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909637

Sigma-Aldrich

NanoFabTx PLGA-nano

for synthesis of 100 and 200 nm particles

别名:

NanoFabTx, NanoFabTx reagent kit, PLGA nanoformulation kit

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1 KIT
CN¥5,642.44

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预计发货时间August 27, 2025详情


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1 KIT
CN¥5,642.44

About This Item

UNSPSC代码:
12162002
UNSPSC代码:
12161503
NACRES:
NC.25

CN¥5,642.44


预计发货时间August 27, 2025详情


获取大包装报价

描述

PLGA nanoparticle screening kit for synthesis of 100 and 200 nm particles

质量水平

应用

advanced drug delivery

储存温度

2-8°C

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storage temp.

2-8°C

storage temp.

2-8°C

storage temp.

2-8°C

storage temp.

2-8°C

description

PLGA nanoparticle screening kit for synthesis of 100 and 200 nm particles

description

-

description

-

description

Drug loading screening kit, for synthesis of PEGylated PLGA nanoparticles, Kit components :
PEGPLGA-50L(912808-500mg)
PEGPLGA-75L(913049-500mg)
PEGPLGA-50H (915955-500mg)
PEGPLGA-75H (915718-500mg)
Stabilizer-Nano (907766-5g)

application(s)

advanced drug delivery

application(s)

advanced drug delivery

application(s)

advanced drug delivery

application(s)

advanced drug delivery

一般描述

NanoFabTx PLGA-nano reagent kit is a nanoformulation kit designed for the synthesis of specifically sized, drug-encapsulating poly(lactic-co-glycolic acid) (PLGA) nanoparticles. The NanoFabTx PLGA-nano reagent kit provides reagents (PLGA and stabilizer) and protocols to synthesize polymeric nanoparticles 75 to 200 nm in size. One protocol describes how to use the kit with standard glassware using a nanoprecipitation or solvent-displacement method. The second protocol describes how to use the kit with the NanoFabTx Microfluidic - nano device kit (Cat.No. 911593) for the fabrication of nanoparticles using microfluidic methods.

应用

With NanoFabTx PLGA-nano reagent kit, users can simplify their methods for PLGA nanoparticle synthesis and their drug loading experiments. Our protocols describe how to tune the synthetic parameters to achieve monodisperse nanoparticles 75 nm in size, 200 nm in size, or any size in between. As a result, the kit enables users to synthesize and test different particle sizes and identify the ideal size and drug loading of PLGA nanocarriers for their research application. The resulting particles are biocompatible and biodegradable and can be further modified to target specific tissues or to ensure slow and sustained drug release. PLGA is a biocompatible and biodegradable polymer that is approved by the FDA for biomedical and pharmaceutical applications and that is used widely in drug delivery systems for sustained release of many different types of therapeutic molecules. PLGA-based nanocarriers can be used to encapsulate both hydrophobic drugs like curcumin and lipophilic drugs like docetaxel. PLGA nanocarriers synthesized with the NanoFabTx kits are suitable for biomedical research applications such as oncology, immuno-oncology, gene delivery, and vaccine delivery. Polymeric nanoparticles are useful for intravenous or systemic delivery of drug molecules. For example, polymeric nanocarriers improve drug dissolution and solubility of hydrophobic and lipophilic drugs. In addition, the small size of polymeric nanocarriers make them much more likely than larger microparticles to bypass the reticuloendothelial system and complement system, usually leading to longer circulation half-lives. In addition, nanoparticles can pass through the blood-brain barrier, through tumor vasculature, and can enter cells via pinocytosis.

特点和优势

  • Step-by-step protocols developed and tested by our formulation scientists
  • Flexible synthesis tool to create uniform and reproducible nanoparticles
  • Choose from standard glassware-based nanoprecipitation or microfluidic-based protocols
  • Optimized to make nanoparticles 75-200 nm nanoprecipitation or microfluidics with low polydispersity
  • Based on non-toxic, biodegradable polymers

法律信息

NANOFABTX is a trademark of Sigma-Aldrich Co. LLC

储存分类代码

11 - Combustible Solids

闪点(°F)

Not applicable

闪点(°C)

Not applicable

法规信息

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    Anil Mahapatro et al.
    Journal of nanobiotechnology, 9, 55-55 (2011-11-30)
    Biodegradable nanoparticles (NPs) are gaining increased attention for their ability to serve as a viable carrier for site specific delivery of vaccines, genes, drugs and other biomolecules in the body. They offer enhanced biocompatibility, superior drug/vaccine encapsulation, and convenient release
    Amit K Jain et al.
    Critical reviews in therapeutic drug carrier systems, 28(1), 1-45 (2011-03-15)
    Nanocarriers formulated with the US Food and Drug Administration-approved biocompatible and biodegradable polymer poly(lactic-co-glycolic acid) (PLGA) are being widely explored for the controlled delivery of therapeutic drugs, proteins, peptides, oligonucleotides, and genes. Surface functionalization of PLGA nanoparticles has paved the
    Francesca Ungaro et al.
    The Journal of pharmacy and pharmacology, 64(9), 1217-1235 (2012-08-14)
    The aim of this review is to summarize the current state-of-the-art in poly(lactic-co-glycolic acid) (PLGA) carriers for inhalation. It presents the rational of use, the potential and the recent advances in developing PLGA microparticles and nanoparticles for pulmonary delivery. The
    Gaurav Kumar et al.
    Critical reviews in therapeutic drug carrier systems, 29(2), 149-182 (2012-04-06)
    Drug-loaded polylactide-co-glycolide (PLGA) nanoparticles have been extensively studied and have a practical impact on drug delivery. Many PLGA-based nanoformulations have reached different stages of preclinical development; however, they present distinct challenges for researchers. This review discusses some of the challenges
    Fabienne Danhier et al.
    Journal of controlled release : official journal of the Controlled Release Society, 161(2), 505-522 (2012-02-23)
    Poly(lactic-co-glycolic acid) (PLGA) is one of the most successfully developed biodegradable polymers. Among the different polymers developed to formulate polymeric nanoparticles, PLGA has attracted considerable attention due to its attractive properties: (i) biodegradability and biocompatibility, (ii) FDA and European Medicine

    商品

    NanoFabTx™ platform accelerates drug development with ready-to-use formulations and microfluidic devices for particle synthesis.

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    Professor Robert K. Prud’homme introduces flash nanoprecipitation (FNP) for nanoparticle fabrication, which is a scalable, rapid mixing process for nanoparticle formulations.

    我们的科学家团队拥有各种研究领域经验,包括生命科学、材料科学、化学合成、色谱、分析及许多其他领域.

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