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Biomedical subjects

A Logan

Publications and source records attributed to A Logan.

At least 55 records · Page 3Linked to original sources

The prevalence of NIDDM and associated risk factors in native Canadians.

OBJECTIVE: To determine the true prevalence of impaired glucose tolerance (IGT), NIDDM, and associated risk factors by age and sex in an isolated native community. RESEARCH DESIGN AND METHODS: A community-wide prevalence survey using a 75-g oral glucose tolerance test (OGTT) was undertaken in the remote native reserve of Sandy Lake, Ontario, Canada. Measurements for obesity included waist-to-hip circumference, BMI, and percentage body fat. RESULTS: A total of 728 individuals were enrolled, representing a community participation rate of 72%. The overall crude prevalence of NIDDM was 17.2% (18.1% females and 16.0% males) and increased to 26.1% overall (28.0% females and 24.2% males) when age-standardized. The prevalence of IGT was higher in females compared with males (age-standardized prevalence of 19.8 vs. 7.1%, respectively). Females had a higher prevalence of obesity, IGT, and NIDDM occurring at younger ages. Measures of obesity and fasting insulin levels were significantly associated with NIDDM in the 18-49 age-group. CONCLUSIONS: The prevalence rates of NIDDM in this study population are the highest reported to date in a Canadian native population and among the highest reported in the world. Females appear to be at much higher risk of developing obesity, IGT, and NIDDM and at a younger age. Due to the high prevalence rates of IGT and NIDDM in this young population, there is urgent need to develop culturally appropriate community-based public health intervention programs before the long-term complications of diabetes have a devastating effect on the residents.

Adolescent↗

Effects of insulin on renal function, sympathetic nervous activity and forearm blood flow in normal human subjects.

OBJECTIVE: To assess fully the vasodilatory and sodium-retaining effects of insulin. DESIGN: Prospective physiologic study using a dose-response protocol. SETTING: Clinical investigation unit of a tertiary referral hospital. PARTICIPANTS: Six normal, healthy men. INTERVENTIONS: Subjects were given increasing doses of insulin intravenously from 10 to 1200 mU/m2 per minute, using the euglycemic "clamp" technique. OUTCOME MEASURES: Urinary sodium excretion, systemic and renal hemodynamics, plasma norepinephrine levels and forearm blood flow after each dose. RESULTS: Low doses of insulin (up to 20 mU/m2 per minute) produced a significant antinatriuresis (0.18 [SEM 0.05] v. 0.37 mmol per minute at baseline, p < 0.01) and antidiuresis (2.53 [SEM 0.67] v. 6.21 [SEM 1.66] mL per minute, p < 0.01) with no associated changes in renal hemodynamics or sympathetic nervous activity. Subsequent higher doses of insulin improved urinary volume and sodium excretion to above baseline levels associated with renal and forearm vasodilatation, although mean arterial pressure remained unaltered. CONCLUSIONS: Hyperinsulinemia initially causes an antinatriuresis and antidiuresis through a direct action on the renal tubule. The subsequent phenomenon of escape from renal sodium retention may serve as a regulatory mechanism on sodium homeostasis in conditions associated with hyperinsulinemia and sodium retention.

Adult↗

Hyperinsulinemia in preascitic cirrhosis: effects on systemic and renal hemodynamics, sodium homeostasis, forearm blood flow, and sympathetic nervous activity.

