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Biomedical subjects

G L Freeman

Publications and source records attributed to G L Freeman.

At least 55 records · Page 3Linked to original sources

Induction of proinflammatory cytokine expression in experimental acute Chagasic cardiomyopathy.

One of the hallmarks of Chagas' disease (caused by Trypanosoma cruzi) is progressive cardiomyopathy. The disease is associated with increased serum TNF-alpha levels, and TNF-alpha is known to depress cardiac function. It is, however, not known whether the cytokines are produced within the infected myocardium. One-month-old male Lewis rats were injected with cell culture-derived T. cruzi trypomastigotes and killed 15 days post-infection. As compared to normal animals, histologic analysis of infected animals revealed dense infection with amastigotes within myocytes and a minimal inflammatory infiltrate in the myocardium. Northern blot analysis of total RNA revealed no signal for IL-1beta or TNF-alpha, and a weak signal for IL-6 in the control rat hearts, and high levels of expression for the three genes in the infected rats. Western blots revealed results similar to that of mRNA levels, suggesting that, in addition to mechanical damage, infection by T. cruzi induces proinflammatory cytokine production in the myocardium itself, which may further exacerbate the pathology, and affect adversely myocardial function.

Animals↗

Tumor necrosis factor-alpha induces a biphasic effect on myocardial contractility in conscious dogs.

Tumor necrosis factor-alpha (TNF-alpha) likely plays a role in the pathophysiology of myocardial depression observed in septic shock. To evaluate the hemodynamic effects of TNF-alpha in vivo while eliminating the influence of altered sympathetic tone, eight conscious chronically instrumented dogs were studied after pretreatment with propranolol (2 mg/kg) and atropine (2mg). Using three sets of piezoelectric crystals to measure left ventricular (LV) volume and LV manometers to measure pressure, we determined load-independent parameters of LV systolic performance before, during, and after infusion of recombinant human TNF-alpha (rhTNF-alpha, 40 micrograms/kg for 1 hour). Plasma was analyze for epinephrine and norepinephrine. Between 1 and 7 hours of exposure, rhTNF-alpha induced significant increases in circulating catecholamines. Norepinephrine rose from 268.6 +/- 47.2 to 426.2 +/- 87.0 pg/mL (P < .05) at 1 hour and peaked at 921.2 +/- 156.8 pg/mL (P < .001) at 4 hours after initiating rhTNF-alpha treatment. Similarly, epinephrine increased from 130.2 +/- 30.9 to 884.5 +/- 210.2 pg/mL (P < .05) at 1 hour and peaked at 3195.3 +/- 476 pg/mL (P < .001) at 4 hours. Before the surge of circulating catecholamines and despite complete beta adrenergic blockade, rhTNF-alpha induced a 7% to 40% increase in LV contractile performance during the 60-minute infusion. After this initial positive inotropic effect, rhTNF-alpha treatment led to precipitous systolic dysfunction between 2 and 7 hours of exposure; this myocardial depressant effect persisted at 25 hours. LV systolic performance declined to 19% to 35% of baseline values, depending on the specific contractile parameter evaluated. We conclude that rhTNF-alpha affects LV systolic function in a time-dependent biphasic manner. Increases in circulating catecholamines after rhTNF-alpha infusion cannot account for the early improvement in LV systolic performance.

Animals↗

Postextrasystolic mechanical restitution in closed-chest dogs. Effect of heart failure.

