<?xml version="1.0" encoding="UTF-8" ?>
<modsCollection xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.loc.gov/mods/v3" xmlns:slims="http://senayan.diknas.go.id" xsi:schemaLocation="http://www.loc.gov/mods/v3 http://www.loc.gov/standards/mods/v3/mods-3-3.xsd">
<mods version="3.3" ID="1618">
<titleInfo>
<title>Marmara Pharmaceutical Journal of Research in Pharmacy Journal of Research in Pharmacy 2021 , Vol 25 Issue 4</title>
</titleInfo>
<typeOfResource manuscript="yes" collection="yes">mixed material</typeOfResource>
<genre authority="marcgt">bibliography</genre>
<originInfo>
<place><placeTerm type="text"></placeTerm></place>
<publisher></publisher>
<dateIssued></dateIssued>
<issuance>monographic</issuance>
<edition>Vol 25 Issue 4</edition>
</originInfo>
<language>
<languageTerm type="code">id</languageTerm>
<languageTerm type="text">Indonesia</languageTerm>
</language>
<physicalDescription>
<form authority="gmd">Karya Tulis Ilmiah</form>
<extent></extent>
</physicalDescription>
<note>ABSTRACT: Drug delivery systems have been more interested in two decades because of their enormous advantages

over free drugs. Especially, stimuli-responsive carrier systems such as, pH-sensitive, enzyme sensitive, temperature-
sensitive, or ultrasound sensitive particles, have been the most attractive drug delivery strategy. For that purpose, I

designed pH-sensitive cross-linked micelles that could be used for cancer therapy. Micelles nanoparticles were formed
with triblock copolymers for this system containing of a hydrophilic PEG block, a central functionalized block, and a
hydrophobic block to establish stable nano sized micelle particles. The hydrophobic block can provide room for
hydrophobic drugs with the physical hydrophobic drug-hydrophobic core interaction and form stable, spherical 25-35
nm nanoparticles in the presence of the aqua system. In order to control the release rate of hydrophobic drugs
(fluorescence hydrophobic dye Nile Red (NR) is preferred for the hydrophobic model drug), a pH-sensitive layer at the
middle block of the micelles that embraces the hydrophobic block was constructed. Shell cross-linked (SCL) micelles
are obtained upon introducing the glutaraldehyde as a cross-linker that able to react with NH2 functional groups of the
middle block of the triblock copolymer. The formed cross-link shell contains acid-labile hydrazone linkages that are
cleavable in response to acidic conditions such as cellular uptake mechanism, endocytosis, and bone lacuna not in
physiologic pH.
KEYWORDS: Micelles; pH-sensitive; drug delivery; nile red, cabazitaxel.</note>
<classification></classification><identifier type="isbn"></identifier><location>
<physicalLocation>PERPUSTAKAAN SEKOLAH TINGGI ILMU KESEHATAN SAMARINDA REPOSITORY</physicalLocation>
<shelfLocator></shelfLocator>
<holdingSimple>
<copyInformation>
<numerationAndChronology type="1">JIN0082</numerationAndChronology>
<sublocation>Perpus.Akfarsam (jurnal Internasioan)</sublocation>
<shelfLocator>615 MAR b</shelfLocator>
</copyInformation>
</holdingSimple>
</location>
<slims:digitals>
<slims:digital_item id="1693" url="https://drive.google.com/file/d/1QyGcyH3YftXG1n7Wu3M33c5xeAkMbXSC/view?usp=sharing" path="/https://drive.google.com/file/d/1QyGcyH3YftXG1n7Wu3M33c5xeAkMbXSC/view?usp=sharing" mimetype="text/uri-list">Marmara Pharmaceutical Journal of Research in Pharmacy Journal of Research in Pharmacy 2021 , Vol 25 Issue 4</slims:digital_item>
</slims:digitals><recordInfo>
<recordIdentifier>1618</recordIdentifier>
<recordCreationDate encoding="w3cdtf">2022-07-20 08:50:28</recordCreationDate>
<recordChangeDate encoding="w3cdtf">2022-07-20 08:55:26</recordChangeDate>
<recordOrigin>machine generated</recordOrigin>
</recordInfo></mods></modsCollection>