Insulin has been shown to be vasodilatory and antinatriuretic and to stimulate sympathetic nervous activity independent of hypoglycemia in healthy normal subjects. It is hypothesized that hyperinsulinemia, which is commonly observed in cirrhosis, may in part be responsible for the systemic vasodilatation, sympathetic activation, and sodium retention in these patients. The aims of this study, in preascitic cirrhotics, were as follows: (1) to document baseline hyperinsulinemia and its effects on sodium handling, forearm and renal circulations, and sympathetic nervous activity; (2) to determine if pharmacological increases in plasma insulin levels would result in an exaggeration of these physiological effects. Seven male, nonobese, well-compensated, preascitic cirrhotic patients were studied, after being maintained on a 150 mmol sodium per day diet for 7 days, firstly at baseline level, followed by increasing doses of insulin from 10 to 1,200 mU/m2/min using the euglycemic clamp technique. Systemic and renal hemodynamics, urinary sodium excretion, plasma norepinephrine, and forearm blood flow (FBF) were measured at the end of baseline and each hyperinsulinemic period. Baseline measurements in the cirrhotics, when compared with our laboratory standards obtained from a comparable group of male healthy normals, showed significant hyperinsulinemia (P=.01), associated with significantly higher FBF (P=.02), and glomerular filtration rate (GFR) (P=.02), as well as significantly reduced urinary volume (P=.04) and fractional excretion of sodium (P=.04). Insulin infusions in the cirrhotics produced no further sodium retention, but further forearm vasodilatation occurred at doses > or = 10 mU/m2/min. In contrast, there was no further renal vasodilatation except at very high pharmacological levels of insulin together with an unchanged GFR, natriuresis, and diuresis. Hyperinsulinemia produced no significant effects on the sympathetic nervous activity. In conclusion, these results suggest that hyperinsulinemia may be implicated in the glomerular hyperfiltration and sodium retaining tendency of preascitic cirrhotic patients with glucose intolerance. The ability of the kidneys to escape from the sodium retaining effects may serve as an in-built physiological regulatory mechanism on sodium homeostasis.

Adult↗

Use of ethnographic methods for applied research on diabetes among the Ojibway-Cree in northern Ontario.

This article presents the results of applied ethnographic research aimed at developing a community-based diabetes prevention program in an isolated Ojibway-Cree community in northern Ontario. Using qualitative techniques, the authors describe diabetes in its sociocultural context and underlying belief systems that affect related activity and dietary behaviors. Local concepts of food and illness are dichotomized into "Indian" and "white man's" groupings, with Indian foods perceived as healthy and white man's foods felt to be unhealthy. Diabetes is believed to result from consumption of white man's "junk foods" (sugar, soda); some believe the disease can be avoided by eating traditional Indian foods such as game animals (moose, beaver, duck). While dietary linkages to diabetes are recognized, physical activity as a means of controlling obesity and decreasing the risk for diabetes is not part of the local ethnomedical model. This information is being used to develop culturally appropriate health education interventions.

Adolescent↗

Distribution of fibroblast growth factor (FGF)-2 and FGF receptor-1 messenger RNA expression and protein presence in the mid-trimester human fetus.

Fibroblast growth factors (FGF) are known to have key roles in embryonic growth and morphogenesis, but their presence and contributions to fetal development are unclear. In particular, little information exists as to the relevance of FGF and their specific receptors to human fetal development. We studied the anatomical distribution of messenger RNA encoding FGF-2 and one of its high affinity receptors, FGFR1, using in situ hybridization in a variety of human fetal tissues in early second trimester. Corresponding protein distributions were determined by immunohistochemistry. Both FGF-2 and FGFR1 mRNA and proteins were found to be present in every organ and tissue examined, but with defined cellular localizations. In skeletal muscle, both FGF-2 and FGFR1 mRNA and peptides were present in differentiated fibers, and both co-localized to proliferating chondrocytes of the epiphyseal growth plate. FGF-2 and FGFR1 mRNA and peptides were also present within cardiac or gastrointestinal smooth muscle. Within the gastrointestinal tract FGF-2 mRNA and peptide were located in the submucosal tissue, whereas FGFR1 was expressed within the overlying mucosa. Similarly, in skin, FGF-2 was expressed within the dermis whereas FGFR1 mRNA and peptide were most apparent in the stratum germinativum of the epidermis. In kidney and lung, FGFR1 mRNA was located in the tubular and alveolar epithelia respectively, whereas FGF-2 was expressed in both epithelial and mesenchymal cell populations. Both growth factor and receptor were widespread in both neuroblasts and glioblasts in the cerebral cortex of the brain. Immunoreactivity for FGF-2 and FGFR1 was seen in all vascular endothelial cells of major vessels and capillaries. Within the skin, kidney, lung, and intestine FGF-2 immunoreactivity was found in basement membranes underlying epithelia, and was associated with the extracellular matrix and plasma membranes of many cell types. The results show that FGF-2 and one of its receptors are widely expressed anatomically in the mid-trimester human fetus.

Blood Vessels↗

Changes in the immunohistochemical localisation of fibroblast growth factor-2, transforming growth factor-beta 1 and thrombospondin-1 are associated with early angiogenic events in the hyperplastic rat thyroid.

