Publications by authors named "Bao-De Shen"

In this experiment, the micro-precipitation method was used to prepare self-assembled nanoparticles of Herpetospermum caudigerum Wall.(MP-SAN). The process was optimized using average particle size and polydispersity index(PDI)as evaluation indexes.

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A new quercetin nanocrystals self-stabilized Pickering emulsion(QT-NSSPE) was prepared by high-pressure homogenization combined with probe ultrasonic method. The influences of oil fraction, quercetin(QT) concentration, and pH of water phase on the formation of QT-NSSPE were investigated. On this basis, the QT-NSSPE prepared under optimal conditions was evaluated in terms of microstructure, stability, and in vitro release and the droplet size and drug loading were 15.

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Article Synopsis
  • * Self-assembled nanoparticles (SAN) may enhance the biological activity of these medicinal ingredients, which is crucial for understanding Chinese medicine compatibility and developing new products.
  • * The paper reviews the processes of forming, isolating, and characterizing SAN, while also addressing current research challenges and future trends, aiming to advance the study and application of these nanoparticles.
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  • The study investigates how self-assembled nanoparticles derived from Shaoyao Gancao Decoction (SGD-SAN) affect the encapsulation, release, and absorption of key components from Baishao.
  • Particle size analysis showed SGD-SAN nanoparticles were roughly 200 nm in size and had an irregular spherical shape, indicating successful formation of nanoparticles.
  • Results revealed that SGD-SAN enhanced the absorption of Baishao components in the ileum and demonstrated a slow-release effect in a pH 6.8 buffer solution.
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To prepare and optimize the self-microemulsion co-loaded with tenuifolin and β-asarone(TF/ASA-SMEDDS) and evaluate its quality. The prescription compositions of TF/ASA-SMEDDS were screened by solubility test, single factor test and pseudo-tern-ary phase diagram, and the prescriptions were further optimized by Box-Behnken response surface method, with the drug loading and particle size as the evaluation indexes. Then the optimized TF/ASA-SMEDDS was evaluated for emulsified appearance, particle size, morphology and drug release in vitro.

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  • - The study focuses on developing a new orodispersible film (GB-NS-LP-ODF) to enhance drug loading of ginkgolide B, achieved through preparation of nanosuspension and freeze-drying techniques, with mannitol as a lyoprotectant.
  • - The optimized film formulation included ingredients like GB-NS-LP and PVA, resulting in a product that disintegrates in about 30 seconds and maintains quality over 30 days, with a particle size around 210 nm.
  • - Results indicated that the lyophilized nanosuspension increased drug loading efficiency in the film, which showed promising in vitro release characteristics, suggesting potential for broad application in pharmaceuticals.
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To prepare ginkgolide B nanosuspension(GB-NS), and investigate its dissolution behaviors in vitro. The miniaturized media milling method was used to prepare nanosuspensions, with average particle size and polydispersity index as the evaluation indexes. The formulation and process of GB-NS were optimized by single factor experiment and Box-Behnken design-response surface method.

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  • This study focuses on developing self-nanoemulsion dropping pills (VOA-SNEDDS-DP) using solid dispersion technology to analyze its protective effect against acute myocardial ischemia injury.
  • The researchers optimized the formulation and preparation process of the pills, achieving a high dissolution rate of 93.85% within 10 minutes, indicating effective release of the active ingredient, β-asarone.
  • Experimental results showed that VOA-SNEDDS-DP significantly improves antioxidant levels and can reduce damage associated with myocardial ischemia, suggesting its potential as a therapeutic option.
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Herpetone( HPT) is a bioactive lignan extracted from Herpetospermum pedunculosum,which can protect liver,lower aminotransferase and inhibit hepatitis B virus. However,HPT has a poor oral bioavailability due to its poor water solubility. And there is no report about whether HPT has an anti-hepatic fibrosis activity.

