Background: When it comes to surgical site infection (SSI), it has been shown that two-thirds of wound infections starts around the incision line and the number is even greater in the presence of sutures. Therefore, a number of compounds have been used to coat the suture materials which tend to decrease the SSI some of which include ciprofloxacin, , and chlorhexidine.
Objective: The objective of this study was to assess the antibacterial properties of neem oil-coated sutures in anaerobic culture media when compared to triclosan-coated sutures and uncoated sutures.
Materials And Methods: The phosphate-buffered saline solution containing the plaque samples of the patients was transferred evenly onto the sterile agar media. Equal segments of 100% neem oil coated (Group 1), 50% neem oil coated (Group 2), triclosan-coated (Group 3), and uncoated (Group 4) sutures were placed on the agar plate. These were then incubated at 37°C for 24 h. The inhibition zone was calculated in mm by measuring of the zone of inhibition (ZOI) in terms of length, breadth, and area.
Results: The results were calculated following the incubation. The mean length for 100% neem oil-coated suture was 2.61 mm ± 0.2 and for 50% neem oil-coated suture was 2.49 mm ± 0.24. The mean breadth for 100% neem oil-coated suture was 1.5 mm ± 0.41 and for 50% neem oil-coated suture the mean was 0.95 mm ± 0.58. The mean area for 100% neem oil-coated suture was 77 mm ± 32.9 and for 50% neem oil-coated suture was 16.8 mm ± 11.14. Triclosan and uncoated sutures did not show any ZOI.
Conclusion: The 100% neem oil-coated sutures had the largest length, breadth, and area of ZOI in the anaerobic culture media, followed by 50% neem oil-coated sutures. Triclosan-coated and uncoated sutures did not show any ZOI. Therefore, neem oil-coated suture can be used in the overall healing and prevention of postoperative discomfort after oral surgical procedures.
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http://dx.doi.org/10.4103/jisp.jisp_475_22 | DOI Listing |
J Indian Soc Periodontol
September 2023
Department of Oral Pathology, ITS Dental College, Muradnagar, Uttar Pradesh, India.
Background: When it comes to surgical site infection (SSI), it has been shown that two-thirds of wound infections starts around the incision line and the number is even greater in the presence of sutures. Therefore, a number of compounds have been used to coat the suture materials which tend to decrease the SSI some of which include ciprofloxacin, , and chlorhexidine.
Objective: The objective of this study was to assess the antibacterial properties of neem oil-coated sutures in anaerobic culture media when compared to triclosan-coated sutures and uncoated sutures.
J Agric Food Chem
November 2008
Division of Agricultural Chemicals and Division of Agronomy, Indian Agricultural Reseach Institute, New Delhi 110 012, India.
The utility of neem (Azadirachta indica A Juss) oil coated urea as a value-added nitrogenous fertilizer has been now widely accepted by Indian farmers and the fertilizer industry. In the present study, the expeller grade (EG) and hexane-extracted (HE) neem oils, the two most common commercial grades, were used to prepare neem oil coated urea (NOCU) of various oil doses, for which mineralization rates were assessed in four soils at three incubation temperatures (20, 27, and 35 degrees C). Neem oil dose-dependent conservation of ammonium N was observed in NOCU treatments in all of the soils.
View Article and Find Full Text PDFJ Agric Food Chem
February 2007
Divisions of Agricultural Chemicals and Agronomy, Indian Agricultural Research Institute, New Delhi 110 012, India.
The technology for the production of neem oil coated urea (NOCU) developed by the Indian Agricultural Research Institute is in the pipeline for adaption by several Indian fertilizer industries. Use of nitrification inhibitors is one of the methods of improving the nitrogen use efficiency (NUE) of nitrogenous fertilizers in agriculture. However, standard specifications for the neem oil as a raw material of NOCU are desired.
View Article and Find Full Text PDFChemosphere
January 2005
Division of Environmental Sciences, Nuclear Research Laboratory Building, Indian Agricultural Research Institute, New Delhi 110 012, India.
Mitigation of methane (CH4) and nitrous oxide (N2O) emissions from soil is important to reduce the global warming. Efficacy of five nitrification inhibitors, i.e.
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