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Cotton dust and complement in vivo.

Cotton grown in Stoneville, Mississippi and harvested by three different methods was examined for anticomplementary activity in human serum in vivo. Subjects exposed to cotton dust in a model cardroom for six hours showed changes in C3c and CH50 after exposure to closed boll harvested, bract removed cotton dust when compared with a group of normal, unexposed controls. Decreases in C3c, :C4, and C3A were associated with decreases in FEV1 after exposure to closed boll harvested bract intact cotton dust. The data from this preliminary study suggest in vivo associations between inhalation of cotton dusts and complement which appear to be independent of endotoxin contamination. These findings suggest a relationship between cotton dust inhalation and complement-mediated respiratory impairment.

Adolescent↗

Recombinant cobra venom factor.

Cobra venom factor (CVF) is the complement-activating protein from cobra venom. CVF is a three-chain protein that functionally resembles C3b, the activated form of complement component C3. Like C3b, CVF forms a C3/C5 convertase with factor B in the presence of factor D and Mg(2+). Although CVF exhibits functional activity of C3b, it structurally resembles the C3b degradation product C3c, which is not able to form a C3/C5 convertase. CVF has become an important research tool to decomplement laboratory animals in order to study the role of complement in host defense, immune response, and pathogenesis of disease. As the Asian cobras of the Naja species are on the list of endangered species, cobra venom as the source for CVF has become increasingly difficult to obtain. Methods have been developed to recombinantly produce active forms of CVF. This manuscript reviews the production of recombinant pro-CVF using both prokaryotic and eukaryotic expression systems. The recombinant production of pro-CVF in two insect cell expression systems (baculovirus-infected Sf9 Spodoptera frugiperda cells, stably transfected S2 Drosophila melanogaster cells) generates three forms of pro-CVF: single-chain pro-CVF resembling pro-C3, a two-chain form of pro-CVF resembling C3, and another two-chain form of pro-CVF resembling C3b. All three forms of pro-CVF exhibit functional activity of mature, natural CVF. Recombinant pro-CVF supports the activation of factor B in the presence of factor D and Mg(2+), forms a bimolecular convertase pro-CVF,Bb that exhibits cleaving activity for both C3 and C5, and depletes the serum complement activity. The activity of pro-CVF and the resulting C3/C5 convertase is indistinguishable from CVF and the CVF,Bb convertase. Recombinant production of functionally active forms of pro-CVF ensures the availability of an important research reagent for future research involving complement depletion. The experimental systems to recombinantly produce active forms of CVF will also be invaluable for studies to delineate the structure/function relationship of CVF and its differences from C3, and to generate human C3 derivatives with CVF-like function ("humanized CVF") for therapeutic complement depletion.

Animals↗

Human alveolar macrophages and monocytes generate the functional classical pathway of complement in vitro.

Binding of labelled protein to EIgM kept with macrophage or monocyte cultures with 3H-leucine under serum-free conditions, shows that de novo synthesis of protein with affinity to EIgM takes place. We find that monoclonal anti-C3c and anti-C3g antibodies and polyclonal anti-C4 and anti-C5 antibodies bind to such erythrocytes. This demonstrates that C4b, C3b and iC3b are deposited on the EIgM. Additional evidence for complement synthesis is the increase in binding of anti-C4 antibodies to EIgM when the incubation time was increased from 48 to 96 hours. Stimulation of the mononuclear phagocyte cultures with ET was necessary to obtain significant amounts of erythrocyte-bound complement proteins. From these results we conclude that the functional classical pathway of complement is produced in vitro by the monocytes and macrophages.

Cells, Cultured↗

Quantitation of C3 subcomponents on red cells coated with complement in vitro.