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In order to increase the solubility of volatile oil from Acori Tatarinowii Rhizoma, this study was to prepare self-nanoemulsion of volatile oil from Acori Tatarinowii Rhizoma . The prescriptions were preliminarily screened by miscibility studies, excipient compatibility tests, and pseudo-ternary phase diagrams, and then the optimal formulation was obtained by using the Box-Behnken response surface method, with particle size and drug-loading rate as the indicators. The self-nanoemulsion prepared by optimal prescription was characterized and evaluated for dissolution.

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Nanosuspension (also called nanocrystal suspension or nanocrystal) could significantly enhance the saturated solubility and dissolution of insoluble drugs, and improve their bioavailability by reducing particle size and increasing the specific surface, which could then solve the delivery problems of the poorly soluble active ingredients and effective parts of Chinese materia medica (CMM). Based on the brief summaries of nanosuspension preparation methods, this paper would mainly review the and behaviors of poorly soluble CMM nanosuspension, discuss and analyze its problems, so as to provide reference and thinking for the further study of nanosuspension drug delivery system of poorly soluble CMM and promote the development and perfection of nanosuspension technology in CMM.

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  • Astilbil nanosuspension (AT-NS) was created using an antisolvent precipitation method, optimizing the formula and process through single factor experiments.
  • The final product (AT-NS) showed a particle size of 149 nm, with favorable stability and morphology, appearing spherical under SEM, and exhibiting amorphous characteristics in XRD and DSC tests.
  • The in vitro release tests indicated that AT-NS significantly improved the dissolution of Astilbil, suggesting its potential to enhance clinical applications while being produced through a simple and cost-effective method.
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  • A nanosuspension of quercetin (QT-NS) was created using an optimized miniaturized milling method, assessed through the Box-Behnken response surface method.
  • The optimal milling conditions achieved a particle size of approximately 169 nm and demonstrated good stability and predictive accuracy.
  • QT-NS exhibited a significantly higher cumulative release rate in vitro over 120 minutes compared to the raw quercetin and its physical mixture, indicating the effectiveness of this low-cost preparation approach.
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To study the absorption kinetics of paeoniflorin lipid liquid crystalline nanoparticles (Pae-LLCN) in different intestinal segments of rats and compare them with paeoniflorin(Pae) solution. Rat everted gut sac models were adopted for intestinal absorption test, and Pae content was determined by HPLC method to study the absorption characteristics of Pae-LLCN in rat duodenum, jejunum, ileum and colon, and investigate the effects of different drug concentrations on intestinal absorption. Results showed that Pae-LLCN and Pae were well absorbed at different intestine segments and different concentrations.

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To increase the permeation and retention of isopsoralen in skin, and improve its bioavailability.Isopsoralen loaded nanostructure liquid carrier (IPRN-NLC) was prepared by high pressure homogenization andoptimized by orthogonal experiment with the encapsulation efficiency, drug loading and average particle size as the evaluation indexes. The in vitro transdermal permeation of IPRN-NLC was evaluated by Franze diffusion cells.

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Herpetospermum caudigerum lignans (HTL), one of the potential drugs with anti-hepatitis B virus and hepatoprotective effects, has limited clinical applications because of poor aqueous solubility and low bioavailability. Both herpetrione (HPE) and herpetin (HPN) are the most abundant ingredients in HTL and exhibit weak acidity. The purpose of the present study was to produce dried preparations of HTL (composed of HPE and HPN) nanosuspensions (HTL-NS) with high redispersibility using lyophilization technology.

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Objective: To ascertain anti-fatigue constituents and mechanisms of Herpetospermum caudigerum.

Methods: The 80% ethanol extracts of Herpetospermum caudigerum were partitioned with chloroform, ethyl acetate and n-butanol, respectively. Male Kunming mice were divided into 13 groups with 16 mice in each group: a control group fed with water, 9 groups treated with 3 fractions of Herpetospermum caudigerum (chloroform fraction, ethyl acetate fraction and n-butanol fraction) at dose of 80, 160 and 320 mg/kg for the low-dose group, medium-dose group and high-dose group, 3 herpetrione (HPE) treated groups fed with HPE at dose of 15, 30, and 60 mg/kg for the low-dose group, medium-dose group and high-dose group.

