Results 161 to 170 of about 38,108 (242)
Harnessing ferroptosis from multilayer defense networks to nanoplatforms for specific cancer therapy
Nanomaterials target metabolically‐regulated ferroptosis for cancer therapy. Iron‐based or alternative nanoplatforms integrate ferroptosis with chemotherapy, immunotherapy, or radiotherapy. They enable stimulus‐responsive therapies (photothermal, photodynamic, sonodynamic) activated by near‐infrared, light, or ultrasound, achieving potent synergistic ...
Xinyue Xu +5 more
wiley +1 more source
Reply—Nonimmune Hydrops Fetalis and Lysosomal Storage Diseases
Ozge Surmeli-Onay, Ayse Korkmaz
doaj +1 more source
[Lysosomes and lysosomal storage diseases].
K K, Lie, S O, Lie
openaire +1 more source
TCPL, a transfersome with Tween 80 and PEI, enables efficient transdermal siNF‐κB delivery, resolving PEI's toxicity issue. It promotes lysosomal escape and effective transfection, silences NF‐κB, modulates immunity, and inhibits angiogenesis, alleviating psoriasis. With good biocompatibility, TCPL holds strong clinical translation potential. Schematic
Hui Xing +6 more
wiley +1 more source
Hepatomegaly and Splenomegaly: An Approach to the Diagnosis of Lysosomal Storage Diseases. [PDF]
Jerves Serrano T +7 more
europepmc +1 more source
Clinical Experience With Eliglustat in Children With Gaucher Disease Type 1
American Journal of Medical Genetics Part A, EarlyView.
Erika R. Vucko +6 more
wiley +1 more source
This study provides an integrated spherical nucleic acid nanoreactor (denoted as AMCuD) for targeted PD‐L1 degradation and chemo‐dynamically enhanced cuproptosis to synergically elicit robust immunotherapy against the triple‐negative breast cancer (TNBC) growth, recurrence and metastasis.
Ningxi Li +9 more
wiley +1 more source
Health care costs of home care enzyme replacement therapy for patients with lysosomal storage diseases in Germany. [PDF]
Heinrich R, Claus F, Schoenfelder T.
europepmc +1 more source
Tackling cancer stemness with nanotechnology in the era of precision medicine
Precise customization of nanoparticles (NPs) enables active targeting of cancer stem cells (CSCs), thereby improving drug delivery and therapeutic efficacy. NP‐based probing enhances CSC detection through imaging and liquid biopsy, whereas diverse therapeutic payloads improve therapeutic outcomes.
Shaolei Guo +9 more
wiley +1 more source