In order further to characterise and evaluate the reproducibility of human red cells coated with complement in vitro, the number of molecules of C3 subcomponents/red cell were determined by Scatchard analysis of equilibrium concentrations of bound and free antibody using (125)I-labelled goat anti-rabbit IgG. A 1:1 combining ratio was assumed. Red cells coated via the classical pathway had twice as much bound C3b and C3d as alternative pathway-coated cells. Assays using different anti-C3d sera gave different amounts of bound antigen, but results with any one antiserum versus one cell type were reproducible. Anti-C3d sera raised to C3d-tryp and to C3d-KAF detected significantly different amounts of bound C3d on the same cells. Both trypsinisation and serum KAF treatment of classical pathway-coated cells resulted in marked reduction of C3b molecules/cell (over 90% in both cases). Similar reduction in bound C3b was seen after trypsinisation of alternative pathway-coated cells, but serum KAF treatment of such cells had no significant effect. K(0) values were lower with anti-C3c than with anti-C3d. Anti-C3d K(0) values with the various cells coated with complement in vitro were not statistically different (approximately 10(7) litres/mol), with the exception of trypsinised alternative pathway-coated cells (approximately 10(8) litres/mol, the same order of magnitude observed with cells coated with C3d in vivo). A non-linear relationship between antiglobulin titre and antigen strength was observed. The minimal number of C3d molecules/red cell detectable by agglutination with the various anti-C3d sera ranged from 200 to 670 molecules. The minimal number of C3b molecules detectable by agglutination was approximately 9000 molecules/cell.

Animals↗

Comparison of three assays for anti-DNA with three assays for the measurement of the role of complement in systemic lupus erythematosus in adolescents.

Three assays for anti-DNA antibody were compared simultaneously with assays for Clq binding, C3 concentration, and the activation of C3 (C3c,d) on blood of children with systemic lupus erythematosus. The Farr assay and the Millipore filter assay for anti-DNA were abnormal most frequently, followed by the assay for C3c,d. Positive assays for C3c,d were closely associated with abnormal Millipore filter assays. Clq binding was elevated in 42% of samples, but was not associated with any other abnormality. The hemagglutination assay for anti-DNA and the C3 concentrations were the least frequently abnormal.

Adolescent↗

Polypeptide fragments of the third component of complement in urine of hereditary nephritis patients.

Pro-HNP, a urine protein isolated from hereditary nephritis patients, is derived from C3 and resembles the C3c domain. It contains disulfide-linked polypeptides of beta 75, alpha 40, and alpha 28. Plasmin degraded pro-HNP in vitro to HNP, which was also isolated from the urine of patients and which contained disulfide-linked polypeptides of beta 60, alpha 38, and alpha 26, and noncovalently bound polypeptide of beta 17. Amino terminal sequence analyses and amino acid compositions of the seven polypeptides isolated from pro-HNP and HNP show that beta 75 degrades to beta 60 and beta 17 (beta 17 locates at the amino end of beta 75), alpha 40 degrades to alpha 38 (both locate at the carboxyl end of the alpha-chain of C3), and alpha 28 degrades to alpha 26 (both are from the amino end of the alpha'-chain of C3b). These results confirm the enzymatic specificity of plasmin on pro-HNP. In HNP, the half-cystine contents of beta 60, alpha 38, alpha 26, and beta 17 were approximately 3, 12, 3, and 4, respectively. Partial reduction readily released alpha 40 from pro-HNP and alpha 38 from HNP. There were about five intra-chain disulfide bonds in alpha 40 or alpha 38; stepwise reduction of these intra-polypeptide bonds apparently accounted for multiple conformations of alpha 40 or alpha 38.

Alkylation↗

Characteristics of a novel low affinity complement C3dg-binding protein of human platelets.

The breakdown products of the complement protein C3 function in receptor-mediated immune clearance. The catabolism of the C3 molecule, mediated by factors I and H, results in the generation of the fragments C3c and C3dg. C3dg binds to human platelets in a specific and saturable manner. The direct interaction of platelets with soluble C3dg may contribute to immune-mediated platelet destruction. More importantly, platelets may interact with opsonized pathogens or complement-activating immune complexes via C3dg. In this report, we investigated the interaction of C3dg with platelets and calculated the Ka to be 3.2 x 10(6) M-1 with 1100 to 2200 specific binding sites/platelet. In the presence of 5 mM calcium, both the Ka and the number of specific binding sites were modestly decreased to Ka = 2.8 x 10(6) M-1 with 1400 to 2400 specific binding sites/platelet. The Scatchard plots demonstrated a curvilinear character. On labeling C3dg with peroxidase and visualizing platelet-bound C3dg by electron microscopy, it was shown that binding sites for C3dg were restricted to the platelet plasma membrane. Using a cell attachment assay, platelet adhesion to C3dg was readily detectable; attachment to C3dg-coated plates was not blocked by fibrinogen or fibronectin. We have characterized the C3dg-binding protein of platelets using the chemical cross-linkers, SASD and DSS, to cross-link C3dg to thrombin-stimulated platelets. Gel filtration of the 125I-labeled C3dg-platelet complex revealed the presence of a large protein complex that was absent when 125I-labeled C3dg alone was analyzed. SDS-PAGE of the radiolabeled cross-linked protein, followed by autoradiography, identified a 95-kDa membrane protein. The relationship of this C3dg-binding protein to other platelet membrane proteins has yet to be determined.

