4 results match your criteria: "School of Medicine (Boao Research Hospital)[Affiliation]"

Different charged biopolymers induce α-synuclein to form fibrils with distinct structures.

J Biol Chem

November 2024

Department of Neurology and Institute of Neurology, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China; Department of Neurology, Ruijin Hainan Hospital, Shanghai Jiao Tong University, School of Medicine (Boao Research Hospital), Hainan, China. Electronic address:

The aggregation of α-synuclein (α-syn) into amyloid fibrils, a key process in the development of Parkinson's disease (PD) and other synucleinopathies, is influenced by a range of factors such as charged biopolymers, chaperones, and metabolites. However, the specific impacts of different biopolymers on α-syn fibril structure are not well understood. In our work, we found that different polyanions and polycations, such as polyphosphate (polyP), polyuridine (polyU), and polyamines (including putrescine, spermidine, and spermine), markedly altered the fibrillation kinetics of α-syn in vitro.

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Patient-derived organoids (PDOs) have emerged as a promising platform for clinical and translational studies. A strong correlation exists between clinical outcomes and the use of PDOs to predict the efficacy of chemotherapy and/or radiotherapy. To standardize interpretation and enhance scientific communication in the field of cancer precision medicine, we revisit the concept of PDO-based drug sensitivity testing (DST).

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Halogen doped graphene quantum dots modulate TDP-43 phase separation and aggregation in the nucleus.

Nat Commun

April 2024

School of Sensing Science and Engineering, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.

Article Synopsis
  • TDP-43 is involved in forming nuclear bodies and stress granules through phase separation, which can lead to the development of amyotrophic lateral sclerosis (ALS) when it forms aggregates.
  • This study examines how different functionalized graphene quantum dots (GQDs) affect TDP-43's behavior in cells, specifically their effect on phase separation and aggregation.
  • The results show that halogen-doped GQDs can penetrate the nuclear envelope, preventing harmful TDP-43 aggregation under stress and revealing their potential for future treatments of related diseases.
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Proteins and peptides can assemble into functional amyloid fibrils with distinct architectures. These amyloid fibrils can fulfil various biological functions in living organisms, and then be degraded. By incorporating an amyloidogenic segment and enzyme-cleavage segment together, we designed a peptide (enzyme-cleavage amyloid peptides (EAP))-based functional fibril which could be degraded specifically by gelatinase.

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