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1.
Xenotransplantation ; 31(2): e12817, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-37548057

RESUMEN

The murine heterotopic cardiac transplantation model has been widely used to study antigen-specific immune responses or new immunosuppressive agents, which have a strong correlation with peripheral lymph nodes. Thus, a new organ transplantation model that is applicable to related studies is needed. Here, we describe a groin-site murine heart transplantation model using a cuff technique, in which the donor aorta and pulmonary artery are anastomosed to the truncated femoral vessels of the recipient. The mean survival time (MST) of the grafts in BALB/c-to-C57BL/6 allo-transplant group was 7.2 ± 0.3 days, and 1.9 ± 0.2 days in BALB/c-to-Sprague-Dawley (SD) rat xeno-transplant group. H&E results show that donor hearts from both groups demonstrate typical pathological features at the endpoint. Evans Blue tracing revealed that the popliteal lymph nodes of the grafted side hindlimb are larger than those of the contralateral side. Moreover, IHC staining for CD3, CD20 shows that the germinal center and cortex region of the grafted side of popliteal lymph nodes is apparently increased than that of the contralateral side. To sum up, this model may serve as an ideal model to study the role of peripheral lymph nodes in organ transplant rejection. In addition, extra-peritoneal grafting makes a step forward in animal welfare under the 3Rs' principle (Replacement, Reduction, Refinement).


Asunto(s)
Trasplante de Corazón , Ratas , Ratones , Animales , Humanos , Trasplante de Corazón/métodos , Ingle , Ratas Sprague-Dawley , Trasplante Heterólogo , Donantes de Tejidos , Ganglios Linfáticos , Ratones Endogámicos C57BL , Rechazo de Injerto
2.
J Mol Med (Berl) ; 102(2): 213-229, 2024 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-38047923

RESUMEN

Cancer is a life-threatening disease worldwide. Nanomedicine and nanodelivery systems are recently developed scientific field that employs specific materials in the nanoscale range to deliver drugs. Lipid-based nanoparticles are an ideal delivery system since they exhibit many advantages, including high bioavailability, self-assembly, formulation simplicity, and the ability to exhibit a plethora of physicochemical properties. Herein, we report that phenobarbital sodium can kill cancer cells by using the DSPE-PEG2000-methotrexate nanoparticle delivery system, which can target folate receptors that are usually overexpressed on a variety of cancer cells. The released phenobarbital then executes cancer cells by inducing pyroptosis. Results from our animal model further indicate that the nanomedicine of nanoparticle-encapsulated phenobarbital sodium is a promising anticancer therapy.


Asunto(s)
Nanopartículas , Neoplasias , Fosfatidiletanolaminas , Polietilenglicoles , Animales , Metotrexato/farmacología , Sistemas de Liberación de Medicamentos/métodos , Piroptosis , Nanopartículas/química
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