A Multi-Component Nano-Co-Delivery System Utilizing Astragalus Polysaccharides as Carriers for Improving Biopharmaceutical Properties of Astragalus Flavonoids.


Journal

International journal of nanomedicine
ISSN: 1178-2013
Titre abrégé: Int J Nanomedicine
Pays: New Zealand
ID NLM: 101263847

Informations de publication

Date de publication:
2023
Historique:
received: 11 08 2023
accepted: 18 10 2023
medline: 1 12 2023
pubmed: 29 11 2023
entrez: 29 11 2023
Statut: epublish

Résumé

Enhancing the dissolution, permeation and absorption of active components with low solubility and poor permeability is crucial for maximizing therapeutic efficacy and optimizing functionality. The objective of this study is to investigate the potential of natural polysaccharides as carriers to improve the biopharmaceutical properties of active components. In this study, we employed four representative flavonoids in Astragali Radix, namely Calycosin The results showed that APS can self-assemble into aggregates with a porous structure and large surface area in aqueous solutions. These aggregates can be loaded with flavonoids through weak intermolecular interactions, such as hydrogen bonding, thereby improving their gastrointestinal stability, solubility, permeability and absorption in vivo. We discovered the self-assembly properties of APS and its potential as carriers. Compared with introducing external excipients, the utilization of natural polysaccharides in plants as carriers may have a unique advantage in enhancing dissolution, permeation and absorption.

Identifiants

pubmed: 38026532
doi: 10.2147/IJN.S434196
pii: 434196
pmc: PMC10656867
doi:

Substances chimiques

Flavonoids 0
Biological Products 0
Polysaccharides 0
Drugs, Chinese Herbal 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

6705-6724

Informations de copyright

© 2023 Yang et al.

Déclaration de conflit d'intérêts

The authors report no conflicts of interest in this work.

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Auteurs

Bing Yang (B)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Xiaochun Wu (X)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Jingqi Zeng (J)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Jinjing Song (J)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Tianhao Qi (T)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Yanjun Yang (Y)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Dingkun Liu (D)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Yulin Mo (Y)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Miao He (M)

College of Pharmacy, Dali University, Dali, Yunnan, People's Republic of China.

Liang Feng (L)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Xiaobin Jia (X)

School of Traditional Chinese Pharmacy, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

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Classifications MeSH