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1.
China Journal of Chinese Materia Medica ; (24): 2419-2425, 2023.
Artículo en Chino | WPRIM | ID: wpr-981318

RESUMEN

This study combined the herbal pair Platycodonis Radix-Curcumae Rhizoma(PR-CR) possessing an inhibitory effect on tumor cell proliferation and metastasis with the active component of traditional Chinese medicine(TCM) silibinin-loaded nanoparticles(NPs) with a regulatory effect on tumor microenvironment based on the joint effect on tumor cells and tumor microenvironment to inhi-bit cell metastasis. The effects of PR-CR on the cellular uptake of NPs and in vitro inhibition against breast cancer proliferation and metastasis were investigated to provide an experimental basis for improving nanoparticle absorption and enhancing therapeutic effects. Silibinin-loaded lipid-polymer nanoparticles(LPNs) were prepared by the nanoprecipitation method and characterized by transmission electron microscopy. The NPs were spherical or quasi-spherical in shape with obvious core-shell structure. The mean particle size was 107.4 nm, Zeta potential was-27.53 mV. The cellular uptake assay was performed by in vitro Caco-2/E12 coculture cell model and confocal laser scanning microscopy(CLSM), and the results indicated that PR-CR could promote the uptake of NPs. Further, in situ intestinal absorption assay by the CLSM vertical scanning approach showed that PR-CR could promote the absorption of NPs in the enterocytes of mice. The inhibitory effect of NPs on the proliferation and migration of 4T1 cells was analyzed using 4T1 breast cancer cells and co-cultured 4T1/WML2 cells, respectively. The results of the CCK8 assay showed that PR-CR-containing NPs could enhance the inhibition against the proliferation of 4T1 breast cancer cells. The wound healing assay indicated that PR-CR-containing NPs enhanced the inhibition against the migration of 4T1 breast cancer cells. This study enriches the research on oral absorption of TCM NPs and also provides a new idea for utilizing the advantages of TCM to inhibit breast cancer metastasis.


Asunto(s)
Humanos , Ratones , Animales , Femenino , Silimarina/uso terapéutico , Células CACO-2 , Polímeros/química , Nanopartículas/química , Línea Celular Tumoral , Neoplasias de la Mama/patología , Microambiente Tumoral
2.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 73-76, 2022.
Artículo en Chino | WPRIM | ID: wpr-904740

RESUMEN

@#Periodontitis is a common oral disease that represents one of the main causes of tooth loss in adults. In recent years, the application of nanotechnology has provided a new drug delivery system and innovative therapy for the treatment of periodontitis and opens up new prospects for the regeneration of periodontal tissue. The nanoparticle drug delivery system is composed of degradable carrier materials and drugs. Compared with the traditional film, namely, the fragment and strip-shaped periodontal local drug delivery system, the nanoparticle drug delivery system has the characteristics of biopharmaceuticals and pharmacokinetics. Moreover, it has special advantages, including controlled release of drugs, long-term maintenance of drug concentration, biodegradability and biocompatibility, etc. Antibiotics, protein drugs, such as growth factors, and nucleic acids used for gene delivery or mRNA knockout can be absorbed or dissolved in nanoparticles. Liposomes and polymer nanoparticle delivery systems can target bacteria and specific host cells. Inorganic nanoparticles and nanocrystals have good antibacterial activity that can promote periodontal tissue regeneration and play an important role in bone regeneration and bone repair. Dendrimers have internal hydrophobic and external hydrophilic structures and are good drug carriers for periodontitis.

3.
Journal of Pharmaceutical Analysis ; (6): 596-602, 2021.
Artículo en Chino | WPRIM | ID: wpr-908779

RESUMEN

Synthetic polymer hydrogel nanoparticles(NPs)were developed to function as abiotic affinity reagents for fibrinogen.These NPs were made using both temperature-sensitive N-isopropyl acrylamide(NIPAm)and L-amino acid monomers.Five kinds of L-amino acids were acryloylated to obtain functional mono-mers:L-phenylalanine(Phe)and L-leucine(Leu)with hydrophobic side chains,L-glutamic acid(Glu)with negative charges,and L-lysine(Lys)and L-arginine(Arg)with positive charges.After incubating the NPs with fibrinogen,y-globulin,and human serum albumin(HSA)respectively,the NPs that incorporated N-acryloyl-Arg monomers(AArg@NPs)showed the strongest and most specific binding affinity to fibrin-ogen,when compared with y-globulin and HSA.Additionally,the fibrinogen-AArg binding model had the best docking scores,and this may be due to the interaction of positively charged AArg@NPs and the negatively charged fibrinogen D domain and the hydrophobic interaction between them.The specific adsorption of AArg@NPs to fibrinogen was also confirmed by the immunoprecipitation assay,as the AArg@NPs selectively trapped the fibrinogen from a human plasma protein mixture.AArg@NPs had a strong selectivity for,and specificity to,fibrinogen and may be developed as a potential human fibrinogen-specific affinity reagent.

4.
China Journal of Chinese Materia Medica ; (24): 5177-5183, 2020.
Artículo en Chino | WPRIM | ID: wpr-878803

RESUMEN

In the current study, schisandrin B(SchB)-loaded F127 modified lipid-polymer hybrid nanoparticles(SchB-F-LPNs) were developed to improve the inhibition of breast cancer lung metastasis. Modified nanoprecipitation method was used to prepare SchB-F-LPNs. The nanoparticles were spherical in shape with shell-core structure by TEM observation. SchB-F-LPNs showed a mean particle size of(234.60±6.11) nm with zeta potential of(-5.88±0.49) mV. XRD results indicated that SchB existed in the nanoparticles in an amorphous state. The apparent permeability coefficient through porcine mucus of F-LPNs was 1.43-fold of that of LPNs as shown in the in vitro mucus penetration study. The pharmacokinetics study showed that the C_(max) of SchB was(369.06±146.94) μg·L~(-1),(1 121.34±91.65) μg·L~(-1) and(2 951.91±360.53) μg·L~(-1) respectively in SchB suspensions group, SchB-LPNs group and SchB-F-LPNs group after oral administration in rats. With SchB suspensions as the reference formulation, the relative bioavailability of SchB-F-LPNs was 568.60%. SchB-F-LPNs inhibited the morphological change during transforming growth factor-β1(TGF-β1)-induced epithelial-mesenchymal transition. In addition, SchB-F-LPNs significantly decreased the number of metastatic pulmonary nodules in 4 T1 tumor-bearing mice, suggesting that SchB-F-LPNs may inhibit the metastasis of breast cancer. These results reveal the promising potential of SchB-F-LPNs in treatment of breast cancer lung metastasis.


Asunto(s)
Animales , Ratones , Ratas , Ciclooctanos , Lignanos , Lípidos , Neoplasias Pulmonares/tratamiento farmacológico , Nanopartículas , Compuestos Policíclicos , Polietilenos , Polímeros , Polipropilenos , Porcinos
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