Blood Platelets↗

Structure and function of recombinant cobra venom factor.

Cobra venom factor (CVF) is the complement-activating protein from cobra venom. It is a structural and functional analog of complement component C3. CVF functionally resembles C3b, the activated form of C3. Like C3b, CVF binds factor B, which is subsequently cleaved by factor D to form the bimolecular complex CVF,Bb. CVF,Bb is a C3/C5 convertase that cleaves both complement components C3 and C5. CVF is a three-chain protein that structurally resembles the C3b degradation product C3c, which is unable to form a C3/C5 convertase. Both C3 and CVF are synthesized as single-chain prepro-proteins. This study reports the recombinant expression of pro-CVF in two insect cell expression systems (baculovirus-infected Sf9 Spodoptera frugiperda cells and stably transfected S2 Drosophila melanogaster cells). In both expression systems pro-CVF is synthesized initially as a single-chain pro-CVF molecule that is subsequently proteolytically processed into a two-chain form of pro-CVF that structurally resembles C3. The C3-like form of pro-CVF can be further proteolytically processed into another two-chain form of pro-CVF that structurally resembles C3b. Unexpectedly, all three forms of pro-CVF exhibit functional activity of mature, natural CVF. Recombinant pro-CVF supports the activation of factor B in the presence of factor D and Mg2+ and depletes serum complement activity like natural CVF. The bimolecular convertase pro-CVF,Bb exhibits both C3 cleaving and C5 cleaving activity. The activity of pro-CVF and the resulting C3/C5 convertase is indistinguishable from CVF and the CVF,Bb convertase. The ability to produce active forms of pro-CVF recombinantly ensures the continued availability of an important research reagent for complement depletion because cobra venom as the source for natural CVF will be increasingly difficult to obtain as the Indian cobra is on the list of endangered species. Experimental systems to express pro-CVF recombinantly will also be invaluable for studies to delineate the structure and function relationship of CVF and its differences from C3 as well as to generate human C3 derivatives with CVF-like function for therapeutic complement depletion ("humanized CVF").

Animals↗

Component concentrations and activation of the complement system in neonatal illness: a preliminary study of necrotizing enterocolitis.

Determinations of C3, C4, and C5 concentrations by radial immunodiffusion, and assays for the activation products of C3, C3c and C3d by counterimmunoelectrophoresis, were performed on 80 infants. Seven nonbacteremic preterm infants with necrotizing enterocolitis (NEC) or probable NEC (PNEC) were found at the time of diagnosis to have a significantly lower mean concentration of C3 (P less than 0.05, 1-tailed) without C3 activation when compared to other noninfected preterm infants. Ten full-term and 63 preterm infants were studied prospectively during the first days of life, and were then followed for the postnatal development of localized or systemic infection. Assays for the detection of C3 activation products were negative in all these infants. Four preterm infants who developed PNEC after 5 or more days without clinical illness had low original concentrations of complement components. The pathogenesis of NEC may not involve primarily complement activation, and susceptibility to this condition may be related to pre-existing deficiencies in complement component concentrations relative to gestational age, or to defective activation of C3 in the presence of certain bacterial species and strains.

Complement Activation↗

Cryoprecipitate of patients with cryoglobulinemic glomerulonephritis contains molecules of the lectin complement pathway.

