NANOMATERIALS FOR DRUG DELIVERY AND THERANOSTICS Gold Nanoparticles Silver Nanoparticles Iron Oxide Nanoparticles Carbon Nanotubes Fluorescent Nanodiamonds Silica Nanobeads
Fe3O4 nanoparticles
NANOMATERIALS
DOX-MMNA
MMNA
DSPE-PEG2000 (5:2:2)
DOX:TXL-LMMNA ACMF pH
ACMF
in vitro thermo-chemotherapy with DOX:TXL-LMMNA
in vitro Dual drug release from LMMNA
Nanoparticles of gold, silver, iron oxide, silica, and carbon find B) applications in bioimaging, biosensing and targeted drug delivery.1-4 Appropriate surface modification allows for the conjugation of nanoparticles to a wide range of biomolecules including peptides, antibodies, nucleic acids as well as therapeutic agents. Conjugation to highly specific affinity reagents can enable delivery of nanomaterials and preferential accumulation in the area of interest, leading to enhanced therapeutic efficacy and reduced cytotoxicity. Aldrich® Materials Science offers a wide selection of nanomaterials for biomedical applications.
Magnetic nanoparticles
PEGlyated lipid layer
References 1. Hu, X.; Liu, S. Dalton Trans. 2015, 44, 3904.
Day 7
In vivo biodistribution by imaging in nude mice
Targeting dual drug DOX:TXL-LMMNA
2. Wu,X.; Gao, Y.; Dong, C-M. RSC Adv. 2015, 5, 13787.
Drugs targeting Day 0
3. Xie, J.; Jon, S. Theronastics 2012, 2, 122. 4. Nigam, S.; Pradhan, L.; Bahadur, D. Material Matters, 2015, 10, 29.
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TRANSLATIONAL RESEARCH SOLUTIONS
TARGET ID & VALIDATION
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Nanomaterials for Drug Delivery and Theranostics
LEAD DISCOVERY
LEAD OPTIMIZATION
PRE-CLINICAL DEVELOPMENT
CLINICAL DEVELOPMENT
MANUFACTURING
Gold Nanoparticles Used for targeted drug delivery, cell tracking, photothermal therapy, immunoassays, and photocaustic imaging. Includes a variety of attachment chemistries for convenient attachment of biomolecules and other targets. For a complete list of available materials, visit
aldrich.com/gnp Description
Amine functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Amine functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Amine functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Amine functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Amine functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Amine functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Carboxylic acid functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Carboxylic acid functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Carboxylic acid functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Carboxylic acid functionalized nanoparticles, PEG 3000 coated, OD 50, dispersion in H2O Silica-coated gold nanoparticles, OD 1, dispersion in H2O Silica-coated gold nanoparticles, OD 1, dispersion in H2O Silica-coated gold nanoparticles, OD 1, dispersion in H2O Silica-coated gold nanorods, absorption/780 nm, dispersion in H2O Silica-coated gold nanorods, absorption/808 nm, dispersion in H2O Silica-coated gold nanorods, absorption/850 nm, dispersion in H2O
Particle Size (nm)
Prod. No.
5 10 15 20 30 40
765260 765295 765317 765333 765368 765384
10 20 40 50 5 10 20 10 10 10
765457 765503 765554 765570 747556 747564 747572 747971 747998 748005
Silver Nanoparticles Used for antifouling coating, bioimaging, hyperthermia, and thermally modulated drug release. For a complete list of available materials, visit
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Nanospheres Description Nanospheres, 0.02 mg/mL in water Nanospheres, 0.02 mg/mL in 2 mM aqueous sodium citrate Nanospheres, 0.02 mg/mL in water Nanospheres, 0.02 mg/mL in water Nanospheres, 0.02 mg/mL in water
Surface
Particle Size (nm)
Prod. No.
PVP functionalized Citrate functionalized Lipoic acid functionalized PEG functionalized BPEI functionalized
10 30 40 50 60
795925 796123 796204 796328 796425
Surface
Resonance Wavelength (nm)
Prod. No.
