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A Hervonen

Publications and source records attributed to A Hervonen.

At least 19 recordsLinked to original sources

Lack of association between human longevity and polymorphisms of IL-1 cluster, IL-6, IL-10 and TNF-alpha genes in Finnish nonagenarians.

There has been increasing interest in research on genetic basis of longevity. Aging is accompanied by immune deterioration and dysregulation of cytokines. Increased IL-6 concentration in vivo and enhanced IL-6, IL-1beta, and TNF-alpha production in vitro have been reported in healthy elderly people. Cytokine gene polymorphisms have been demonstrated to be associated with cytokine production both in vivo and in vitro, and with some diseases. Thus, gene polymorphisms of cytokine may play a role in longevity by modulating an individual's responses to life-threatening disorders. Cytokine gene polymorphisms at IL1A-889, IL1B+3953, IL1B-511, IL1RN VNTR, IL6-174, IL10-1082, and TNFA-308 were genotyped in 250 Finnish nonagenarians (52 men and 198 women) and in 400 healthy blood donors (18-60 years) as controls. No statistically significant differences were found in the genotype distributions, allelic frequencies and A2+ carrier status of IL-1alpha, IL-1beta, IL-1RA, IL-6, IL-10, and TNF-alpha genes between nonagenarians and younger controls within Finnish population, nor between male and female nonagenarians. No differences emerged between nonagenarians and younger controls by comparing different IL-1 gene cluster haplotypes. Thus, there is no evidence of an association of IL-1 complex, IL-6, IL-10, and TNF-alpha gene polymorphisms with longevity, alone or in combination.

Adult↗

Dose-dependent decrease in glial fibrillary acidic protein-immunoreactivity in rat cerebellum after lifelong ethanol consumption.

The effects of aging and lifelong ethanol consumption on astrocytic morphology and glial fibrillary acidic protein-immunoreactivity (GFAP-IR) in the cerebellar vermis obtained from ethanol-preferring Alko, Alcohol (AA) rats were analyzed by using computer-assisted image analysis. The ethanol-consuming animals (both male and female) were given ethanol (10%-12%, vol./vol.) as the only available fluid for 21 months (3-24 months), whereas the young (3 months) and the old (24 months) controls received water. In the male rats, but not in the female rats, an age-related decrease in GFAP-IR was found in folia II, VII, and X of the molecular layer, and in turn, an age-related increase was found in folium X of the granular layer, indicating opposite changes in GFAP-IR for male rats due to aging in adjacent brain regions. In the female rats, 21 months of daily average ethanol consumption of 6.6 g/kg resulted in decreased GFAP-IR in folium VII of the molecular layer, and the decrease in cerebellar GFAP-IR correlated with the average daily ethanol intake (r=-.886, P=.019) when folia II, IV, VII, and X were analyzed together. No effect of ethanol on GFAP-IR was detected in the granular layer or in the central white matter of the female rats. There was no change in GFAP-IR in any of the three cerebellar layers of the male rats with average daily ethanol consumption of 3.2 g/kg. These results indicate that the Bergmann glial fibers are the GFAP-expressing structures of the cerebellum most sensitive to moderate-to-heavy chronic ethanol exposure and that this effect is dose dependent.

Age Factors↗

Effects of lifelong ethanol consumption on drinking behavior and motor impairment of alcohol-preferring AA and alcohol-avoiding ANA rats.

