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[Effect of inflammatory factor and yishen huoxue xiezhuo decoction on growth of glomerular mesangial cells in rats].

OBJECTIVE: To explore the part of inflammatory factors (cytokines) and Yishen Huoxue Xiezhuo (YSHXXZ) Decoction on the proliferation of extracorporeal cultured mesangial cells (MCs) in rats. METHODS: The effects of lipopolysaccharide (LPS) and interleukin-6 (IL-6) as stimulating factors, its action on the proliferation of rat MCs were investigated by using the technique of 3H-TdR incorporation. Meanwhile, adopting serum pharmacology assay, the medicated serum of rat, containing YSHXXZ decoction was extracted and its effects on the growth of MCs were also studied. RESULTS: LPS and IL-6, in a dose-dependent and time-dependent manner, could markedly stimulate the MCS proliferation, while this stimulatory effects could be strongly antagonized by the serum containing YSHXXZ decoction. CONCLUSION: Mesangial cell is the main target cell of the action of YSHXXZ decoction, and the inhibition on MCs might be one of the mechanisms of the YSHXXZ decoction in preventing the progression of chronic glomerulonephritis.

Animals↗

Effects of resveratrol and ethanol on production of pro-inflammatory factors from endotoxin activated murine macrophages.

AIM: To study the interaction of resveratrol and ethanol on the production of pro-inflammatory factors from activated murine peritoneal macrophages (MPM). METHODS: NO production was measured with Griess assay; IL-1 production was measured through thymocyte co-stimulating assay; IL-6 and TNF-alpha were detected by ELISA method. RESULTS: Resveratrol (6.25, 12.5, 25 micromol/L) and ethanol (0.2 %, 0.8 %) synergistically inhibited the 24 h production of NO from lipopolysaccharide (LPS, 1 mg/L) and IFN-gamma (5 kU/L) stimulated MPM; resveratrol at higher dose (25 micromol/L) also inhibited IL-6 production. Ethanol additively strengthened this effect. Ethanol had no significant influence on 24 h MPM IL-1 production, but it promoted the ability of resveratrol on enhancing the IL-1 release from activated MPM. Low doses of ethanol inhibited 24 h production of TNF-alpha, however, both dose of ethanol enhanced the promoting effect of resveratrol on TNF-alpha production. CONCLUSION: Resveratrol and ethanol can interact to influence the production of macrophage function molecules, which is noteworthy in evaluating the health-care effect of wine consumption.

Animals↗

The Anti-Osteoporosis Effects of Panax japonicus via Downregulation of Inflammatory Factors: A Network Pharmacology and Ovariectomized Rat Model Study.

OBJECTIVE: Osteoporosis is a major and growing public health problem characterized by decreased bone mineral density and destroyed bone microarchitecture. Panax japonicus has been clinically used in the treatment of bone diseases, especially osteoporosis. However, there is a lack of study on the mechanism of osteoporosis treatment with Panax japonicus. MATERIALS AND METHODS: A network pharmacology approach was employed to identify the targets of osteoporosis and Panax japonicus. Cytoscape 3.7.2 and DAVID were used to visualize the pharmacological mechanism of Panax japonicus in treating osteoporosis by building up compound-target and protein-protein interaction (PPI) networks and conducting Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses. An ovariectomized SD rat osteoporosis model was used to assess the potential therapeutic effect of Panax japonicus in vivo. The biomechanical properties, pathological changes, inflammatory cytokines, bone density, and bone microstructural parameters in rat bone tissue were carefully measured. The biochemical markers of bone metabolism in serum were detected by Enzyme-Linked Immunosorbent Assay (ELISA). RESULTS AND DISCUSSION: Fifty-two active components and sixty-five target genes of Panax japonicus involved in the treatment of osteoporosis were identified. The PPI network revealed IL-6, TNF, NR3C1, IL-1β, CASP3, ESR1, PGR, and AR to be involved in the treatment of osteoporosis with Panax japonicus. Chikusetsusaponin IVa and Radix ginsenoside-Ro were the main saponins found in Panax japonicus. Panax japonicus was found to exert potent preventive effects on osteoporosis by maintaining biomechanical properties, increasing bone mineral density, and protecting the trabecular microstructure in an ovariectomized rat osteoporosis model. Panax japonicus hindered the initiation of osteoporosis induced by ovariectomy by regulating bone metabolism and downregulating the expression of IL-6 and TNF-α. CONCLUSION: Panax japonicus was found to contain 52 compounds and 65 targets in the treatment of osteoporosis. The administration of Panax japonicus could mitigate osteoporosis in rats induced by ovariectomy, and one of the mechanisms was associated with downregulating the expression of inflammatory factors.

