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Purification of C1 inhibitor. A new approach for the isolation of this biologically important plasma protease inhibitor.

C1 inhibitor (C1-INH) acts to inhibit active enzymes of both the classical complement and Hageman factor-dependent pathways. Previously reported C1-INH purification procedures were multistep and most have been associated with significant loss in specific functional activity. We have developed a simple chromatographic procedure which yields a pure C1-INH protein from normal human plasma with a specific activity equal to or greater than the starting sample. Briefly, protease inhibitor-treated, pooled human citrated plasma was fractionated with polyethylene glycol (PEG 4000); the supernatant fraction that remained soluble at 16% was obtained. The inhibitor was precipitated with 45% PEG. The resulting precipitate was solubilized and chromatographed on DEAE Sephacel using a linear salt gradient. The eluted fractions containing the C1-INH and other contaminants were pooled and dialyzed against the starting buffer of the next chromatographic step. A unique separation procedure using zinc ion chelate-coupled agarose was employed as the second chromatographic step. The eluted C1-INH, after zinc ion chromatography, displayed a significant enhancement in purity and maintained a specific functional activity twice that of plasma. The final procedure utilized immunoadsorption chromatography using an anti-contaminant column. Under reducing conditions on sodium dodecyl sulfate polyacrylamide gel electrophoresis, the purified C1-INH migrated as a single band with an apparent molecular weight of 90,000-105,000, but under non-reducing conditions, a doublet with apparent molecular weights of 94,000-100,000 and 85,000-93,000 was seen. C1-INH antigenic concentrations were measured and shown to be correlated in serum, citrate plasma, and EDTA plasma from 16 normal subjects.

Chelating Agents

[Effect on human complement of blastolysin and the glycopeptide (MDP and GMDP) and carbohydrate fragments of peptidoglycans].

Along with complement activation by the classical pathway, blastolysin, an antitumor and adjuvant preparation of Lactobacillus bulgaricus peptidoglycans, effectively inhibits the transformation of C3 in to C5 convertase. Values of inhibition maximum and dissociation constants of the reversible C3b-acceptor complex for blastolysin and main immunological active structural moieties of peptidoglycans (GMDP, MDP) and their inactive carbohydrate components (N-acetylglucosaminyl-N-acetylmuramic acid, N-acetylglucosamine, and N-acetylmuramic acid) have been determined. Immunostimulator concentrations for blastolysin, GMDP, and MDP in inhibition of the C5 convertase formation (C3b binding) correlate with their doses in vivo (animal blood), displaying antitumor activity.

Acetylmuramyl-Alanyl-Isoglutamine

The conversion of C'IS to C'1 esterase by plasmin and trypsin.

The formation of C'1 esterase from C'1, the first component of complement, may be brought about by the action of plasmin or trypsin upon C'1s, a subcomponent of C'1. These enzymes also decrease the esterolytic activity of C'1 esterase. The formation of C'1 esterase was demonstrated by measuring the appearance of an agent or agents with esterolytic properties and the capacity to inactivate C'2 and C'4, attributes of C'1 esterase. The activity of the agent which evolved was blocked by serum inhibitor of C'1 esterase. The implications of these observations, that the formation of C'1 esterase during complement fixation is mediated by proteolytic processes, are under study. The possible inhibition of C'1q by soybean trypsin inhibitor is in agreement with this hypothesis.

Animals

Demonstration of a complement-dependent migration inhibitory activity in normal guinea pig serum.

A cell migration inhibitory effect was evidentiated in normal guinea pig serum as compared with heat inactivated serum. Granulocytes when used as target showed a greater sensitivity to this effect than lymphomonocytes or macrophages. The migration inhibitory activity of GPS is abrogated or decreased by using complement destroying agents such as: heating at 56 degrees C for as little as 5 min, absorption on immune complexes in presence of calcium, on zymosan, on Sephadex G-50 or by adding EDTA or heparin to culture medium. The GPS dialysation fractions while exhibiting neither complement haemolytic effect nor migration inhibitory activity when tested alone, restored these functions by recombination. Absorption of GPS on homologous blood cells abrogated the migration inhibitory effect but retained the complement haemolytic function. When GPS absorbed on homologous blood cells mixed 1:5 with heat-inactivated serum (5 min at 56 degrees C), the migration inhibitory activity was regained, suggesting that the complement factors from the first sample were necessary for manifestation for the migration inhibitory activity from the heat-inactivated serum.