Administration of a goitrogen (methimazole) and a low iodine diet to rats over a two-week period resulted in hypothyroidism and thyroid hyperplasia compared with controls (control: total serum thyroxine (T4) 66 +/- 4 nmol/l, thyroid weight 5 +/- 1 mg/100 g body weight; experimental: T4 undetectable, thyroid weight 27 +/- 4 mg/100 g body weight after 2 weeks of treatment; mean +/- S.D., n = 10). Immunohistochemistry carried out using a specific endothelial cell marker, CD31, and morphometric analysis (point counting of immunopositive cells) revealed that the progression of goitre in the rat thyroid is accompanied by an increase in capillary endothelial cell growth (neovascularisation). Fibroblast growth factor-2 (FGF-2) immunohistochemistry revealed widespread staining for the protein in the follicular cells of control glands. Less intense staining was found in the stroma and follicular cell nuclei. During hyperplasia and subsequent neovascularisation there was a progressive increase in the FGF-2 immunoreactivity at all locations during the two-week treatment period. Thrombospondin-1 (TSP1) immunoreactivity in the control rat thyroid was found in the stroma and in the endothelial cells, while weak follicular cell staining was also present. In the goitrous rat thyroid the TSP immunoreactivity was present after 1 week of treatment in the endothelial cells and most follicular cells, whilst stroma localisation was weak. After week 2 of treatment the endothelial cell and stromal localisation was no longer apparent, although a follicular localisation was still present. Transforming growth factor-beta 1 (TGF beta 1) immunoreactivity was present in the cytoplasm of a minority of the follicular cells in control rat thyroids, while their nuclei were unstained. In the goitrous rat thyroid an increase intensity of staining for TGF beta 1 was seen in all follicular cells, many of which now also demonstrated immuno-positive nuclei, within one week of goitrogen administration. These results show that in the hyperplastic thyroid increases in FGF-2 and TGF beta 1, and decreases in TSP1 accompany angiogenesis. These factors may interact in an autocrine/paracrine relationship to stimulate the neovascularisation that occurs during goitre formation.

Animals↗

The effect of varying sodium intake on blood volume, forearm blood flow and vascular responsiveness to sympathetic stimulation in pre-ascitic cirrhosis.

OBJECTIVES: To assess, in patients with well-compensated pre-ascitic cirrhosis, (1) the extent of vasodilatation, if any, in the forearm circulation and (2) the effect of sodium status on its response to reflex sympathetic stimulation. DESIGN: Case-control study. SETTING: Clinical investigation unit of the Toronto Hospital, a tertiary referral hospital. PATIENTS: Eight male, alcoholic patients with pre-ascitic cirrhosis and 10 age- and sex-matched controls. INTERVENTIONS: Patients and controls were given a diet containing 20 mmol of sodium per day for 7 days, then a diet containing 200 mmol of sodium per day for the subsequent 7 days. On the seventh day of each diet, systemic hemodynamics, forearm circulation and effective arterial blood volume were assessed. A cold pressor test was performed after both diets to assess the response of the forearm circulation to reflex sympathetic stimulation. OUTCOME MEASURES: Heart rate, mean arterial pressure, forearm blood flow, forearm vascular resistance, central venous pressure, atrial natriuretic factor concentrations and neurohumoral pressor levels (plasma renin activity, aldosterone and plasma norepinephrine levels). RESULTS: No forearm vasodilatation was evident in the patients with pre-ascitic cirrhosis; their forearm blood flow and forearm vascular resistance were similar to those of the controls. Sodium loading did not influence baseline forearm blood flow. Cold pressor stimulus resulted in a significant decrease in forearm blood flow and a significant increase in forearm vascular resistance, mean arterial pressure, heart rate and plasma norepinephrine levels in both groups after the low-sodium diet. High sodium intake resulted in significantly greater reduction in forearm blood flow (-19%, standard error of the mean [SEM] 3% v. -8%, SEM 3%; p < 0.05) and significantly greater increase in forearm vascular resistance (+46%, SEM 7% v. +25%, SEM 8%; p < 0.05) in the patients with cirrhosis than in the controls. CONCLUSIONS: Well-compensated pre-ascitic cirrhotic patients do not have forearm vasodilatation. Sodium loading does not increase baseline forearm blood flow in these patients, but it does lead to a heightened response to reflex sympathetic stimulation. Sodium loading, with the associated sympathetic hyper-responsiveness, may therefore contribute to further sodium retention in these patients.

