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N, T.

Publications and source records attributed to N, T..

2 recordsLinked to original sources

Characterization of a novel soluble melanin secreted by Gliomastix polychroma

Melanin is a heterogeneous, amorphous biopolymer widely distributed in biological systems, yet most canonical forms are intrinsically insoluble. Soluble melanins are rare and remain poorly characterized, with pyomelanin and peptidomelanin representing the best-described fungal examples. Here, we report the isolation and characterization of a distinct, polyphyletic class of soluble melanin that we term `colloidal melanin'. This class of polymers was isolated from four different species of Ascomycetous fungi occupying varied environmental niches. Colloidal melanin was found to be phenolic and nitrogenous, with a low amino acid content. The polymers form particles with median diameters ranging from 79 to 127 nm, suggesting that small particle size may contribute to aqueous solubility via colloidal dispersion. Using chemical inhibition of melanin biosynthesis together with whole-genome sequencing, we show that colloidal melanin can be produced through multiple distinct biochemical pathways. Further, genes identified as involved in melanin biosynthesis across species do not share any detectable common ancestry, consistent with convergent evolution. Together, these findings identify a distinct class of soluble melanin that does not conform to existing soluble melanin classifications.

biochemistry↗

Evaluation Of Effect Of Bacteria On The Surface Of The Dental Implant

BackgroundDental Implantology is the most preferred treatment among patients who are opting for the replacement of their missing teeth. It is said that the success of the dental depends on the effectiveness of the dental implant bonding to the maxilla/mandible. This effectiveness depends on many factors. The microbial flora surrounding the dental implant also affects the integrity of the dental implant. AimThe study aims to analyze any effect bacteria on the surface of the implant. Materials and methodsIn the present study, 10 sterile dental implants were taken. Plaque samples were collected from patients with poor oral hygiene, who underwent dental implants and were under review for more than one month to six months. It was incubated with broth at 37 degrees Celcius. The surface changes in the dental implant were then observed in a scanning electron microscope. ResultsThe SEM results show a significant difference in the surface texture of the implant. There were pits, small craters, and cracks on the surface. The sharpness of the screw thread had also been noticeably blunt. ConclusionThus the study concludes that bacteria have a significant effect on the surface of the dental implant.

microbiology↗