PubMed HealthSearch

Biomedical subjects

S L Harper

Publications and source records attributed to S L Harper.

At least 19 recordsLinked to original sources

The ocular manifestations of rheumatoid disease.

The inflammatory arthropathies that affect the eye most commonly are RA, JRA, and the seronegative spondyloarthropathies. These conditions not only cause devastating systemic findings but can be the source of damaging ocular disease. The inflammatory nature of these entities, with the accompanying liberation of mediators of inflammation, can result in a cycle of tissue destruction that culminates in blindness. The diseases reviewed can present first with systemic or ocular findings; thus, all physicians must be equipped with the appropriate knowledge to make accurate and timely diagnoses so that appropriate management strategies can be employed. The successful recognition and treatment of these conditions can prevent their associated systemic and ocular morbidity.

Adolescent

The exon 46-encoded sequence is essential for stability of human erythroid alpha-spectrin and heterodimer formation.

Human erythroid alpha-spectrin alleles responsible for hereditary elliptocytosis (alphaHE alleles) undergo increased incorporation into red blood cell membranes when the polymorphism alphaLELY (LELY: Low Expression LYon) occurs in trans. The alphaLELY polymorphism is characterized by a mutation in exon 40 at codon 1857 (CTA --> GTA, Leu --> Val) and the partial (50%) skipping of exon 46, which encodes residues 2177-2182 (Wilmotte et al, J Clin Invest 91:2091, 1993). Both of these peptide sequence alterations are located within the region of the alpha-chain involved in initiating heterodimer assembly, and either or both mutations could potentially contribute to decreased incorporation of alpha-chains from the alphaLELY allele in heterozygotes into red blood cell membranes. These possibilities were evaluated by testing the protease resistance and in vitro binding properties of normal and mutant recombinant 4-motif alpha subunit peptides containing the dimer initiation region. The two forms of alpha spectrin produced by alternative mRNA splicing of the alphaLELY allele were represented by alpha18-21(1857), a peptide with the codon 1857 mutation and retaining the exon 46 encoded sequence, and alpha18-21(1857-Delta46), a peptide carrying both the 1857 codon mutation and the exon 46 deletion. The properties of these two recombinant peptides were compared with alpha18-21, a peptide with the normal sequence at codon 1857 and retaining the exon 46 encoded sequence. The codon 1857 mutation does not adversely affect dimer formation, but it is responsible for the increased trypsin cleavage between the alphaIV and alphaV domains that was the characteristic feature initially used to identify the alphaLELY (SpalphaV/41) polymorphism (Alloisio et al, J Clin Invest 87:2169, 1991). Deletion of the six amino acids encoded by exon 46 perturbs folding of the alpha21 motif, because this region of the alpha18-21(1857-Delta46) peptide is rapidly degraded and this recombinant peptide is unusually prone to self-aggregation. Exon 46 deletion reduces, but does not eliminate, dimerization. Comparison of mild trypsin proteolytic products from an alphaLELY homozygote and the two alphaLELY recombinant peptides strongly suggests that little, if any, of the 50% of the alpha chains from the alphaLELY allele that contain the exon 46 deletion are incorporated into the mature erythroid membrane. Based on the in vitro analysis of recombinant alphaLELY peptides, the inability of detectable amounts of exon 46(-) alpha chains to assemble into the mature membrane skeleton in vivo is probably due to a combination of decreased dimer binding affinity and increased proteolytic degradation of these mutant chains.

Alleles

Physical properties of a single-motif erythrocyte spectrin peptide: a highly stable independently folding unit.

