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Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine

Processed herbs have been widely used in eastern and western medicine; however, the mechanism of their medicinal effects has not yet been revealed. It is commonly believed that a central role is played by chemically active molecules produced by the herbs' metabolism. In this work, processed rhi...

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Autores principales: Benassi, Enrico, Fan, Haiyan, Sun, Qinglei, Dukenbayev, Kanat, Wang, Qian, Shaimoldina, Ainur, Tassanbiyeva, Aigerim, Nurtay, Lazzat, Nurkesh, Ayan, Kutzhanova, Aidana, Mu, Chenglin, Dautov, Adilet, Razbekova, Madina, Kabylda, Anar, Yang, Qing, Li, Ziye, Amin, Amr, Li, Xugang, Xie, Yingqiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417895/
https://www.ncbi.nlm.nih.gov/pubmed/36133773
http://dx.doi.org/10.1039/d0na00958j
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author Benassi, Enrico
Fan, Haiyan
Sun, Qinglei
Dukenbayev, Kanat
Wang, Qian
Shaimoldina, Ainur
Tassanbiyeva, Aigerim
Nurtay, Lazzat
Nurkesh, Ayan
Kutzhanova, Aidana
Mu, Chenglin
Dautov, Adilet
Razbekova, Madina
Kabylda, Anar
Yang, Qing
Li, Ziye
Amin, Amr
Li, Xugang
Xie, Yingqiu
author_facet Benassi, Enrico
Fan, Haiyan
Sun, Qinglei
Dukenbayev, Kanat
Wang, Qian
Shaimoldina, Ainur
Tassanbiyeva, Aigerim
Nurtay, Lazzat
Nurkesh, Ayan
Kutzhanova, Aidana
Mu, Chenglin
Dautov, Adilet
Razbekova, Madina
Kabylda, Anar
Yang, Qing
Li, Ziye
Amin, Amr
Li, Xugang
Xie, Yingqiu
author_sort Benassi, Enrico
collection PubMed
description Processed herbs have been widely used in eastern and western medicine; however, the mechanism of their medicinal effects has not yet been revealed. It is commonly believed that a central role is played by chemically active molecules produced by the herbs' metabolism. In this work, processed rhizoma polygonati (RP) and other herbal foods are shown to exhibit intrinsic phosphatase-like (PL) activity bounded with the formation of nano-size flower-shaped assembly. Via quantum mechanical calculations, an enzymatic mechanism is proposed. The enzymatic activity may be induced by the interaction between the sugar molecules distributed on the surface of the nanoassemblies and the phosphatase substrate via either a hydroxyl group or the deprotonated hydroxyl group. Meanwhile, the investigation was further extended by processing some fresh herbs and herbal food through a similar protocol, wherein other enzymatic activities (such as protease, and amylase) were observed. The PL activity exhibited by the processed natural herbs was found to be able to effectively inhibit cancer cell growth via phosphatase signaling, possibly by crosstalk with kinase signaling or DNA damage by either directly binding or unwinding of DNA, as evidenced by high-resolution atomic-force microscopy (HR-AFM). In this work, the neologism herbzyme (herb + enzyme) is proposed. This study represents the first case of scientific literature introducing this new term. Besides the well-known pharmacological properties of the natural molecules contained in herbs and herbal food, there exists an enzymatic/co-enzymatic activity attributed to the nanosized assemblies.
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spelling pubmed-94178952022-09-20 Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine Benassi, Enrico Fan, Haiyan Sun, Qinglei Dukenbayev, Kanat Wang, Qian Shaimoldina, Ainur Tassanbiyeva, Aigerim Nurtay, Lazzat Nurkesh, Ayan Kutzhanova, Aidana Mu, Chenglin Dautov, Adilet Razbekova, Madina Kabylda, Anar Yang, Qing Li, Ziye Amin, Amr Li, Xugang Xie, Yingqiu Nanoscale Adv Chemistry Processed herbs have been widely used in eastern and western medicine; however, the mechanism of their medicinal effects has not yet been revealed. It is commonly believed that a central role is played by chemically active molecules produced by the herbs' metabolism. In this work, processed rhizoma polygonati (RP) and other herbal foods are shown to exhibit intrinsic phosphatase-like (PL) activity bounded with the formation of nano-size flower-shaped assembly. Via quantum mechanical calculations, an enzymatic mechanism is proposed. The enzymatic activity may be induced by the interaction between the sugar molecules distributed on the surface of the nanoassemblies and the phosphatase substrate via either a hydroxyl group or the deprotonated hydroxyl group. Meanwhile, the investigation was further extended by processing some fresh herbs and herbal food through a similar protocol, wherein other enzymatic activities (such as protease, and amylase) were observed. The PL activity exhibited by the processed natural herbs was found to be able to effectively inhibit cancer cell growth via phosphatase signaling, possibly by crosstalk with kinase signaling or DNA damage by either directly binding or unwinding of DNA, as evidenced by high-resolution atomic-force microscopy (HR-AFM). In this work, the neologism herbzyme (herb + enzyme) is proposed. This study represents the first case of scientific literature introducing this new term. Besides the well-known pharmacological properties of the natural molecules contained in herbs and herbal food, there exists an enzymatic/co-enzymatic activity attributed to the nanosized assemblies. RSC 2021-01-13 /pmc/articles/PMC9417895/ /pubmed/36133773 http://dx.doi.org/10.1039/d0na00958j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Benassi, Enrico
Fan, Haiyan
Sun, Qinglei
Dukenbayev, Kanat
Wang, Qian
Shaimoldina, Ainur
Tassanbiyeva, Aigerim
Nurtay, Lazzat
Nurkesh, Ayan
Kutzhanova, Aidana
Mu, Chenglin
Dautov, Adilet
Razbekova, Madina
Kabylda, Anar
Yang, Qing
Li, Ziye
Amin, Amr
Li, Xugang
Xie, Yingqiu
Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine
title Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine
title_full Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine
title_fullStr Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine
title_full_unstemmed Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine
title_short Generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional Chinese medicine
title_sort generation of particle assemblies mimicking enzymatic activity by processing of herbal food: the case of rhizoma polygonati and other natural ingredients in traditional chinese medicine
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417895/
https://www.ncbi.nlm.nih.gov/pubmed/36133773
http://dx.doi.org/10.1039/d0na00958j
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