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Biomedical subjects

T M Saba

Publications and source records attributed to T M Saba.

At least 109 records · Page 6Linked to original sources

Influence of gelatin on bioassayable and immunoreactive opsonic fibronectin.

Plasma fibronectin has a high affinity for denatured collagen (gelatin) and exerts an opsonic influence on phagocytosis of test colloids and clearance of tissue debris by macrophages. This study evaluated the effect of in vitro and in vivo interaction of gelatin with plasma on measurable bioassayable opsonic activity and immunoreactive fibronectin. Incubation of human, dog, sheep, and rat plasma with gelatin prior to in vitro assay decreased (P less than 0.05) the ability of plasma to augment particle uptake in the liver slice bioassay. Incubation of plasma with gelatin also decreased the concentration of fibronectin that could be detected by electroimmunoassay. Intravenous infusion of gelatin into rats, dogs, and sheep resulted in an acute depression in both bioassayable and immunoreactive opsonic observations suggest that deficits of opsonic fibronectin as documented in injured patients by bioassay and electroimmunoassay may not be exclusively related to actual depletion of fibronectin from blood but may be, in part, due to binding of fibronectin to blood-borne material post-trauma, i.e., collagenous tissue debris, whose presence in plasma may limit its detection by both assays.

Adult↗

Neutrophil-mediated lung localization of bacteria: a mechanism for pulmonary injury.

The reticuloendothelial system (RES) is thought to ensure organ integrity following trauma, burn, and sepsis by removing potentially embolic particulate matter and blood-borne bacteria from the circulation. Blockade of the RES with foreign colloids is known to result in a consumptive depletion of opsonic fibronectin, which modulates reticuloendothelial function, and an increase in lung localization of test particles. We investigated the role of neutrophils as a contributing factor in the increased localization of blood-borne bacteria in the lung after blockade. RE blockade induced by gelatin-coated colloid particle injection resulted in an acute (15-minute) increase in the number of 51Cr-labeled neutrophils localized in the lung, with return to control levels at 60 minutes after blockade. Fibronectin administration following blockade resulted in a significant (P less than 0.05) prolonged retention of neutrophils in the lung up to 2 hours after blockade. A parallel increase (P less than 0.05) in lung localization of heat-killed 14C-labeled Pseudomonas aeruginosa following colloid-induced RE blockade was observed, and fibronectin further increased the number of bacteria localized in the lung. Experimentally induced neutropenia abrogated the effect of colloid injection on lung localization of bacteria. It is concluded that a particulate load results in simultaneous RE blockade and neutrophil margination in the lung, both of which contribute to the increase in lung localization of bacteria. A mechanism for neutrophil-mediated pulmonary injury related to RE dysfunction following trauma is proposed.

Animals↗

Evaluation of a rapid immunoturbidimetric assay for opsonic fibronectin in surgical and trauma patients.

A rapid and sensitive method for determination of plasma or serum opsonic fibronectin was developed and evaluated. This is a kinetic immunoturbidimetric assay based on the measurement of an antigen-antibody reaction. Comparison with electroimmunoassay was conducted in septic surgical and trauma patients with opsonic fibronectin deficiency before and after infusion of fibronectin-rich plasma cryoprecipitate. In contrast to the 24 to 48 hr needed for obtaining quantitative determinations by electroimmunoassay, the immunoturbidimetric assay can be accomplished within 10 min and requires only 5 microliters of serum or plasma. The concentration of opsonic fibronectin in plasma is greater than in serum. Plasma anticoagulated with EDTA and supplemented with aprotinin (Trasylol) to inhibit proteolytic activity is the procedure of choice for preparation of samples prior to analysis. The rapid immunoturbidimetric assay has clinical value as a rapid, sensitive, noninvasive means of assessing opsonic fibronectin and indirectly evaluating RES function. Its diagnostic as well as prognostic value with respect to various diseases remains to be carefully studied.

Adult↗

Humoral regulation of plasma opsonic fibronectin levels: its role in reticuloendothelial recovery after RE blockade.

