| Literature DB >> 28330320 |
Abstract
Xanthine oxidase is a key enzyme responsible for hyperuricemia, a pre-disposing factor for Gout and oxidative stress-related diseases. Only two clinically approved xanthine oxidase inhibitors Allopurinol and Febuxostat are currently used for treatment of hyperuricemia. However, owing to their side effects there is a need for new non-purine-based selective inhibitors of xanthine oxidase. In the process of exploring novel xanthine oxidase inhibitors and anti-oxidants, we screened the culture filtrate of 07 novel species of Muscodor, a sterile endophytic fungi isolated from Cinnamomum and Aegle marmelos. Chloroform extract of M. darjeelingensis exhibited the maximum xanthine oxidase inhibition in the qualitative and quantitative assays. The IC50 of chloroform extract of M. darjeelingensis was 0.54 µg/ml which was much lower to Allopurinol but higher when compared to Febuxostat. 88% reduction in uric acid production was recorded by M. darjeelingensis chloroform extract which was similar to allopurinol. The maximum anti-oxidant activity was exhibited by M. indica against the gallic acid standard in the DPPH-free radical assay. Anti-oxidant activity index of M. indica was 7.7, which was followed by M. kashayum with 5.4. M. darjeelingensis exhibited a moderate anti-oxidant activity with anti-oxidant activity index of 1.63 in the DPPH assay. The present study is the very first report of Muscodor species exhibiting xanthine oxidase inhibitory and anti-oxidant activity together. Chloroform extract of M. darjeelingensis and M. indica stand out as potential candidates for isolation and characterization of the xanthine oxidase inhibitor and anti-oxidant compound, respectively.Entities:
Keywords: DPPH assay; Endophytic fungi; Enzyme inhibitor; Hyperuricemia; Muscodor
Year: 2016 PMID: 28330320 PMCID: PMC5114212 DOI: 10.1007/s13205-016-0569-5
Source DB: PubMed Journal: 3 Biotech ISSN: 2190-5738 Impact factor: 2.406
Xanthine oxidase inhibition of Indian Muscodor species by qualitative and quantitative assay
| Treatment | % XO inhibition | % Reduction in uric acid production | |
|---|---|---|---|
| Xanthine plate assay | NBT assay | ||
| Control (no inhibitor) | 0e | 0g | 0g |
| Febuxostat* | 59.4 ± 1.0a | 99.2 ± 0.0a | 99.5 ± 0.0a |
|
| 59.4 ± 1.0a | 91.4 ± 0.8b | 88.1 ± 0.0b |
| Allopurinol* | 58.6 ± 1.0a | 88.0 ± 0.5b | 86.7 ± 0.0b |
|
| 56.7 ± 0.9a | 77.0 ± 0.5c | 74.0 ± 0.0c |
|
| 54.9 ± 1.0a | 76.0 ± 1.0c | 70.3 ± 0.0c |
|
| 48.6 ± 3.1b | 40.2 ± 1.9e | 40.2 ± 2.6d |
|
| 46.7 ± 1.8b | 46.7 ± 1.8d | 39.7 ± 0.0d |
|
| 31.6 ± 3.8c | 37.6 ± 2.7e | 24.2 ± 0.0e |
|
| 18.2 ± 1.9d | 28.6 ± 4.5f | 18.7 ± 1.6f |
* Represent commercial inhibitors of Xanthine Oxidase (XO). All values presented are Mean ± SD of triplicate readings
Mean values represented by same alphabets are not significantly different by Tukey’s post hoc analysis at p ≤ 0.05
Fig. 1Qualitative NBT plate assay of chloroform residues of Muscodor species
Fig. 2Dose-response curve of chloroform residue of M. darjeelingensis for inhibition of xanthine oxidase. Allopurinol and Febuxostat was used as the positive control
Free radical scavenging activity by DPPH Assay
| Species | Scavenging activity (%) | IC50 (μg/ml) | Antioxidant activity index (AAI) |
|---|---|---|---|
| Gallic acid (standard)* | 73.9 ± 1.3a | 7.00 | 0.6 |
|
| 71.6 ± 0.9ab | 0.52 | 7.7 |
|
| 69.8 ± 2.6abc | 1.47 | 2.7 |
|
| 68.0 ± 3.8bc | 2.45 | 1.6 |
|
| 65.4 ± 3.8c | 0.74 | 5.4 |
|
| 48.5 ± 3.2d | 5.64 | 0.7 |
|
| 46.5 ± 1.7d | 47.32 | 0.08 |
|
| 46.4 ± 4.9d | 133.30 | 0.03 |
* Represent commercial inhibitors of Xanthine Oxidase (XO). All values presented are Mean ± SD of triplicate readings
Mean values represented by same alphabets are not significantly different by Tukey’s post hoc analysis at p ≤ 0.05
Fig. 3Dose-response curve of chloroform residue of Indian Muscodor species for antioxidant activity by DPPH assay