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bromelain/inflammation

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Bromelain limits airway inflammation in an ovalbumin-induced murine model of established asthma.

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BACKGROUND Allergic asthma continues to increase despite new pharmacological advances for both acute treatment and chronic-disease management. Asthma is a multifactorial disease process with genetic, allergic, infectious, environmental, and dietary origins. Researchers are investigating the benefits

[Anti-inflammatory actions of proteases, bromelain, trypsin and their mixed preparation (author's transl)].

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Anti-inflammatory actions of proteases, bromelain (BR), trypsin (TR) and their mixed preparation (KT) were studied mainly in rabbits using various experimental test methods. Inhibitory action of edema formation induced by carrageenin was observed to be dose dependent with oral administrations of KT.

Anti-inflammatory activity of Bromelia hieronymi: comparison with bromelain.

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Some plant proteases (e. g., papain, bromelain, ficin) have been used as anti-inflammatory agents for some years, and especially bromelain is still being used as alternative and/or complementary therapy to glucocorticoids, nonsteroidal antirheumatics, and immunomodulators. Bromelain is an extract
Activation of the TNF-α receptor (TNFR) leads to an inflammatory response, and anti-TNF therapy has been administered to reduce inflammation symptoms and heal mucosal ulcers in inflammatory bowel disease (IBD). Bromelain, a complex natural mixture of proteolytic enzymes, has been shown to exert
Inflammation is a common pathogenic mechanism involved in many otorhinolaryngological (ORL) disorders. Broser® is an oral nutraceutical currently containing bromelain 100 mg, escin 30 mg, and selenium 42.5 mcg. It could exert a safe and effective anti-inflammatory activity by virtue of these
The aim of this systematic review was to determine whether bromelain is an effective drug for the control of pain and inflammation associated with third molar surgery. Randomized, controlled clinical trials on the subject were identified through a systematic search of the literature using the

Enhancement of anti-inflammatory activity of bromelain by its encapsulation in katira gum nanoparticles.

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Bromelain-loaded katira gum nanoparticles were synthesized using 3 level optimization process and desirability approach. Nanoparticles of the optimized batch were characterized using particle size analysis, zeta potential, transmission electron microscopy and Fourier-transform infrared spectroscopy.
To evaluate the efficacy of an association of N-acetyl cystein, alpha-lipoic acid, and bromelain (NAC/LA/Br) in the treatment of endometriosis we set up a new in vivo murine model. We explored the anti-inflammatory and proapoptotic effect of this combination on human endometriotic endothelial cells

Bromelain treatment decreases neutrophil migration to sites of inflammation.

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Bromelain, a mixture of proteases derived from pineapple stem, has been reported to have therapeutic benefits in a variety of inflammatory diseases, including murine inflammatory bowel disease. The purpose of this work was to understand potential mechanisms for this anti-inflammatory activity.
The aim of this systematic review was to evaluate the clinical evidences of the bromelain in minimizing inflammatory parameters such as pain, edema, and trismus after lower third molar surgeries. An electronic search was conducted in six databases through November 2017. The eligibility criteria

In vivo and in vitro effects of bromelain on PGE(2) and SP concentrations in the inflammatory exudate in rats.

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The effects of bromelain were examined in rats with subcutaneous carrageenin-induced inflammation. After oral in vivo administration, bromelain (10 and 20 mg/kg p.o.) induced a significant decrease of both PGE(2) and substance P concentrations in the exudate. When added to the inflammatory exudate

Effect of bromelain on kaolin-induced inflammation in rats.

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The effects of stem bromelain on the plasma kallikrein system, bradykinin levels and plasma exudation at the inflammatory site were examined in rats with a kaolin-induced inflammation of an air pouch. Bromelain (5, 7.5 mg/kg) caused a dose-dependent decrease of bradykinin levels at the inflammatory

Bromelain exerts anti-inflammatory effects in an ovalbumin-induced murine model of allergic airway disease.

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OBJECTIVE Bromelain, a clinically used pineapple extract and natural product, has reported anti-inflammatory and immunomodulatory activities. The purpose of this study was to determine the effect of bromelain treatment in an ovalbumin (OVA)-induced murine model of allergic airway disease
Bromelain is a mixture of proteinases derived from pineapple stem that is marketed in health food stores as a "digestive aid". Orally administered bromelain was anecdotally reported to induce clinical and endoscopic remission of ulcerative colitis in two patients whose disease was refractory to

Bromelain treatment decreases secretion of pro-inflammatory cytokines and chemokines by colon biopsies in vitro.

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Oral bromelain has been anecdotally reported to decrease inflammation in ulcerative colitis (UC). Proteolytically active bromelain is known to decrease expression of mRNAs encoding pro-inflammatory cytokines by human leukocytes in vitro. To assess the effect of bromelain on mucosal secretion of
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