BACKGROUND: Postextrasystolic mechanical restitution (MRPES) is thought to be an expression of intracellular Ca2+ handling by cardiac sarcoplasmic reticulum (SR). Since congestive heart failure is characterized by abnormal intracellular Ca2+ homeostasis, we sought to delineate MRPES behavior before and after the production of heart failure to obtain insights into the relation between altered mechanical performance and Ca2+ handling. METHODS AND RESULTS: Ten dogs instrumented with left ventricular (LV) micromanometers and piezoelectric dimension crystals were studied under control conditions; 6 dogs also were studied after tachycardia heart failure (THF) produced by rapid LV pacing for 4 weeks. After priming at a basic cycle length of 375 ms, test pulses were delivered at fixed extrasystolic intervals (ESIs; 300, 375, or 450 ms) and graded postextrasystolic intervals (PESIs). Postextrasystolic mechanical response was assessed using single-beat elastance. MRPES curves were constructed by expressing normalized mechanical response as a function of the PESI. Control MRPES was a monoexponential function whose time constant (TC) and PESI-axis intercept (PESI0) increased significantly (P < .01) with increases in the antecedent ESI. THF significantly slowed MRPES kinetics at each antecedent ESI (P < .025), increased normalized maximal contractile response (CRmax, P < .01), and shortened PESI0 (P < .025). Increases in the TC and CRmax were most pronounced with the smallest antecedent ESI (percent control postextrasystolic TC 363.7 +/- 60.5%, ESI of 300 ms versus 139.0 +/- 15.1%, ESI of 450 ms, P < .005; percent control CRmax 128.6 +/- 4.9%, ESI of 300 ms versus 104.9 +/- 1.0%, ESI of 450 ms; P < .005). CONCLUSIONS: MRPES is much less dynamic in THF: The failing heart operates at lower levels of contractile performance after higher stimulation frequencies and cannot increase its speed of contractile recovery to compensate for higher heart rate. Prolongation of MRPES kinetics is consistent with depression of SR Ca2+ release mechanisms in THF and implicates this site in the loss of the capacity of the failing heart to maintain mechanical performance with tachycardia.

Animals↗

Effect of tachycardia heart failure on the restitution of left ventricular function in closed-chest dogs.

BACKGROUND: Cardiac mechanical restitution and relaxation restitution are thought to be physiological correlates of the recovery kinetics of Ca2+ release mechanisms and sequestration capacity of the sarcoplasmic reticulum (SR). Since congestive heart failure is characterized by abnormal intracellular Ca2+ handling, we sought to delineate changes in mechanical and relaxation restitution produced by heart failure. METHODS AND RESULTS: Six dogs instrumented with left ventricular (LV) micromanometers and piezoelectric dimension crystals were studied under control conditions and after tachycardia heart failure (THF) produced by rapid LV pacing for 3 to 4 weeks. After priming at a basic cycle length of 375 ms, test pulses were delivered at graded extrasystolic intervals (ESIs). Mechanical response was assessed from single-beat elastance. Relaxation was assessed from the time constant of isovolumic relaxation (tau), the average rate of pressure fall during isovolumic relaxation (Ravg), and peak negative dP/dt, the first derivative of LV pressure. Normalized mechanical and relaxation responses plotted against ESI produced monoexponential curves of mechanical and relaxation restitution. THF depressed baseline contractile and relaxation parameters compared with control (end-systolic elastance, 4.7 +/- 0.4 versus 7.1 +/- 0.5 mm Hg/mL, P < .005; tau, 34.8 +/- 2.2 versus 26.7 +/- 1.2 ms, P < .05; all values mean +/- SEM). THF slowed mechanical restitution and delayed development of peak contractile response, with the time constant of mechanical restitution increasing from 61.8 +/- 6.9 to 100.2 +/- 9.6 ms, P < .01. THF abolished the biphasic behavior of relaxation restitution, and this relation was approximated by a single monoexponential function. There was no difference in the time constants of the first phase of relaxation restitution at control and after THF (TCR1, normalized 1/Ravg, 44.3 +/- 5.6 versus 42.0 +/- 8.5 ms, P = NS; TCR1, normalized (dP/dtmin)-1, 42.2 +/- 6.3 versus 36.7 +/- 4.3 ms, P = NS). CONCLUSIONS: These results indicate that THF alters the recovery kinetics of SR Ca2+ release to a significantly greater extent than those of SR Ca2+ sequestration and that the abnormal time course of Ca2+ availability to the myofilaments is the rate-limiting step in the recovery of cardiac function after a depolarization.

Animals↗

Serum-free culturing of adult Schistosoma mansoni in dialysis bags for the production of excretory/secretory antigens.

