Figure 1 from Antifungal activity of plant extracts against dandruff causing organism Malassezia furfur | Semantic Scholar (2025)

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@article{Pingili2016AntifungalAO, title={Antifungal activity of plant extracts against dandruff causing organism Malassezia furfur}, author={Mamatha Pingili and Sridhar Vanga and Ramakrishna Raparla}, journal={International Journal of Bioassays}, year={2016}, volume={5}, pages={5047-5049}, url={https://api.semanticscholar.org/CorpusID:88885416}}
  • Mamatha Pingili, Sridhar Vanga, Ramakrishna Raparla
  • Published 31 October 2016
  • Environmental Science, Medicine
  • International Journal of Bioassays

It is inferred that plant extracts showed promising activity against Malassezia furfur when compared with the marketed antidandruff shampoos.

15 Citations

Background Citations

2

Methods Citations

3

Figures and Tables from this paper

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15 Citations

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    C. SinglaMohammed Ali

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Dandruff is a skin disorder caused by a fungus Malasse z ia furfur and the structures of these plants and essential oils were established on the basis of spectral data analysis and chemical reactions.

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Saussurea costus (Falc.) Lipsch. (Asteraceae) grows in the Himalayan region and its roots are used to treat abdominal, blood, kidney and liver disorders, respiratory and skin diseases, cholera,

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FORMULATION AND EVALUATION OF POLYHERBAL ANTI DANDRUFF HAIR GEL
    Fathimath RasnaMidhun MuraleedharanSahala Abdul LatheefK. NehaKuriakoseProf. Sruthy P.N

    Medicine, Materials Science

The polyherbal hairgel was found to be effective against Malassezia furfur and antimicrobial activity against K.pneumoniae and S.aureus and the formulation showed desirable physiochemical properties of gel and stability test result stated that the formulation was stable even after 30 days of stability test.

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Green Synthesis of Silver Nanoparticles Using Fruit Peel Extract of Citrus Limon
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Metal nanoparticles are being increasingly used in many sectors of economy, and there is a growing interest in ensuring biological and environmental safety of their production. Green synthesis of

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8 References

Chemical Composition and Antifungal Activity of Plant Essential Oils against Malassezia furfur
    Jeong‐Hyun LeeJae-Sug Lee

    Chemistry, Environmental Science

  • 2010

Evaluating the effect of the plant essential oils on the growth of M. furfur concluded that essential oils of Citrus aurareifolia may have interesting applications to control fungal-derived diseases.

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SCREENING OF PLANT ESSENTIAL OILS FOR ANTIFUNGAL ACTIVITY AGAINST MALASSEZIA FURFUR
    A. PoojaN. ArunK. Maninder

    Environmental Science, Medicine

  • 2013

The study reports effectiveness of kapur tulsi oil against M. furfur for the first time and the synergistic combinations of oils is also being reported for theFirst time, which provide promising information on the potential use of essential oils for the treatment of dandruff.

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Characterization of Malassezia Furfur and its control by using plant extracts
    Ambika Singh PariharVirendra KumarAbhishek SinhaSaraswatiSharma.

    Environmental Science, Agricultural and Food Sciences

  • 2006

A modified medium for the culturing of M. furfur has been proposed and growth of the fungus was determined in the presence of different carbon sources under the influence of different temperature, pH and salinity.

FORMULATION AND EVALUATION OF IN­VITRO ANTIMICROBIAL ACTIVITY OF GEL CONTAINING ESSENTIAL OILS AND EFFECT OF POLYMER ON THEIR ANTIMICROBIAL ACTIVITY
    Abhijeet PandeyJui V. Jagtap

    Materials Science

  • 2011

Inthepresentstudyanattemptwasmadetoformulategelcontainingdifferentplantextractsandessentialoilsandwasevaluatedforantimicrobial activityagainst differentmicroorganism.The

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Prolonged effects of antidandruff shampoos ‐ time to recurrence of Malassezia ovalis colonization of skin
    G. PiérardJ. ArreseC. Piérard‐franchimontP. Doncker

    Medicine

    International journal of cosmetic science

  • 1997

Data show the increased duration of yeast reduction for the ketoconazole shampoo over the two other formulations, which is explained by the combination of its antifungal and pharmacokinetic properties.

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