The effects of drinking ethanol throughout a lifetime on voluntary drinking behavior and ethanol-induced motor impairment were studied in alcohol-preferring AA (Alko, Alcohol) and alcohol-avoiding ANA (Alko, Non-Alcohol) rats of both sexes. At the age 3 months, the rats were tested for individual voluntary ethanol (10% vol./vol.) intake and ethanol-induced motor impairment (2 g/kg, i.p.). The rats were housed in group cages, half of them having 12% (vol./vol.) ethanol as the only source of fluid and the other half having free access to water. Food was always available for all animals. At the age of 23 months, their individual voluntary ethanol intake and ethanol-induced motor impairment were tested again. During forced drinking, the females of both strains consumed more ethanol than did the males. The ethanol consumption of the AA and ANA females and the ANA males increased significantly (P < .001) with age, but a slight decrease was seen in the ethanol consumption of the AA males. Time x strain interaction showed a significant (P < .05) difference in the ethanol consumption of male rats, with the AA males having a slight decrease in ethanol consumption with age, whereas the ANA males increased their ethanol consumption. After 19 months of forced ethanol exposure, AA males significantly decreased their individual voluntary ethanol consumption, and individual voluntary ethanol consumption by ethanol-exposed AA males was more pronounced (P < .001) than that of the AA rats that had free access to water (P < .05). For the female AA rats, those having free access to water significantly decreased their voluntary ethanol consumption (P < .05), but those having ethanol only did not. No significant changes in voluntary ethanol consumption with age or with different exposures were seen in the ANA rats. Body weights were higher in the groups having access to water than in the ethanol-only groups, but the differences were not significant within the AA and ANA strains. The ANA rats were significantly heavier in all groups. These results indicate that the voluntarily nondrinking ANA rats can drink almost as much ethanol as the voluntarily drinking AA rats when they are forced to drink ethanol and that lifelong forced ethanol drinking does not change their inherent drinking habits. When sensitivity to ethanol was measured with the tilting-plane test, the old AA female rats were more sensitive to ethanol than were the young ones. The young ANA females were more sensitive than the AA females when tested at 4 months. In males, aging did not produce any differences in ethanol sensitivity.

Aging↗

Interpretative repertoires of medication among the oldest-old.

The use of medical drugs is not founded on medical knowledge alone, but it is also dependent on lay logic and reasoning. This study set out to explore the views of the oldest-old on their medication. The data for the study came from narrative interviews with people aged 90 or over. Our aim was to look for different culturally shared interpretative repertoires used by the interviewees as they gave descriptions and accounts of their drug use and presented themselves as users of medical drugs. Three interpretative repertoires were identified. The moral repertoire stressed lay people's moral norms and presented them as morally acceptable and responsible users of drugs by explaining and minimizing. The patient repertoire was used by the respondents to show they had accepted the role of patient. The self-help repertoire was used by the respondents to emphasize that they had made their own choices in medical care despite the biomedical facts. These repertoires showed that not only the biomedical logic, but also other logics are valid in the everyday world where most medical drugs are used. A better understanding of cultural ideas of drug use would help to improve the care of older people.

Aged↗

Coenzyme Q10 supplementation and recovery from ischemia in senescent rat myocardium.

Many studies have suggested that parenteral administration of coenzyme Q10 (Q10) protects the myocardium of young experimental animals from post-ischemic reperfusion injury. Although parenteral administration, in contrast to per os supplementation, seems to elevate coenzyme Q concentrations in heart tissue, it is not suitable for prophylactic use. In addition, the incidence of ischemic events is greatest in older age. We studied the effect of Q10 supplementation on myocardial postischemic recovery in 18-month-old Wistar rats. The treated group (n=9) received 10 mg/kg/day of Q10 for 8 weeks in their chow while the normal chow of the control group (n=9) contained less than 0.5 mg/kg/day of Q10. The treatment clearly elevated plasma Q10 concentration (286 +/- 25 micromol/l and 48 +/- 30 micromol/l, treated and controls, respectively, p<0.0001) but neither Q9 nor Q10 concentrations in heart tissue were affected by the supplementation. The isolated perfused hearts were subjected to 20 minutes of ischemia and 30 minutes of reperfusion. The preischemic values of developed pressure (DP) but not contractility (+DP/delta t) and relaxation (-DP/delta t) were improved by Q10 supplementation (p=0.034, p=0.057 and p=0.13, respectively) while in postischemic recovery no differences were observed between the groups (p>0.05 at all time points). Also, in myocardial flow, myocardial oxygen consumption (MVO2) and myocardial aerobic efficiency (DP/MVO2) the groups did not differ at any time points. Although dietary Q10 supplementation clearly elevated plasma Q10 concentrations in senescent rats, the coenzyme Q contents in heart tissue and myocardial recovery from ischemia were not affected. However, it is possible that the site of action for the reported beneficial effects of Q10 is in the coronary endothelium rather than myocardium itself.

Aging↗

Effects of lifelong ethanol consumption on rat sympathetic neurons.