The present study in rats evaluated the concept that a humoral factor regulates opsonic fibronectin levels. Intravenous administration of gelatin-coated particles depletes immunoreactive opsonic fibronectin by 95% within 30 minutes. Partial restoration of opsonic protein was observed by 3 hours with complete recovery 6-24 hours. Post-blockade serum was then evaluated with respect to this humoral factor. Controls were given either normal serum or serum rendered fibronectin-deficient by affinity chromatography. Affinity-adsorbed fibronectin-deficient serum did not increase immunoreactive opsonic fibronectin. Injection of normal serum resulted in the expected elevation in fibronectin due to its fibronectin content. In contrast, injection of fibronectin-deficient serum obtained during RE blockade dramatically elevated (P less than 0.02) immunoreactive opsonic fibronectin to 160.6 +/- 14% of control levels by 3 hours. Thereafter, fibronectin levels returned to control over the 6-24 hour period. Our temporal studies suggest that a circulating transferable factor, which may be a hormone, may influence the synthesis and/or release of opsonic fibronectin.

Animals↗

Plasma fibronectin (opsonic glycoprotein): its synthesis by vascular endothelial cells and role in cardiopulmonary integrity after trauma as related to reticuloendothelial function.

Progressive multiple organ failure in association with septic complications in the surgical, trauma and burn patient is of major clinical importance. Reticuloendothelial system host defense mechanisms are abnormal following severe trauma and burn. Failure in systemic host defense is, in part, mediated by a deficiency in a circulating opsonic alpha 2 surface binding (SB) glycoprotein. This opsonic deficiency and reticuloendothelial host defense failure appears etiologic in the genesis of organ failure with sepsis. Opsonic alpha 2SB glycoprotein is identical to cold-insoluble globulin or plasma fibronectin. Plasma fibronectin is antigenically related to cell surface fibronectin which appears to be synthesized by both fibroblasts and vascular endothelial cells. Although these two proteins are antigenically related, they may or may not be identical with respect to biochemical properties and function. Cell surface fibronectin appears to be an adhesive glycoprotein mediating cell-cell interaction and cell adhesion to a substratum. Plasma fibronectin is a more soluble form which mediates reticuloendothelial or macrophage clearance of particulates such as fibrin microaggregates, collagenous debris, perhaps other bacterial or nonbacterial particulates. Since opsonic glycoprotein is identical to cold-insoluble globulin which can be readily concentrated in plasma cryoprecipitate, it has been shown that cryoprecipitate infusion can reverse opsonic deficiency in the injured patient with sepsis. Reversal of opsonic deficiency by cryoprecipitate infusion results in a marked improvement in cardiopulmonary function which includes a decline in the pulmonary shunt, a decrease in the physiologic dead space, an increase in limb blood flow, an increase in reactive hyperemia of the peripheral circulation and an increase in limb oxygen consumption. This cardiopulmonary response is paralleled by a decline in the septic state and normalization of other hematologic parameters. These studies suggest an important homeostatic role for fibronectins in organ and microvascular integrity, especially in the septic injured patient. Cell surface fibronectin which participates in cell adhesion may, in part, modulate microvascular integrity, vascular permeability and would repair. In contrast, the more soluble plasma fibronectin or opsonic alpha 2SB glycoprotein may mediate reticuloendothelial clearance of blood-borne particulates to prevent pulmonary and peripheral vascular microembolization and organ injury. Thus, reversal of opsonic deficiency may be an effective modality of therapy in the septic injured patient with organ failure.

Animals↗

Circulating immunoreactive and bioassayable opsonic plasma fibronectin during experimental tumour growth.

Immunoreactive and bioassayable plasma fibronectin (opsonic α(2) surface-binding (SB) glycoprotein) was measured during experimental Sarcoma-180 tumour growth in mice. Male C57BL/6 mice were challenged s.c. with 2 × 10(6) viable Sarcoma-180 tumour cells and evaluated sequentially in parallel with saline-injected controls over a 21-day experimental period. Before challenge, immunoreactive plasma fibronectin was 1050-1150 μg/ml. Minimal tumour growth occurred until 6 days after tumour challenge. There was then a rapid increase in primary tumour size, especially over the 7-14-day interval, with a plateau of growth over the 18-21-day interval. Immunoreactive plasma fibronectin was significantly (P < 0·05) raised at 3 and 7 days after tumour challenge. A rapid rise (P < 0·001) to 2816·6 ± 158·9 μg/ml was observed at 14 days followed by a modest decline at 21 days. Bioassayable opsonic activity increased (P < 0·5) with the rise in immunoreactive fibronectin 3 and 7 days after tumour challenge, but the rapid rise in immunoreactive fibronectin over the 7-14-day interval was associated with a significant (P < 0·5) fall in bioassayable opsonic activity. Thus, the rapid rise in immunoreactive plasma fibronectin parallels the rapid rate of tumour growth, but is associated with a fall in opsonically active plasma fibronectin. Dissociation between immunoreactive and opsonically active plasma fibronectin may be mediated by inhibition and/or alteration of circulating fibronectin during rapid tumour growth. Alternatively, it may reflect increased release of antigenically related protein (i.e. cell-surface fibronectin) during rapid tumour growth, which may have limited biological opsonic activity.