Antigenic excretory/secretory (E/S) products from Schistosoma mansoni are potentially important in the development of diagnostic assays used to detect circulating antigens in schistosomiasis. The E/S products to be used as antigen(s) for this development must, by necessity, be free of exogenous proteins. The ability to extend serum-free in vitro culture of adult worms is, therefore, essential. Adult worms were perfused from mice, washed in serum-free RPMI-1640 with antibiotics, and placed in sterile dialysis bags, molecular weight cut-off 10 kDa, at a concentration of 100 worms in 1 ml of serum-free, supplemented RPMI-1640. Each bag was then placed in a flask of supplemented RPMI-1640 with 10% fetal calf serum in a humidified incubator at 37 C, 7% CO2. At days 1, 3, 5, 8, and 12, worms were collected; E/S culture medium was analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis. Worm survival rates were 85% after 1 day in culture, dropping gradually to 65% on day 8, and then to 38% on day 12. Silver stain for total protein and immunoblot exposed to positive human infection serum showed E/S culture media from days 3 and 5 having the least complex banding pattern. The quantitative specific activity of E/S, as measured by antigen-limiting Falcon assay screening test system-enzyme-linked immunosorbent assays against human infection serum, indicates E/S antigenicity closely follows the attrition of worms and, therefore, may be directed against the release of somatic antigens by dead worms. Culturing S. mansoni in dialysis tubing is useful in deriving E/S products.

Animals↗

Elevated innate peripheral blood eosinophilia fails to augment irradiated cercarial vaccine-induced resistance to Schistosoma mansoni in IL-5 transgenic mice.

Numerous factors contribute to host resistance to infection with Schistosoma mansoni. Although several studies have investigated the eosinophil as an effector cell of protective responses, its true role remains unclear. In vitro, human, but not mouse, eosinophils can kill schistosomula. Studies on schistosome infection susceptibility in naive or vaccinated eosinophil-deficient mice have yielded conflicting results. Using the gamma-irradiated cercariae (irr-cerc) model, we vaccinated interleukin (IL)-5 transgenic mice in parallel with background-matched controls (C3H/HeN) to examine whether innate eosinophilia contributes to increased protection from a challenge infection. In our laboratory, mean peripheral blood eosinophil (PBE) levels in IL-5 transgenic mice were 21,000 mm3, whereas in naive C3H/HeN mice this value was 240 mm3. In 3 separate experiments, both groups of vaccinated mice showed significant resistance to challenge infection. However, there was no significant difference in the percent worm reduction between transgenic IL-5 C3H mice (mean % protection = 44.3; range = 42-45%) and the control C3H/HeN mice (mean % protection = 51.7; range = 41-64%). Our findings indicate that high levels of innate PBE due to constitutive production of IL-5 do not augment irr-cerc-stimulated immunity.

Animals↗

Altered sarcolemmal calcium channel density and Ca(2+)-pump ATPase activity in tachycardia heart failure.

Whether sarcolemmal (SL) calcium handling is altered in endstage heart failure produced by chronic rapid pacing is not known. To investigate this we paced 7 rabbits at a rate of 400 beats/min for 35 +/- 11 days. 6 animals served as non-paced controls. Purified left ventricular SL membranes were then prepared and tested for [3H]-nitrendipine binding and (Ca(2+) + Mg2+)-dependent ATPase (Ca(2+)-pump) activity. Results show a 50% reduction in calcium channel antagonist binding sites with Bmax values reduced from 450 +/- 40 to 230 +/- 8 fmoles/mg protein in response to chronic rapid pacing (P < 0.01). This change was accompanied by a modest decrease in Kd from 0.29 +/- 0.09 to 0.22 +/- 0.03 nM (not significant). Vmax values for the SL Ca(2+)-pump ATPase were decreased from 387 to 164 nmoles/mg protein/min (P < 0.01) with KCa2+ values reduced from 0.91 to 0.28 microM Ca2+ (P < 0.05) in response to tachycardia induced failure as compared to controls. ATPase activity in both groups was very sensitive to 25 microM calmidazolium and 5 microM vanadate. Results from this study indicate that both a reduction in SL calcium channel density and decrease in SL Ca(2+)-pump ATPase activity are evident in tachycardia heart failure. We conclude that sarcolemmal calcium handling is altered in heart failure induced by chronic rapid pacing and that such changes may contribute to systolic dysfunction associated with this model to heart failure.

Animals↗

Analysis of myocardial response to significant weight loss in obese rats.

