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Biomedical subjects

Paolo Campi

Publications and source records attributed to Paolo Campi.

5 recordsLinked to original sources

Detection of specific IgE to quinolones.

BACKGROUND: In the last years, immediate reactions to quinolone antibiotics have been observed with increasing frequency, mainly urticaria, angioedema, and shock. No test was available because of the high incidence of false-positive results on skin tests. Thus the pathogenesis, value of diagnostic procedures, and cross-reactivity have not been evaluated in a systematic way. OBJECTIVE: We sought to assess whether these reactions are IgE mediated and whether an in vitro test for quinolone-specific IgE is useful in the diagnosis and understanding of cross-reactivity. METHODS: We assayed specific serum IgE to quinolones using epoxy-activated sepharose 6B as the solid phase in 55 patients with immediate adverse reactions; specificity of IgE binding was demonstrated by inhibition tests. RESULTS: The test yielded positive results in 30 (54.5%) patients who were tested 1 to 48 months after the reaction had occurred. The quinolone-specific IgE seems to disappear more slowly in atopic patients. The cross-reactivity between various quinolones allowed us to identify a common structural motif within quinolones that might be responsible for clinical and serologic cross-reactivity. CONCLUSION: A substantial portion of immediate reactions to quinolones appear to be IgE mediated. Cross-reactivity of IgE among different quinolones is frequent and suggests that a common avoidance of quinolones should be attempted in all patients with respective symptoms.

Adolescent↗

Circulating levels of granulocyte macrophage colony-stimulating factor in patients with the systemic inflammatory response syndrome.

OBJECTIVES: Granulocyte-macrophage colony stimulating factor (GM-CSF) is a key regulator cytokine that modulates the proliferation and maturation of polymorphonuclear and mononuclear progenitors. This study was designed to investigate and clarify the role of GM-CSF in 52 critically ill patients with systemic inflammatory response syndrome (SIRS). METHODS: Serum levels of GM-CSF were detected by an immunoenzyme assay. RESULTS: Our results clearly show that the serum concentrations of GM-CSF were significantly elevated in patients with infectious and noninfectious SIRS (33.2+/-45.7pg/ml, controls: 17.2+/-9.8pg/ml; p=0.0303). In addition, GM-CSF levels significantly decreased in patients with SIRS, particularly in patients with infectious SIRS, 5 and 7 days later. There was a clear tendency toward higher levels of GM-CSF in patients with poor, as compared with those having a good outcome of the disease. CONCLUSION: These results show that GM-CSF may play an important role in patients with infectious and noninfectious SIRS, and that GM-CSF levels progressively and significantly decrease in patients with infectious SIRS.

Analysis of Variance↗

Circulating levels of FAS/APO-1 in patients with the systemic inflammatory response syndrome.

Resolution of inflammation/infection involves removal of neutrophils and other inflammatory cells by the induction of apoptosis. Fas/Apo-1 is a widely occurring apoptotic signal receptor molecule expressed by almost any type of cell, which is also released in a soluble circulating form. In this study we investigated the role of circulating Fas/Apo-1 in patients with systemic inflammatory response syndrome (SIRS). We evaluated 57 critically ill patients, 34 with infectious SIRS (sepsis and septic shock), and 23 patients with noninfectious SIRS. Circulating Fas/Apo-1 was determined by a commercially available immunoassay. Our results clearly show that levels of Fas/Apo-1 were significantly elevated in patients with infectious and noninfectious SIRS (10.4 +/- 8.1 pg/mL, controls: 5.0 +/- 0.7 pg/mL; p < 0.0001). In addition, Fas/Apo-1 levels were not able in predicting in predicting poor outcome of patients with SIRS. In conclusion, these results show that increased levels of Fas/Apo-1 from patients with SIRS is a mechanism which contribute to inflammatory response through accumulation of neutrophils at sites of inflammation/infection.

Adult↗

The novel synthetic immune response modifier R-848 (Resiquimod) shifts human allergen-specific CD4+ TH2 lymphocytes into IFN-gamma-producing cells.

BACKGROUND: In experimental models, imidazoquinolines exhibit several immunomodulatory activities via Toll-like receptor signaling on cells of the innate immunity. OBJECTIVE: The aim of our study was to investigate whether R-848 (Resiquimod), a small-molecular-weight synthetic compound belonging to the imidazoquinoline family and known for its ability to substantially delay the onset of recurrent genital herpes lesions in both animals and human beings, could influence, at least in vitro, the cytokine production profile of human hapten- or allergen-specific T cells. METHODS: Ampicillin- and Der p 1-specific T-cell lines were derived from peripheral blood of allergic donors in the absence or presence of R-848 and assessed by flow cytometry at the single-cell level for their ability to produce IL-4 and/or IFN-gamma. RESULTS: R-848 induced both hapten- and allergen-specific circulating T cells, including T(H)2 effectors, to produce IFN-gamma and even to lose the ability to produce IL-4, thus shifting their phenotype of cytokine production to a type 0 (T(H)0) or even T(H)1 profile. This effect was associated with an increase in the production of IL-12, IFN-alpha, IL-18, TNF-alpha, IL-10, and IL-15 by CD14(+) cells, as well as an increase in the proportions of IFN-gamma-producing CD3(-)CD16(+) (natural killer) cells. CONCLUSIONS: These results suggest that R-848, and probably other imidazoquinolines, might be used as adjuvants in view of novel allergen-specific immunotherapeutic regimens for the treatment of allergic disorders.

Adjuvants, Immunologic↗

Quinolone hypersensitivity.

PURPOSE OF REVIEW: Quinolones are potent antibacterial agents that can cause drug hypersensitivity reactions affecting different organs. A better understanding of the underlying mechanism and the level of crossreactivity within different quinolones is needed to handle and prevent these diseases. RECENT FINDINGS: The adverse side-effects caused by quinolones are the result of different immunological mechanisms and cause quite different diseases. The development of an assay detecting quinolone-specific IgE revealed specific antibodies in more than 50% of patients with immediate-type reactions, and the majority of sera also reacted with related compounds. In maculopapular drug exanthemas caused by ciprofloxacin, specific T cells could be detected and cloned. They reacted with ciprofloxacin directly, and crossreactivity to related compounds was detected in approximately 50% of the clones. SUMMARY: Quinolones can cause drug hypersensitivity reactions by different immunological mechanisms. In-vitro analysis suggests that crossreactivity is common.

Blood Coagulation Disorders↗