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To investigate the absorption kinetics of Cu B-SDC/PLC-MMs in rat different intestinal segments and compared with the absorption of Cu B suspension. The in vitro everted gut sacs model was established to study the absorption characteristics of Cu B-SDC/ PLC-MMs in rat duodenum, jejunum, ileum and colon, and the content of cucurbitacin B was detected by HPLC method, and the effects of concentrations on intestinal absorption were evaluated as well. The results showed that the absorption of Cu B-SDC/PLC-MMs was linearity at different intestine segment and different concentrations (R2 > 0.

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The objective of this study was to prepare nanostructured lipid carrier (NLC)-based topical gel of Ganoderma Triterpenoids (GTs) and evaluate their effects on frostbite treatment. GT-NLCs was prepared by the high pressure homogenization method and then characterized by morphology and analyses of particle size, zeta potential, entrapment efficiency (EE), and drug loading (DL). The NLCs was suitably gelled for skin permeation studies in vitro and pharmacodynamic evaluation in vivo, compared with the GT emulgel.

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In present study, a novel phospholipid complex loaded cucurbitacin B modified with berberine hydrochloride (CUB-PLC-BER) was prepared by a simple solvent evaporation method with the aim of improving bile duct-targeted drug delivery and therapeutic efficacy for cholangiocarcinoma (CC). The complex's physicochemical properties were systemically investigated in terms of scanning electron microscopy (SEM), x-ray diffraction (XRD) and infrared absorption spectroscopy (IR). In vivo and in vitro antitumor studies, CUB-PLC-BER and the unmodified cucurbitacin B-phospholipid complex (CUB-PLC) presented stronger antitumor efficacy against human cholangiocarcinoma cells (QBC939 cells) than free cucurbitacin B (CUB), while phospholipids (PL) itself had no significant toxicity.

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Article Synopsis
  • The paper investigates how the physical and chemical properties of certain drugs affect their absorption through the skin when using nanosuspensions, which are tiny particles of drugs suspended in a liquid.
  • Four different drug nanosuspensions were created using a high-pressure homogenization method, and all had the same stabilizer and similar particle sizes.
  • Results showed that these nanosuspensions had a significantly higher transdermal absorption rate compared to larger microsuspensions, with key factors like log P and pKa influencing this absorption, particularly for drugs with specific values of these properties.
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Objective: The purpose of this study was to formulate stable Ganoderma lucidum (GLT) nanogels suitable for topical delivery with a view to improve the therapeutic effect for frostbite.

Methods: GLT nanosuspensions were formulated using the high-pressure homogenization technique and then suitably gelled for characterized. In order to confirm the advantages of GLT nanogel for dermal application, skin permeation studies in vitro and pharmacodynamic evaluation in vivo were studied and compared with GLT-carbopol gel.

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In the present study, a novel hydrogel-grafted fabrics embedding of berberine nanosuspension was developed for the treatment of infected wound. Hydrogel-grafted fabric was prepared by graft copolymerization of N-isopropylacrylamide and alginate using ceric ammonium nitrate as initiator. Berberine nanosuspension was prepared and embedded in the hydrogel-grafted fabrics to achieve sustained drug release.

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In this study, a novel orodispersible film (ODF) containing drug nanoparticles was developed with the goal of transforming drug nanosuspensions into a solid dosage form and enhancing oral bioavailability of drugs with poor water solubility. Nanosuspensions were prepared by high pressure homogenization and then transformed into ODF containing drug nanoparticles by mixing with hydroxypropyl methylcellulose solution containing microcrystalline cellulose, low substituted hydroxypropylcellulose and PEG-400 followed by film casting and drying. Herpetrione, a novel and potent antiviral agent with poor water solubility that extracted from Herpetospermum caudigerum, was chosen as a model drug and studied systematically.

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