We evaluated cardiac response to weight loss induced by a very-low-energy (VLE) diet similar to commercially available protein-sparing diets. Such diets have been implicated in sudden death, and whether organ and tissue responses to them are untoward is not known. Rapid weight loss was induced in rats with weights ranging from obese to normal, and cardiac mass and myocardial histomorphometry were assessed. Over 3 wk body weight dropped from 544 +/- 12 to 417 +/- 21 g (P < 0.001). Heart weight was less in the VLE group than in obese controls (1246 +/- 115 vs 1625 +/- 179 mg, P < 0.001), as were the weights of the left ventricle (805 +/- 81 vs 1061 +/- 134 mg, P < 0.001) and right ventricle (198 +/- 27 vs 265 +/- 40 mg, P < 0.002). Reduction in heart weight was commensurate with loss of body weight (r = 0.89). Myocyte cross-sectional area was reduced in the VLE group (452.6 +/- 108.6 to 331.8 +/- 41.5 microns 2, P < 0.05), with no structural abnormalities. We conclude that weight loss in the weight range studied is accompanied by proportional reduction in cardiac mass and myocyte size. Myocardial regression is not accompanied by myocyte dropout or edema, and likely represents a simple adaptation to reduced body size.

Animals↗

Tachycardia heart failure alters rabbit aortic smooth muscle responsiveness to angiotensin II.

The effects of heart failure on the responsiveness of aortic smooth muscle tissue to various vasoactive agents were examined. Heart failure was induced in rabbits by sustained rapid ventricular pacing (400 beats/min) for 6-7 wk. After the rabbits were killed, strips of thoracic aorta were prepared and mounted in tissue baths. Responsiveness of these aortic strips to potassium depolarization and cumulative additions of vasoactive agents was determined. Aortic strips from control and tachycardia heart failure (THF) rabbits developed similar maximum forces to stimulation by potassium depolarization (0.77 +/- 0.08 vs. 0.96 +/- 0.16 kg/cm2), calcium chloride (0.71 +/- 0.09 vs. 0.88 +/- 0.06 kg/cm2), and phenylephrine (0.90 +/- 0.08 vs. 1.14 +/- 0.09 kg/cm2). The maximum relaxation to isoproterenol was also unaffected by THF (0.08 +/- 0.02 vs. 0.07 +/- 0.01 kg/cm2). In contrast, the maximum response of aortic strips from THF rabbits to angiotensin II was significantly lower than control (0.37 +/- 0.07 vs. 0.069 +/- 0.09 kg/cm2). With regard to aortic smooth muscle sensitivity, no differences in the concentrations at which 50% of the maximal response is achieved (EC50) were observed between THF and control strips for calcium chloride (0.10 +/- 0.01 vs. 0.16 +/- 0.04 mM), isoproterenol (51.5 +/- 13.5 vs. 51.0 +/- 5.4 nM), and phenylephrine (65.2 +/- 12.3 vs. 92.5 +/- 18.0 nM). However, THF was associated with a significant increase in the EC50 value for angiotensin II response (2.03 +/- 0.25 vs. 0.58 +/- 0.05 nM). These results demonstrate that THF is associated with a specific and significant reduction in the sensitivity and maximal responsiveness of aortic smooth muscle to angiotensin II.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

Psyllium hypersensitivity.

BACKGROUND: Psyllium-containing laxatives are used by 4 million Americans daily. Dietary supplements for the management of hypercholesterolemia and for prevention of colon cancer make up additional uses of this plant fiber. OBJECTIVE: To assess a patient in an HMO practice with allergic cutaneous and respiratory findings associated with chronic psyllum ingestion and review information on psyllium hypersensitivity. METHODS: Clinical and laboratory evaluation of the patient and literature review through MEDLINE. RESULTS: Two years after initiating regular psyllium-containing laxative use a 40-year-old woman presented with a pruritic macular, papular, and urticarial rash involving the entire body including the palms, soles, and oropharynx sparing only the face. There was an associated sensation of chest and throat tightness and lip swelling. The signs and symptoms resolved upon discontinuance of the psyllium and recurred immediately after the patient initiated a challenge test. The total serum IgE was elevated and the modified RAST for psyllium-specific IgE was positive (Plantago ovata antigen). CONCLUSIONS: The allergens in psyllium appear to be protein in nature and derived from the inner seed endospore and embryo rather than from the husk itself. The patient described herein was sensitized and challenged via ingestion.

Adult↗

Oral corn pollen hypersensitivity in Arizona Native Americans: some sociologic aspects of allergy practice.