Animals↗

An allograft inflammatory factor enhances sperm viability by modulating intracellular calcium in oyster Crassostrea gigas.

As an important aquaculture bivalve, the Pacific oyster Crassostrea gigas faces severe constraints in artificial reproduction, where low sperm motility often leads to fertilization failure and limits the sustainable development of the oyster aquaculture industry. In the present study, the variation of sperm from different oyster individuals was observed, and high-quality sperm possessed intact, elongated flagella with no structural abnormalities, while low-quality sperm showed shortened flagella with frequent tangling or coiling defects. Transcriptomic analysis comparing high- and low-quality sperm revealed significantly reduced expression of genes associated with sperm motility and release (CgAIF1, CgAchR, CgSEX), sperm quality and development (CgEP4, CgIFi2b), and cryoprotection (CgISPs) in low-quality sperm. Notably, an allograft inflammatory factor (designed as CgAIF1) encoding EF-hand domain, known as Ca2+ binding activity, was among the most significantly downregulated in low-motility sperm. CgAIF1 is highly expressed in haemocytes, ganglia, and gonads of oysters. Incubation with the recombinant AIF1 protein (rCgAIF1) significantly improved sperm curvilinear velocity, thereby enhancing the overall motility of C. gigas sperm. Furthermore, rCgAIF1 incubation increased intracellular Ca2+ levels (2.13-fold at 30 min, 2.71-fold at 60 min) and superoxide dismutase (SOD) activity (1.44-fold at 30 min, 1.24-fold at 60 min) in sperm, suggesting potential roles in calcium homeostasis regulation and antioxidant defense. In conclusion, this study demonstrates that CgAIF1 significantly enhances motility of oyster sperm, providing a scientific basis for artificial breeding and seed production in oyster aquaculture.

Animals↗

Short-term changes of mRNA expression of various inflammatory factors and milk proteins in mammary tissue during LPS-induced mastitis.

During mammary gland infection, non-specific responses are the predominant ones. The goal of this study was to investigate the mRNA expression of various soluble immune components and of the major milk proteins during the acute phase of mammary inflammation. Five healthy lactating cows were intramammary infused in one quarter with 100 microg Escherichia coli-endotoxin (lipopolysaccharide, LPS) and the contralateral quarter with saline (9 g/l) serving as control. Mammary biopsy samples of both quarters were taken immediately before and at 3, 6, 9 and 12 h after infusion and mRNA expression of various factors was quantified via real-time RT-PCR. Blood samples for determination of leukocyte number were taken simultaneously with the biopsy samples and rectal temperature was measured at 1-h intervals. Rectal temperature increased until 5h (P < 0.05) after LPS administration and remained elevated until 9 h after LPS inoculation. Blood leukocyte number decreased (P < 0.05) from 0 to 3 h from 7.7 +/- 1.1 x 10(9)l(-1) to 5.7 +/- 1.0 x 10(9)l(-1) and thereafter recovered to pre-treatment levels until 12 h after LPS challenge. In LPS-treated quarters, tumor necrosis factor-alpha and cyclooxygenase-2-mRNA expression increased (P < 0.05) to highest values at 3h after LPS challenge. Lactoferrin, lysozyme, inducible nitric oxide synthase increased (P < 0.05) and peaked at 6 h after challenge, and platelet-activating factor acetylhydrolase-mRNA expression tended to increase (P = 0.07). mRNA expression of insulin-like growth factor-I and of alphaS1-casein (CN), alphaS2-CN, beta-CN and beta-lactoglobulin did not change significantly, whereas mRNA expression of 5-lipoxygenase and alpha-lactalbumin decreased (P < 0.05) in both quarters and that of kappa-CN only in the LPS quarter. mRNA expression of some investigated factors (tumor necrosis factor-alpha, lysozyme, 5-lipoxygenase, alpha-lactalbumin) changed in control quarters, however in all respective factors less than in the LPS quarters (P < 0.05). In conclusion, mRNA expression of most inflammatory factors increased within hours, whereas that of most milk proteins remained unchanged.

