Preparation of poly(β-L-malic acid)-based charge-conversional nanoconjugates for tumor-specific uptake and cellular delivery

scientific article

Preparation of poly(β-L-malic acid)-based charge-conversional nanoconjugates for tumor-specific uptake and cellular delivery is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.2147/IJN.S78547
P932PMC publication ID4364157
P698PubMed publication ID25792828

P50authorLin ZhuQ59539382
P2093author name stringHong Wu
Qing Zhou
Youbei Qiao
Tiehong Yang
Songyan Guo
P2860cites workCancer genome landscapesQ22242276
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Electrostatic charge conversion processes in engineered tumor-identifying polypeptides for targeted chemotherapyQ39431362
New functional degradable and bio-compatible nanoparticles based on poly(malic acid) derivatives for site-specific anti-cancer drug deliveryQ39546672
Improved Therapeutic Effect of DOX-PLGA-PEG Micelles Decorated with Bivalent Fragment HAb18 F(ab′)2 for Hepatocellular CarcinomaQ39657215
HAb18G/CD147 functions in invasion and metastasis of hepatocellular carcinomaQ40117761
Nanoconjugate based on polymalic acid for tumor targetingQ40156009
Polycefin, a new prototype of a multifunctional nanoconjugate based on poly(beta-L-malic acid) for drug deliveryQ40305307
Monoclonal antibody radiopharmaceuticals: cationization, pegylation, radiometal chelation, pharmacokinetics, and tumor imagingQ40646578
Acid production in glycolysis-impaired tumors provides new insights into tumor metabolismQ40738901
Nanoconjugate Platforms Development Based in Poly(β,L-Malic Acid) Methyl Esters for Tumor Drug DeliveryQ41821522
pH-responsive zwitterionic copolypeptides as charge conversional shielding system for gene carriersQ42255201
Poly(L-histidine)-PEG block copolymer micelles and pH-induced destabilizationQ44525531
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Nanoparticles--a historical perspectiveQ48367995
P275copyright licenseCreative Commons Attribution-NonCommercial 3.0 UnportedQ18810331
P6216copyright statuscopyrightedQ50423863
P407language of work or nameEnglishQ1860
P304page(s)1941-1952
P577publication date2015-03-10
P1433published inInternational Journal of NanomedicineQ6051502
P1476titlePreparation of poly(β-L-malic acid)-based charge-conversional nanoconjugates for tumor-specific uptake and cellular delivery
P478volume10

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cites work (P2860)
Q33820964Dual-pH Sensitive Charge-reversal Nanocomplex for Tumor-targeted Drug Delivery with Enhanced Anticancer Activity
Q55334208Metabolome- and genome-scale model analyses for engineering of Aureobasidium pullulans to enhance polymalic acid and malic acid production from sugarcane molasses.
Q28554265Preparation of Two Types of Polymeric Micelles Based on Poly(β-L-Malic Acid) for Antitumor Drug Delivery

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