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Kurum makalesi · Scopus üzerinden alınan atıf kaydı

Kurumun Atıf Alan Makalesi
Atıf Alan Yayın
Plant-microbial interaction: The mechanism and the application of microbial elicitor induced secondary metabolites biosynthesis in medicinal plants
Plant Physiology and Biochemistry Cilt 167 ss. 269-295
Scopus Toplam 119 atıf DOI
Plants and microbes interact with each other via different chemical signaling pathways. At the risophere level, the microbes can secrete molecules, called elicitors, which act on their receptors located in plant cells. The so-called elicitor molecules as well as their actions differ according to the mcirobes and induce different bilogical responses in plants such as the synthesis of secondary metabolites. Microbial compounds induced phenotype changes in plants are known as elicitors and signaling pathways which integrate elicitor's signals in plants are called elicitation. In this review, the impact of microbial elicitors on the synthesis and the secretion of secondary metabolites in plants was highlighted. Moreover, biological properties of these bioactive compounds were also highlighted and discussed. Indeed, several bacteria, fungi, and viruses release elicitors which bind to plant cell receptors and mediate signaling pathways involved in secondary metabolites synthesis. Different phytochemical classes such as terpenoids, phenolic acids and flavonoids were synthesized and/or increased in medicinal plants via the action of microbial elicitors. Moreover, these compounds compounds exhibit numerous biological activities and can therefore be explored in drugs discovery.
Atıf Kaynağı
Atıf Yapan Yayın
The Current State of Knowledge in Biological Properties of Cirsimaritin
Antioxidants Cilt 11
Scopus Havuzumuzda Open Access 35 atıf almış
The search for natural plant-based products as new pharmacological alternatives to treat various human pathologies has taken on great importance for researchers and research laboratories. In this context, research has intensified to extract and identify natural molecules endowed with biological effects. The objective of this study is to review the source and pharmacological properties of cirsimaritin. The identification and isolation of this flavonoid from various natural sources, including medicinal plants such as Artemisia judaica, Cirsium japonicum, Lithocarpus dealbatus, Microtea debilis, and Ocimum sanctum, has been carried out and verified using different spectral techniques. Biological effect investigations are carried out with a wide variety of experimental models in vitro and in vivo and laboratory techniques. The results of these research works showed the biological properties of cirsimaritin including anticancer, antimicrobial, antidiabetic, antiparasitic, antioxidant, and anti-inflammatory effects. The mechanisms involved in the multiple activities of this molecule are diverse and include sub-cellular, cellular, and molecular levels. Indeed, this bioactive induces anti-inflammatory and antiproliferative effects by inhibiting cell membrane receptors, interference with signaling pathways, and inhibiting transcriptional factors such as Nf-κB involved in cell promotion and proliferation. In the light of these results, cirsimaritin appears as a promising and viable alternative natural bioactive drug to treat many pathological conditions.
Atıf Yapan Makale Bilgileri
Kurumlar (15)
Cadi Ayyad University Marakech, Morocco
Faculté de Médecine et de Pharmacie de Rabat Rabat, Morocco
Faculté des Sciences Rabat Rabat, Morocco
Faculty of Science, Ibn Tofail University Kenitra, Morocco
Ibn Sina Hospital, Agdal Rabat Agdal Rabat, Morocco
Kyung Hee University Seoul, South Korea
Monash University Malaysia Sunway City, Malaysia
Prokhorov General Physics Institute of the Russian Academy of Sciences Moscow, Russian Federation
Russian State Agrarian University - Moscow Timiryazev Agricultural Academy Moscow, Russian Federation
Selçuk Üniversitesi Selçuklu, Turkey