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Action of gold salts on the inflammatory response and inflammatory cell function.

Information relating to the effect and mechanism of action of gold salts on acute and chronic inflammatory processes has been reviewed. Gold salts are effective in suppressing various aspects of the acute inflammatory process although large gaps exist in the knowledge of the mechanisms involved. Available evidence indicates that gold salts affect many biochemical pathways and that interaction with enzymes plays a major role in their pharmacology. Because they are more difficult to investigate, the action of gold salts on various important aspects of chronic inflammation have not yet received much attention.

Animals

[Variation of the inflammatory response of an autologus implant function and viability: mixed and unilateral inflammatory response].

The behaviour of an autologous grafted implant depends upon its viability. In our study, pericardial implants were used as cardiac valves. Results showed that when using fresh live pericardium, an inflammatory response developed destroying it within 8 days. When implants cells were killed without alteration of their antigenicity--in order to prevent rejection--cellular growth and neovascularisation from implantation site occurred leading to a secondary live graft. Controlled killing of the implant seems to be an essential step in order to get live grafts.

Animals

The Differential Effects of Immunosuppressants on Hepatitis E Virus Replication and the Triggered Inflammatory Responses in Macrophages.

Organ transplant recipients are at high risk of developing chronic infection when exposed to hepatitis E virus (HEV), which can rapidly progress to liver fibrosis and cirrhosis. Macrophages play a key role in the response to the infection and disease progression. However, the interactions amongst immunosuppressants, macrophages, the course of HEV infection and activation of inflammatory response remain unclear. In this study, we generated M0, M1 and M2 macrophages from the human THP-1 cell line. These macrophages were then infected with HEV and treated with different immunosuppressants. We visualised viral infection using laser confocal microscopy, and quantitatively analysed viral replication and inflammatory responses by bulk sequencing, RT-qPCR, ELISA and Western blotting. We found that the M1 inflammatory macrophages exhibited the highest, while M2 macrophages had the lowest levels of viral RNA. Genome-wide transcriptome analysis indicated that viral, inflammation and immunity-related pathways were predominantly upregulated by HEV infection. Dexamethasone exerted potent inhibitory effects on inflammatory response in macrophages. Mycophenolic acid (MPA) demonstrated inhibitory effects on viral replication, IL-1β and TNF-α expression, whereas mTOR inhibitors had the opposite effects, and tacrolimus showed no clear effect. In conclusion, immunosuppressants can differentially affect HEV replication and the subsequent inflammatory responses in macrophages.

Humans

Systematic acupuncture explains acupuncture at Baihui (GV20) and Fengchi (GB20) targeting the inflammatory response to regulate migraine.

OBJECTIVE: To take Baihui (GV20) and Fengchi (GB20) targeting inflammatory response to regulate migraine as an example to describe a new method for studying the mechanism of stimulating acupoints. METHODS: The target information of Baihui (GV20) and Fengchi (GB20) was retrieved, and after intersection with migraine, Kyoto Encyclopedia of Genes and Genomes (KEGG), Reactome, and UniProt Keywords were used for functional enrichment. After selecting the main pathway, rats were selected and nitroglycerin was used for modeling, and the behavioral scores, inflammatory factors, heme oxygenase 1 (HMOX1), protein kinase B (AKT1), signal transducer and activator of transcription 3 (STAT3), phosphorylated extracellular signal-regulated kinase 1/2 (P-ERK1/ERK2) and other states of the rats in the acupuncture, twisting, and electroacupuncture groups were compared. RESULTS: A total of 135 Baihui (GV20) targets and 27 Fengchi (GB20) targets were collected. A total of 73 target information were obtained after the intersection of these targets in migraine. These 73 targets have three main pathways: hypoxia-inducible factor 1 (HIF-1) signaling pathway, signaling by interleukins and inflammatory response. The main targets in the pathway were verified and found that interleukin-1 beta (IL-1β), interleukin-6 (IL-6), tumor necrosis factor-alpha (TNF-α) and HMOX1, AKT1, STAT3, P-ERK1/ERK2 can be regulated by Baihui (GV20) and Fengchi (GB20). CONCLUSION: Baihui (GV20) and Fengchi (GB20) can regulate migraine by regulating inflammatory factors and HMOX1, AKT1, STAT3, P-ERK1/ERK2 and other changes in HIF-1 signaling pathway, Signaling by Interleukins and Inflammatory response pathways. Based on systems biology and network pharmacology, and with the model of "acupoint-target-disease", explore the research methods of systematic acupuncture and moxibustion. We believe this is a usable research direction for exploring the mechanism of acupuncture stimulation.