Animals↗

Reticuloendothelial clearance of blood-borne particulates: relevance to experimental lung microembolization and vascular injury.

The rapid increase in sheep lung vascular permeability observed during Pseudomonas aeruginosa bacteremia may be due to embolization of the pulmonary microvasculature by bloodborne particulates. Since alterations in lung microvascular permeability during mild septicemia in sheep may reflect inefficient RES phagocytic clearance of bacteria as well as products of bacterial induced intravascular coagulation, the opsonic and phagocytic aspects of RES function in sheep (30-50 kg) were compared to other species. RES function was evaluated by both the clearance and relative organ uptake of gelatinized I(131) RE test lipid emulsion and gelatinized colloidal carbon. Immunoreactive opsonic a(2)SB glycoprotein levels were determined by electroimmunoassay. The phagocytic index for RES clearance of the gelatinized (500 mg/kg) test lipid in sheep was 0.019 +/- 0.002 corresponding to a half-time of 16.65 +/- 1.74 minutes. With colloidal carbon (64 mg/kg), the phagocytic index in sheep was 0.080 +/- 0.026, corresponding to a half-time of 6.16 +/- 1.99 minutes. The per cent of injected lipid emulsion (%ID) in major RE organs, on a total organ basis (TO), was: liver = 15.69 +/- 1.65%; spleen = 2.09 +/- 0.78%. Localization in the lung = 31.39 +/- 6.2%. The per cent of carbon localized in major RE organs (%ID/TO) was: liver = 21.37 +/- 1.9%; spleen = 1.95 +/- 0.55%. Localization in the lung = 32.70 +/- 4.55%. In contrast, clearance and organ distribution of the blood-borne test microparticles in rats and dogs at the same relative challenging dose revealed a much more intense and rapid liver and spleen RES uptake with minimal lung localization (1-2%). Immunoreactive opsonic protein concentrations varied greatly with species and directly correlated with efficiency of RES function. Levels observed were: dog = 1285 +/- 135 microg/ml; mouse = 1077 +/- 67 microg/ml; rat = 400 +/- 31 microg/ml; human = 297 +/- 10 microg/ml; and sheep = 184 +/- 13 microg/ml. After intravenous particulate challenge, circulating immunoreactive opsonic protein in the sheep was depleted (p < 0.05) rapidly with partial recovery at 24 hours and mild rebound hyperopsonemia at 48 hours. This pattern is in contrast to the rapid restoration seen in dog and rat within three to six hours postchallenge. Thus, in sheep, the extensive pulmonary localization of blood-borne microparticles appears related to inefficient RES clearance function mediated by a relative deficiency of circulating opsonic protein (plasma fibronectin).

Animals↗

Pulmonary gas exchange abnormalities following intravascular coagulation. Reticuloendothelial involvement.

The influence of reticuloendothelial (RE) blockade on the pulmonary hemodynamic and gas exchange response to thrombin induced low-grade intravascular coagulation was studied in dogs during fibrinolytic inhibition. Neither saline infusion nor experimentally induced RE blockade significantly increased pulmonary vascular resistance, physiologic dead space, or pulmonary venous admixture. Intravascular coagulation in the absence of RE blockade resulted in a significant (p less than 0.05) elevation in pulmonary vascular resistance which was transient and returned to prechallenge levels over a two to four hour period. This response was not associated with any significant change in physiological dead space. In contrast, intravascular coagulation in the presence of RE blockade resulted in significant (p less than 0.05) hemodynamic and gas exchange abnormalities. These included an acute elevation in pulmonary vascular resistance, a decrease in arterial oxygenation, an increase in pulmonary venous admixture, and a sustained elevation in physiologic dead space. These events were associated with an elevation in the lung wet-to-dry weight ratios. Gas exchange and hemodynamic alterations afterthrombin infusion during RE blockade suggest a functional role for the reticuloendothelial system in the prevention of pulmonary injury during intravascular coagulation. Thus, this study suggests a possible role of the RES in minimizing pulmonary injury during states of increased microaggregate formation.