Spectrin is a long flexible rod-like actin cross-linking protein mostly comprised of many tandem homologous 106-residue motifs. In this study, the conformational stability and physical properties of a single homologous motif peptide, alpha1, were evaluated and compared to intact spectrin monomers and alphabeta heterodimers. It is interesting that while spectrin dimers elongate by about 3-fold in low ionic strength buffers relative to their size in physiological buffers, the single-motif peptide does not show significant changes in secondary structure in 10 mM phosphate buffer compared with isotonic buffer. This single-motif peptide is monomeric in physiological buffer as demonstrated by equilibrium sedimentation studies, and its hydrodynamic radius determined by gel filtration and dynamic light scattering of about 2.2 nm is consistent with an elongated rod-like shape. Unfolding of the single-motif peptide in urea solutions was similar to unfolding of intact heterodimers. Differential scanning calorimetry analyses showed that this single motif undergoes a reversible two-state transition with a Tm of 53 degrees C and an enthalpy of 65 kcal/mol in physiological buffer. Thermal stability was unaffected by ionic strength changes, but was decreased below physiological pH. These data show that this 13 kDa spectrin motif is a monomeric, highly stable, triple-helical, independently folding protein building block with physical characteristics that define many of the structural properties of the 526 kDa spectrin heterodimer. In contrast, interactions between adjacent motifs are probably responsible for spectrin's molecular flexibility and elasticity.

Calorimetry, Differential Scanning

Non-neoplastic ovarian cysts with ectopic pregnancy.

Thirty non-neoplastic ovarian cysts, discovered at laparotomy in association with 27 cases of tubal ectopic pregnancy, were examined to document changes seen in early pregnancy and possibly to identify precursor lesions to the luteinized cysts of later pregnancy. The ages of the patients ranged from 16 to 40 years, and length of gestation varied between 5 and 11 weeks. Of the 30 cysts, 12 were corpus luteum cysts; 10 were called lutein cysts, nonspecific, and had a lining of luteinized cells of a single cell type; three cysts were luteinized follicles; four cysts were unlined or lined by a single layer of cells. The origin of these four was not obvious, and they were called "simple cysts." The last was a granulosa-theca lutein cyst. Corpus luteum cysts are assumed to arise from the corpus luteum, and simple cysts appear to arise from both corpus luteum cysts and other follicular structures. The nonspecific lutein cysts appeared to arise from structures other than the corpus luteum or corpus luteum cysts; these nonspecific lutein cysts may be precursors to the so-called large solitary luteinized follicle cyst of pregnancy.

Adolescent

Effects of the antihypertensive prostaglandin analog Ro 22-1327 on regional blood flows in the spontaneously hypertensive rat.

The hemodynamic effects of Ro 22-1327 [nat-(15R,16R)-16-fluoro-15-hydroxy-9-oxoprosta-5(Z),1 3(E)-dienoic acid], a prostaglandin E2 analog, were evaluated in anesthetized spontaneously hypertensive rats (SHR). Within 3-4 h of topical application (1 and 3 mg/kg), a dose-dependent decrease in mean arterial blood pressure was observed. At 6 h following drug application, steady-state mean arterial pressure was 79-87% of control (pretreatment) values. Increments in blood flow, as well as reductions in vascular resistance, were apparent in the kidneys, skin, and the majority of the splanchnic organs. The magnitude of the drug-induced hyperemia decreased from the duodenum to the ileum. Significant elevations in colonic blood flow were not apparent with either dose, suggesting a proximal-to-distal gradient of response of the intestinal vasculature to the drug. The results of this study indicate that Ro 22-1327 is an effective antihypertensive agent when applied topically in SHR. Our results also imply that the splanchnic vascular bed contributes heavily to the antihypertensive activity of the compound.

Animals

Antihypertensive drug therapy prevents cerebral microvascular abnormalities in hypertensive rats.