Acupuncture Points

The inflammatory response to endotoxin.

A typical inflammatory response resulted from the intravenous injection of endotoxin (E. coli) into living rabbits. Each rabbit was studied at three levels: the microvasculature and supporting tissue in the ear chamber was observed microscopically (up to X200) before, during, and at regular intervals following the injection of endotoxin; leucocyte and platelet counts were made periodically throughout each experiment; and tissue samples for histological study were obtained from each rabbit prior to death. The animal was anaesthetised before histological samples were secured. Within minutes after the intravenous injection of endotoxin, leucocytes were observed sticking to the endothelial cells lining the venules and the arterioles. Emboli appeared in the microcirculation within 10 min. Swelling of the microvascular endothelial cells was evident at 1 hr; oedema and extravasation of the cellular elements followed. The rectal temperature and leucocyte and platelet counts all fell within 10 min. of endotoxin. Histological examination of tissue from the ear chamber and visceral organs showed inflammatory changes. Congestion of the microvasculature, swelling of the endothelial cells, and margination and migration of neutrophils were common histological features in all organs. The earliest cells affected appeared to be the leukocyte and platelet.

Animals

Elucidation of the immunotoxicity of PEDOT: PSS on RAW264.7 macrophages by oxidative stress, inflammatory response, and NF-κB pathway activation.

Poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate) (PEDOT: PSS) nanoparticles, widely used conductive polymers, pose environmental and health risks due to their nanoscale dispersion. However, the characteristics of PEDOT: PSS in aquatic systems and the underlying mechanisms of its toxicity in animal and cell models remain poorly understood. This study aimed to investigate the toxicological effects of PEDOT: PSS nanoparticles on macrophages, with a focus on RAW 264.7 cells. After an acute exposure to PEDOT: PSS nanoparticles at different concentrations (5, 10, 20 μg/mL), we observed significant impairments in cell viability, proliferation, migration, adhesion, and phagocytosis, as well as morphological alterations. Concurrently, there was a marked upregulation of inflammatory markers, including reactive oxygen species (ROS), tumor necrosis factor-alpha (TNF-α), interleukin-6 (IL-6), and interleukin-1 beta (IL-1β), indicating the induction of oxidative stress and inflammation. Mechanistically, PEDOT: PSS nanoparticles activated the nuclear factor kappa B (NF-κB) signaling pathway, a key regulator of inflammatory responses, suggesting that they may mediate inflammatory responses and cell damage via activation of the NF-κB signaling pathway. These findings reveal the toxic mechanism of PEDOT: PSS nanoparticles in macrophages and provide new insights into their biological safety implications.

Animals

The inflammatory response to paraffin in the peritoneal cavity of the rat.

The inflammatory response to intraperitoneal paraffin in hte rat has been defined in terms of the fluid influx and the pattern of cell accumulation. The volume of fluid exudate in the peritoneal cavity was small and did not change dramatically with time, but there was a moderate cellular influx which was biphasic with peaks at 24 and 72 h. Mononuclear phagocytes and eosinophils were the major cell types found in the exudate, neutrophils, lymphocytes, and mast cells being much less numerous. The neutrophil influx was apparent by 4 h. It was early, short-lived and of low magnitude. In contrast, the eosinophil response was later and more prolonged, cell numbers reaching a peak at 72 h when they were the predominant cell type. The response of the mononuclear phagocytes was multiphasic, with peaks in cell numbers occurring at 24 and 96 h, and 3 weeks after stimulation, by which time they exhibited the morphological features of large activated macrophages which were highly phagocytic for paraffin. The method is useful for the production of mixed inflammatory cell populations from which the fluid phase can readily be separated, and may be a valuable model for the study of esoinophil kinetics.

Animals

Comparison of the effects of alclofenac, flurbiprofen, and prednisolone on acute inflammatory response in the rat.

