Accelerated in vivo wound healing evaluation of microbial glycolipid containing ointment as a transdermal substitute

[Display omitted] A potent biosurfactant (BS) producing Bacillus licheniformis SV1 (NCBI GenBank Accession No. KX130852) was isolated from oil contaminated soil sample. Physicochemical investigations (TLC, HPLC, FTIR, GC–MS and NMR) revealed it to be glycolipid in nature. Fibroblast culture assay sh...

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Veröffentlicht in:Biomedicine & pharmacotherapy 2017-10, Vol.94, p.1186-1196
Hauptverfasser: Gupta, Sonam, Raghuwanshi, Navdeep, Varshney, Ritu, Banat, I.M., Srivastava, Amit Kumar, Pruthi, Parul A., Pruthi, Vikas
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Sprache:eng
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Zusammenfassung:[Display omitted] A potent biosurfactant (BS) producing Bacillus licheniformis SV1 (NCBI GenBank Accession No. KX130852) was isolated from oil contaminated soil sample. Physicochemical investigations (TLC, HPLC, FTIR, GC–MS and NMR) revealed it to be glycolipid in nature. Fibroblast culture assay showed cytocompatibility and increased cell proliferation of 3T3/NIH fibroblast cells treated with this biosurfactant when checked using MTT assay and DAPI fluorescent staining. To evaluate the wound healing potential, BS ointment was formulated and checked for its spreadability and viscosity consistency. In vivo wound healing examination of full thickness skin excision wound rat model demonstrated the prompt re-epithelialization and fibroblast cell proliferation in the early phase while quicker collagen deposition in later phases of wound healing when BS ointment was used. These results validated the potential usage of BS ointment as a transdermal substitute for faster healing of impaired skin wound. Biochemical evaluation also substantiated the highest concentration of hydroxyproline (32.18±0.46, p
ISSN:0753-3322
1950-6007
DOI:10.1016/j.biopha.2017.08.010