In this experiment we studied the effects of aging and lifelong ethanol consumption on rat peripheral sympathetic neurons. The aim was to find out the possible differences in the vulnerability to ethanol-induced neuronal degeneration between rats of both genders, or between the alcohol-avoiding (ANA) and the alcohol-preferring (AA) lines of rat. The superior cervical ganglia (SCG) of 40 male and 41 female AA and ANA rats were analyzed. The ethanol-exposed groups had 12% ethanol as the only available fluid from 3 to 24 months of age. The young (3 months) and old (24 months) control groups had water instead. SCG neuronal density, volume, and total neuron number were measured by unbiased morphometric methods. No gender difference was seen in either the volume of the SCG or in the SCG neuron number. The volume of the ganglion was significantly increased with age, but the total neuron number did not change. Neuronal density was significantly decreased with age, but lifelong ethanol consumption induced no further decrease. SCG neuron number in the ethanol-exposed groups did not differ from the age-matched or young control groups, but a significant negative correlation (r = -0.70, p<0.01) was seen between individual ethanol consumption and the number of SCG neurons in the female rats. The amount of lipopigment in the SCG was increased in the ethanol-exposed male rats. These results suggest that the peripheral sympathetic neurons are rather resistant to ethanol-induced degeneration, and that no major gender or line differences exist in this respect.

Aging↗

Effects of continuous versus intermittent ethanol exposure on rat sympathetic neurons.

BACKGROUND: Binge ethanol exposure is known to induce degeneration of central nervous system (CNS) neurons. Sympathetic hyperactivity has been related to ethanol withdrawal symptoms, but the effects of repeated withdrawals on peripheral sympathetic neurons have not been studied previously. METHODS: The effects of continuous versus intermittent ethanol consumption on sympathetic neurons of the superior cervical ganglion (SCG) were studied in male Wistar rats. Two-month-old rats were divided into three groups: one group with ethanol (10% v/v) as the drinking fluid throughout the 51/2-month experiment (continuous, n = 9), one group drinking ethanol on 4 days/week and water on 3 days/week (intermittent, n = 9), and a control group (n = 9) with water as the only available fluid. All groups had food ad libitum. SCG volume, neuron density, and total number of neurons were measured by using unbiased morphometric methods. RESULTS: As the mean daily ethanol consumption did not differ between the two ethanol-exposed groups (continuous 5.7 g/kg/day versus intermittent 5.8 g/kg/day), the total dose of ethanol consumed was 42% smaller in the intermittent group. The total number of SCG neurons decreased by 28%, and neuron density by 23%, in the intermittent group compared with the control group, whereas no significant neuron loss was observed in the continuous group. The volume of the SCG was similar in all study groups. The results suggest that repeated ethanol withdrawals, rather than ethanol exposure per se, are deleterious to sympathetic neurons. CONCLUSIONS: Ethanol-induced degeneration of neurons is not only related to the amount of ethanol consumed, but also to the patterns of drinking.

Adrenergic Fibers↗

Influence of chronic ethanol consumption on arterial tone in young and aged rats.

The aim of this work was to evaluate the effects of long-term ethanol consumption on arterial responses in vitro in young and aged rats. Therefore, Wistar rats (ages 3 and 29 mo, respectively) were allocated to six groups: control-young, sucrose-young, ethanol-young, control-aged, sucrose-aged, and ethanol-aged. The ethanol-fed groups were given 25% ethanol by intragastric gavage three times a day 4 days a week. Responses of mesenteric arterial rings were examined in standard organ chambers after 5 treatment weeks. In norepinephrine-precontracted arterial rings, endothelium-dependent relaxations to acetylcholine, as well as endothelium-independent relaxations to isoproterenol, were attenuated in aged rats when compared with young controls. Relaxation responses to isoproterenol, but not to acetylcholine and nitroprusside, were clearly improved by ethanol treatment in both young and aged rats. The cyclooxygenase inhibitor diclofenac, which reduces the synthesis of dilating and constricting prostanoids, enhanced the relaxation to acetylcholine in all three aged rat groups but was without significant effect in the young rats. In the presence of the nitric oxide synthase inhibitor NG-nitro-L-arginine methyl ester the relaxation to acetylcholine in control and sucrose-fed aged rats was markedly reduced compared with control rats, whereas in the young controls and in both young and aged ethanol-exposed groups, distinct relaxations to higher concentrations of acetylcholine were still present. The endothelium-independent relaxations to cromakalim, a hyperpolarizing vasodilator acting via ATP-sensitive potassium channels, were also markedly augmented by ethanol feeding in both young and aged rats. In conclusion, ethanol consumption in both young and aged rats was associated with markedly improved arterial relaxations to isoproterenol and cromakalim, as well as clearly augmented relaxation to acetylcholine during inhibition of cyclooxygenase and nitric oxide synthase. These findings suggest that especially the potassium channel-related component of arterial relaxation was augmented by long-term ethanol exposure.