The fluid and cellular phases of the inflammatory response were measured using a technique employing subcutaneous implantation of polyurethane foam cubes impregnated with heat-killed Mycobacterium tuberculosis. Fluribiprofen and prednisolone were equipotent and were capable of almost completely suppressing fluid and cellular responses, while alclofenac was less potent at nontoxic dose levels. Study of the patterns of cellular exudation by image analysing computer showed that alcofenac appears unique in that it produces a well-defined cell-free zone between the edge of the implanted cubes and a band of neutrophil polymorphs within the cubes.

Animals

Inflammatory response of guinea pig to injected limbal tissue.

This study examined the possibility that homologous limbal tissue, including trabecular meshwork, serving as an antigen, could elicit inflammatory cells responsible for both aqueous obstruction and inflammation; the possible role of this response in ocular disease was also studied. Four sets of guinea pigs were sensitized with complete Freund's adjuvant. One set received just adjuvant and saline, one set received adjuvant plus uvea, and two sets received adjuvant plus limbal tissue. The animal injected with only adjuvant and saline all showed normal ocular histology. Sensitizing guinea pigs with limbus and adjuvant produced mononuclear infiltration of the uvea, trabeculum, and episclera. Lymphocytes and plasma cells predominated. The response induced by the limbus seemed to consist of two components: a uveal and a specific limbal component. The lymphoid infiltration of the uvea was identical to the response induced by uveal antigen in our uvea control group. The limbal component was characterized by clusters of lymphocytes and plasma cells in the trabecular and episcleral regions. This study showed that limbal tissue antigen induces an inflammatory response in both uvea and limbus, and that the inflammatory response in the trabeculum is greater with limbal than uveal antigen.

Animals

Phosphoproteomic analysis in a mouse model reveals ERK signaling as a key modulator of inflammatory response in nasal mucosa associated with childhood allergic rhinitis.

Childhood allergic rhinitis (AR) is a multifactorial condition arising from the interplay between genetic predisposition and environmental exposures. Although protein phosphorylation is widely recognized as a key regulator of gene expression across various physiological and pathological states, its global alterations in the nasal mucosa of pediatric patients with AR and their subsequent impact on mucosal function and inflammatory pathways remain incompletely characterized. Our study aimed to elucidate the molecular mechanisms underlying nasal mucosa dysfunction induced by pediatric AR. Our analysis revealed 3,861 proteins encompassing a total of 15,491 phosphorylation sites. Specifically, we detected 441 downregulated phosphorylation sites on 584 proteins and 531 upregulated phosphorylation sites on 722 proteins in the nasal mucosa of the AR group. Our proteomics findings suggest that the dysregulation of immune activation and metabolic regulation may contribute to AR pathophysiology. Through pathway analysis of the identified phosphorylation sites, we found Extracellular Signal-Regulated Kinase (ERK) signaling emerged as an important pathway; notably, upregulation of ERK1/2 phosphorylation was observed as a significant marker associated with AR. Importantly, targeting ERK inhibitors presents a potential therapeutic strategy for modulating key inflammatory response signaling pathways in the context of AR, although this finding is derived from preclinical mouse models and requires rigorous validation in human pediatric nasal mucosal tissues before any clinical translation can be considered. Collectively, these findings highlight that elucidating the molecular mechanisms underlying AR-induced nasal mucosal dysfunction in the mouse model may inform the novel therapeutic targets for pediatric allergy-related diseases. Overall, elucidating these mechanisms has substantial implications for developing targeted interventions aimed at mitigating inflammation associated with allergic rhinitis.

Animals

Effect of virus infection on the inflammatory response. Depression of macrophage accumulation in influenza-infected mice.

To better define the mechanisms by which viruses depress immune function, the effect of influenza infection on the ability of macrophages to accumulate at sites of inflammation was determined. Mice were inoculated with virus, and their inflammatory response measured in vivo by counting the number of leukocytes which accumulated in the peritoneal cavity 2 days after an intraperitoneal injection of phytohemagglutinin. Mice infected with influenza had a 57% and 65% depression of total leukocyte and macrophage accumulation, respectively, as compared to the response of uninfected mice. In contrast, bacterial pneumonia did not produce a decrease in the macrophage response. This indicated that the depression was produced by the virus infection rather than being a nonspecific phenomenon accompanying any inflammatory focus in the lung. The in vitro chemotactic responsiveness of normal peritoneal macrophages incubated with infectious influenza virus was 53% of normal. These experiments suggest that influenza infection may depress a host's ability to mobilize macrophages to inflammatory sites in vivo by inhibiting their chemotactic responsiveness.