Animals↗

Opsonic glycoprotein (plasma fibronectin) levels after burn injury. Relationship to extent of burn and development of sepsis.

The time course of immunoreactive and bioassayable opsonic alpha 2-SB glycoprotein (plasma fibronectin), as well as its relationship to both the extent of injury and development of postburn sepsis, was evaluated following burn injury. Immunoreactive opsonic fibronectin was depleted acutely within hours following burn; its maximal depletion occurring 12 hours postburn injury. The magnitude of depletion was correlated with the body surface area burned, and normal levels were restored at 24 hours postinjury. There was a tendency toward rebound hyperopsonemia at two weeks postburn, with a slow return to normal over the ensuing weeks. Bioassayable opsonic protein levels, in general, paralleled those of immunoreactive protein. Following restoration of opsonic protein levels, a secondary phase of opsonic fibronectin deficiency (p equal to 0.05) developed in those burn patients that became septic. Moreover, this opsonic fibronectin deficiency actually became apparent prior to the onset of clinical sepsis, although it was maximal during sepsis. The resolution of the septic episode was associated with the return of plasma opsonic fibronectin levels to normal. The possibility that secondary deficiency in immunoreactive opsonic fibronectin may be a reliable index of impending sepsis following burn warrants further investigation.

Adolescent↗

Increased creatinine clearance following cryoprecipitate infusion in trauma and surgical patients with decreased renal function.

Deficiency of opsonic alpha 2 surface binding (SB) glycoprotein (cold-insoluble globulin, plasma fibrinectin) is related to depressed reticulendothelial function as well as to multiple organ failure after tissue injury and sepsis. Cryoprecipitate (250 ml), extracted from 10 units of human plasma, was infused over 60 minutes into 11 hypo-opsonemic patients with decreased renal function. Cardiac output, mean arterial pressure, creatinine clearance, and limb blood flow were measured before and at intervals of 14 to 20, 35 to 44, and 60 to 66 hours following cryoprecipitate infusion. Before infusion, the mean creatinine clearance was 30 +/- 4 ml/min/M2 body surface area (BSA) and increased to 40 +/- 6 ml/min/M2 BSA at 14 to 20 hrs (p < 0.05); to 40 +/- 4 ml/min/M2 BSA at 35 to 44 hrs (p < 0.05); and to 40 +/- 5 ml/min/M2 BSA at 60 to 66 hrs (p < 0.05). In contrast, mean arterial pressure and cardiac index at each time interval showed no significant changes from the pretreatment values of 81 +/- 6 mm Hg and 3.4 +/- .2 L/min/M2 BSA, respectively. Limb blood flow increased significantly at 4 hours and returned to control values by 35 to 44 hours. Thus cryoprecipitate infusion to critically ill trauma and surgical patients with depressed renal function may improve glomerular filtration rate independently of mean arterial pressure or cardiac output. This improved renal function may be related to increased reticuloendothelial clearance of blood-borne particulates and/or improved microcirculatory function and lends support to the concept that RES failure may be involved in the etiology of multiple organ failure secondary to combined tissue injury and sepsis.

Adolescent↗

Influence of opsonic fibronectin deficiency on lung fluid balance during bacterial sepsis.

Lung microvascular permeability in sheep increases during Pseudomonas bacteremia. The sheep's low plasma opsonic fibronectin concentration and associated inefficient reticuloendothelial clearance of blood-borne particulates may contribute to the response of increased lung vascular permeability during sepsis. The present study investigated the influence of sepsis on lung fluid balance in sheep with and without opsonic glycoprotein (plasma fibronectin) deficiency. Using the lung lymph fistula preparation in sheep, we made measurements of lung lymph flow (QLYM), lymph-to-plasma protein concentration ratios (L/P), pulmonary hemodynamics, and extravascular lung water content. Deficiency of opsonic fibronectin resulted in a minimal increase in lymph flow with no change in transvascular protein clearance (QLYM X L/P). Pseudomonas sepsis with or without fibronectin deficiency resulted in a stable L/P and a transient increase in pulmonary arterial pressure, which declined to a new steady state. Although sepsis resulted in a 100% elevation (P < 0.05) in lymph flow and transvascular protein clearance, sepsis in the presence of fibronectin deficiency induced a sustained 300--400% increase in lymph flow and a 300% increase in transvascular protein clearance. Thus opsonic fibronectin deficiency exaggerates the increased lung vascular permeability during sepsis.

Animals↗