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Immobilization of human tyrosine hydroxylase onto magnetic nanoparticles – A novel formulation of a therapeutic enzyme
Molnár, Zsófia [Molnár, Zsófia Klára (biokatalízis, mol...), author] Department of Organic Chemistry and Technology (BUTE / FCTB)
;
Koplányi, Gábor [Koplányi, Gábor (nanobiotechnológia), author] Department of Organic Chemistry and Technology (BUTE / FCTB)
;
Farkas, Réka
;
Péli, Noémi [Péli, Noémi (enzimek, fehérjék...), author] Department of Organic Chemistry and Technology (BUTE / FCTB)
;
Kenéz, Balázs [Kenéz, Balázs (Enzimek, fehérjék...), author] Department of Organic Chemistry and Technology (BUTE / FCTB)
;
Decsi, Balázs [Decsi, Balázs (kémiai tudományok), author]
;
Katona, Gábor [Katona, Gábor (Gyógyszertechnológia), author] Institute of Pharmaceutical Technology and Regu... (SZTE / FP)
;
Balogh, György T. [Balogh, György Tibor (Gyógyszerkémia), author] Department of Pharmaceutical Chemistry (SU / FP); Department of Chemical and Environmental Proces... (BUTE / FCTB)
;
Vértessy, Beáta G. [Vértessy, Beáta (Grolmuszné) (Biokémia), author] Department of Applied Biotechnology and Food Sc... (BUTE / FCTB)
;
Balogh-Weiser, Diána ✉ [Balogh Weiser, Diána (szerves kémia, an...), author] Department of Physical Chemistry and Material S... (BUTE / FCTB); Department of Organic Chemistry and Technology (BUTE / FCTB)
English Article (Journal Article) Scientific
Published:
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES 0141-8130 1879-0003
268
(2)
Paper: 131939
, 11 p.
2024
Gazdaságtudományi Doktori Minősítő Bizottság: B nemzetközi
SJR Scopus - Biochemistry: Q1
Identifiers
MTMT: 34830192
DOI:
10.1016/j.ijbiomac.2024.131939
WoS:
001238090200001
Scopus:
85191821440
PubMed:
38692555
SZTE Publicatio:
35646
Fundings:
(FK-137582)
(K119493)
(K135231)
(BO/00175/21)
TKP-6-6/PALY-2021(TKP-6-6/PALY-2021) Funder: NKFI
(TKP2021-NVA)
Nemzeti Gyógyszerkutatási és Fejlesztési Laboratórium (PharmaLab)(RRF-2.3.1-21-2022-00015) Funder: NRDIO
Human tyrosine hydroxylase (hTH) has key role in the production of catecholamine neurotransmitters. The structure, function and regulation of hTH has been extensively researched area and the possibility of enzyme replacement therapy (ERT) involving hTH through nanocarriers has been raised as well. However, our understanding on how hTH may interact with nanocarriers is still lacking. In this work, we attempted to investigate the immobilization of hTH on magnetic nanoparticles (MNPs) with various surface linkers in quantitative and mechanistic detail. Our results showed that the activity of hTH was retained after immobilization via secondary and covalent interactions as well. The colloidal stability of hTH could be also enhanced proved by Dynamic light scattering and Zeta potential analysis and a homogenous enzyme layer could be achieved, which was investigated by Raman mapping. The covalent attachment of hTH on MNPs via aldehyde or epoxy linkers provide irreversible immobilization and 38.1 % and 16.5 % recovery (ER). The hTH-MNPs catalyst had 25 % ER in average in simulated nasal electrolyte solution (SNES). This outcome highlights the relevance of immobilization applying MNPs as a potential formulation tool of sensitive therapeutic enzymes offering new opportunities for ERT related to neurodegenerative disorders. © 2024 The Author(s)
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2025-04-16 16:32
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