Animals

Imaging of the inflammatory response in ischemic canine myocardium with 111indium-labeled leukocytes.

Myocardial leukocyte infiltration is one hallmark of acute myocardial infarction. In order to detect noninvasively this inflammatory response associated with acute myocardial infarction, we produced coronary occlusion in eight dogs, intravenously administered autologously labeled indium-111 (111In) leukocytes and scintigraphically monitored accumulation of radionuclide in myocardium. Seventy-two hours after coronary occlusion, 111In-labeled white cells accumulated in regions corresponding to myocardial infarcts, and positive images with 111In-labeled leukocytes correlated well with images obtained with technetium-99m pyrophosphate and computer-reconstructed tomograms obtained with nitrogen-13-labeled ammonia. In contrast, two control dogs subjected to sham operation did not exhibit positive 111In-leukocyte images. Scintigraphic results with 111In-labeled leukocytes were verified in vitro by analysis of radioactivity in normal myocardium and in infarcts. Thus, leukocytic infiltration associated with acute myocardial infarction can be detected noninvasively in vivo.

Ammonia

The effect of topical antihistamine on the initial pulpal inflammatory response of monkey teeth.

Cavity preparations were made in sixty sound teeth of healthy monkeys. Thermal trauma was delivered to the pulps of all teeth through application of a heated soldering iron to the floor of a cavity preparation. Fifteen teeth were randomly designated as controls and were restored immediately with zinc oxide and eugenol. Forty-five teeth were designated as test teeth. These were treated topically with a 4 per cent antihistamine solution and restored with zinc oxide and eugenol. Histologic sections were prepared to show the effect of the antihistamine on the thermally initiated inflammatory response during the postoperative period. No significant difference was observed in the inflammatory reactions of treated or untreated pulps. A 4 per cent aqueous solution of topically applied antihistamine did not appear to be of any significant value in obviating pulpal inflammation.

Animals

Anti-inflammatory activity of an IL-6 missense variant against crystal-induced inflammatory response.

Interleukin-6 (IL-6) has an important modulator effect on inflammation and immunity and is involved in the progression of nephrolithiasis (kidney stone). However, whether IL-6 genetic variants affect the pathogenesis of kidney stones remains unclear. The present study conducted a combined investigation of candidate gene-driven screening and systematic screening on whole exome sequencing data from 28 patients of calcium oxalate stones, identifying a non-synonymous single nucleotide polymorphism (SNP) rs13306435 in IL-6 as a candidate research locus, which was further validated using HRM genotyping in an expanded cohort comprising 241 cases and 229 healthy subjects. Western blotting and qRT-PCR were used to assess the effects of this variant on crystal-induced inflammation, while molecular dynamics simulation was employed to analyze structural alterations in the receptor binding complex. In individuals aged ≤40 years, the A allele of rs13306435 was nominally associated with a reduced risk of stone formation, but no association was observed for the whole population. This missense variant causes an aspartate-to-glutamate substitution (D/E), inhibiting calcium oxalate monohydrate (COM)-triggered JAK2/STAT3 activation and inflammatory responses. However, it decreased the binding energy of IL-6/IL-6R/gp130 complex by increasing hydrogen bonds and salt brigdge at remote interfaces, suggesting that enhanced receptor binding does not necessarily translate to increased downstream signaling. Although this variant is not associated with general stone susceptibility, it exhibits notable anti-inflammatory activity by attenuating COM-induced JAK2/STAT3 activation and may influence the progression of stones through this pathway. These findings provide new insights into the role of anti-inflammatory mechanisms in nephrolithiasis.

Humans

Mechanism for the inflammatory response in primate lungs. Demonstration and partial characterization of an alveolar macrophage-derived chemotactic factor with preferential activity for polymorphonuclear leukocytes.

