Abstract

Safflower (Carthamus tinctorius L.) is a herbal plant with a long history of clinical application worldwide, such as coronary heart disease, hypertension, dysmenorrhea and amenorrhea. It is also extensively used as an important oilseed plant for hundreds of years in some countries, like China, India, Mexico and the United States. Therefore, safflower is believed as a crop with dual values of medicine and economy as well. Safflower polysaccharides (SPS), from the plant, are believed as one of the most important biologically active components with multiple pharmacological properties, including anti-tumor, immune regulation, anti-oxidation, and anti-cerebral ischemia reperfusion injury effects. The polysaccharides, from bee pollen of safflower, named PBPC, also attract the attention of researchers because of their particular origin and bioactivities. Although the extraction, purification, structure and biological activities of SPS and PBPC have been studied for decades, there is not any available review both concerning SPS and PBPC. In this condition, this paper aims to systematically review the research progress in extraction, purification, structural characteristics, and bioactivities of SPS and PBPC, and provide basis for the in-depth study about their structure-bioactivity relationship. It will serve as a methodological outline for further research in fields of new drug discovery and clinical application of SPS or PBPC, and simultaneously remind us of unresolved problems noted in the polysaccharide research.

Highlights

  • Safflower (Carthamus tinctorius L.) is a medicinal herb with a long history of clinical use for conditions such as coronary heart disease, hypertension, dysmenorrhea and amenorrhea (Delshad et al, 2018)

  • Because the structure and biological activity of bee pollen polysaccharides vary widely depending on the plant source of the pollen, origin and ecological environment, the study of PBPC is significant for its better utilization

  • The average molecular weight (Mw) of polysaccharides is mainly determined by high performance liquid chromatography (HPLC), gel chromatography, high performance size-exclusion chromatography or high performance gel permeation chromatography (HPGPC) (Huo, 2005; Zou, 2011; Hu, 2020; Shi, 2021)

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Summary

INTRODUCTION

Safflower (Carthamus tinctorius L.) is a medicinal herb with a long history of clinical use for conditions such as coronary heart disease, hypertension, dysmenorrhea and amenorrhea (Delshad et al, 2018). Because the structure and biological activity of bee pollen polysaccharides vary widely depending on the plant source of the pollen, origin and ecological environment, the study of PBPC is significant for its better utilization. The aim of this article was to systematically review the research progress in the extraction, purification, structural characteristics, and bioactivities of SPS and PBPC, providing a detailed reference for the study of their structure-bioactivity relationship. It attempts to provide a methodological outline for further research in fields of drug discovery and clinical application of SPS or PBPC, and simultaneously reminds us of unresolved.

Extraction and Purification of Safflower Polysaccharides
Extraction and Purification of PBPC
PHYSIOCHEMICAL AND STRUCTURAL FEATURES OF SAFFLOWER POLYSACCHARIDES
Average Molecular Weight
Monosaccharide Composition
SPAW 10 SF1
APBPC-3 10 APBPC-4 11 APBPC-5
Chemical Structures
BIOLOGICAL ACTIVITIES
Immunomodulatory Activity
Antioxidant Activity
Antitumor Activity
Protective Effect Against Cerebral Ischemia-Reperfusion Injury
Findings
STRUCTURE-FUNCTION ANALYSIS
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