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Monomer sequence in PLGA microparticles: Effects on acidic microclimates  and in vivo inflammatory response - ScienceDirect
Monomer sequence in PLGA microparticles: Effects on acidic microclimates and in vivo inflammatory response - ScienceDirect

Less harmful acidic degradation of poly(lacticco-glycolic acid) bone tissue  engineering scaffolds through titania nanoparticle addition. - Abstract -  Europe PMC
Less harmful acidic degradation of poly(lacticco-glycolic acid) bone tissue engineering scaffolds through titania nanoparticle addition. - Abstract - Europe PMC

CD30 aptamer-functionalized PEG-PLGA nanoparticles for the superior  delivery of doxorubicin to anaplastic large cell lymphoma cells -  ScienceDirect
CD30 aptamer-functionalized PEG-PLGA nanoparticles for the superior delivery of doxorubicin to anaplastic large cell lymphoma cells - ScienceDirect

A closer look at PLGA microspheres - Royal Microscopical Society
A closer look at PLGA microspheres - Royal Microscopical Society

Insulin Loaded PLGA Microspheres: Effect of Zinc Salts on Encapsulation,  Release, and Stability - Journal of Pharmaceutical Sciences
Insulin Loaded PLGA Microspheres: Effect of Zinc Salts on Encapsulation, Release, and Stability - Journal of Pharmaceutical Sciences

Synthesis and characterization of PTX-PLGA-Ms. (A) Schematic showing... |  Download Scientific Diagram
Synthesis and characterization of PTX-PLGA-Ms. (A) Schematic showing... | Download Scientific Diagram

Characterization of PLGA-NPs. Images were taken by a scanning electron... |  Download Scientific Diagram
Characterization of PLGA-NPs. Images were taken by a scanning electron... | Download Scientific Diagram

Poly(2‐propylacrylic acid)/poly(lactic‐co‐glycolic acid) blend  microparticles as a targeted antigen delivery system to direct either CD4+  or CD8+ T cell activation - Yang - 2017 - Bioengineering &  Translational Medicine - Wiley Online
Poly(2‐propylacrylic acid)/poly(lactic‐co‐glycolic acid) blend microparticles as a targeted antigen delivery system to direct either CD4+ or CD8+ T cell activation - Yang - 2017 - Bioengineering & Translational Medicine - Wiley Online

Trimethoprim-Loaded PLGA Nanoparticles Grafted with WGA as Potential  Intravesical Therapy of Urinary Tract Infections-Studies on Adhesion to  SV-HUCs Under Varying Time, pH, and Drug-Loading Conditions. - ACS Omega -  X-MOL
Trimethoprim-Loaded PLGA Nanoparticles Grafted with WGA as Potential Intravesical Therapy of Urinary Tract Infections-Studies on Adhesion to SV-HUCs Under Varying Time, pH, and Drug-Loading Conditions. - ACS Omega - X-MOL

Nano-palladium is a cellular catalyst for in vivo chemistry | Nature  Communications
Nano-palladium is a cellular catalyst for in vivo chemistry | Nature Communications

Investigation of PLGA nanoparticles in conjunction with nuclear  localization sequence for enhanced delivery of antimiR phosphorothioates in  cancer cells in vitro | SpringerLink
Investigation of PLGA nanoparticles in conjunction with nuclear localization sequence for enhanced delivery of antimiR phosphorothioates in cancer cells in vitro | SpringerLink

Molecules | Free Full-Text | A Self-Assembling NHC-Pd-Loaded Calixarene as  a Potent Catalyst for the Suzuki-Miyaura Cross-Coupling Reaction in Water |  HTML
Molecules | Free Full-Text | A Self-Assembling NHC-Pd-Loaded Calixarene as a Potent Catalyst for the Suzuki-Miyaura Cross-Coupling Reaction in Water | HTML

Development of gold(III) thiosemicarbazonate complex–loaded PLGA  nanoparticles: characterization and sustained release studies | SpringerLink
Development of gold(III) thiosemicarbazonate complex–loaded PLGA nanoparticles: characterization and sustained release studies | SpringerLink