Acetylcholine↗

Effects of dexmedetomidine on rat locus coeruleus and ethanol withdrawal symptoms during intermittent ethanol exposure.

In the present study, the neuroprotective effects of dexmedetomidine on rat locus coeruleus were studied during a 5-week intermittent ethanol exposure. Male Wistar rats (3 to 4 months old) were given ethanol or isocaloric sucrose by intragastric intubations three times a day for 4 days, which was followed by a 3-day withdrawal period. This 7-day cycle of ethanol exposure and withdrawal was repeated five times. Dexmedetomidine (at a dose decreasing from 30 microg/kg to 10 microg/kg, s.c.) was given to the treatment group during the withdrawal phase. The results showed that, during the 5-week experiment, dexmedetomidine significantly relieved the ethanol withdrawal syndrome, measured as the sum of the three most specific symptoms (rigidity, tremor, and irritability). The total neuron number of locus coeruleus (LC) decreased in the ethanol-treated group by 24%, compared with the nontreated control group and by 11%, compared with the sucrose-treated control group. Interestingly, the LC neuron numbers were found to decrease in the sucrose-intubated rats as well, compared with the nontreated control group. Dexmedetomidine was found to relieve ethanol-induced neuronal loss in the LC. Dexmedetomidine might be a new interesting alternative in the treatment of ethanol withdrawal syndrome, particularly due to its possible neuroprotective effects in the central nervous system.

Adrenergic alpha-Agonists↗

Functional status and need of help among people aged 90 or over: a mailed survey with a total home-dwelling population.

The aims of this study were to test the feasibility of a mailed survey in a population aged 90 years and over and to establish whether self-reported indicators of functioning and need of help predict mortality and institutionalization. A self-administered survey was mailed to the total home-dwelling people aged 90 years or over in the city of Tampere (n = 448). The response rate was 81%. Confirmation of place of residence was carried out after 12 months and a mortality follow-up was conducted after 18 months. Seventy-one percent of the home-dwelling respondents lived alone, 49% went out of doors regularly and 32% received help on a daily basis. Mortality was higher among the institutionalized people than among those living at home. Being bed-ridden, not doing one's own shopping, not reading newspapers and regular need of help were significant predictors of mortality. Regular need of help also predicted institutionalization. We conclude that the population aged 90+ is very heterogeneous. In good conditions a mailed survey can be a feasible method of collecting data even among the oldest-old.

Activities of Daily Living↗

Lifelong ethanol consumption and loss of locus coeruleus neurons in AA and ANA rats.

The effects of lifelong ethanol exposure and aging on the morphology of the locus coeruleus (LC) were studied in the AA (Alko, Alcohol) and ANA (Alko, Nonalcohol) rats of both sexes. The ethanol-consuming (EtOH) rats were given 12% (v/v) ethanol as the only drinking fluid from 4 to 22 months of age, whereas the young (3-month-old) and aged (24-month-old) controls had only water available. The total LC neuron numbers were obtained by using the unbiased disector method. In the AA line, as we have previously reported. the EtOH female and male rats displayed a 26-30% loss of LC neurons compared with the controls. In the ANA line, the EtOH females had 30% fewer LC neurons than the controls (EtOH 1579 +/- 377 vs. controls 2264 +/- 269, ANOVA p < 0.01), whereas the EtOH males showed no neuron loss compared to the controls (EtOH 1848 +/- 525 vs. controls 2216 +/- 152, ANOVA NS). However, taking into account (sex by line ANCOVA) the markedly higher ethanol intake of the female rats in both lines, no gender or line differences in the ethanol-induced LC degeneration were detected. Neither was there any difference in LC neuron numbers between the young and old control rats of either line of rats. In conclusion, chronic alcohol consumption, not aging per se, damages the LC neurons in experimental animals.

Acetaldehyde↗

Control of arterial tone after long-term coenzyme Q10 supplementation in senescent rats.

