Anticancer Perspectives on the Fungal-Derived Polyphenolic Hispolon.


Journal

Anti-cancer agents in medicinal chemistry
ISSN: 1875-5992
Titre abrégé: Anticancer Agents Med Chem
Pays: Netherlands
ID NLM: 101265649

Informations de publication

Date de publication:
2020
Historique:
received: 07 08 2019
revised: 18 02 2020
accepted: 02 03 2020
pubmed: 21 6 2020
medline: 3 6 2021
entrez: 21 6 2020
Statut: ppublish

Résumé

Cancer is a dreadful disease causing thousands of deaths per year worldwide, which requires precision diagnostics and therapy. Although the selection of therapeutic regimens depends on the cancer type, chemotherapy remains a sustainable treatment strategy despite some of its known side-effects. To date, a number of natural products and their derivatives or analogues have been investigated as potent anticancer drugs. These drug discoveries have aimed for targeted therapy and reduced side-effects, including natural therapeutic regimens. This review introduces a prospective fungal-derived polyphenol, Hispolon (HIS), as an anticancer agent. Accordingly, this review focuses on exploring the anticancer effect of hispolon based on information extracted from databases such as PubMed, ScienceDirect, MedLine, Web of Science, and Google Scholar. A literature search in PubMed, ScienceDirect, MedLine, Web of Science, and Google Scholar was accomplished, using the keyword 'Hispolon', pairing with 'cancer', 'cytotoxicity', 'cell cycle arrest', 'apoptosis', 'metastasis', 'migration', 'invasion', 'proliferation', 'genotoxicity', 'mutagenicity', 'drug-resistant cancer', 'autophagy', and 'estrogen receptor. Database-dependent findings from reported research works suggest that HIS can exert anticancer effects by modulating multiple molecular and biochemical pathways, including cell cycle arrest, apoptosis, autophagy, inhibition of proliferation, metastasis, migration, and invasion. Moreover, HIS inhibits the estrogenic activity and exhibits chemoprevention prospects, possibly due to its protective effects such as anticancer and anti-inflammatory mechanisms. To date, a number of HIS derivatives and analogues have been introduced for their anticancer effects in numerous cancer cell lines. Data obtained from this review suggest that hispolon and some of its derivatives can be promising anticancer agents, and may become plant-based cancer chemotherapeutic leads for the development of potent anticancer drugs, alone or in combination with other chemotherapeutic agents.

Sections du résumé

BACKGROUND
Cancer is a dreadful disease causing thousands of deaths per year worldwide, which requires precision diagnostics and therapy. Although the selection of therapeutic regimens depends on the cancer type, chemotherapy remains a sustainable treatment strategy despite some of its known side-effects. To date, a number of natural products and their derivatives or analogues have been investigated as potent anticancer drugs. These drug discoveries have aimed for targeted therapy and reduced side-effects, including natural therapeutic regimens.
OBJECTIVE
This review introduces a prospective fungal-derived polyphenol, Hispolon (HIS), as an anticancer agent. Accordingly, this review focuses on exploring the anticancer effect of hispolon based on information extracted from databases such as PubMed, ScienceDirect, MedLine, Web of Science, and Google Scholar.
METHODS
A literature search in PubMed, ScienceDirect, MedLine, Web of Science, and Google Scholar was accomplished, using the keyword 'Hispolon', pairing with 'cancer', 'cytotoxicity', 'cell cycle arrest', 'apoptosis', 'metastasis', 'migration', 'invasion', 'proliferation', 'genotoxicity', 'mutagenicity', 'drug-resistant cancer', 'autophagy', and 'estrogen receptor.
RESULTS
Database-dependent findings from reported research works suggest that HIS can exert anticancer effects by modulating multiple molecular and biochemical pathways, including cell cycle arrest, apoptosis, autophagy, inhibition of proliferation, metastasis, migration, and invasion. Moreover, HIS inhibits the estrogenic activity and exhibits chemoprevention prospects, possibly due to its protective effects such as anticancer and anti-inflammatory mechanisms. To date, a number of HIS derivatives and analogues have been introduced for their anticancer effects in numerous cancer cell lines.
CONCLUSION
Data obtained from this review suggest that hispolon and some of its derivatives can be promising anticancer agents, and may become plant-based cancer chemotherapeutic leads for the development of potent anticancer drugs, alone or in combination with other chemotherapeutic agents.

Identifiants

pubmed: 32560616
pii: ACAMC-EPUB-107473
doi: 10.2174/1871520620666200619164947
doi:

Substances chimiques

Antineoplastic Agents 0
Catechols 0
hispolon 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

1636-1647

Informations de copyright

Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.net.

Auteurs

Muhammad T Islam (MT)

Laboratory of Theoretical and Computational Biophysics, Ton Duc Thang University, Ho Chi Minh City, Vietnam
Faculty of Pharmacy, Ton Duc Thang University, Ho Chi Minh City, Vietnam

Eunus S Ali (ES)

Gaco Pharmaceuticals and Research Laboratory, Dhaka-1000, Bangladesh
College of Medicine and Public Health, Flinders University, Bedford Park-5042, Australia

Ishaq N Khan (IN)

Institute of Basic Medical Sciences, Khyber Medical University, Peshawar, 25100, Pakistan

Subrata Shaw (S)

Broad Institute of MIT and Harvard, 415 Main Street, Cambridge, MA, 02142, USA

Shaikh Jamal Uddin (SJ)

Pharmacy Discipline, School of Life Sciences, Khulna University, Khulna-9208, Bangladesh

Razina Rouf (R)

Department of Pharmacy, Bangabandhu Sheikh Mujibur Rahman Science & Technology University, Gopalganj, Bangladesh

Shrabanti Dev (S)

Pharmacy Discipline, School of Life Sciences, Khulna University, Khulna-9208, Bangladesh

Seyed S S Saravi (SSS)

Cardiovascular Division, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MS, USA
Department of Toxicology-Pharmacology, Faculty of Pharmacy, Guilan University of Medical Sciences, Rasht, Iran

Niranjan Das (N)

Netaji Subhas Mahavidyalaya, Tripura University, Udaipur, India

Swati Tripathi (S)

Amity Institute of Microbial Technology, Amity University, Noida - 201313, India

Santosh U Yele (SU)

School of Pharmacy and Technology Management, SVKM’s NMIMS, Shirpur, India

Asish K Das (AK)

Pharmacy Discipline, School of Life Sciences, Khulna University, Khulna-9208, Bangladesh

Jamil A Shilpi (JA)

Pharmacy Discipline, School of Life Sciences, Khulna University, Khulna-9208, Bangladesh

Siddhartha K Mishra (SK)

Cancer Biology Laboratory, School of Biological Sciences (Zoology), Dr. Harisingh Gour Central University, Sagar, 470003, India

Mohammad S Mubarak (MS)

Department of Chemistry, The University of Jordan, Amman 11942, Jordan

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Classifications MeSH