Studies were performed on anesthetized 16-18 week old normotensive Wistar-Kyoto rats, spontaneously hypertensive rats, and Goldblatt two-kidney one clip renal hypertensive rats, treated from age 4-5 weeks with an oral antihypertensive regimen consisting of hydralazine, reserpine, and chlorothiazide. Measurements of flow and intravascular pressure in the cerebral microvasculature were made via a constantly suffused open cranial window using video microscopy. A significant upward shift was seen in the pressure range for cerebral blood flow autoregulation in both groups of untreated hypertensive animals. Following treatment, the autoregulatory range in both hypertensive models was restored to a level nearly identical to control. The prevention of this shift in treated animals was due primarily to the prevention of structural microvascular adaptations that occur in untreated hypertensive animals. By preventing elevations in microvascular pressure, treatment may have eliminated the major stimulus for development of hypertrophy in resistance vessels. However, a persistent increment of arteriolar wall mass in treated spontaneously hypertensive rats may represent a hyperplastic response not influenced by treatment. Likewise, a persistent constriction of the smallest arterioles in treated renal hypertensive rats may represent a differential sensitivity of microvessels to circulating vasoactive agents. It appears that treatment initiated in the prehypertensive state, or before significant sustained hypertension has occurred, can markedly reduce the cerebrovascular morbidity associated with two different forms of hypertension.

Adaptation, Physiological

Pancreatic tissue oxygenation during secretory stimulation.

Pancreatic acinar tissue O2 tension (PO2) was measured in anesthetized rats using recessed-tip microelectrodes (tip diam 1-2 micron). Pancreatic blood flow was measured using radioactive microspheres. Volume rate of pancreatic secretion, as well as protein concentration, was also measured. Average resting PO2 was 24.8 +/- 1.6 mmHg, with relatively little variation evident within a given pancreas. Bolus intravenous infusion of cholecystokinin octapeptide (CCK-OP, 4 micrograms X kg body wt-1) induced a reduction in tissue PO2 and profoundly increased protein output, while not directly affecting pancreatic blood flow. By contrast, secretin infusion (1.0 CU X kg body wt-1 iv bolus) affected neither tissue PO2 nor blood flow, although secretory rate increased by nearly sevenfold. This difference in PO2 response to the two compounds is interpreted in light of the fact that CCK-OP primarily stimulates acinar cell function, while secretin preferentially activates secretory epithelium. Pancreatic PO2 was found to be linearly related to resting blood flow at flows above 44 ml X min-1 X 100 g-1. No regional differences in blood flow were found in the head, body, and tail of the pancreas.

Animals

Relations among canine intestinal motility, blood flow, and oxygenation.

Blood flow, arteriovenous O2 difference, and lumen pressure were measured in isolated loops of canine ileum. Ileal pressure was increased by an intra-arterial infusion of either Met-enkephalin or acetylcholine. Pressures were quantitated using a motility index (MI = mean of the pressure peaks divided by number of contractions per minute). Both Met-enkephalin and acetylcholine increased MI in a dose-dependent fashion. The highest MI achieved with acetylcholine was 37.9 mmHg, while Met-enkephalin produced a maximal MI of 8.1 mmHg. Ileal oxygen uptake increased when MI reached values greater than 6. There was a direct linear relationship between oxygen uptake and MI. Distension of the lumen in the absence of motility resulted in a decrease in oxygen uptake when lumen pressure reached 15-20 mmHg. The results of these studies indicate that contractions of intestinal smooth muscle can increase intestinal oxygen uptake and may contribute to the overall oxygen demands of the gut under conditions of fasting and feeding. Furthermore, large (greater than 20 mmHg) increments in lumen pressure during enhanced motility may compromise intestinal oxygenation.

Acetylcholine

Relation between pancreatic growth and blood flow.

Male rats were treated with daily subcutaneous injections (3 micrograms/kg) of cholecystokinin octapeptide (CCK-OP), a synthetic CCK analogue, for 2, 4, 7, and 14 days, while control rats were injected with saline over the same intervals. Regional blood flows were measured with Sc46-labeled microspheres using the reference-organ method. Pancreatic wet and dry weights were determined in each treatment group. Total pancreatic DNA content was estimated with the diphenylamine reaction. Significant hyperplasia and increases in pancreatic wet weight occurred at 7 and 14 days, although hypertrophy was not evident in any of the treatment groups. No increases in small intestine wet weight or DNA content were evident in any treatment group. CCK-OP treatment induced a significant pancreatic hyperemia at 2 and 4 days of treatment. Pancreatic blood flow at 7 and 14 days was not different from control when expressed per unit tissue weight. The hyperemia seen at 2 and 4 days was not due to either a direct vascular effect of CCK-OP or an increase in pancreatic exocrine secretion. The hyperemia is therefore due to the growth stimulus and may be related to vasodilator metabolite accumulation during pancreatic tissue proliferation.