PVP functionalized PVP functionalized PVP functionalized
550 750 850
796476 796492 796506
Nanoplates Description Nanoplates, 0.02 mg/mL (in water with 5 mM sodium borate buffer) Nanoplates, 0.02 mg/mL (in water with 5 mM sodium borate buffer) Nanoplates, 0.02 mg/mL (in water with 5 mM sodium borate buffer)
Iron Oxide Nanoparticles Used as magnetic resonance imaging (MRI) contrast agents, gene carriers for gene therapy, therapeutic agents for hyperthermia-based cancer treatments, magnetic sensing probes for in vitro diagnostics, and target-specific drug delivery. Includes conjugation chemistry for convenient attachment to biomolecules and other targets. For a complete list of available materials, visit
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Description Amine functionalized nanoparticles Amine functionalized nanoparticles Amine functionalized nanoparticles Biotin functionalized nanoparticles Biotin functionalized nanoparticles Biotin functionalized nanoparticles Carboxylic Acid functionalized nanoparticles Carboxylic Acid functionalized nanoparticles PEG functionalized nanoparticles PEG functionalized nanoparticles PEG functionalized nanoparticles N-succinimidyl ester functionalized nanopowder N-succinimidyl ester functionalized nanopowder N-succinimidyl ester functionalized nanopowder
Concentration
Particle Size (nm)
Prod. No.
1 mg/mL in H2O 1 mg/mL in H2O 1 mg/mL in H2O 1 mg/mL in H2O 1 mg/mL in H2O 1 mg/mL in H2O 5 mg/mL in H2O 5 mg/mL in H2O 1 mg/mL in H2O 1 mg/mL in H2O 1 mg/mL in H2O — — —
5 10 30 5 10 30 10 30 5 10 30 5 10 30
747343 747300 747327 747416 747424 747432 747254 747335 790508 747319 747408 747440 747459 747467
Carbon Nanotubes Used as molecular transporters in drug delivery systems and nearinfrared (NIR) imaging agents. For a complete list of available materials, visit
aldrich.com/cnt Description
Carbon nanotube, single-walled, carboxylic acid functionalized Carbon nanotube, multi-walled, carboxylic acid functionalized Carbon nanotube, single-walled, poly(ethylene glycol) functionalized Carbon nanotube, single-walled, amide functionalized Carbon nanotube, single-walled, octadecylamine functionalized Carbon nanotube, single-walled, polyaminobenzene sulfonic acid functionalized
Bundle Dimensions
Purity (%)
Prod. No.
D 4–5 nm × L 0.5–1.5 μm D 9.5 nm × L 1.5 μm D 4–5 nm × L 0.5–0.6 μm D 4–6 nm × L 0.7–1.0 μm D 2–10 nm × L 0.5–2 μm D 1.1 nm × L 0.5–1.0 μm
>90 >80 >80 >90 80–90 75-85
652490 755125 652474 685380 652482 639230
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Fluorescent Nanodiamonds Used for diagnostics, photoacoustic imaging, biolabeling, and drug delivery. For a complete list of available materials, visit
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Description
Concentration
Particle Size (nm)
Prod. No.
1 mg/mL 1 mg/mL 1 mg/mL 1 mg/mL 1 mg/mL
70 100 90 100 120
798169 798142 798150 798134 798088
Emission Maximum (nm)
Absorption Maximum (nm)
Particle Size (nm)
Prod. No.
590 590 590 590
555 555 555 555
25 50 90 120
797928 797936 797898 797863
>300 nitrogen-vacancy center per particle >400 nitrogen-vacancy center per particle >500 nitrogen-vacancy center per particle >800 nitrogen-vacancy center per particle >1,200 nitrogen-vacancy center per particle
Silica Nanobeads Used for flow cytometry, bioimaging, bioisensing, and diagnostics. For a complete list of available materials, visit
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Description Fluorescent nanobeads Fluorescent nanobeads Fluorescent nanobeads Fluorescent nanobeads
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POLYMERIC
DRUG DELIVERY
TECHNIQUES
Translating Polymer Science for Drug Delivery A guide to drug delivery solutions using polymers for controlled release, targeted drug delivery and solubility enhancement. yy Step-by-step methods written by drug delivery experts highlighting polymer-based methods to solve the most important drug delivery challenges yy Solutions for: -- Small molecules -- Nucleic acids -- Proteins yy Key technologies: -- Drug conjugation and PEGylation -- Biodegradable nanoparticles and micelles -- RAFT polymeric carriers for ADCs -- Dendrons -- Responsive drug delivery systems -- Polymers for oligonucleotide delivery Request your copy online at
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