Animals↗

Heme oxygenase-1 genotype is a vascular anti-inflammatory factor following balloon angioplasty.

PURPOSE: To investigate the association of the heme oxygenase-1 (HO-1) genotype, which has potent anti-inflammatory capability, and the inflammatory response induced by balloon angioplasty. METHODS: Three hundred seventeen patients (188 men; median age 70 years, range 57-77) undergoing femoropopliteal balloon angioplasty (n=150) or stenting (n=61) were evaluated for upregulation of the HO-1 genotype; 106 patients undergoing lower limb angiography served as controls. The acute phase reactants C-reactive protein (CRP), serum amyloid A (SAA), and fibrinogen were measured 24 and 48 hours postintervention and compared to baseline values. An association of the relative increase (Delta, %) of these inflammatory markers with short (<25) (GT)(n) dinucleotide repeats in the HO-1 gene promoter was assessed. RESULTS: The HO-1 genotype was significantly associated with Delta CRP(24) (p<0.0001), Delta CRP(48) (p<0.0001), Delta SAA(24) (p=0.02), and Delta SAA(48) (p=0.006) after balloon angioplasty; Delta fibrinogen showed no association. Patients with a higher Delta CRP(48) after balloon angioplasty exhibited significantly reduced odds for the presence of short (<25) (GT)(n) repeats. The adjusted odds reduction in the multivariate model was 80% (p=0.002) in the third quartile of Delta CRP(48) values and 90% (p=0.001) in the fourth quartile. No association of HO-1 genotype and inflammatory response was found 24 and 48 hours after stenting (p=0.3, p=0.5) or angiography (p=0.2, p=0.6). CONCLUSIONS: The HO-1 promoter genotype is independently associated with the inflammatory response seen after balloon angioplasty. Short alleles (<25 GT repeats) seem to be an intrinsic vascular anti-inflammatory factor.

Aged↗

Effects of autoantigen and dexamethasone treatment on expression of endothelial-monocyte activating polypeptide II and allograft-inflammatory factor-1 by activated macrophages and microglial cells in lesions of experimental autoimmune encephalomyelitis, neuritis and uveitis.

Endothelial-monocyte activating polypeptide II (EMAP II) and allograft-inflammatory factor-1 (AIF-1) are two proteins produced by activated monocytes and microglial cells. We now report expression of these factors during experimental therapy of rat neuroautoimmune diseases. Comparative analysis of two therapeutic strategies, treatment with high doses of recombinant autoantigens or with dexamethasone, revealed unexpected differences. High doses of autoantigen were most effective in experimental autoimmune encephalomyelitis and neuritis (EAE and EAN), but less effective in experimental autoimmune uveitis (EAU). Low and high doses of dexamethasone treatment greatly reduced the severity of EAE, EAN and EAU at day 11, but a relapse was observed between days 21 and 26. Only rather limited expression of EMAP II and AIF-1 is seen in the normal central nervous system (CNS). This constitutive expression is not abolished by dexamethasone treatment. In inflammatory autoimmune lesions of the rat CNS, prominent AIF-1 and EMAP II staining was seen with macrophages and monocytes. In particular, parenchymal microglial cells were now activated to express AIF-1 and EMAP II. In accordance with prevention of neurological signs, histological observations revealed that accumulation of activated monocytes expressing EMAP II and AIF-1 in the CNS or peripheral nervous system and the massive expression of these factors by parenchymal microglial cells is inhibited by high doses of autoantigen. Dexamethasone prevented or abolished local expression of EMAP II and AIF-1 at days 10-16. However, an acute and severe relapse occurred in encephalomyelitis between days 20-26. In these cases, a smoldering expression of EMAP II and AIF-1 persisting long after cessation of neurological signs was observed. Thus, expression of EMAP II and AIF-1 by infiltrating activated macrophages is a marker of disease activity and expression of these factors could be used to demonstrate 'silent' lesions in the CNS and prolonged microglial cell activation. Apparently, AIF-1 and EMAP II immunoreactivity are tools to stage activation of monocytes and microglial cells in inflammatory lesions.

Animals↗

Murine inflammatory factor co-chromatographs with murine interleukin-2 activity.

