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                  <mods:namePart>Streicher, Christina</mods:namePart>
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                  <mods:dateAccessioned encoding="iso8601">2011-04-13T02:43:42Z</mods:dateAccessioned>
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               <mods:abstract>Interactions between 3 different proteins (lactoferrin, beta-lactoglobulin and Whey&#xd;
Protein Isolate) and human saliva were determined. Lactoferrin and whey proteins&#xd;
are known to be astringent at low pH. Astringency is defined as the tactile sensation,&#xd;
mainly on the tongue, caused by astringent compounds when in contact with human&#xd;
saliva. Proline-rich proteins are already known to be directly involved in the&#xd;
astringency of polyphenols. Whey proteins do not contain polyphenols. However,&#xd;
because whey proteins at low pH develop an astringent sensation when consumed,&#xd;
it was expected to detect proline-rich proteins in the interaction between Whey&#xd;
Protein Isolate (WPI) and saliva as well.&#xd;
The protein solutions were adjusted to different pH-levels, ranging from neutral to&#xd;
high acidic, where a part of each protein solution was heat-treated. All solutions were&#xd;
mixed with human saliva in the same ratio (w/w). One part of all mixtures was&#xd;
pH-readjusted. Additionally, WPI model solutions were prepared, adjusted to&#xd;
different pH-levels, heat-treated and then consumed by voluntary participants, who&#xd;
swirled each solution in their mouth for at least 10 seconds. These mixtures of WPI&#xd;
and saliva were collected for further analysis. After consuming the WPI model&#xd;
solutions, followed by rinsing the mouth with water, tongue swabs were taken to&#xd;
determine the particle sizes and zeta-potentials of the remaining material on the tongue.&#xd;
Control tongue swabs of the clean tongue were taken by the participants before any&#xd;
consumption of the WPI model solutions.&#xd;
All mixtures as well as lactoferrin, beta-lactoglobulin (beta-lg), WPI and saliva on their own,&#xd;
were analysed for particle size, zeta-potential and turbidity, which may give an indication&#xd;
for possible aggregation/precipitation of the proteins as well as the analysis of the&#xd;
SDS-PAGE profile of the sediments of the sample mixtures. Saliva is negatively charged between neutral pH and 3.0, whereas lactoferrin has a&#xd;
positive charge below pH 8.0. WPI has a positive charge below pH 5.1; the same&#xd;
applies to beta-lg. None of the proteins themselves showed aggregation/precipitation at pH-levels 6.8, 3.6, 3.4, 3.0, 2.5 or 2.0. However, after the proteins were mixed with&#xd;
saliva, the pH of mixtures shifted towards neutral pH.&#xd;
The mixtures of lactoferrin (unheated/heat-treated) and saliva neither showed any&#xd;
significant increases in particle size nor the presence of turbidity. Salivary proteins&#xd;
were not detected in any mixtures at any observed pH either, despite the known fact&#xd;
that lactoferrin causes astringency. The mixtures of beta-lg (unheated/heated) and&#xd;
saliva displayed high particle sizes below final pH 3.6, whereas the high turbidities of&#xd;
both mixtures were measured between final pH 3.6 and 3.4. Furthermore, only at&#xd;
final pH 2.8 were salivary proteins (mainly glycosylated proline-rich proteins and&#xd;
alpha-amylase) detected. However, higher concentrations of salivary proteins were&#xd;
measured when heat-treated beta-lg was mixed with saliva. The mixtures of WPI and&#xd;
saliva presented the strongest interaction compared to lactoferrin and beta-lg. High&#xd;
aggregation/precipitation occurred in the mixtures between pH 4.3 and 3.0, where&#xd;
significantly high particle sizes and turbidities were detected.&#xd;
The pH-readjusted mixtures of lactoferrin/beta-lactoglobulin/WPI and saliva showed&#xd;
similar values in particle size and turbidity as the mixtures of the proteins and saliva&#xd;
without pH-readjustment at similar pH-values. Furthermore, the pH-readjusted&#xd;
mixtures of the proteins and saliva showed in their sediments the presence of&#xd;
alpha-amylase and glycosylated proline-rich proteins.The mixtures of heat-treated WPI and saliva, collected from the mouth after taking a&#xd;
sip (ratio unknown), revealed that the strongest interactions occurred when&#xd;
WPI-solutions were adjusted to pH 3.6 and 3.4. Similar observations were made for&#xd;
heat-treated WPI-solutions, which were adjusted to pH 3.6 and 3.4, when mixed with&#xd;
saliva 1:1 (w/w). However, additionally to the glycosylated proline-rich proteins and&#xd;
alpha-amylase, faint bands of mucin as well as basic proline-rich proteins were detected&#xd;
in the mixtures collected from the mouth.&#xd;
The proteins of the material remaining on the tongue followed the consumption of&#xd;
WPI-solutions and rinsing with water showed that the particle size measurementswere not reliable. However, pH-levels between 6.8 and 5.7 occurred and negative&#xd;
charges were measured on the tongue after rinsing the mouth twice with water.&#xd;
The strongest interactions between the proteins and human saliva occurred when&#xd;
the proteins, in particular beta-lg and WPI, were positively charged and then mixed with&#xd;
saliva (negative charge). Concluding from that it is suggested that electrostatic&#xd;
interactions may cause the astringent sensations. However, since no evidence could&#xd;
be found that salivary proteins were involved in the interaction between lactoferrin&#xd;
and saliva (without pH-readjustment), it is suggested that other interactions than&#xd;
electrostatic interactions cause the astringent sensation of lactoferrin.</mods:abstract>
               <mods:language>
                  <mods:languageTerm authority="rfc3066">en</mods:languageTerm>
               </mods:language>
               <mods:accessCondition type="useAndReproduction">The Author</mods:accessCondition>
               <mods:subject>
                  <mods:topic>Whey protein isolate</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Milk proteins</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Saliva</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Whey protein beverages</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Lactoferrin</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Beta-lactoglobulin</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Astringent sensation</mods:topic>
               </mods:subject>
               <mods:titleInfo>
                  <mods:title>Interactions of whey protein isolate and human saliva, as related to the astringency of whey protein beverages : a thesis in partial fulfilment of the requirement of the degree of Master of Technology in Food Technology at Riddet Institute, Massey University, New Zealand</mods:title>
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