Serological and histological studies were carried out to explore the role of the lectin complement pathway in the pathogenesis of cryoglobulinemic glomerulonephritis. Sixteen patients with mixed cryoglobulinemia type II with glomerulonephritis (GN) were enrolled. All cases had hepatitis C virus (HCV) infection. The serum concentration of mannose-binding lectin (MBL) was significantly higher in the GN patients than in the normal controls according to ELISA (P < 0.01). IgG, IgM, C1q, C4d, HCV envelope antigen, MBL, and MBL-associated serine protease-1 (MASP-1) could be visualized in the cryoprecipitate of the 16 patients by Dot blot assay. Renal biopsy specimens obtained from 3 patients were examined by immunohistochemistry, and the glomeruli strongly stained for IgG, IgM, MBL, MASP-1, C4d, C3c, and C3d in a fringe-like pattern. The pattern of HCV constituent deposition was partially fringe-like. The complement profiles of the 16 cases were distinctive; briefly, the serum levels of C1q, C2, and C3 were reduced, although the levels of circulating regulatory proteins (C1-inhibitor, factor H, and factor I) were in the normal range. The serum C4 level was significantly reduced. These results indicate that immune complex formation involves molecules of the lectin pathway and leads to organ damage in cryoglobulinemic glomerulonephritis.

Adolescent↗

Molecular case report: IgVH analysis in acute humoral and cellular liver allograft rejection suggests a selected accumulation of effector B cells and plasma cells.

Acute cellular (CLR) and humoral liver allograft rejection (HLR) are the most important immunological obstacles to successful liver transplantation. In HLR, serum antibodies play the central pathogenetic role. In CLR, CD3+ T lymphocytes drive the destructive immune response. Although CLR and HLR show different clinical symptoms and can be kept apart in most cases, they share histomorphological similarities. In CLR, hepatic B lymphocytes and plasma cells as well as B-cell-activating cytokines have recently been described, indicating that, in addition to T cells, antibody-mediated mechanisms might be involved. To analyze the impact of hepatic B cells in CLR and HLR, the immunoglobulin (Ig) variable (V)-region gene repertoire was determined from tissue of one case of CLR and one case of HLR. Complement deposits and lymphocytic infiltrate were determined using immunohistochemistry. T cells, B lymphocytes and plasma cells could be detected in both cases, whereas C3c and C4d deposits could only be demonstrated in the HLR case. The molecular analysis of 63 V-region genes showed that B cells in both allografts expressed selected V-gene repertoires. All sequences differed from the putative germline sequences by multiple somatic mutations. This suggests a clonal expansion of selected effector B cells in the portal tracts of liver allografts. Locally accumulated B cells and their antibodies might be involved in IgG-mediated complement activation in CLR and HLR.

Adult↗

Immunohistochemical localization of the terminal C5b-9 complement complex in human aortic fibrous plaque.

The terminal C5b-9 complex of the complement system was localized in 26 aortic, 3 iliac and 4 femoral human fibrous plaques using indirect immunofluorescence and immunoperoxidase. IgG, IgA, IgM, Clq, C3c, C4, C9 and fibrinogen were investigated simultaneously. All the fibrous plaques presented C5b-9 deposits appearing like thin threads in the fibrous cap and masses and spots in the amorphous areas. The extent and intensity were in agreement with the size of the fibrous plaques. The intimal thickenings presented less intense deposits which were absent in atherosclerosis-free samples. The C5b-9 deposits were frequently associated with immunoglobulins and complement components in the same areas. Whereas the demonstration of complement components reflected only a nonspecific trapping, the presence of assembled C5b-9 in the damaged tissues is more indicative of the involvement of complement activation in the tissue injury. The absence of C5b-9 in the atherosclerosis-free intima and its presence at lower intensity in the intimal thickenings than in the fibrous plaques suggest a pathogenic involvement in the chronic progression of the atherosclerotic lesion.

Adult↗

Clearance kinetics and organ uptake of complement-solubilized immune complexes in mice.

C3-bearing immune complexes were prepared by in vitro solubilization of BSA-anti-BSA complexes at equivalence. Sucrose density gradient analyses showed a size-heterogeneous population of solubilized complexes with a range of 7S to greater than 29S and a peak at around 19S. The presence of C3bi was demonstrated by precipitation with antibodies to C3c and to C3d and by binding to conglutinin. Immune complexes solubilized in two and three times antigen excess were selected as controls due to their size similarities with complement-solubilized complexes. Blood clearance curves were very similar for C3-bearing complexes and controls. At 1 hr, the percentage of injected material remaining in the circulation for complement-solubilized and two and three times antigen excess complexes were 29.5 +/- 1.3, 30.9 +/- 1.7 and 26.1 +/- 2.7, respectively. Uptake by liver accounted for the majority of complement- and antigen-solubilized immune complexes removed from circulation. Although the uptake by the spleen was no more than one-tenth of the liver uptake, more complement-solubilized complexes than antigen-solubilized complexes were removed by this organ. The present data indicate that soluble immune complexes bearing C3 components and soluble immune complexes without C3 components, but of comparable size, are cleared from the circulation of mice at comparable rates. The mechanisms of clearance of these two populations of complexes, however, may differ.