Thirty-three Navajo patients were seen in a private allergy consultation practice in Flagstaff, Arizona between 1978 and 1990. Sufficient skin test and historical data were available from nine atopic patients to evaluate hypersensitivity reactions to oral corn pollen used in the Navajo ceremonials. Six of the nine patients had positive skin test reactions to corn pollen and four of these six reported symptoms from oral corn pollen. The symptoms included various combinations of oral and ear itching, sneezing, cough, and wheezing. One corn pollen skin test-negative patient reported slight throat itching from the pollen. In no case did the patient or referring primary care physician associate the symptoms with ceremonial oral corn pollen use. This is the first report of hypersensitivity reactions to the ceremonial use of oral corn pollen in native Americans.

Administration, Oral↗

Evaluation of two oximeters for use in cardiac catheterization laboratories.

We evaluated two whole-blood oximeters designed for use in the cardiac catheterization laboratory: the Oxicom 3000 and the AVOXimeter 1000. Unlike the larger CO-Oximeters, which hemolyze a blood sample before analysis, these simple instruments use disposable cuvettes to allow determination of oxyhemoglobin saturation of whole blood. Thus they eliminate the need for cleaning solutions and considerable maintenance. We evaluated the accuracy of these instruments in comparison with a Radiometer OSM3 and found them both to work well on routine samples. Of note, the AVOXimeter performed better than the Oxicom when the sample was hemolyzed and when green dye was present. In addition, the AVOXimeter measures the total hemoglobin concentration and the oxygen content of each sample, eliminating errors that hemodilution introduces into the determination of cardiac output by the Fick principle. We conclude that whole-blood oximeters are accurate and useful instruments for use in the cardiac catheterization laboratory.

Calibration↗

Cardiac function and functional capacity: implications for the failing heart.

The exercise capacity of patients with congestive heart failure is determined by factors including the interaction of the right and left ventricles and their respective circulations, lung mechanics, skeletal muscle metabolism, and blood flow. Therapeutic efforts should be directed at all of the units in this complex process rather than the response of an individual system. Multiple therapeutic regimens such as nitrates and angiotensin converting enzyme inhibitors in combination with physical training and other therapies that improve pulmonary function produce optimal results. Using this holistic approach to therapy, the physician may have a beneficial impact on the exercise capacity of patients with congestive heart failure.

Blood Circulation↗

An analysis of variability of left ventricular pressure decay.

This study evaluated whether the time course of left ventricular (LV) pressure decay is consistent from beat to beat in the normal heart under tightly controlled experimental conditions. We determined the variability of LV isovolumic relaxation and compared it with that of other hemodynamic parameters. Pressure decay was evaluated using a monoexponential time constant (T), a half-time (T1/2), and an average rate (Ravg) in nine chronically instrumented dogs. To eliminate physical factors that could lead to variability, the dogs were studied at paced heart rates after autonomic blockade and during apnea. At a heart rate of 160 beats/min the coefficient of variation (SD/mean, expressed as a percent) was higher for T (4.7%, P < 0.005), T1/2 (5.0%, P < 0.005), and Ravg (3.2%, P < 0.005) than for dP/dtmax (1.9%), as well as for end-diastolic volume (1.2%), end-systolic volume (1.2%), or end-systolic pressure (1.8%). Similar differences were present at 200 beats/min. Pressure decay was also assessed during major loading shifts induced by rapid caval occlusion. Surprisingly, comparison of first and last beats did not show significant differences for T or T1/2 but did for all standard hemodynamic parameters and for Ravg. While the best correlation with a relaxation parameter and hemodynamic parameters during changing loading conditions was for Ravg, the correlations were not consistent in every case. We conclude that LV pressure decay shows marked variability, unrelated to the algorithm used to assess it. Ravg, a model independent parameter, may be a useful way to quantify LV pressure fall.

Animals↗

Left ventricular energetics in closed-chest dogs.