Adult↗

A comprehensive analysis of the distribution of FGF-2 and FGFR1 in the rat brain.

We have examined the cellular distribution of both FGF-2 and FGFR1 immunoreactivity and their mRNAs throughout the normal adult rat brain in order to reconcile numerous disparate findings in the published literature. The results confirm a widespread distribution of FGF-2 and FGFR1 in the rat brain, and different regions express distinct patterns of FGF-2 and FGFR1 mRNA and protein: neuronal and non-neuronal cells show different subcellular distributions that vary according to the area where they are located. The intensity of the staining and hybridization also varies according to the loci examined and the cell type involved. Astrocytes contain the highest levels of FGF-2 and FGFR1 mRNAs, and characteristically, possess high levels of immunoreactive FGF-2 within the nucleus. Amongst non-neuronal cells, oligodendrocytes do not synthesize or contain significant levels of FGF-2 immunoreactivity however, they do express FGFR1 mRNA. In these cells, immunoreactive FGFR1 is mainly associated with the myelin sheaths of neuronal fibers. In ventricular systems, ependymal cells synthesize and contain immunoreactive FGFR1. In contrast, only cells lining the lateral wall of the IIIrd ventricle express FGF-2 mRNA. Subependymal cells contain high levels of both FGF-2 and FGFR1 immunoreactivity. Neurons express low levels of FGF-2 mRNA and immunoreactive FGF-2 is localized predominantly to the perikaryon. However, selected populations of neurons, such as CA2 field of the hippocampus, show high levels of FGF-2 mRNA, in which the nucleus is strongly immunopositive. Similarly, high levels of FGFR1 mRNA are localized to select populations of neurons (e.g. amygdala). FGFR1 immunoreactivity is mainly associated with myelinated fiber tracts (e.g. striatum), and some neurons show immunoreactivity in the perikaryon (e.g. hippocampus), the nucleus (e.g. mesencephalic trigeminal nucleus), or in axonal projections (e.g. hypothalamus). Remarkably, in many of the areas studied, FGF-2 and FGFR1 mRNA and/or their translated protein do not co-localize in neurons (e.g. neo-cortices) or even in the same regions of the brain (e.g. substantia nigra). In other instances, mRNAs for both FGF-2 and FGFR1 colocalize (e.g. supraoptic nucleus). The brain, in contrast to peripheral tissues, contains high levels of FGF-2 and actively expresses its gene under normal physiological conditions. The highly specific anatomical distribution of immunoreactive FGF-2 in neuronal and non-neuronal brain cells, supports the notion that it plays a multifunctional role in the CNS under normal physiology. By correlating the localization and the synthesis of FGF-2 and one of its high affinity receptors, FGFR1, in the CNS, it should be possible to obtain a better understanding of the roles of FGF-2 in normal and pathological conditions.

Animals↗

Central action of basic fibroblast growth factor on ingestive behaviour in mice.

Intracerebroventricular (ICV) infusion of basic fibroblast growth factor (FGF-2) at 50 ng/h for 5 days in male BALB/c mice suppressed the daily intakes of water and food (n = 4). Intakes were reduced on the second day, and were suppressed until the second day after stopping the infusion. The same infusion for 4 days had little effect on the high intakes of 0.3 M NaCl solution and water induced by prolonged ICV infusion of angiotensin II, or the daily food intake in these experiments (n = 7). However, the same infusion for 3-4 days reduced the increased intake of NaCl solution in Na-depleted mice (n = 8), reduced the increased water intake of water-restricted mice (n = 6 or n = 7), and reduced daily food intake in both experiments. Ventricular enlargement was noted in mice at the end of these experiments but, for reasons advanced, did not appear to account for the responses. The results indicate that FGF-2 may have an inhibitory role in these ingestive behaviours.

Angiotensin II↗

Does an IGF-binding protein (IGFBP) present in involuting rat mammary gland regulate apoptosis?

