Magnetic nanoparticles for cancer theranostics: Advances and prospects

X Li, W Li, M Wang, Z Liao - Journal of Controlled Release, 2021 - Elsevier
Cancer is one of the leading causes of mortality worldwide. Nanoparticles have been
broadly studied and emerged as a novel approach in diagnosis and treatment of tumors …

Recent Strategies and Applications for l-Asparaginase Confinement

JCF Nunes, RO Cristóvão, MG Freire… - Molecules, 2020 - mdpi.com
l-asparaginase (ASNase, EC 3.5. 1.1) is an aminohydrolase enzyme with important uses in
the therapeutic/pharmaceutical and food industries. Its main applications are as an …

Recent strategies for the immobilization of therapeutic enzymes

CY Zhu, FL Li, YW Zhang, RK Gupta, SKS Patel… - Polymers, 2022 - mdpi.com
Therapeutic enzymes play important roles in modern medicine due to their high affinity and
specificity. However, it is very expensive to use them in clinical medicine because of their …

How synthesis of algal nanoparticles affects cancer therapy?–A complete review of the literature

MM El-Sheekh, SS AlKafaas, HA Rady… - International Journal …, 2023 - Taylor & Francis
The necessity to engineer sustainable nanomaterials for the environment and human health
has recently increased. Due to their abundance, fast growth, easy cultivation …

Microbial L-asparaginase as a promising enzyme for treatment of various cancers

F Darvishi, Z Jahanafrooz, A Mokhtarzadeh - Applied Microbiology and …, 2022 - Springer
Metabolic differences between normal and cancerous cells have been used as a point of
view for developing anticancer drugs. Some degrading enzymes of certain amino acids …

Newly Synthesized Multifunctional Biopolymer Coated Magnetic Core/Shell Fe3O4@Au Nanoparticles for Evaluation of L-asparaginase Immobilization

T Tarhan, G Dik, A Ulu, B Tural, S Tural, B Ateş - Topics in Catalysis, 2023 - Springer
The immobilization strategy can promote greater enzyme utilization in applications by
improving the overall stability and reusability of the enzyme. In this work, the L-asparaginase …

Enhancement of enzyme activity by laser-induced energy propulsion of upconverting nanoparticles under near-infrared light: A comprehensive methodology for in …

B Ateş, A Ulu, M Asiltürk, SAA Noma, SD Topel… - International Journal of …, 2024 - Elsevier
If the appropriate immobilization method and carrier support are not selected, partial
decreases in the activity of enzymes may occur after immobilization. Herein, to overcome …

[HTML][HTML] Enzyme–polymeric/inorganic metal oxide/hybrid nanoparticle bio-conjugates in the development of therapeutic and biosensing platforms

S Khan, MMN Babadaei, A Hasan, Z Edis… - Journal of Advanced …, 2021 - Elsevier
Background Because enzymes can control several metabolic pathways and regulate the
production of free radicals, their simultaneous use with nanoplatforms showing protective …

Enzyme–iron oxide nanoassemblies: A review of immobilization and biocatalytic applications

Á Valls-Chivas, J Gómez, JI Garcia-Peiro, F Hornos… - Catalysts, 2023 - mdpi.com
In the search for new biotechnological advances, increasing attention is currently being paid
to the development of magnetic nanoplatforms loaded with enzymes, since, on the one …

A New Design to Enhance the Enzyme Activities: Investigation of L-Asparaginase Catalytic Performance by IMAC Effect on gC3N4 Nanolayers

B Sert, Ö Acet, SAA Noma, B Osman, M Odabaşı… - Catalysis Letters, 2024 - Springer
Recently, graphite carbon nitride (g-C3N4) has come to the fore as a new material with its
carbon-based two-dimensional structure, simple preparation procedure, and excellent …