1. In a study of the in vivo effects of semi-purified mouse interleukin-2 (IL-2), inflammatory activity indicated by edema and plasma protein extravasation (PPE) was detected in those fractions having IL-2 activity. 2. The molecular weight of the inflammatory factor activity from conditioned medium was 30 to 48 kDal on the basis of gel filtration on Sephadex G75. 3. The edema, characterized as maximum paw thickness, occurred at 4 h, whereas the PPE peak (measured with 125I-albumin) occurred 1.5 to 3 h after injection. 4. Both edema and PPE were inhibited by dexamethasone or indomethacin, suggesting the involvement of prostaglandins in the process. 5. This inflammatory activity may be partly responsible for some of the in vivo activities ascribed to IL-2.

Animals↗

Saccharomyces boulardii produces a soluble anti-inflammatory factor that inhibits NF-kappaB-mediated IL-8 gene expression.

Saccharomyces boulardii (Sb) is a non-pathogenic yeast that ameliorates intestinal injury and inflammation caused by a wide variety of enteric pathogens. We hypothesized that Sb may exert its probiotic effects by modulation of host cell signaling and pro-inflammatory gene expression. Human HT-29 colonocytes and THP-1 monocytes were stimulated with IL-1beta, TNFalpha or LPS in the presence or absence of Sb culture supernatant (SbS). IL-8 protein and mRNA levels were measured by ELISA and RT-PCR, respectively. The effect of SbS on IkappaB alpha degradation was studied by Western blotting and on NF-kappaB-DNA binding by EMSA. NF-kappaB-regulated gene expression was evaluated by transient transfection of THP-1 cells with a NF-kappaB-responsive luciferase reporter gene. SbS inhibited IL-8 protein production in IL-1beta or TNFalpha stimulated HT-29 cells (by 75% and 85%, respectively; P<0.001) and prevented IL-1beta-induced up-regulation of IL-8 mRNA. SbS also inhibited IL-8 production, prevented IkappaB alpha degradation, and reduced both NF-kappaB-DNA binding and NF-kappaB reporter gene up-regulation in IL-1beta or LPS-stimulated THP-1 cells. Purification and characterization studies indicate that the S. boulardii anti-inflammatory factor (SAIF) is small (<1 kDa), heat stable, and water soluble. The probiotic yeast Saccharomyces boulardii exerts an anti-inflammatory effect by producing a low molecular weight soluble factor that blocks NF-kappaB activation and NF-kappaB-mediated IL-8 gene expression in intestinal epithelial cells and monocytes. SAIF may mediate, at least in part, the beneficial effects of Saccharomyces boulardii in infectious and non-infectious human intestinal disease.

Cells, Cultured↗

Substance P enhances expression of lipopolysaccharide-induced inflammatory factors in dental pulp cells.

To examine how substance P (SP) is related with dental pulp inflammation, we examined the effects of SP on expression of genes for inflammatory factors in human dental pulp cell cultures. Using reverse transcriptase-polymerase chain reaction, we found that Prevotella intermedia lipopolysaccharide (LPS) induced expression of SP and SP-receptor mRNAs, and that somatostatin inhibited the LPS-induced expression of SP mRNA. We also found that SP enhanced LPS-induced stimulation of NF-kappaB binding activity. In addition, SP induced expression of cyclooxygenase-2 and interleukin-10 receptor mRNAs. In contrast, SP inhibited expression of interferon-gamma receptor mRNA. These results suggest that SP may play a regulatory role in the immunological response of dental pulp tissue to pathogenic bacteria.

Autocrine Communication↗

The role of bacterial contamination in the isolation of apparent anti-inflammatory factors from rabbit anti-lymphocytic serum.

1 Rabbit anti-guinea-pig lymphocytic serum was fractionated by gel filtration to obtain partially purified materials possessing anti-inflammatory activity. The pharmacological properties of these materials were then studied. 2 Two fractions were found which reproducibly contained significant activity. One of these activities caused inflammation at the site of injection and was associated with high molecular weight protein (2008000). The other activity was found in low molecular weight fraction but was shown to be due to small amounts of endotoxin from Gram negative bacteria. These organisms contaminated the fractions in spite of the recommended precautions for gel filtration having been taken. 3 The endotoxin-containing fraction completely abolished leucocyte infiltration into the rat foot which had been injected with kaolin. It had no apparent effect on circulating haemolytic complement. It caused maximal elevation of serum 11-hydroxycorticosteroid concentrations and was found to cause the release of pharmacologically active amines. Many of the previously reported naturally occurring anti-inflammatory substances have similar pharmacological properties to those of the endotoxin-containing fraction. 4 It was concluded that doubt will exist about the presence of anti-inflammatory factors in mammalian body fluids unless stringent precautions are taken to exclude measurable bacterial contamination. 5 These experiments also cast doubt on the validity of accepted procedures for excluding microbial growth from columns used in the fractionation of serum.