Animals↗

Studies in vivo and in vitro on an abnormality in the metabolism of C3 in a patient with increased susceptibility to infection.

In a patient with increased susceptibility to infection, lowered serum C3 concentration, and continuously circulating C3b, it was shown that purified (125)I-labeled C3 was converted to labeled C3b shortly after intravenous administration. The fractional catabolic rate of C3 was approximately five times normal at 10% of the plasma pool per hr. The synthesis rate and pool distribution of C3 were normal. Despite this evidence of C3 instability in vivo, no accelerated inactivation of C3 was found in vitro. Similarly, no free proteolytic activity could be detected in the patient's serum, and serum concentrations of known protease inhibitors were normal.Complement-mediated functions, which were markedly deficient in the patient's serum, could be restored partially or completely by the addition of a 5-6S heat-labile beta pseudoglobulin from normal serum. The C3 proinactivator, which has these physicochemical characteristics, was also shown to be either absent or nonfunctional in the patient's serum. An unidentified 6S beta pseudoglobulin to which a monospecific antiserum was available was not detectable in the patient's serum. This last protein appeared not to be a complement component, nor was it the C3 inactivator or proinactivator. Finally, the substance or substances necessary for the conversion of C3b to C3c were missing from the patient's serum. The administration of 500 ml of normal plasma to the patient corrected all of his abnormalities partially or completely for as long as 17 days. The changes in C3 were dramatic; serum concentration rose from 8 to 70 mg/100 ml, and C3b could no longer be detected. A second metabolic study during this normalization period showed a decrease in fractional catabolic rate toward normal. The patient's histamine excretion was constantly elevated but increased further after a warm shower and after receiving normal plasma; at both times he had urticaria. These observations were consistent with the endogenous production of C3a and the resulting histamine release from mast cells. The inactivating mechanism for C3a was apparently intact in the patient's serum. The difference in the electrophoretic mobilities of C3b and C3c was shown as well as the electrophoretic heterogeneity of C3c. Suggestive evidence was also presented that the form of C3 with an activated combining site for red cells, previously postulated by others, is a transient C3 conversion product with an electrophoretic mobility slower than that of C3 on agarose electrophoresis.

Adult↗

Complement C3 proteins in psoriasis.

A new polymorphism of the complement factor C3 in human plasma was demonstrated by isotachophoresis in agarose gels followed by immunodetection with rabbit anti-human C3c and C3d immunoglobulins. Four bands were detected in the immunoprint of freshly drawn EDTA-plasma, which were C3s1, C3s2, C3f1 and C3f2. At least four additional C3 components in Mg2+ -zymosan activated plasma were present, which were C3b1 to C3b4. The different forms of C3 in frozen and thawed heparin-plasma from 20 patients with psoriasis and 20 healthy individuals were studied from the immunoprint. The total content of C3 components was 29% greater in the patients with psoriasis than controls. The major difference was in the C3b components which were increased by 46%. In psoriatic patients, the two slow C3 components C3s1 and C3s2 were increased by 24 and 56% respectively, when compared with controls. The two fast C3 components C3f1 and C3f2 were decreased to 29 and 37%. The results suggest a direct involvement of the complement factor C3 in psoriasis.

Adult↗

Human alveolar macrophages synthesize the functional alternative pathway of complement and active C5 and C9 in vitro.

Attachment of protein to agarose beads cultured with macrophages in protein-free medium containing 3H-leucine, shows that de novo synthesis of protein with affinity to the beads takes place. We also found that monoclonal antibodies against human C3c, C3g, and a C9-neoantigen as well as polyclonal antibodies against human C5 and C9, bound to agarose beads that had been kept with the macrophage cultures. Demonstration of C3 derivatives on the agarose beads shows that the essential complement factors of the alternative pathway are synthesized and have been activated by the beads. Deposition of C5 and the detection of a neoantigen of C9 on the beads, indicates that the whole terminal complement pathway has been formed and activated. We conclude that human alveolar macrophages form in vitro the functional alternative pathway of complement, C5 and C9, and we have indirect evidence for synthesis of C6, C7, and C8.