Approximately 4 h after an initial bronchoalveolar lavage (BAL) of a primate's lung, an appreciable number of polymorphonuclear leukocytes (PMNs) were noted to accumulate in respiratory fluids when lavage was repeated. Whereas, alveolar macrophages (90%) and lymphocytes (7%) were the principal respiratory cells recovered initially from lavage fluid, later samples contained 45-90% PMNs To explain the observed ingress of PMNs into lung fluids, concentrated BAL fluid was tested for chemoattractant activity. Such fluid obtained 4 and 24 h after an initial lavage contained material that produced directed migration (chemotaxis) for PMNs and mononuclear cells isolated from peripheral blood of normal donors. Gel filtration chromatography of BAL disclosed two peaks of chemotactic activity in the effluent fractions. Material from the column with an estimated molecular weight of 15,000 daltons was chemotactic for both PMNs and mononuclear cells. Because it was susceptible to inactivation with antiserum against the fifth component of complement, resistant to heating, and unaffected by antiserum against C3, this factor was considered analogous to the cleavage product of the fifth component of complement. C5a. In addition chemotactic activity for PMNs only was contained in an effluent peak having a molecular weight of about 5,000 daltons. This material was heat labile but unaffected by antisera to complement components. To locate the possible source of these factors in respiratory fluid, in vitro cultures of alveolar macrophages were established. These cells, whether stimulated by phagocytosis of opsonized bacteria or merely by attachment to a glass surface, produced chemotactic material which had physical characteristics similar to the small molecular weight material in BAL. Moreover, it induced preferential chemotaxis for PMNs. Thus, in primate lungs, at least two chemotactic substances may generate an inflammatory response; one which is a fragment of the complement component C5 and another small molecular weight factor which is released from alveolar macrophages.

Animals

In situ effector mechanisms in rat kidney allograft rejection. III. Kinetics of the inflammatory response and generation of donor-directed killer cells.

We have isolated and identified the infiltrating inflammatory cells from rejecting rat kidney allografts. The first host cells to appear in the graft, already a few hours after the transplantation, are monocytes and lymphocytes. Both T and B lymphocytes contribute to the infiltrate: at early stages of rejection most of the infiltrating lymphocytes have the high electrophoretic mobility of (resting) T cells, whereas later during the rejection most of the infiltrating lymphocytes display the slow mobility of (resting) B cells. The blast response follows 2 days after the influx of lymphocytes. The (B) plasmablast response takes place somewhat earlier and is higher in magnitude than the (T) lymphoblast response. Macrophages appear 1.5 days after the influx of monocytes. The inflammatory cells proliferate rapidly: after 1 h of pulse-labelling with 3H-TdR in vivo up to 24% of the infiltrating leucocytes are labelled. Most labelled cells are blast cells or lymphocytes, although a small but distinct population of labelled monocytes is also detected in situ. The in situ blast and proliferative responses precede the corresponding responses in the host central lymphatic system, i.e. spleen, blood and lymph nodes. The inflammatory leucocytes are isolated from the allograft parenchymal cells via 1 g velocity sedimentation. They are strongly and specifically cytotoxic in the 6 h 51Cr release assay to donor-derived lymphoid target cells in vitro. The peak in situ cytotoxic activity in the graft takes place already on day 5 after the transplantation, whereas in the central lymphatic system the cytotoxic cells are detected later and peak values are obtained only after the activity in situ has declined. The findings emphasize the role of the graft as the site of sensitization of kidney transplantation (peripheral sensitization) and the complex nature of the inflammatory response responsible for allograft rejection.

Animals

Inflammatory response linked to oxazolone-indued cutaneous basophil hypersensitivity: effect of different immunomodulator and anti-inflammatory drugs.

The potency of cytostatic and anti-inflammatory drugs was tested on the oxazolone-induced cutaneous basophil hypersensitivity (CBH) in mice. The challenge reaction was performed early after sensitization in order to minimize B-cell expression; exudative and cellular infiltration was estimated 6 h, 24 h and 48 h after challenge. The potency of drugs was tested at three different periods of immunization: 2 days before or after sensitization or before challenge. Cytostatics act mainly when cells are being committed, a corticoid acts on inflammation linked to committed cells, NSAIDs show inconstant anti-inflammatory effects on this test. D-Penicillamine and levamisole act in the same depressive profile in normal animals. Thus the CBH model appears to be relevant in studying drug activities on inflammation linked to T-cell expression.

Animals