We examined the effects of GH and prolactin deficiency upon milk production, apoptosis and IGFBP production by the mammary gland. GH deficiency produced a 15% reduction in milk yield, prolactin a 50% reduction and combined prolactin- and GH-deficiency an 85% reduction in milk production. Litter removal led to complete inhibition of milk synthesis within 24 h owing in large part to milk accumulation. GH- and prolactin-deficiency also led to significant loss of mammary cells within 48 h and this was owing at least in part to apoptosis as judged by the appearance of characteristic DNA ladders. Prolactin replacement therapy could prevent all of these changes whilst GH was partially effective. The effects of GH are believed to be mediated via IGF-I, however, we were unable to mimic the effects of GH with IGF-I, IGF-II or a combination of IGF-I, IGF-II and IGFBP-3. We hypothesized that the cell-survival effects of exogenous IGFs might be blocked by an inhibitory IGFBP produced by the gland. Indeed the involuting mammary gland produces large concentrations of an IGFBP which Northern blotting identified as IGFBP-5. There was also a small increase in IGFBP-4 mRNA expression. Both appear to be produced by the secretory epithelial cells as judged by in situ hybridization. Preliminary studies using mouse "mammosphere" cultures suggest that they will be useful for investigating a potential causal relationship between IGFBP-5 synthesis and apoptosis.

Animals↗

Effects of sodium status on the venous response to noradrenaline infusion in pre-ascitic cirrhosis.

1. This study assesses the effects of sodium status on venous responsiveness to noradrenaline and the neurohumoral profile in pre-ascitic cirrhotic patients. Eight cirrhotic patients and ten control subjects were studied after both a low (20 mmol/day) and a high (200 mmol/day) sodium diet. Venous responsiveness to increasing doses of noradrenaline in a dorsal hand vein and various plasma hormone levels were measured. Maximal response (Rmax.) and the dose of noradrenaline that yielded 50% of Rmax. (ED50) were then calculated. 2. A significantly smaller dorsal hand vein diameter was observed in the control subjects on a low sodium (2.23 +/- 0.14 mm) compared with a high sodium (2.57 +/- 0.15 mm; P = 0.04) diet, but not in the cirrhotic patients. Rmax. was not significantly different in either group on both diets. With low sodium intake, ED50 was similar in the two groups. However, on high sodium intake, control subjects had a significantly higher ED50 (34.4 +/- 7.4 ng/min) than the cirrhotic patients (5.03 +/- 0.86 ng/min; P < 0.003). Plasma noradrenaline in the control subjects fell significantly with the change from a low (1.29 +/- 0.11 nmol/l) to a high (0.68 +/- 0.09 nmol/l; P < 0.001) sodium diet, but remained elevated in the cirrhotic patients. Cirrhotic patients had significantly higher atrial natriuretic factor levels and lower plasma renin activity than the control subjects on both diets. 3. In conclusion, pre-ascitic cirrhotic patients show no evidence of venodilatation. Their sympathetic nervous activity is not suppressible by volume expansion. Relative hyper-responsiveness of the peripheral venous circulation to adrenergic stimulation with high sodium intake is present.

Adult↗

Systemic hemodynamic, forearm vascular, renal, and humoral responses to sustained cardiopulmonary baroreceptor deactivation in well-compensated cirrhosis.

The aim of this study was to assess baroreceptor function in well-compensated cirrhosis by determining the forearm vascular, renal, and humoral responses to sustained baroreceptor deactivation. The effect of sodium status on baroreceptor function was also assessed. Eight cirrhotic patients and 10 age- and sex-matched controls were studied twice after a 20 mmol and 200 mmol of sodium/d diet for 7 days. Systemic and renal hemodynamics, renal sodium handling, forearm blood flow, and neurohumoral factors were assessed before, during, and after the application of lower body negative pressure (LBNP) for 1 hour. Controls and cirrhotic patients had similar baseline mean arterial pressure, heart rate, forearm and renal hemodynamics. High-sodium intake resulted in suppression of sympathetic nervous activity in the controls (plasma norepinephrine, 1.06 +/- 0.11 nmol/L on low vs. 0.76 +/- 0.08 nmol/L on high sodium; P = 0.01) but not in the cirrhotic patients (1.35 +/- 0.22 nmol/L on low vs. 1.26 +/- 0.11 nmol/L on high sodium; P > 0.05). Both groups responded to LBNP with significant further increases in plasma norepinephrine, resulting in significant decreases in forearm blood flow on both sodium diets. Controls also responded with a significant worsening of renal hemodynamics on low-sodium diet only, but this was not observed in the cirrhotic patients on either diet. Therefore, in well-compensated cirrhotic patients: (1) sympathetic activation occurs despite an adequate, effective arterial filling, and this may contribute to sodium retention; and (2) baroreceptor function is normal. Apparent end organ unresponsiveness within the renal circulation may account for the lack of renal hemodynamic changes to reflex sympathetic stimulation.

