Li et al., 2014 - Google Patents
Preparation of PEG-modified PAMAM dendrimers having a gold nanorod core and their application to photothermal therapyLi et al., 2014
View PDF- Document ID
- 5077368960705645137
- Author
- Li X
- Takeda K
- Yuba E
- Harada A
- Kono K
- Publication year
- Publication venue
- Journal of Materials Chemistry B
External Links
Snippet
This study was conducted to attempt development of a new type of hybrid dendrimer consisting of a gold nanorod (GNR) core and PEG-modified PAMAM (PEG-PAMAM) dendrons by adding PEG-PAMAM G2–G4 dendrimers with a cystamine core at various …
- 229920000962 poly(amidoamine) 0 title abstract description 25
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL, OR TOILET PURPOSES
- A61K47/00—Medicinal preparations characterised by the non-active ingredients used, e.g. carriers, inert additives
- A61K47/48—Medicinal preparations characterised by the non-active ingredients used, e.g. carriers, inert additives the non-active ingredient being chemically bound to the active ingredient, e.g. polymer drug conjugates
- A61K47/48769—Medicinal preparations characterised by the non-active ingredients used, e.g. carriers, inert additives the non-active ingredient being chemically bound to the active ingredient, e.g. polymer drug conjugates the conjugate being characterized by a special physical or galenical form
- A61K47/48853—Medicinal preparations characterised by the non-active ingredients used, e.g. carriers, inert additives the non-active ingredient being chemically bound to the active ingredient, e.g. polymer drug conjugates the conjugate being characterized by a special physical or galenical form the form being a particulate, powder, adsorbate, bead, sphere
- A61K47/48861—Medicinal preparations characterised by the non-active ingredients used, e.g. carriers, inert additives the non-active ingredient being chemically bound to the active ingredient, e.g. polymer drug conjugates the conjugate being characterized by a special physical or galenical form the form being a particulate, powder, adsorbate, bead, sphere the form being an inorganic particle, e.g. a ceramic particle, silica particle, ferrite, synsorb
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL, OR TOILET PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/48—Preparations in capsules, e.g. of gelatin, of chocolate
- A61K9/50—Microcapsules having a gas, liquid or semi-solid filling; Solid microparticles or pellets surrounded by a distinct coating layer, e.g. coated microspheres, coated drug crystals
- A61K9/51—Nanocapsules; Nanoparticles
- A61K9/5107—Excipients; Inactive ingredients
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL, OR TOILET PURPOSES
- A61K8/00—Cosmetic or similar toilet preparations
- A61K8/18—Cosmetic or similar toilet preparations characterised by the composition
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL, OR TOILET PURPOSES
- A61K41/00—Medicinal preparations obtained by treating materials with wave energy or particle radiation; Therapies using these preparations
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL, OR TOILET PURPOSES
- A61K2800/00—Properties of cosmetic compositions or active ingredients thereof or formulation aids used therein and process related aspects
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Li et al. | Preparation of PEG-modified PAMAM dendrimers having a gold nanorod core and their application to photothermal therapy | |
Liu et al. | Sub-100 nm hollow Au–Ag alloy urchin-shaped nanostructure with ultrahigh density of nanotips for photothermal cancer therapy | |
Wang | Synthetic methods of CuS nanoparticles and their applications for imaging and cancer therapy | |
Wei et al. | Biomedical and bioactive engineered nanomaterials for targeted tumor photothermal therapy: A review | |
Wang et al. | Liquid exfoliation of TiN nanodots as novel sonosensitizers for photothermal-enhanced sonodynamic therapy against cancer | |
Bian et al. | Peptide-directed hierarchical mineralized silver nanocages for anti-tumor photothermal therapy | |
Xiao et al. | Hydrophilic bismuth sulfur nanoflower superstructures with an improved photothermal efficiency for ablation of cancer cells | |
Nikam et al. | Copper sulphide based heterogeneous nanoplatforms for multimodal therapy and imaging of cancer: Recent advances and toxicological perspectives | |
Qi et al. | PEGylated graphene oxide-capped gold nanorods/silica nanoparticles as multifunctional drug delivery platform with enhanced near-infrared responsiveness | |
Li et al. | PEGylated PAMAM dendrimer–doxorubicin conjugate-hybridized gold nanorod for combined photothermal-chemotherapy | |
Khan et al. | Gold nanoparticles: synthesis and applications in drug delivery | |
Llevot et al. | Applications of vectorized gold nanoparticles to the diagnosis and therapy of cancer | |
Zheng et al. | A continuous stimuli-responsive system for NIR-II fluorescence/photoacoustic imaging guided photothermal/gas synergistic therapy | |
Lu et al. | Polydopamine-carbon dots functionalized hollow carbon nanoplatform for fluorescence-imaging and photothermal-enhanced thermochemotherapy | |
Liu et al. | Photothermal therapy of Lewis lung carcinoma in mice using gold nanoshells on carboxylated polystyrene spheres | |
Yan et al. | A theranostic plaster combining photothermal therapy and photodynamic therapy based on chlorin e6/gold nanorods (Ce6/Au nrs) composite | |
Chien et al. | Advanced near‐infrared light‐responsive nanomaterials as therapeutic platforms for cancer therapy | |
Xing et al. | Applications of molybdenum oxide nanomaterials in the synergistic diagnosis and treatment of tumor | |
CN108042800B (en) | Temperature-sensitive polymer modified bivalent platinum nano-cluster and preparation method and application thereof | |
Ye et al. | Cu–Au alloy nanostructures coated with aptamers: a simple, stable and highly effective platform for in vivo cancer theranostics | |
Kim et al. | Synthesis of gold nanorod-embedded polymeric nanoparticles by a nanoprecipitation method for use as photothermal agents | |
Tang et al. | pH-Responsive Au@ Pd bimetallic core–shell nanorods for enhanced synergistic targeted photothermal-augmented nanocatalytic therapy in the second near-infrared window | |
Yan et al. | Concentration effect on large scale synthesis of high quality small gold nanorods and their potential role in cancer theranostics | |
Diaz-Diestra et al. | Photodynamic therapeutic effect of nanostructured metal sulfide photosensitizers on cancer treatment | |
Tufano et al. | Methods to scale down graphene oxide size and size implication in anti-cancer applications |