Aim: the effect of liposomes bi-functionalized with phosphatidic acid and with a synthetic peptide derived from human apolipoprotein e has been evaluated on the aggregation features of different amyloidogenic proteins: human amyloid β1–40 (aβ1–40), transthyretin (ttR) variant s52P, human β2microglobulin (β2m) variants ΔN6 and D76N, serum amyloid a (saa). Methods: the formation of fibrillar aggregates of the proteins was investigated by thioflavint fluorescence assay and validated by atomic Force Microscopy. Results: the results show that liposomes are preventing the transition of non-aggregated forms to the fibrillar state, with stronger effects on aβ1–40, β2m ΔN6 and saa. liposomes also induce disaggregation of the amyloid aggregates of all the proteins investigated, with stronger effects on aβ1–40, β2 D76N and ttR. sPR assays show that liposomes bind aβ1–40 and saa aggregates with high affinity (KD in the nanomolar range) whereas binding to ttR aggregates showed a lower affinity (KD in the micromolar range). aggregates of β2m variants showed both high and low affinity binding sites. computed structural analysis of protein fibrillar aggregates and considerations on the multidentate features of liposomes allow to speculate a common mechanism of action, based on binding the β-stranded peptide regions responsible for the amyloid formation. Conclusion: thus, multifunctional liposomes perform as pharmacological chaperones with anti-amyloidogenic activity, with a promising potential for the treatment of a number of protein-misfolding diseases.

Amyposomes, a nanotechnological chaperone with anti-amyloidogenic activity / F. Re, S. Giorgetti, B. Biondi, S. Scapin, F. Mantegazza, V. Cassina, S.M. Sesana, L. Rizzi, I. Eberini, L. Palazzolo, M. Beeg, M. Gobbi, M. Sardina, M. Masserini. - In: ANNALS OF MEDICINE. - ISSN 1365-2060. - 55:1(2023 May 05), pp. 2205659.1-2205659.15. [10.1080/07853890.2023.2205659]

Amyposomes, a nanotechnological chaperone with anti-amyloidogenic activity

S. Scapin;V. Cassina;I. Eberini;L. Palazzolo;M. Gobbi;M. Masserini
Ultimo
2023

Abstract

Aim: the effect of liposomes bi-functionalized with phosphatidic acid and with a synthetic peptide derived from human apolipoprotein e has been evaluated on the aggregation features of different amyloidogenic proteins: human amyloid β1–40 (aβ1–40), transthyretin (ttR) variant s52P, human β2microglobulin (β2m) variants ΔN6 and D76N, serum amyloid a (saa). Methods: the formation of fibrillar aggregates of the proteins was investigated by thioflavint fluorescence assay and validated by atomic Force Microscopy. Results: the results show that liposomes are preventing the transition of non-aggregated forms to the fibrillar state, with stronger effects on aβ1–40, β2m ΔN6 and saa. liposomes also induce disaggregation of the amyloid aggregates of all the proteins investigated, with stronger effects on aβ1–40, β2 D76N and ttR. sPR assays show that liposomes bind aβ1–40 and saa aggregates with high affinity (KD in the nanomolar range) whereas binding to ttR aggregates showed a lower affinity (KD in the micromolar range). aggregates of β2m variants showed both high and low affinity binding sites. computed structural analysis of protein fibrillar aggregates and considerations on the multidentate features of liposomes allow to speculate a common mechanism of action, based on binding the β-stranded peptide regions responsible for the amyloid formation. Conclusion: thus, multifunctional liposomes perform as pharmacological chaperones with anti-amyloidogenic activity, with a promising potential for the treatment of a number of protein-misfolding diseases.
Amyloidosis; Aβ₁₋₄₀; liposomes; SAA; TTR; β2microglobulin
Settore BIO/10 - Biochimica
Settore FIS/07 - Fisica Applicata(Beni Culturali, Ambientali, Biol.e Medicin)
   tArGeting brAIn cholesterol traNSporT in Alzheimer’s Disease (AGAINST-AD)
   AGAINST-AD
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2017PFYK27_001
5-mag-2023
apr-2023
Article (author)
File in questo prodotto:
File Dimensione Formato  
026 - Amyposomes a nanotechnological chaperone with anti amyloidogenic activity.pdf

accesso aperto

Tipologia: Publisher's version/PDF
Dimensione 2.87 MB
Formato Adobe PDF
2.87 MB Adobe PDF Visualizza/Apri
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/968139
Citazioni
  • ???jsp.display-item.citation.pmc??? 0
  • Scopus 0
  • ???jsp.display-item.citation.isi??? 0
social impact