11-Hydroxycorticosteroids↗

Expression of allograft inflammatory factor-1 in kidneys: A novel molecular component of podocyte.

Our comprehensive gene expression profiles of the kidneys in an anti-glomerular basement membrane (GBM) nephritis model using DNA arrays revealed that allograft inflammatory factor-1 (AIF-1) was one of the highly expressed genes. Here, we explored the pathological significance of AIF-1 expression in the kidneys. The expression pattern of AIF-1 mRNA and protein in the kidneys of normal and diseased rats, such as anti-GBM nephritis and puromycin aminonucleoside nephrosis, was investigated by in situ hybridization, immunohistochemistry, and immunoelectron microscopy. Furthermore, the expression of AIF-1 in human kidneys and urinary sediments was examined. AIF-1 was expressed at both mRNA and protein levels in podocytes of normal and diseased rats, and in infiltrating cells in anti-GBM nephritis kidneys. The expression of AIF-1 in podocytes was constitutive; positive in podocytes of both normal and diseased rats. In humans, AIF-1 was expressed in podocytes and infiltrating inflammatory cells, similarly. Moreover, it was detected in urinary podocytes from patients with immunoglobulin A nephropathy. These data document for the first time that AIF-1, a constitutively expressed protein in rat and human podocytes, is a novel molecular component of podocytes, and that the upregulation of AIF-1 in an anti-GBM nephritis model may mainly be a consequence of its expression in infiltrating cells.

Adult↗

Expression of functional immunomodulatory and anti-inflammatory factors in human milk.

In addition to well-recognized antimicrobial substances, a growing body of evidence has accrued during the last decade regarding the presence and function of immunomodulatory and anti-inflammatory factors present in human milk and their role in protecting the mature newborn as well as the premature infant against infections. In addition, it is now appreciated that a number of these factors present in human milk may actively modulate the synthesis and maturation of the recipient immune system. This complex and interactive system of bioactive substances in human milk appears ideally to be designed to function by noninflammatory mechanisms, to operate often in a complementary or synergistic manner, to resist the digestive process in the recipient gastrointestinal tract, and to supplement developmentally delayed immune factors of the infant. The in vivo fate and effects of these immune factors in human milk, however, are still poorly understood. Clinical studies in conjunction with a broader use of experimental animal models and basic research are needed in the future to address these questions.

Female↗

Allograft inflammatory factor-1 expression correlates with cardiac rejection and development of cardiac allograft vasculopathy.

BACKGROUND: Standard morphological features of endomyocardial biopsy specimens do not necessarily correlate with the efficacy of immunotherapy or development of cardiac allograft vasculopathy (CAV). We hypothesized that expression of allograft inflammatory factor-1 (AIF-1), a cytokine-inducible, calcium-binding protein associated with vascular smooth muscle cell proliferation, would be associated with allograft rejection and development of CAV. METHODS AND RESULTS: A total of 157 endomyocardial biopsy specimens from 26 patients with heart transplants were examined for expression of AIF-1 mRNA by semiquantitative reverse transcription-polymerase chain reaction. A significant relation was found between the International Society for Heart and Lung Transplantation rejection grade and expression of AIF-1 (P<0.001). The calculated odds ratio indicates that a biopsy has 2.5 times the chance of AIF-1 expression per grade of rejection. The relative concentrations of AIF-1 and GAPDH mRNA were calculated and the resulting ratios indicated that the amount of AIF-1 mRNA expression is relative to the rejection grade (P<0.02). In grade 1 biopsy specimens, AIF-1 was localized to infiltrating immune cells. In grade 3 biopsy specimens, AIF-1 was observed in immune cells and myocytes. AIF-1 is expressed in vascular and immune cells in coronary arteries with CAV, and persistent expression of AIF-1 in the allograft correlates with development of CAV (P<0.002). CONCLUSIONS: Expression of AIF-1 in cardiac allografts correlates with rejection, and the amount of AIF-1 expressed correlates with the severity of rejection. AIF-1 is expressed in coronary arteries with CAV, and persistent expression of AIF-1 in the cardiac allograft is associated with development of CAV.