Animals

Endotoxin inactivating activity of rat serum.

The ability of rat serum to inactivate endotoxin (LPS) was assessed with the aid of the limulus amebocyte lysate assay. Following the addition of various amounts of endotoxin to normal serum the mixture was incubated for 1 hr at 37 degrees C and the residual endotoxin activity determined. One milliliter of rat serum inactivated between 5 and 10 micrograms Escherichia coli LPS per hour. Heating serum for 45 min at 56 degrees C resulted in loss of 80-90% of the LPS inhibitor (LPSI) activity. Serum from cobra venom factor (CVF)-treated rats inactivated between 0.5 and 2.5 micrograms LPS/ml serum. Serum from tolerant rats, even after heating for 45 min at 56 degrees C, inactivates between 10 and 15 micrograms LPS/ml serum/hr; decomplemented tolerant rat serum neutralizes between 5 and 10 micrograms LPS/ml serum/hr. Clearly, the tolerant rat has large quantities of LPSI activity, which does not appear to be complement. The inhibitor found in tolerant rat serum is not species specific since it inactivates Salmonella minnesota and Salmonella typhimurium endotoxins to the same degree and in the same amount as E. coli endotoxin, the agent used to induce tolerance. Both heating serum (56 degrees C) and lead acetate reduce LPSI activity.

Animals

[Quality control studies of 3 deep-frozen coagulation-active fresh frozen plasma preparations from various suppliers and a new virus-inactivated lyophilized pooled plasma preparation].

Fresh frozen plasma is the most important therapeutic agent in acquired coagulation disorders. We investigated the quality of three conventional fresh-frozen plasma preparations (groups I, II, IV) and one new virus-inactivated lyophilised pooled plasma preparation (group III). In the new plasma preparation we found a significant reduction in coagulation activity, a significantly higher pH value and a highly significant rise in plasma heparin levels. No significant difference in electrolytes, protein levels and concentration or complement activity was found in any of the groups. In conclusion, unlike conventional fresh-frozen plasma, this new virus-inactivated lyophilised pooled plasma preparation does not seem to be suitable for use in therapy of coagulation disorders.

Antiviral Agents

Complement in vitro inhibition by a low-sulfate chondroitin sulfate (matrix).

In this study, the ability of low-sulfate chondroitin sulfate (Matrix), a glycosaminoglycan that does not exhibit anticoagulant action, to inhibit the activation of complement has been evaluated. Two different in vitro tests were employed: lysis of mouse splenocytes sensitized with monoclonal antibodies and lysis of red blood cells sensitized using a rabbit antiserum towards those cells. In both tests, lyophilized rabbit complement was used as complement source. The low-sulfate chondroitin sulfate Matrix has been compared with a hypersulfated one (Arteparon). Both compounds share anticomplementary activity in vitro although potency appears to be related to the sulfate content of the chondroitin.

Animals

Biochemical studies on sulfated lactobionic acid amides.

A series of sulfated bis-lactobionic acid amides was prepared. The compounds comprise highly charged poly-anions of very low molecular weight. Usually, the compounds contain 16 sulfate groups per molecule and are homogeneous, monodisperse substances. The molecular weights range from 2388 to 2514. The compounds were evaluated for anticoagulant activity using a number of standard tests. The compounds exhibited moderate to good APTT activity. Interestingly, the anti-Xa and anti-IIa activities were very low, particularly in amidolytic assays. Using prothrombin and Factor X activation assays, it was demonstrated that these compounds were more potent in these experimental settings than in standard anti-Xa or anti-IIa assays. Compared with heparin and LMW heparins, the bis-lactobionic acid amides were particularly active as inhibitors of the intrinsic system activation of Factor X. The bis-lactobionic acid amides exhibited potent anticomplement activity, being clearly superior to heparin and LMW heparins. For the most interesting substance, LW 10082, experimental results suggest that its anticoagulant activity is independent of antithrombin II. The anticoagulant activity of LW 10082 was readily neutralized by protamine sulfate. Platelet factor 4, however, did not reduce its anticoagulant activity. Because of these favorable properties, it is hoped that LW 10082 might prove to be an interesting alternative to heparin or LMW heparin in clinical use.

Amides