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Biomedical subjects

S Inai

Publications and source records attributed to S Inai.

At least 19 recordsLinked to original sources

IgA nephropathy in patients with congenital C9 deficiency.

The clinical, histologic, and immunopathological findings of three young Japanese males with congenital C9 deficiency and primary IgA nephropathy are reported. The C9 deficiency was discovered either through mass complement screening, or when low hemolytic activity for CH50 and normal C3 levels were detected in plasma. Hematuria and proteinuria were detected at the age of 8 or 9 years as a result of annual urinary screening tests for school children. Renal biopsy showed focal and segmental mesangial proliferation with small epithelial crescents in one patient, and mild, diffuse mesangial proliferation in two. IgA and C3 were deposited predominantly in the mesangial area, and staining for C9 was negative in these patients. Electron microscopy revealed electron dense deposits predominantly in mesangial and paramesangial zones. Immunohistochemical staining in renal biopsy tissues from two patients showed mesangial staining for C5, C8, and S-protein, but staining for C5b-9 neoantigen was completely negative. These results show that the formation of C5b-9 complex is not essential for the induction of human IgA nephropathy, and also for the proliferation of mesangial and even parietal epithelial cells.

Child

Inherited deficiency of the ninth component of complement associated with streptococcal infection.

A 7 year old boy, who presented with streptococcal infection, was found to have a low serum complement level (CH50). The C9 component was undetectable. His CH50 rose to the normal value and remained normal for at least three weeks, but decreased to one-third of the normal level three months later. Family studies were consistent with a familial C9 deficiency, with autosomal co-dominant inheritance.

Child

[A case of C5 deficiency with polyarthritis].

A 27-year-old female with polyarthritis was found to lack serum complement activity. Her serum CH50 was less than 1.9 U/ml. C5 protein in her serum was less than 2 mg/dl and its activity was not detected. The serum level of the other proteins of complement system examined were within the normal range. At 17 years old, she was diagnosed as rheumatic fever and was admitted to our hospital. She was treated with aminobenzylpenicillin and predonisolone for two months, and she was discharged from our hospital without any abnormalities. But she had no other episode of repeated infections. Family studies of this patient revealed that an elder sister of this patient was also homozygous deficiency of C5 and her parents were considered to be heterozygous deficiency of C5. From these results, the patient was considered to be inherited deficiency of C5.

Adult

Deficiency of the ninth component of complement in man.

The studies of serum from a case with C9 (the ninth component of complement) deficiency are described. A 29-year-old woman in good health was found to have low serum complement levels (CH50). C9 of her serum was undetectable by the hemolytic assay and by the immunochemical analysis but all other components were normal. It was demonstrated that low CH50 of her serum was due to the hemolysis of the sensitized sheep erythrocytes (EA) by the complement components from C1 to C8.

Adult

Reaction mechanisms of beta1H globulin.

The reaction mechanisms of beta1H were studied. The generation of alternative pathway C3 and C5 convertases on the cell surface as well as in the fluid phase was inhibited by beta1H globulin. The cell preparation bearing the C3b site could bind beta1H with little effect on the C3b hemolytic activity. Bound beta1H was dissociated by the action of C3bINA and C3bINA-treated C3b bearing cell did not bind beta1H anymore. Cell-bound beta1H was also dissociated by the action of B (or Bb). From these and other results, the following conclusions were obtained. The C3b site-bearing cell could bind beta1H on the C3c region of C3b molecules facilitating the C3bINA action on C3b, and beta1H shared the same binding site with B (or Bb) inhibiting the generation of the alternative pathway convertases competitively.

Beta-Globulins

Conversion of C5 precipitin line in the serum treated with activating substances of complement system.

The hemolytic activity of C5 in the serum treated with zymosan, immune precipitate, or C1s was measured, and the C5 precipitin line on immunoelectrophoresis and the protein concentration of C5 in these serum specimens were also analyzed. A marked decrease in the hemolytic activity of C5 and a complete conversion of C5 precipitin line from beta- to alpha-globulin region were observed in teh serum treated with more than 1 mg/ml of zymosan. The elongation of C5 precipitin line from beta- to alpha-globulin region and the decrease in C5 hemolytic activity were observed in the serum treated with the immune precipitate. But neither change in C5 precipitin line, nor a decrease in hemolytic activity of C5 was observed in C1s treated serum. C5 protein concentrations in these serum preparations were essentially the same as those of control. From these results, it was concluded that the immunoelectrophoretic change of C5 precipitin line might express the grade of the decrease in C5 hemolytic activity in the serum treated with the activating substances of the complement system.

Antigen-Antibody Complex

Interaction of S-sulfonated human IgG with human complement and its components.

S-sulfonated human IgG (S-sIgG) was prepared by treating IgG with sodium sulfite and sodium tetrathionate. The treatment resulted in the selective cleavage of interchain disulfide bonds of the IgG to give S-sulfonate groups. Complement fixing activities of aggregated S-sIgG and the immune complex formed with the S-sIgG antibody were very weak. S-sIgG at a high dose reduced the activity of the first complement component (C1) in normal human serum without any reduction of other complement components activites, but S-alkylated IgG at the same dose did not. Loss of C1 activity was not caused by either S-sulfonated myeloma proteins (IgA and IgE) or urea-treated S-sIgG, in which both inter- and intra-chain disulfide bonds were cleaved. These results suggest that the selective reduction of C1 by S-sIgG is due to a conformational change of the immunoglobulin.

Complement Fixation Tests

C3 and C5-cleaving properdin enzymes formed on zymosan incubated with human serum: the decay and the regeneration of the enzymes.

Incubation os zymosan (Z) with normal human serum led to the formation of ZXhu, which had the abilities to cleave C3 and C5. Kinetic studies on ZXhu formation revealed that the amount of inactivated C5 by ZXhu, when expressed in site-forming unit (SFU), was much greater than that of inactivated C3. When ZXhu having limited C3 and C5-cleaving was incubated at 37 degrees C it decayed with a first order reaction completely in 120 min. At any stage of decay of ZXhu, the activities could be restored by the addition of both B and D, but not by the addition of B or D alone. Not D but B could be bound to the completely decayed ZXhu, and activation of bound B by D led to the regeneration of ZXhu.

Beta-Globulins

The cold activation of the classical complement pathway: The cause of the differences between plasma and serum complement in liver cirrhosis.

The mechanism responsible for making the differences between plasma and serum complement (CH50) was studied on eight patients with hepatitis-B(s) antigen negative alcoholic liver cirrhosis. CH50 and C4 activities of the sera of all patients were equal to those of the corresponding EDTA-plasma, when sera wre separated after clotting the blood at 37 degrees C. CH50 and C4 activities of the sera, prepared at 21 degrees C or 4 degrees C, from four of eight patients were very low. When serum from one of these four patients was added to normal human serum, C4 activity of the serum mixture markedly decreased at 4 degrees C but not at 37 degrees C. The inactivation of C4 was prevented by adding EDTA or heparin to the serum mixture. These results indicated that very low complement in the sera, prepared at 21 degrees C or 4 degrees C, of the four cases were due to the cold activation of the classical complement pathway.

Cold Temperature