Animals

Effects of temperature on ileal blood flow and oxygenation.

Arterial pressure, venous outflow pressure, blood flow, and arteriovenous oxygen difference were measured in autoperfused preparations of canine ileum while lumen temperature was altered in 1-5 degrees C increments (or decrements) between 31 and 40 degrees C. Neither blood flow nor vascular resistance was correlated to lumen temperature. However, both arteriovenous oxygen difference and oxygen uptake were linearly correlated with lumen temperature. The relation between ileal oxygen uptake and lumen temperature was consistent with a change in metabolic rate for a 10 degrees C change in temperature (Q10) for oxygen consumption of 2.7. These observations indicate that ambient temperature exerts a profound influence on intestinal oxygen consumption and that variations in temperature may explain the wide range of intestinal oxygen uptake values reported in the literature.

Animals

Vasoactive agents and the mesenteric microcirculation.

Vasoactive agents are known to have a variety of effects on the dynamics of the mesenteric microcirculation. We compare and contrast the effects of both vasodilators and vasoconstrictors on capillary filtration coefficient, vascular permeability, tissue oxygen tension, and microvascular pressure. The various methodologies used to determine the above quantities are discussed, as well as the limitations and advantages of each approach. Discrepancies between the results obtained with particular classes of vasoactive agents are discussed relative to both dosage and route of administration. In addition, data obtained for each parameter using both whole-organ and in vivo microscopic techniques are reconciled relative to the characteristics of each approach. Experimental designs are proposed that may help minimize future inconsistencies in the data, as well as maximize the relative advantages of available techniques.

Animals

Intestinal vasoregulation in spontaneously hypertensive rats.

The intestinal vascular responses to graded reductions in arterial pressure and elevations in venous pressure were measured in normotensive Wistar-Kyoto (WKY) and spontaneously hypertensive (SHR) rats. Blood flow and capillary pressure were measured in denervated, autoperfused segments of small intestine. Blood flow, capillary pressure, and total vascular resistance were significantly higher in SHR than WKY at the resting mean arterial pressures. Decrements in arterial pressure led to significant reductions in total vascular resistance in WKY but not in SHR. There was a significant tendency for capillary pressure autoregulation in WKY but not in SHR. Increments in venous pressure did not alter vascular resistance in WKY, yet significantly increased total vascular resistance in SHR. The latter effect was due entirely to a rise in precapillary resistance and is consistent with an enhanced sensitivity of the vasculature to myogenic factors. Intestinal blood flow, measured using 15-micro microspheres, was not significantly different between WKY and SHR in innervated preparations. However, in denervated preparations intestinal blood flow was significantly higher in SHR than WKY, indicating that there is a significant neural component to the increased intestinal vascular resistance in SHR.

Animals

Effect of neurotensin on intestinal capillary permeability and blood flow.

Experiments were performed in 10 cats of either sex to ascertain the effects of postprandial arterial plasma concentrations of neurotensin (NT) on intestinal capillary permeability and blood flow. NT was infused intra-arterially into an isolated perfused loop of terminal ileum to produce a 182 +/- 15 (SE) pM plasma NT concentration. Intestinal lymph (L) and plasma (P) protein concentrations were measured at various venous pressures under control conditions and during NT infusion. The osmotic reflection coefficient (sigma d) was estimated under all conditions assuming sigma d = 1 - L/P at high capillary filtration rates. NT infusion significantly (P less than 0.001) reduced sigma d to 0.73 +/- 0.02 (SE) from a control level of 0.91 +/- 0.01. NT infusion also significantly increased intestinal blood flow [47.0 +/- 4.3 (SE) ml X min-1 X 100 g-1] versus control (36.6 +/- 3.2 ml X min-1 X 100 g-1), a 28.4% increase. Intestinal vascular resistance was decreased from 3.21 +/- 0.31 to 2.42 +/- 0.28 mmHg X min X ml-1 X 100 g in the absence of a change in local mean arterial blood pressure. Pore-stripping analysis of lymph and plasma solute fractions during NT infusion at high lymph flows predicted two populations of pores, 330-A and 46-A radius, accounting for 31 and 67%, respectively, of the total transcapillary hydraulic flow. NT infusion preferentially increased large-pore radius as a means of increasing intestinal capillary permeability. The rates of small- to large-pore areas and numbers were 106:1 and 5,225:1, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Sympathetic stimulation and intestinal capillary fluid exchange.

