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Propolis-inducerad exkludering av kolloider: möjlig ny mekanism för biologisk verkan

Magdalena Kowacz, Gerald H Pollack
Nyckelinsikter
  1. 01Propolis skapar ett partikelavstötande lager av EZ-vatten vid kontakt med vätska
  2. 02Denna fysiska barriär kan blockera virus och bakterier från att nå celler
  3. 03Effekten verkar bero på hydrofila grupper som finns i all propolis
  4. 04Resultaten tyder på att propolis kan fungera som ett generellt infektionsskydd

Propolis skapar ett skyddande vattenlager som fysiskt kan hindra bakterier och virus från att fästa vid kroppens slemhinnor.

Abstract

Propolis is a natural product originating from life activity of honeybees. It exhibits wide range of biological properties applicable in medicine, the food industry, and cosmetics. Chemically, propolis is a complex and variable mixture with more than 300 identified biologically active components. Propolis's many health-promoting effects are attributed to different biochemical mechanisms, mediated by often-concerted actions of some of its many constituents. Propolis is considered safe and biocompatible. Yet due to its intrinsic complexity, standardization of propolis preparations for medical use as well as prediction of e.g. pathogen-specific interactions becomes a non-trivial task. In this work we demonstrate a new physical mechanism of propolis action, largely independent of specific nuances of propolis chemistry, which may underlie some of its biological actions. We show that propolis-bearing surfaces generate an extensive exclusion zone (EZ) water layer. EZ is an interfacial region of water capable of excluding solutes ranging from ions to microorganisms. Propolis-generated EZ may constitute an effective barrier, physically disabling the approach of various pathogens to the propolis-functionalized surfaces. We suggest possible implications of this new mechanism for propolis-based prevention of respiratory infections.

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APA
Magdalena Kowacz, & Gerald H Pollack (2020). Propolis-inducerad exkludering av kolloider: möjlig ny mekanism för biologisk verkan. https://fasciaresearchdatabase.com/propolis-induced-exclusion-of-colloids-possible-new-mechanism-of-biological-action/
MLA
Magdalena Kowacz, and Gerald H Pollack. "Propolis-inducerad exkludering av kolloider: möjlig ny mekanism för biologisk verkan." 2020, https://fasciaresearchdatabase.com/propolis-induced-exclusion-of-colloids-possible-new-mechanism-of-biological-action/.
Chicago
Magdalena Kowacz, Gerald H Pollack. 2020. "Propolis-inducerad exkludering av kolloider: möjlig ny mekanism för biologisk verkan.". https://fasciaresearchdatabase.com/propolis-induced-exclusion-of-colloids-possible-new-mechanism-of-biological-action/