Figure 1 from Thymoquinone-loaded PLGA nanoparticles: antioxidant and  anti-microbial properties | Semantic Scholar
Figure 1 from Thymoquinone-loaded PLGA nanoparticles: antioxidant and anti-microbial properties | Semantic Scholar

PLGA-nanoparticles loaded with a thiosemicarbazone derived palladium( ii )  complex as a potential agent to new formulations for human ovarian carcinom  ... - New Journal of Chemistry (RSC Publishing) DOI:10.1039/D0NJ00580K
PLGA-nanoparticles loaded with a thiosemicarbazone derived palladium( ii ) complex as a potential agent to new formulations for human ovarian carcinom ... - New Journal of Chemistry (RSC Publishing) DOI:10.1039/D0NJ00580K

Sustained in vitro interferon-beta release and in vivo toxicity of PLGA and  PEG-PLGA nanoparticles - RSC Adv. - X-MOL
Sustained in vitro interferon-beta release and in vivo toxicity of PLGA and PEG-PLGA nanoparticles - RSC Adv. - X-MOL

PLGA-nanoparticles loaded with a thiosemicarbazone derived palladium(ii)  complex as a potential agent to new formulations for human ovarian  carcinoma treatment - New Journal of Chemistry (RSC Publishing)
PLGA-nanoparticles loaded with a thiosemicarbazone derived palladium(ii) complex as a potential agent to new formulations for human ovarian carcinoma treatment - New Journal of Chemistry (RSC Publishing)

PLGA-nanoparticles loaded with a thiosemicarbazone derived palladium(ii)  complex as a potential agent to new formulations for human ovarian  carcinoma treatment - New Journal of Chemistry (RSC Publishing)
PLGA-nanoparticles loaded with a thiosemicarbazone derived palladium(ii) complex as a potential agent to new formulations for human ovarian carcinoma treatment - New Journal of Chemistry (RSC Publishing)

Comparative whole corona fingerprinting and protein adsorption  thermodynamics of PLGA and PCL nanoparticles in human serum - ScienceDirect
Comparative whole corona fingerprinting and protein adsorption thermodynamics of PLGA and PCL nanoparticles in human serum - ScienceDirect

Nano-palladium is a cellular catalyst for in vivo chemistry | Nature  Communications
Nano-palladium is a cellular catalyst for in vivo chemistry | Nature Communications

PDF) Nano-palladium is a cellular catalyst for in vivo chemistry
PDF) Nano-palladium is a cellular catalyst for in vivo chemistry

An Alternative Approach for Improved Entrapment Efficiency of Hydrophilic  Drug Substance in PLGA Nanoparticles by Interfacial Polymer Deposition  Following Solvent Displacement | Jundishapur Journal of Natural  Pharmaceutical Products | Full Text
An Alternative Approach for Improved Entrapment Efficiency of Hydrophilic Drug Substance in PLGA Nanoparticles by Interfacial Polymer Deposition Following Solvent Displacement | Jundishapur Journal of Natural Pharmaceutical Products | Full Text

An Alternative Approach for Improved Entrapment Efficiency of Hydrophilic  Drug Substance in PLGA Nanoparticles by Interfacial Polymer Deposition  Following Solvent Displacement | Jundishapur Journal of Natural  Pharmaceutical Products | Full Text
An Alternative Approach for Improved Entrapment Efficiency of Hydrophilic Drug Substance in PLGA Nanoparticles by Interfacial Polymer Deposition Following Solvent Displacement | Jundishapur Journal of Natural Pharmaceutical Products | Full Text

a) TEM images of unloaded (left) and Ru1-containing (right) PLGA... |  Download Scientific Diagram
a) TEM images of unloaded (left) and Ru1-containing (right) PLGA... | Download Scientific Diagram

A) FACS analysis for the determination of the apoptotic effects of... |  Download Scientific Diagram
A) FACS analysis for the determination of the apoptotic effects of... | Download Scientific Diagram

Preparation of Model Protein-Loaded PLGA Microparticles Using Lutensol XL  80 Emulsifier
Preparation of Model Protein-Loaded PLGA Microparticles Using Lutensol XL 80 Emulsifier