dr inż. Kamila Rząd | Politechnika Gdańska

Treść strony

dr inż. Kamila Rząd

Kontakt:

email:
kamrzad@pg.edu.pl
strona:
https://mostwiedzy.pl/kamila-rzad,69485-1

Zajmowane stanowiska:

Adiunkt

miejsce pracy:
Katedra Technologii Leków i Biochemii
Budynek B Wydziału Chemicznego, 105
dr inż. Kamila Rząd

Publikacje:

  1. Fungal topoisomerase II (TopoII) has been identified as essential for viability. Thus, our research aimed to investigate the potential of fungal TopoII as a novel target for antifungal chemotherapy. We conducted studies on eleventh antitumor compounds targeting human topoisomerase II, either approved by the U.S. Food and Drug Administration (FDA) or currently under clinical trials to evaluate their potential for use in other therapeutic...

    Pełny tekst do pobrania w portalu

  2. Publikacja

    L-methionine (L-Met) is one of the nine proteinogenic amino acids essential for humans since, in human cells, there are no complete pathways for its biosynthesis from simple precursors. L-Met plays a crucial role in cellular function as it is required for proper protein synthesis, acting as an initiator. Additionally, this amino acid participates in various metabolic processes and serves as a precursor for the synthesis of S-adenosylmethionine...

    Pełny tekst do pobrania w serwisie zewnętrznym

  3. Fungal infections are a serious threat to public health as they are becoming increasingly frequent. A major problem stems also from a rising fungal resistance to currently available antifungal therapies, therefore novel molecular targets are highly desirable. Exploration of enzymes participating in the biosynthesis pathways of essential amino acids such as L-methionine (L-Met) may provide new insights into pharmaceutical development....

    Pełny tekst do pobrania w portalu

  4. Fungal pathogens are considered as serious factors for deadly diseases and are a case of medical concern. Invasive fungal infections also complicate the clinical course of COVID-19, leading to a significant increase in mortality. Furthermore, fungal strains' multidrug resistance has increased the demand for antifungals with a different mechanism of action. The present study aimed to identify antifungal compounds targeting yeast...

    Pełny tekst do pobrania w portalu

  5. Publikacja

    - Scientific Reports - Rok 2023

    With the current massive increases in drug-resistant microbial infection as well as the significant role of fungal infections in the death toll of COVID-19, discovering new antifungals is extremely important. Natural and synthetic xanthones are promising derivatives, although only few reports have demonstrated their antifungal mechanism of action in detail. Newly synthetized by us xanthone derivative 44 exhibited strong antifungal...

    Pełny tekst do pobrania w portalu

dane pochodzą z portalu MOST Wiedzy otwiera się w nowej karcie MOST Wiedzy

Projekty: