Kurumun Atıf Alan Makalesi
Atıf Alan Yayın
In vitro enzyme inhibitory properties, antioxidant activities, and phytochemical profile of Potentilla thuringiaca
Scopus
Toplam 432 atıf DOI
The genus Potentilla is interesting for the pharmaceutical field due to its valuable medicinal properties, which have been observed in complementary and alternative medicine. In recent years, studies conducted to estimate the biological activity of several of the Potentilla species have shown a wide spectrum of therapeutic properties. In particular, in the present paper, different extracts obtained from the herb P. thuringiaca were analysed for antioxidant and enzyme inhibitory activities. The UHPLC-DAD-MS3 hyphenated techniques reported herein allow for the identification of phytoconstituents. The analyses showed the presence of flavonoids and ellagitannins as major components. Furthermore, the data demonstrated that the analysed extracts revealed a high total antioxidant capacity in the phosphomolybdenum assay. The free radical scavenging activity of the extracts was evaluated using DPPH and ABTS assays. The reducing power activity of P. thuringiaca was also determined by FRAP and CUPRAC assays, as well as metal chelating activity. In addition, the total extracts and the different fractions of P. thuringiaca revealed potent inhibitory activities against α-amylase and α-glucosidase, AChE, tyrosinase and lipase. Surprisingly, no activity against BChE was shown. P. thuringiaca could be a valuable natural source of antioxidants with interesting inhibitory actions against the key enzymes involved in several human diseases, and could represent a valid starting point for the development of new treatment and management strategies, including its use as a food supplement.
Atıf Kaynağı
Atıf Yapan Yayın
Coordination and bioinorganic chemistry at the heart of metallodrugs: Knowledge gaps and future directions
Scopus
Havuzumuzda 19 atıf almış
Transition metals are an integral part of medicinal inorganic chemistry. These metals exist in distinct oxidation states and are found to interact with several negatively charged molecules. This nature of transition has been utilized in the advancement of potential drugs for the ailments of malignant diseases including cancer. These heavy metal complexes are scaffolds in the designing of numerous advanced therapeutics for mitigating inflammation, rheumatoid arthritis, cancer, cardiovascular disease, and diabetes mellitus. Metal complexes are also employed as prominent chelating agents augmenting the bioactivity and efficiency of existing drugs. The behavior of metal ions in biological fluid and further toxicity is interpreted through coordination chemistry. The review addresses the fundamentals of coordination and inorganic chemistry comprehensively. This review provides an extensive understanding of how coordination and inorganic chemistry govern the activity of metallodrugs and chelating agents. It also delves into the chemistry behind the available metallodrugs and chelating agents concerning their various pharmaceutical applications.
Atıf Yapan Makale Bilgileri
Kurumlar (3)
Selçuk Üniversitesi
Selçuklu, Turkey
University of Mauritius
Reduit, Mauritius
Vellore Institute of Technology
Vellore, India