1. Age-associated deterioration of arterial function may result from long-lasting oxidative stress. Since coenzyme Q (Q10) has been suggested to protect the vascular endothelium from free radical-induced damage, we investigated the effects of long-term dietary Q10 supplementation on arterial function in senescent Wistar rats. 2. At 16 months of age, 18 rats were divided into two groups. The control group was kept on a standard diet while the other group was supplemented with Q10 (10 mg kg(-1) day(-1)). In addition, nine rats (age 2 months) also ingesting a standard diet were used as the young control group. After 8 study weeks the responses of the mesenteric arterial rings in vitro were examined. 3. Endothelium-independent arterial relaxations to isoprenaline and nitroprusside (SNP) were attenuated in aged rats. Increased dietary Q10 clearly enhanced the relaxation to isoprenaline, but did not affect the response to SNP. In addition, vasodilation of noradrenaline-precontracted rings to acetylcholine (ACh), which was also impaired in aged vessels, was improved after Q10 supplementation. Cyclooxygenase inhibition with diclofenac enhanced the relaxation to ACh only in young rats, while it abolished the difference between the old controls and Q10 supplemented rats, suggesting that the improved endothelium-dependent vasodilation observed in Q10 supplemented rats was largely mediated by prostacyclin (PGI2). 4. In conclusion, long-term Q10 supplementation improved endothelium-dependent vasodilation and enhanced beta-adrenoceptor-mediated arterial relaxation in senescent Wistar rats. The mechanisms underlying the improvement of endothelial function may have included augmented endothelial production of PGI2, increased sensitivity of smooth muscle to PGI2, or both.

Acetylcholine↗

Unidentified antioxidant defences of human plasma in immobilized patients: a possible relation to basic metabolic rate.

Plasma total peroxyl radical scavenging capacity was studied in terminal patients who were chronically immobilized because of an acute (stroke) or chronic neurodegenerative disease (Alzheimer's disease). A luminometric assay was used to measure total antioxidant capacity (TRAP). The immobilized patients showed significant decrease in TRAP primarily because of a decrease in the concentration of unknown antioxidants. Our results suggest that human plasma may contain unknown antioxidants, the regulation of which could be related to the basic metabolic rate.

Aged↗

Effects of lifelong ethanol consumption on cerebellar layer volumes in AA and ANA rats.

Aging and chronic alcohol consumption can cause degenerative changes in the cerebellar cortex. In this study, the effects of aging and lifelong alcohol consumption on cerebellar cortical layer volumes (molecular and granular) and also white matter layer volumes were studied in alcohol-preferring (AA) and nonpreferring (ANA) rats of both sexes. The ethanol-consuming animals (EtOH) had 12% (w/v) ethanol as the only available fluid from 4 to 22 months of age, whereas the young (3 month) and old controls (24 months) had only water to drink. The volumes of molecular, granular, and white matter layers of the cerebellar vermis in folia II, IV, VII, and X were measured by using systematic sampling and a point-counting method. The volumes of the granular and white matter layers showed consistent increase between 3 and 24 months of age, whereas the volume of the molecular layer remained unchanged with increasing age. Individual ethanol intake was measured over a 1-week period at the beginning and at the end of chronic ethanol exposure. Significant (ANOVA, p = 0.000) sex difference was found in the drinking behavior in both lines, with females consuming more alcohol than males (daily ethanol consumption at 22 months of age 3.2 +/- 0.3 vs. 7.1 +/- 0.3 g/kg for AA males and females; 3.2 +/- 0.3 vs. 5.4 +/- 0.4 g/kg for ANA males and females, respectively). The only ethanol-induced effect on the cerebellum was observed in ANA-EtOH females with a 15% reduction in the volumes of the molecular and granular layer in folium II compared with age-matched controls and a significant (p < 0.05, analysis of covariance with ethanol intake as a covariate) line difference in folium II (molecular and granular layers) was observed between ANA-EtOH females and AA-EtOH females. Furthermore, the volume of the molecular layer in folium II was significantly (p < 0.05, analysis of covariance with ethanol intake and body weights as covariates) reduced for ANA-EtOH females, compared with ANA-EtOH males indicating a sex difference in the cerebellar degeneration due to chronic alcohol consumption. Of the three layers studied, the white matter layer was the most resistant layer to the effects caused by chronic alcohol consumption. In view of the fact that AA and ANA rats of both sexes differ regarding the drinking behavior and ethanol metabolism, they provide an important model for further research on ethanol-induced pathological changes in the central nervous system.

