نتایج جستجو برای: polyamidoamine dendrimer pamam
تعداد نتایج: 2789 فیلتر نتایج به سال:
The objective of this study was to determine the cytotoxicity, antiproliferative activity, and apoptosis induction activity of two modified glycosides – digoxin and proscillaridin A – conjugated to a generation 3 polyamidoamine dendrimer (G3 PAMAM-NH ) in human breast cancer cells. The results suggest that conjugation with the G3 PAMAM-NH dendrimer enhances the cytotoxicity of modified digoxin ...
The polyamidoamine (PAMAM) dendrimer, a type of macromolecule material, has been used in spheroidal cell culture and drug delivery in recent years. However, PAMAM is not involved in the study of hepatic cell-spheroid culture or its biological activity, particularly in detoxification function. Here, we constructed a PAMAM-dendrimer conjugate decorated by an integrin ligand: arginine-glycine-aspa...
Starburst polyamidoamine (PAMAM) dendrimer is a new class of highly branched spherical polymer. Covalent attachment of porphyrin to PAMAM dendrimer may alter the pharmacokinetics, cell targeting, and photophysical properties of porphyrin. We investigated the uptake, localization, and phototoxicity of PAMAM-porphyrin conjugate with different charges and hydrophobicity in Hela cell lines. The cel...
The intracellular localization and colocalization of a fluorescently labeled G3 amine-terminated cationic polyamidoamine (PAMAM) dendrimer and its biotin-pyridoxal (BC-PAMAM) bioconjugate were investigated in a concentration-dependent manner in normal human fibroblast (BJ) and squamous epithelial carcinoma (SCC-15) cell lines. After 24 hours treatment, both cell lines revealed different pattern...
BACKGROUND Breast cancer is the second leading cause of cancer death worldwide. Nanotechnology approaches can overcome the side effects of chemotherapy as well as improve the efficacy of drugs. Dendrimers are nanometric size polymers which are suitable as drug delivery systems. To the best of our knowledge, studies on the application of PAMAM G4.5 (polyamidoamine half generation 4) dendrimers a...
Polyamidoamine (PAMAM) dendrimers have gained so much attention for drug and gene delivery since they have been introduced decades ago. The internal cavities and multivalent surface groups of PAMAM dendrimers have been widely used for small-molecule drugs/biomacromolecules encapsulation and conjugation. The involvement of PAMAM dendrimers in drug delivery systems (DDSs) has significantly improv...
Nanotechnology is an important and emerging industry with a projected annual market of around one trillion US dollars by 2011-2015. Concerns about the toxicity of nanomaterials in humans, however, have recently been raised. Although studies of nanoparticle toxicity have focused on lung disease the molecular link between nanoparticle exposure and lung injury remained unclear. In this report, we ...
This study was aimed to evaluate the immunogenicity of recombinant plasmid deoxyribonucleic acid (DNA), pBud-H5-green fluorescent protein (GFP)-interferon-regulatory factor (IRF)3 following delivery using polyamidoamine (PAMAM) dendrimer and transactivator of transcription (TAT)-conjugated PAMAM dendrimer as well as the effect of IRF3 as the genetic adjuvant. BALB/c mice were vaccinated transde...
Dendrimers have emerged as promising multifunctional nanomaterials for drug delivery due to their well-defined size and tailorability. We compare two schemes to obtain methylprednisolone (MP)-polyamidoamine dendrimer (PAMAM-G4-OH) conjugate. Glutaric acid (GA) was used as a spacer to facilitate the conjugation. In scheme A, PAMAM-G4-OH was first coupled to GA and then further conjugated with MP...
The cell surface interaction between bacterial lipopolysaccharide (LPS), Toll-like receptor 4 (TLR4) and MD-2 is central to bacterial sepsis syndromes and wound healing. We have shown that a generation (G) 3.5 polyamidoamine (PAMAM) dendrimer that was partially glycosylated with glucosamine inhibits TLR4-MD-2-LPS induced inflammation in a rabbit model of tissue scaring. However, it was a mixtur...
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