Adult↗

Effects of transforming growth factor beta 1 on scar production in the injured central nervous system of the rat.

In the central nervous system (CNS), nerve regeneration after traumatic injury fails. The formation of a dense fibrous scar is thought to restrict in part the growth of axonal projections, providing one of the many reasons that complete lesions of neural pathways in the adult mammalian CNS are rarely followed by significant functional recovery. In order to determine which mechanisms mediate scar formation in the CNS and to investigate whether they can be modulated in vivo, we have attempted to define the potential role of trophic factors. Our previous studies have shown the focal elevation of transforming growth factor beta 1 (TGF beta 1) expression in lesioned CNS tissue. In the studies described here, we demonstrate that TGF beta 1 participates in the scarring response in the rat brain. First, the elevated protein levels of TGF beta 1 are localized to specific populations of injury-responsive cells in the traumatized CNS. Furthermore, the injection of TGF beta 1 into the brains of injured rats causes a dramatic increase in the scarring response. Conversely, when neutralizing TGF beta 1 antibodies are administered, the deposition of fibrous scar tissue and the formation of a limiting glial membrane that borders the lesion is significantly attenuated, thus establishing a role for the endogenous growth factor in regulation of the non-glial component of the scar. In implicating TGF beta 1 in the scarring response in the CNS, the potential use for TGF beta 1 antagonists as inhibitors of scar formation in the injured mammalian CNS is self-evident.

Animals↗

Growth factors in CNS repair and regeneration.

Traumatic central nervous system (CNS) injury is a significant clinical problem in the developed world. After injuries that penetrate into either the mature brain or spinal cord, damaged neurons initially begin to regrow, but this regeneration is aborted as a fibrotic scar is laid down within the wound. Reconnection of several neuronal pathways does not occur. Functional recovery from such injuries is therefore poor and morbidity severe, particularly for those patients with spinal cord damage. Although palliative measures are available to improve the quality of life, there is no accepted treatment to restore impaired sensory or motor function, so patients remain significantly and permanently debilitated. However, the rapid recent advances that have been made in our understanding of the underlying cellular and trophic pathology of such injuries offer the potential for development of novel therapies to control scarring, enhance neuron survival and stimulate axon regeneration, thereby promoting functional recovery.

Animals↗

Fibroblast growth factor in the hypothalamic-pituitary axis: differential expression of fibroblast growth factor-2 and a high affinity receptor.

In situ hybridization and immunohistochemistry were used to map gene expression and protein distribution of basic fibroblast growth factor (FGF-2) in the hypothalamic-pituitary system. Although the expression of FGF-2 mRNA in the pituitary is low, the protein is widely distributed in both its neural and anterior lobes. In the anterior lobe, immunoreactive (ir-) FGF-2 localizes to basement membranes and select endocrine cells. In the neural lobe, ir-FGF-2 is detected in basement membranes, pituicytes, and Herring bodies. Analyses of FGF high affinity receptor (FGFR) immunoreactivity in the anterior pituitary establishes a distribution of FGFR similar to that of FGF-2. In the neural lobe, ir-FGFR is associated with nerve fibers, pituicytes, and Herring bodies. Unlike FGF-2, the distribution of FGFR1 mRNA correlates well with the presence of the immunoreactive receptor. In the hypothalamus, magnocellular neurons of paraventricular and supraoptic nuclei contain ir-FGF-2 and ir-FGFR. In the median eminence, ir-FGF-2 and ir-FGFR is associated with fibers, glial, and endothelial cells. Ependymal and subependymal cells lining the third ventricle also show high levels of ir-FGF-2 and ir-FGFR and mRNAs. Overall, there is a specific and selective distribution of FGF-2 and its high affinity receptor(s) in the hypothalamo-pituitary axis. This localization lead us to postulate a role in neurohypophyseal functions, possibly water balance.

Animals↗