Studies of ventricular energetics using the relation between myocardial O2 consumption (MVO2) and pressure-volume area (PVA) have been performed extensively in the isolated heart, but not in the intact animal. We characterized the MVO2-PVA relation and its response to heart rate (HR) in eight closed-chest dogs instrumented with high-fidelity micromanometers, piezoelectric crystals, coronary flow probes, and coronary sinus oximetric catheters. The effect of dobutamine was studied in five dogs. MVO2 is linearly related to PVA with lower MVO2 required for the generation of smaller PVAs. Baseline contractile efficiency (EFF) was 25.6 +/- 2.8%. High pacing rates reduced EFF (25.7 +/- 3.2% at a HR of 107 +/- 3 beats/min vs. 16.3 +/- 2.4% at a HR of 194 +/- 5 beats/min, P < 0.0167) and load-independent MVO2 per beat (0.562 +/- 0.119 vs. 0.377 +/- 0.074 J.beat-1 x 100 g LV-1, P < 0.0167) while increasing end-systolic elastance (Ees) (9.4 +/- 1.3 vs. 18.6 +/- 3.1 mmHg/ml, P < 0.0167). Dobutamine administration increased load-independent MVO2 per beat (0.392 +/- 0.108 vs. 0.607 +/- 0.083 J.beat-1 x 100 g LV-1, P < 0.05) and contractility (Ees 10.1 +/- 1.5 vs. 32.0 +/- 7.6 mmHg/ml, P < 0.05) without changing EFF (28.8 +/- 3.8 vs. 30.3 +/- 3.8%, P = NS). Thus the intact animal displays loss of EFF at high heart rates but maintains EFF during dobutamine stimulation. Both interventions increased load-independent MVO2 per minute, indicating increased O2 requirements for excitation-contraction coupling.

Animals↗

Mechanical determinants of coronary blood flow during dynamic alterations in myocardial contractility.

Recently it has been proposed that the decrease in coronary blood flow (CBF) resulting from cardiac contraction referred to as systolic flow impediment (SFI) is dependent on the level of left ventricular elastance (Ees). The average rate of LV relaxation (Ravg) has been shown to be major determinant of diastolic flow development (DFD). We tested these hypotheses using the unique hemodynamic condition of pulsus alternans (PA) where end-systolic LV pressure and instantaneous Ees vary on beat-to-beat basis. In six mongrel dogs instrumented with LV and aortic manometers, ultrasonic dimension crystals, and Doppler coronary flow probes we measured phasic CBF and Ees during PA and control conditions. Maximal pressure development over time (dP/dtmax) and SFI were significantly different between weak (WB) and strong beats (SB) as were Ravg and DFD. Minimum CBF (Qmin) was not different between SB and WB; however, Qmin and peak Ees occurred nearly simultaneously in the WB. Qmin occurred much earlier than peak Ees in the strong and control beats. Plots of instantaneous LV elastance and CBF showed that for control beats and for the strong beats of PA CBF was similar during systole and diastole, suggesting elastance is a unique determinant of CBF. This was quantified as CBF at the time in either systole or diastole when elastance was half-maximal for that beat (E50). During the WB of PA, however, CBF at E50 was significantly higher during systole than during diastole. We conclude that while SFI and DFD are highly dependent on the dP/dt and Ravg, Ees is not a unique determinant of CBF under all conditions.

Animals↗

Two distinct pathological syndromes in male CBA/J inbred mice with chronic Schistosoma mansoni infections.

Humans chronically infected with Schistosoma mansoni most commonly present with the relatively asymptomatic intestinal form of the disease, whereas a small minority develop hepatosplenism characterized by severe hepatic disease with portal hypertension. Investigation of hypotheses describing the pathogenic mechanisms underlying the clinical forms of the human disease has been limited by the absence of an animal model that predictably develops such a spectrum of disease. We report that inbred male CBA/J mice that are chronically infected with S. mansoni develop two distinct syndromes, hypersplenomegaly syndrome (HSS) and moderate splenomegaly syndrome (MSS). Pathologically and immunologically, MSS and HSS remarkably parallel the intestinal and hepatosplenic clinical forms, respectively, in humans. HSS affects approximately 20% of these mice and consists of massive splenomegaly, ascites, thymic atrophy, severe anemia, and cachexia. The remaining majority of mice with MSS develop moderate splenomegaly only. Histopathological features of HSS include 1) relatively extensive hepatic fibrosis and granulomatous inflammation, 2) splenic congestion, 3) lymph node plasmacytosis, and 4) worms and eggs in the pulmonary vasculature. Immunologically, the idiotypes present on antisoluble egg antigen antibodies from HSS mice are distinct from those from mice with acute infections or the chronic MSS infection. These idiotypic differences are similar to those observed in patients with intestinal and hepatosplenic forms of the disease and may have regulatory importance. Investigation of the cellular and molecular events that lead to the development of MSS and HSS may advance current understanding of the pathogenesis of the clinical forms of chronic schistosomiasis in humans.

Animals↗