Antibodies, Monoclonal↗

Complement activation in angiotensin II-induced organ damage.

We tested whether or not complement activation participates in angiotensin (Ang) II-induced vasculopathy. We used double transgenic rats harboring human renin and angiotensinogen genes (dTGR) with or without losartan or the human renin inhibitor aliskiren. Sprague-Dawley (SD) rats were controls. DTGR had increased blood pressure at week 5 that increased further by week 7. Albuminuria was absent at week 5 but increased markedly in weeks 6 and 7. C-reactive protein (CRP) elevation, macrophages, T cells, tumor necrosis factor (TNF)-alpha, C1q, C3, C3c, and C5b-9 expression preceded albuminuria. C1q, C3, C3c, and C5b-9 were observed in the dTGR vessel media. C5b-9 colocalized with interleukin (IL)-6. Losartan and aliskiren reduced albuminuria and complement expression. We also studied vascular smooth muscle cells (VSMC) from dTGR compared VSMC from SD. C3 and IL-6 mRNA were analyzed after Ang II, TNF-alpha, and CRP stimulation. VSMC from dTGR showed increased proliferation and C3 expression compared with SD. Ang II did not induce C3 mRNA in either VSMC type. However, TNF-alpha and CRP induced C3 mRNA slightly in SD VSMC but markedly in dTGR VSMC, whereas IL-6 induction was similar in both. Thus, complement activation and cell infiltration occurred before the onset of albuminuria in Ang II-mediated renal damage. TNF-alpha and CRP played a major role in C3 activation. VSMC from dTGR are more sensitive for C3 activation. Our data show that, in this Ang II-induced model, complement activation is a major participant and suggest that TNF-alpha and CRP may play a role in its induction.

Albuminuria↗

Inhibition of immune precipitation by complement.

Normal human complement serum (NHS) inhibited precipitin reactions between tetanus toxoid and human or rabbit anti-tetanus toxoid IgG antibody, between bovine serum albumin (BSA) and rabbit anti-BSA IgG antibody, and between hen egg albumin and rabbit anti-egg albumin IgG antibody. Ethylene-diaminetetraacetic acid (EDTA) prevented this inhibition. Mg-ethyleneglycol-bis(aminoethyl)-tetra-acetic acid-(EGTA) also prevented the inhibition except with lower concentrations of antibody and antigen. Therefore, the inhibition of immune precipitation seemed to occur mainly through the classical pathway of complement activation. The alternative pathway was usually dispensable, but it augmented the inhibition. Guinea pig complement serum (NGS) was less effective than NHS in inhibiting immune precipitation. Guinea pig serum deficient in C4 (C4DGS) did not inhibit the immune precipitation. Mouse complement serum was effective for inhibiting precipitation, and C5-deficient serum was as effective as normal serum. Therefore, the inhibition of immune precipitation is considered to occur by activation of complement up to the step of C3. The size of the soluble immune complexes formed in the presence of NHS varied depending on the concentrations of antibody and antigen, even when the ratio of antigen to antibody was constant. On incubation at 37 degrees C immune precipitation was inhibited by 1/2 dilution of NHS for 2 to 3 hr and then gradually increased to the level in the absence of complement. When the immune complexes were formed in the presence of serum containing complement, fragments of C4 and C3 were incorporated into the soluble immune complexes. The C3 fragments incorporated into the soluble complexes were C3b, iC3b, C3c, and C3d, some of which were bound covalently with heavy chains of IgG antibody molecules. Some of the covalent linkages between C3 fragments and IgG seemed to be destroyed by alkali treatment, but not by hydroxylamine treatment. The formation of covalent bonds between IgG and C3 and probably C4 was essential for inhibition of immune precipitation, because inhibitors of their formation, such as putrescine, cadaverine, and salicylhydroxamic acid, effectively prevented the inhibition of precipitation. When antigen and antibody reacted in the presence of mixtures of various combinations of isolated complement components, C1, C4, C2, and C3 showed maximal inhibition of immune precipitation, whereas factors I and H had little effect.

Animals↗