Calcium-Binding Proteins↗

Allograft inflammatory factor-1 is expressed by macrophages in injured skeletal muscle and abrogates proliferation and differentiation of satellite cells.

Secretion of regulatory peptides by macrophages in injured skeletal muscle constitutes a pivotal determinator of tissue homeostasis. We analyzed expression of a novel Ca2+- binding peptide expressed by activated macrophages, the allograft inflammatory factor-1 (AIF-1), in rat devascularized skeletal muscle. AIF-1 expression was observed in 94% of all macrophages at the site of the injury 48 hours postdevascularization. The physiological function of AIF-1 in injured skeletal muscle was analyzed using a rat in-vitro model of satellite cell proliferation and differentiation. Addition of AIF-1 to the culture medium resulted in a concentration-dependent and reversible reduction of the total number of cells expressing M-cadherin (p < or = 0.0001), a mediator of the differentiation process of skeletal muscle cells, the proliferation associated PCNA (p < or = 0.0001), and the initiator of muscle differentiation myogenin (p < or = 0.0001). These results provide convincing evidence that activated AIF-1 expressing macrophages constitute the predominant cell type in skeletal muscle 48 hours postinjury, and that AIF-1 regulates reduced proliferation, differentiation, and activation of satellite cells.

Animals↗

Expression of allograft inflammatory factor-1 is a marker of activated human vascular smooth muscle cells and arterial injury.

The cytokine-induced activation and proliferation of medial vascular smooth muscle cells (VSMCs) leading to intimal hyperplasia is one of the most critical cellular events in the formation of transplant arteriopathy and balloon angioplasty-induced restenosis. Allograft inflammatory factor-1 (AIF-1) is a calcium-binding protein that we have previously shown to be expressed in balloon angioplasty-injured rat carotid arteries. We hypothesized that AIF-1 expression may be associated with the VSMC response to injury. In this study, we examined AIF-1 expression in immunologic and mechanical models of arterial injury. Reverse transcription-polymerase chain reaction and Western analysis demonstrated that AIF-1 is acutely and transiently expressed in aortic medial smooth muscle cells of rat cardiac allografts, with mRNA and protein peaking at 3 to 7 days after transplant and declining by 10 days after transplant. Immunohistochemical analysis identified abundant AIF-1 in the medial VSMCs of these vessels. Immunohistochemical analysis of balloon angioplasty-injured swine coronary arteries also demonstrates an acute AIF-1 expression detectable by 24 hours and continuing up to 14 days after the procedure. AIF-1 in these vessels also localizes to the medial VSMCs and cells of the developing neointima. AIF-1 protein is not expressed in quiescent cultured human VSMCs but is induced in cells challenged with various inflammatory cytokines, primarily by interferon-gamma, interleukin-1beta, and T-cell-conditioned media. Transfection and overexpression of AIF-1 in human VSMCs result in enhanced growth of these cells. Taken together, these data indicate that AIF-1 expression is associated with vascular trauma and suggest that this protein may play a role in VSMC activation subsequent to arterial injury.

Amino Acid Sequence↗

Histocompatibility reaction in tissue and cells of the marine sponge Suberites domuncula in vitro and in vivo: central role of the allograft inflammatory factor 1.

Sponges (Porifera) are the phylogenetically oldest still extant metazoan phylum. Recently elements of their immune system have been cloned and analyzed, primarily from the demosponges Suberites domuncula and Geodia cydonium. By differential display, two genes were identified in S. domuncula, whose translation products are involved in graft rejection/fusion: the allograft inflammatory factor (AIF-1) and the Tcf-like transcription factor (TCF). Since the AIF-1 and TCF genes are upregulated in vivo after tissue transplantation, especially in allografts, we investigated whether this reaction can be monitored in vitro. Therefore, the autogeneic and the allogeneic mixed sponge cell reaction (MSCR) system was applied for the first time to identify distinct factors in sponges in vitro. The results confirm that the two AIF-1 and TCF genes are induced during allogeneic MSCR. Furthermore, the recombinant sponge AIF-1 causes an upregulation of the expression of the TCF. We conclude that the AIF-1 and TCF genes are upregulated in sponges during histoincompatibility reactions; the data support the view that sponges have immune systems composed of highly complex elements related to those found in mammalian systems.

Amino Acid Sequence↗