Sympathetic nerve stimulation is generally considered not to alter intestinal capillary pressure or filtration rate because of appropriate adjustments in the pre-to-postcapillary resistance ratio. To directly assess this possibility, we measured lymph flow, capillary pressure, capillary filtration coefficient, and the transcapillary oncotic pressure gradient in the cat small intestine. Measurements were taken under control conditions and during the steady-state phase of periarterial nerve stimulation, i.e., following completion of the escape phase. Venous outflow pressure was held constant (0 mmHg) during the entire experiment. Nerve stimulation resulted in a significant reduction of lymph flow (by 65%), capillary filtration coefficient (by 75%), and capillary pressure (by 15%). Interstitial fluid pressure, calculated from the measured parameters in the Starling equation, was also reduced (from -0.74 to -2.53 mmHg) by nerve stimulation. The results of this study indicate that intestinal capillary pressure and capillary filtration rate are not "autoregulated" during sympathetic nerve stimulation. Capillary derecruitment appears to be largely responsible for the dramatic reduction in filtration rate associated with adrenergic stimulation.

Animals

Role of humoral factors in the intestinal hyperemia associated with chronic portal hypertension.

The role of neural, metabolic, physical, and humoral factors in the intestinal hyperemia associated with chronic portal hypertension was examined by use of the rat portal vein stenosis model. Intestinal blood flow and splenic pulp pressure were increased, while systemic arterial pressure and total vascular resistance were reduced in portal vein-stenosed rats as compared with controls. The reduction in total vascular resistance was entirely due to a fall in precapillary resistance and was accompanied by an increase in intestinal capillary pressure, which exceeded that produced by acute portal pressure elevation to the same level. Arteriovenous shunting of 15-micron microspheres was four times higher in portal-hypertensive rats. Cross-perfusion of control intestinal preparations with arterial blood from portal-hypertensive rats produced a 30% increase in blood flow. Plasma glucagon levels in portal-hypertensive rats were three times higher than in controls. Intra-arterial infusion of glucagon (at a rate that achieved the concentration measured in portal-hypertensive animals) produced a 20% reduction in intestinal vascular resistance. The results of these studies indicate that humoral factors, including glucagon, are primarily responsible for the hyperemia associated with portal hypertension.

Animals

Arterial and microvascular contributions to cerebral cortical autoregulation in rats.

The responsiveness of the microvasculature and arteries during cerebral cortical autoregulation in rats was determined from measurements of microvascular pressures and blood flow as the systemic arterial pressure was altered. At systemic arterial pressures from 65 to 155 mmHg, cortical blood flow was essentially constant. Arterioles with a resting internal diameter of 20-70 microns responded by nearly equal proportional changes in diameter over this pressure range, but microvascular pressures were a linear function of arterial pressure. The percent of control changes in arterial and microvascular resistances at systemic pressures from 80 to 180 mmHg were nearly identical. Therefore, the microvasculature and arterial vasculature were approximately equally responsive to changes in arterial pressure over most of the autoregulatory pressure range. In addition, the arterial vasculature controlled 45-50% of the total vascular resistance at systemic arterial pressures from 40 to 180 mmHg. These data indicate that the cerebral vascular autoregulation in the rat depended substantially on the approximately equal responsiveness of the arterial vasculature and microvasculature. Similar results have been reported in cats and may indicate a common form of cerebral vascular control, which involves both the microvasculature and brain arteries among different species.

Animals