Microbiology 93 = Disinfectants (06) = Evaluation of Disinfectant by Radial Walker Test | RW Test

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  • เผยแพร่เมื่อ 30 ธ.ค. 2021
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    A disinfectant is a chemical substance or compound used to inactivate or destroy microorganisms on inert surfaces. Disinfection does not necessarily kill all microorganisms, especially resistant bacterial spores; it is less effective than sterilization, which is an extreme physical or chemical process that kills all types of life. Disinfectants are generally distinguished from other antimicrobial agents such as antibiotics, which destroy microorganisms within the body, and antiseptics, which destroy microorganisms on living tissue. Disinfectants are also different from biocides-the latter are intended to destroy all forms of life, not just microorganisms. Disinfectants work by destroying the cell wall of microbes or interfering with their metabolism. It is also a form of decontamination and can be defined as the process whereby physical or chemical methods are used to reduce the number of pathogenic microorganisms on a surface. Disinfecting uses chemicals (disinfectants) to kill germs on surfaces and objects. Some common disinfectants are bleach and alcohol solutions. You usually need to leave the disinfectant on the surfaces and objects for a certain period of time to kill the germs. Disinfecting does not necessarily clean dirty surfaces or remove germs.
    Factors Influencing Disinfection -
    (1) Number and Location of Microorganisms. = All other conditions remaining constant, the larger the number of microbes, the more time a germicide needs to destroy all of them. Spaulding illustrated this relation when he employed identical test conditions and demonstrated that it took 30 minutes to kill 10 B. atrophaeus (formerly Bacillus subtilis) spores but 3 hours to kill 100,000 Bacillus atrophaeus spores.
    (2) Innate Resistance of Microorganisms = Microorganisms vary greatly in their resistance to chemical germicides and sterilization processes Intrinsic resistance mechanisms in microorganisms to disinfectants vary. For example, spores are resistant to disinfectants because the spore coat and cortex act as a barrier, mycobacteria have a waxy cell wall that prevents disinfectant entry, and gram-negative bacteria possess an outer membrane that acts as a barrier to the uptake of disinfectants.
    (3) Concentration and Potency of Disinfectants = With other variables constant, and with one exception (iodophors), the more concentrated the disinfectant, the greater its efficacy and the shorter the time necessary to achieve microbial kill. Generally not recognized, however, is that all disinfectants are not similarly affected by concentration adjustments. For example, quaternary ammonium compounds and phenol have a concentration exponent of 1 and 6, respectively
    (4) Physical and Chemical Factors = Several physical and chemical factors also influence disinfectant procedures: temperature, pH, relative humidity, and water hardness. For example, the activity of most disinfectants increases as the temperature increases, but some exceptions exist. Furthermore, too great an increase in temperature causes the disinfectant to degrade and weakens its germicidal activity and thus might produce a potential health hazard.
    (5) Organic and Inorganic Matter.
    (6) Duration of Exposure.
    (7) Biofilms.
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ความคิดเห็น • 7

  • @masrurakhatun4765
    @masrurakhatun4765 6 หลายเดือนก่อน +1

    Sukria sir 😊😊!!! Bohot acchese ...samj ata hai apka lecture❤

  • @medicinallyinsane6416
    @medicinallyinsane6416 2 ปีที่แล้ว +1

    Thank you sir .....💕💖..
    Sir please cover whole syllabus of microbiology B PHARM ... thank you

  • @AamirKhan-wm9ku
    @AamirKhan-wm9ku 2 ปีที่แล้ว

    Sir 7 sem ka lecture available nahi h ky

  • @preetikushwaha7267
    @preetikushwaha7267 ปีที่แล้ว

    Sir aapki voice clear nahi aati hai .