Acetaldehyde↗

Dexmedetomidine, diazepam, and propranolol in the treatment of ethanol withdrawal symptoms in the rat.

In this study, the effects of dexmedetomidine, a selective alpha 2-adrenoceptor agonist, on ethanol withdrawal symptoms, were compared with those of diazepam and propranolol. The rats were given highly intoxicating doses of ethanol for 4 days. After the intoxication period, rats were divided into four equal groups: a dexmedetomidine-treated group (30 micrograms/kg, sc), a diazepam-treated group (2 mg/kg, sc), a propranolol-treated group (5 mg/kg, sc), and a control group with no medication. Medication was given in the withdrawal phase-2, 8, 14, and 20 hr after the onset of the withdrawal symptoms. The severity of the ethanol withdrawal symptoms (rigidity, tremor, irritability, and hypoactivity) was observed up to 33 hr after the onset of the ethanol withdrawal symptoms. Both dexmedetomidine and diazepam significantly relieved tremor compared with the control group. Diazepam reduced irritability significantly, compared with the control group. When measured as the sum score of the three most specific withdrawal signs (rigidity, tremor, and irritability), dexmedetomidine and diazepam significantly relieved the ethanol withdrawal reaction. Propranolol attenuated tremor, but was inefficient against other withdrawal symptoms. Dexmedetomidine may thus represent a new effective drug in the treatment of the ethanol withdrawal syndrome.

Adrenergic alpha-Agonists↗

Monoamine oxidase B inhibitor selegiline protects young and aged rat peripheral sympathetic neurons against 6-hydroxydopamine-induced neurotoxicity.

Selegiline is a selective and irreversible monoamine B inhibitor with the capacity to increase the level of several antioxidative enzymes in rat brain. It can protect adrenergic neurons against injury induced by neurotoxins such as MPTP, DSP-4 and AF64A in animal studies. In addition, the protective action is not limited to catecholaminergic cells, as selegiline can also minimize the loss of developing motoneurons after axotomy. The aim of this study was to determine whether selegiline can protect peripheral catecholaminergic neurons against the neurotoxic effect of 6-OHDA. This kind of protective effect against 6-OHDA neurotoxicity has not been reported before. Wistar albino male rats aged 4 or 24 months were treated with selegiline or saline solution 1 h before 6-OHDA injection. At 2 weeks after the 6-OHDA injection, the superior cervical ganglia (SCG) and submandibular glands (SMG) were studied using catecholamine histofluorescence and immunohistochemistry for tyrosine hydroxylase (TH). The number of TH-positive cells in the SCG and the length and number of adrenergic nerve fibers in the SMG were quantified. Our findings showed that 6-OHDA caused a reduction of TH immunoreactivity and catecholamine histofluorescence in neuronal somata, as well as a decrease in the number and length of adrenergic nerve fibers in the submandibular gland. Selegiline pretreatment protected SCG neurons and their postganglionic nerve fibers in SMG against these changes in a dose-dependent manner. The mechanism through which selegiline exerts its neuroprotective effect is as yet unknown.

Aging↗

A subpopulation of large neurons of the sympathetic superior cervical ganglion innervates the NGF-rich submandibular salivary gland in young adult and aged mice.

One of the main target organs of the sympathetic superior cervical ganglion (SCG) is the submandibular salivary gland, which in male mice has a high concentration of endogenous NGF. To study the subpopulation of SCG neurons which innervate the submandibular glands in young adult and aged mice, a retrograde tracing with a fluorescent dye Fluoro-Gold (Fluorochrome, Englewood, CO, USA) was performed. Fluoro-Gold was introduced into the base of the submandibular salivary gland in anaesthetized animals. Four days later, both ipsilateral and contralateral SCG were studied. The results of the tracing were as follows: (a) in both young adult and aged mice about 45% of the sympathetic neurons of the SCG innervate the ipsilateral submandibular salivary gland; (b) the neurons innervating the submandibular gland form a subpopulation of large-sized neurons; (c) in young adult mice some 10% of SCG neurons innervate the contralateral SCG, while in aged mice only 1-2% have the same effect.

Age Factors↗