Search bioRxiv⌕ Search

Biology subjects

Levy, G. A.

Publications and source records attributed to Levy, G. A..

3 recordsLinked to original sources

Reduction in myocardial fibrosis in MDX mice on oral consumption of Aureobasidium Pullulans produced Neu REFIX Beta-glucans; holds potential as an adjuvant in managing post-transplantation organ fibrosis

Organ fibrosis is one of the major causes of morbidity and mortality globally. Though fibrosis in genetic diseases such as Duchenne muscular dystrophy (DMD) may be attributed to the genetic defect, chronic microinflammation remains a key mechanism underlying such fibrosis, which also precedes both other organ fibrosis and post-organ transplant fibrosis. Having proven the anti-inflammatory, anti-fibrotic effects of Beta-1,3-1,6-glucan (Neu-REFIX) produced by N-163 strain of Aureobasidium Pullulans in earlier clinical and pre-clinical studies, we performed the current study to evaluate its effects on myocardial fibrosis. N-163 beta-glucan was administered to 45 mice in three groups, each fifteen animals, Gr. 1, normal mice, Gr.2, mdx mice as vehicle, Gr.3, mdx mice which were administered Neu REFIX beta-glucan orally. Evaluation of Collagen Type I (Col-I) in myocardium was performed by immunohistochemistry. Percentage of myocardium Col-I positive area of 6.42 {+/-} 2.67 significantly decreased in the Neu-REFIX group (4.32 {+/-} 1.78) (p-value < 0.01). As myocardial fibrosis has been shown to be reduced following treatment with N-163 beta glucan in a genetic, muscle structure anomaly disease such as DMD, in addition to adding value to DMD patients, in whom myocardial failure occurs in the advanced stages leading to pre-mature death, Neu-REFIX beta-glucan adjuvant treatment in the setting of solid organ transplantation may be of value to reduce the incidence of fibrosis which is a known feature of chronic allograft rejection leading to graft loss.

genetics↗

Two unique biological response-modifier glucans beneficially regulating gut microbiota and faecal metabolome in a non-alcoholic steatohepatitis animal model, with potential for applications in human health and disease

ObjectiveThe gut microbiome and its metabolites, influenced by age and stress, reflect the metabolism and immune systems health. We assessed the gut microbiota and faecal metabolome in a Stelic Animal Model of non-alcoholic steatohepatitis (NASH). DesignThis model was subjected to the following treatments: reverse osmosis water, AFO-202, N-163, AFO-202+N-163, and telmisartan. Faecal samples were collected at 6 weeks and 9 weeks of age. The gut microbiome was analysed using 16S ribosomal RNA sequence acquired by next-generation sequencing and the faecal metabolome using gas chromatography-mass spectrometry. ResultsThe gut microbial diversity increased greatly in the AFO-202+N-163 group. Post-intervention, the abundance of Firmicutes decreased, while that of Bacteroides increased and was the highest in the AFO-202+N-163 group. The decrease in the Enterobacteria and other Firmicutes abundance and in the Turicibacter and Bilophila abundance was the highest in the AFO-202 and N-163 groups, respectively. The Lactobacillus abundance increased the most in the AFO-202+N-163 group. The faecal metabolites spermidine and tryptophan, beneficial against inflammation and NASH, respectively, were greatly increased in the N-163 group. Succinic acid, beneficial in neurodevelopmental and neurodegenerative diseases, increased in the AFO-202 group. Decrease in fructose was the highest in the AFO-202 group. Leucine and phenylalanine decreased, whereas ornithine, which is beneficial against chronic immune-metabolic-inflammatory pathologies, increased in the AFO-202+N-163 group. ConclusionAFO-202 treatment in mice is beneficial against neurodevelopmental and neurodegenerative diseases and has prophylactic potential against metabolic conditions. N-163 treatment has anti-inflammatory effects against organ fibrosis and neuroinflammatory conditions. In combination, they present anticancer activity. Key messagesO_LIThe influence of gut microbiome on fecal metabolome and their association to several diseases is already known. C_LIO_LIThis study proves the efficacy of 1,3-1,6 beta glucans with pre-biotic potentials, beneficially influencing both gut microbiome and metabolome. C_LIO_LIThese results recommends for an in-depth exploration of relationship among pre-biotics, gut microbiome and gut-multi-organ axes on the fundamentals of disease onset. C_LIO_LIHidden prophylactic and therapeutic solutions to non-contagious diseases with Aureobasidium pullulans produced 1,3-1,6 beta glucans may be unveiled. C_LI

microbiology↗

Hepatoprotective effects of Aureobasidium pullulans derived Beta 1,3-1,6 biological response modifier glucans in a STAM- animal model of non-alcoholic steatohepatitis

BackgroundNon-alcoholic fatty liver disease (NAFLD) and non-alcoholic steatohepatitis (NASH) are highly prevalent conditions characterized by inflammation and fibrosis of the liver which can progress to cirrhosis and hepatocellular carcinoma if left untreated. Lifestyle disorders such as obesity, diabetes and dyslipidaemia predispose to and are associated with the disease progression. Conventional modalities are mainly symptomatic, with no definite solution. Beta glucan-based biological response modifiers are a potential strategy in lieu of their beneficial metabolic effects. Aureobasidium pullulans strains AFO-202 and N-163 beta glucans were evaluated for anti-fibrotic and anti-inflammatory hepatoprotective potentials in a NASH animal model in this study. MethodsIn the STAM murine model of NASH, five groups were studied for eight weeks-- (1) vehicle (RO water), (2) AFO-202 beta glucan; (3) N-163 beta glucan, (4) AFO-202+N-163 beta glucan, and (5) telmisartan (standard pharmacological intervention). Evaluation of biochemical parameters in plasma and hepatic histology including Sirius red staining and F4/80 immunostaining were performed. ResultsAFO-202 beta glucan significantly decreased inflammation-associated hepatic cell ballooning and steatosis. N-163 beta glucan decreased fibrosis and inflammation significantly (p value<0.05). The combination of AFO-202 with N-163 significantly decreased the NAFLD Activity Score (NAS) compared with other groups. ConclusionThis preclinical study supports the potential of N-163 and AFO-202 beta glucans alone or in combination as potential preventive and therapeutic agent(s), for NASH. Graphical abstract O_FIG_DISPLAY_L [Figure 1] M_FIG_DISPLAY C_FIG_DISPLAY

pharmacology and toxicology↗