg/mL cBSA with 10&#x202f;nM miRNA and solution uptake into 3-cm cuttings for 5 days, enhancing miRNA delivery efficiency by approximately 48-fold. Transmission electron microscopy provided direct ultrastructural evidence that cBSA/miRNA nanocomplexes are internalized into tea plant cells via adsorptive-mediated endocytosis involving electrostatic membrane adsorption, membrane invagination, and cytoplasmic release. Under optimized conditions, cBSA-mediated delivery of Cs-miR163 silenced CsSK1 expression by approximately 72%, reduced relative electrolyte leakage and ROS accumulation, and markedly enhanced cold tolerance. The regulatory role of the Cs-miR163/CsSK1 module was clarified, and the established system provides a promising strategy for functional genomics in woody plants that warrants further testing in additional species and tissues.

Camellia sinensis↗

Relationship between temperature, respiratory loss of sugar and premature dehardening in dormant Scots pine seedlings.

Increased intracellular sugar concentration is an important contributor to the increased cold tolerance of conifers in winter. This study examines the extent to which wintertime respiratory loss of sugars leads to premature dehardening. Two-year-old seedlings of Scots pine (Pinus sylvestris L.), grown and cold-hardened in the field, were exposed to different temperature regimes for 16 weeks while dormant. To minimize short-term carry-over effects, after the temperature treatments, all seedlings were conditioned to 5.5 degrees C and watered before the assessment of non-structural carbohydrates and cold tolerance. Needle sugar concentration was decreased by 54, 32, 21 and 9% following treatment at 5.5, 0, -1.5 and -8.5 degrees C, respectively. Sugar concentration did not decrease as much in root tissues as in needles because starch was mobilized in roots. Cold tolerance of needles was analyzed by controlled freezing, and the temperature causing an initial 10% damage (LT(10)) was plotted as a function of needle sugar concentration, revealing a strong, linear relationship. When one-third of the initial sugars had been consumed, LT(10) had increased from -24.5 to -16.5 degrees C, and when one half had been consumed, LT(10) had increased to -10 degrees C. Consequences of these findings for the field performance of conifers are discussed in relation to climatic variation and change.

Journal Article↗

Mechanisms underlying the supra-maximal thermogenesis elicited by aminophylline in rats.

Previous studies showed that acute treatment with aminophylline (AMPY) significantly elevated maximum thermogenesis and improved cold tolerance in rats and man in severe cold. However, the exact mechanism by which AMPY enhances thermogenesis was unknown. Rats receiving enprofylline (ENPRO) (1.5 and 15 mg/kg, i.p.), a selective phosphodiesterase inhibitor, failed to show enhanced thermogenesis. In contrast, treatment with a selective adenosine receptor antagonist, 8-phenyltheophylline(8-PT; 2.5 to 10 mg/kg, i.p.), significantly increased (p less than 0.05) thermogenesis and cold tolerance. However, the maximal thermogenic effect by optimal dose of 8-PT (5 mg/kg) was significantly lower than that with optimal dose of AMPY (18.7 mg/kg, i.p.); the deficit could be eradicated by combining optimal 8-PT dose with a low dose of AMPY (1.25 mg/kg), but not with ENPRO. These results indicate that the thermogenic effect of AMPY is not by inhibition of phosphodiesterase but at least partially by antagonism of adenosine receptors. It is also apparent that older mechanisms in addition to adenosine antagonism are also involved in AMPY's thermogenic action.

Adenosine↗