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Merck

917737

NanoFabTx materials screening kit

for synthesis of polymeric nanoparticles

別名:

Non-PEGylated drug delivery formulation, PCL, PLA, PLGA

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この商品について

NACRES:
NA.23
UNSPSC Code:
12161503
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description

Kit components :
PLGA-Nano (907782-500mg)
PLGA-Nano75 (916382-500mg)
PLA-Nano (910996-500mg)
PCL-Nano (916382-500mg)
Stabilizer - P (913448-10g)

Quality Segment

application(s)

advanced drug delivery

General description

NanoFabTx formulation kits and lipid mixes enable users to encapsulate a wide variety of therapeutic drug molecules for targeted or extended drug delivery without the need for lengthy trial-and-error optimization. NanoFabTx kits provide an easy to use toolkit for encapsulating a variety of therapeutics in nanoparticles, microparticles, or liposomes. Drug encapsulated particles synthesized with the NanoFabTx kits are suitable for biomedical research applications such as oncology, immuno-oncology, gene delivery and vaccine delivery.

Application

The NanoFabTx materials screening kit, for synthesis of polymeric nanoparticles, is a ready-to-use nanoformulation kit for the synthesis of nanoparticles for drug delivery. Poly(lactic-co-glycolic acid) (PLGA), poly(D,L-lactic acid) (PLA) and polycaprolactone (PCL) are biocompatible and biodegradable polymers that have been approved by the FDA for biomedical and pharmaceutical applications. This kit includes properly selected PLGA, PLA, and PCL polymers and stabilizer, allowing for rapid screening of optimal materials for enhanced drug loading and controlled drug release.

Features and Benefits

  • Ready-to-use polymer drug formulation screening kit for non-PEGylated nanoparticles
  • Choose from either nanopreciptiation or microfluidics-based protocols
  • Create specifically sized, biodegradable, PLGA, PLA, or PCL nanoparticles
  • Maximize the encapsulation of hydrophobic drugs
  • Four different non-PEGylated polymers are included

Preparation Note

Comprehensive protocols for nanoparticle synthesis methods are included:
  • A nanoprecipitation protocol to prepare drug-encapsulated nanoparticles in standard laboratory glassware.
  • A microfluidics protocol using commercial platforms or syringe pumps.

The microfluidics protocol uses NanoFabTx device kits (911593), which provide the microfluidics chips, fittings, and tubing required to get started with microfluidics-based synthesis (compatible microfluidics system or syringe pump required).

For more information, please refer to the protocol under the document section of this page.

Legal Information

NANOFABTX is a trademark of Sigma-Aldrich Co. LLC


保管分類

11 - Combustible Solids

wgk

WGK 3


適用法令

試験研究用途を考慮した関連法令を主に挙げております。化学物質以外については、一部の情報のみ提供しています。 製品を安全かつ合法的に使用することは、使用者の義務です。最新情報により修正される場合があります。WEBの反映には時間を要することがあるため、適宜SDSをご参照ください。

917737-1KT: + 917737-VAR: + 917737-1EA: + 917737-BULK:

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資料

NanoFabTX kits enable precise drug delivery with lipid nanoparticles and liposomes for mRNA and nucleic acids.

NanoFabTXキットは、mRNAや核酸用の脂質ナノ粒子やリポソームによる正確な薬物送達を可能にします。

関連コンテンツ


S Freiberg et al.
International journal of pharmaceutics, 282(1-2), 1-18 (2004-09-01)
Polymer microspheres can be employed to deliver medication in a rate-controlled and sometimes targeted manner. Medication is released from a microsphere by drug leaching from the polymer or by degradation of the polymer matrix. Since the rate of drug release
C Thomasin et al.
Journal of pharmaceutical sciences, 87(3), 269-275 (1998-04-02)
Phase separation (frequently called coacervation) of poly(lactide) (PLA) and poly(lactide-co-glycolide) (PLGA) is a classical method for drug microencapsulation. Here, attempts have been made to describe this process in the light of thermodynamics. Different PLA/PLGAs were dissolved in either dichloromethane or
Nazila Kamaly et al.
Chemical Society reviews, 41(7), 2971-3010 (2012-03-06)
Polymeric materials have been used in a range of pharmaceutical and biotechnology products for more than 40 years. These materials have evolved from their earlier use as biodegradable products such as resorbable sutures, orthopaedic implants, macroscale and microscale drug delivery