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2.
Int J Mol Sci ; 24(18)2023 Sep 15.
Article in English | MEDLINE | ID: mdl-37762441

ABSTRACT

Crocins are a group of highly valuable water-soluble carotenoids that are reported to have many pharmacological activities, such as anticancer properties, and the potential for treating neurodegenerative diseases including Alzheimer's disease. Crocins are mainly biosynthesized in the stigmas of food-medicine herbs Crocus sativus L. and Gardenia jasminoides fruits. The distribution is narrow in nature and deficient in resources, which are scarce and expensive. Recently, the synthesis of metabolites in the heterologous host has opened up the potential for large-scale and sustainable production of crocins, especially for the main active compounds crocin I and crocin II. In this study, GjCCD4a, GjALDH2C3, GjUGT74F8, and GjUGT94E13 from G. jasminoides fruits were expressed in Nicotiana benthamiana. The highest total content of crocins in T1 generation tobacco can reach 78,362 ng/g FW (fresh weight) and the dry weight is expected to reach 1,058,945 ng/g DW (dry weight). Surprisingly, the primary effective constituents crocin I and crocin II can account for 99% of the total crocins in transgenic plants. The strategy mentioned here provides an alternative platform for the scale-up production of crocin I and crocin II in tobacco.


Subject(s)
Alzheimer Disease , Nicotiana , Nicotiana/genetics , Carotenoids , Fruit
3.
Biomed Pharmacother ; 115: 108898, 2019 Jul.
Article in English | MEDLINE | ID: mdl-31026728

ABSTRACT

As a classical traditional Chinese medicine, Wuzi-Yanzong-Wan (WZYZW) has been widely applied for several centuries to treat non-obstructive oligoasthenozoospermia (NOA), although its pharmacological mechanisms remain largely unknown. In this study, both plasma and urine metabolomics profiling was first analysed to explore the therapeutic mechanisms of WZYZW in NOA rats induced by removal of the unilateral testicle. Then, 106 identified compounds comprising WZYZW (our previous work), for which putative targets were discovered using systems pharmacology, were systematically analysed via mRNA microarrays to validate their putative targets. Finally, metabolomics-tested WZYZW-regulated metabolites were connected with validated targets using Spearman correlation analysis to further confirm the targets from a biological perspective. The results suggested that WZYZW plays key roles in modulating the concentrations of 18 metabolites in the metabolism of amino acids, lipids and so on, normalizing the metabolic phenotype and regulating metabolic disorders. Moreover, 27 targets of WZYZW (23 compounds) against NOA were validated, and metabolomics-tested metabolites were also found to be significantly related to these identified targets, suggesting that these targets and compounds are worthy of further research. This work offers the first systematic investigation of the efficacy of WZYZW against NOA and illustrates a practicable approach for explaining the molecular mechanisms of multicomponent drugs.


Subject(s)
Drugs, Chinese Herbal/therapeutic use , Metabolome/drug effects , Oligospermia/drug therapy , Oligospermia/metabolism , Testis/drug effects , Amino Acids/blood , Amino Acids/urine , Animals , Disease Models, Animal , Drugs, Chinese Herbal/administration & dosage , Lipid Metabolism/drug effects , Male , Metabolomics , Rats, Sprague-Dawley , Sperm Count , Sperm Motility/drug effects , Testis/metabolism , Testis/pathology
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