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1.
Gels ; 10(4)2024 Apr 10.
Artículo en Inglés | MEDLINE | ID: mdl-38667676

RESUMEN

Engineered bone scaffolds should mimic the natural material to promote cell adhesion and regeneration. For this reason, natural biopolymers are becoming a gold standard in scaffold production. In this study, we proposed a hybrid scaffold produced using gellan gum, hydroxyapatite, and Poly (ethylene glycol) within the addition of the ginseng compound K (CK) as a candidate for bone regeneration. The fabricated scaffold was physiochemically characterized. The morphology studied by scanning electron microscopy (SEM) and image analysis revealed a pore distribution suitable for cells growth. The addition of CK further improved the biological activity of the hybrid scaffold as demonstrated by the MTT assay. The addition of CK influenced the scaffold morphology, decreasing the mean pore diameter. These findings can potentially help the development of a new generation of hybrid scaffolds to best mimic the natural tissue.

2.
J Tissue Eng Regen Med ; 15(4): 375-387, 2021 04.
Artículo en Inglés | MEDLINE | ID: mdl-33533202

RESUMEN

Articular hyaline cartilage is an extremely hydrated, not vascularized tissue with a low-cell density. The damage of this tissue can occur after injuries or gradual stress and tears (osteoarthritis), minor damages can be self-healed in several weeks, but major injuries may eventually require surgery. In fact, in this case, because of nature of the cartilage (the absence of cells and vascularization) it is difficult to expect its natural regeneration in a reasonable amount of time. In recent years, cell therapy, in which cells are directly transplanted, has attracted attention. In this study, a scaffold for implanting chondrocytes was prepared. The scaffold was made as a sponge using the eggshell membrane and agarose. The eggshell membrane is structurally similar to the extracellular matrix and nontoxic due to its many collagen components and has good biocompatibility and biodegradability. However, scaffolds made of collagen only has poor mechanical properties. For this reason, the disulfide bond of collagen extracted from the insoluble eggshell membrane was cut, converted into water-soluble, and then mixed with agarose to prepare a scaffold. Agarose is capable of controlling mechanical properties, has excellent biocompatibility, and is suitable for forming a hydrogel having a three-dimensional porosity. The scaffold was examined for Fourier-transform infrared, mechanical properties, biodegradability, and biocompatibility. In in vitro experiment, cytotoxicity, cell proliferation, and messenger RNA expression were investigated. The study demonstrated that the agarose/eggshell membrane scaffold can be used for chondrocyte transplantation.


Asunto(s)
Cartílago Articular/fisiología , Cáscara de Huevo/química , Sefarosa/química , Ingeniería de Tejidos , Andamios del Tejido/química , Animales , Cartílago Articular/citología , Muerte Celular/genética , Proliferación Celular/genética , Forma de la Célula/genética , Supervivencia Celular/genética , Pollos , Fuerza Compresiva , Regulación de la Expresión Génica , Porosidad , Conejos , Regeneración/genética , Solubilidad
3.
Adv Exp Med Biol ; 1250: 3-13, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32601934

RESUMEN

Collagen is an important component that makes 25-35% of our body proteins. Over the past decades, tissue engineers have been designing collagen-based biocompatible materials and studying their applications in different fields. Collagen obtained from cattle and pigs has been mainly used until now, but collagen derived from fish and other livestock has attracted more attention since the outbreak of mad cow disease, and they are also used as a raw material for cosmetics and foods. Due to the zoonotic infection using collagen derived from pigs and cattle, their application in developing biomaterials is limited; hence, the development of new animal-derived collagen is required. In addition, there is a religion (Islam, Hinduism, and Judaism) limited to export raw materials and products derived from cattle and pig. Hence, high-value collagen that is universally accessible in the world market is required. Therefore, in this review, we have dealt with the use of duck's feet-derived collagen (DC) as an emerging alternative to solve this problem and also presenting few original investigated bone regeneration results performed using DC.


Asunto(s)
Regeneración Ósea , Colágeno , Patos , Ingeniería de Tejidos , Animales , Materiales Biocompatibles , Regeneración Ósea/fisiología , Colágeno/química , Colágeno/metabolismo , Ingeniería de Tejidos/métodos , Andamios del Tejido
4.
Adv Exp Med Biol ; 1249: 3-14, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32602087

RESUMEN

Demineralized bone matrix (DBM) is one of the most widely used materials for bone repair. Recently, different strategies in tissue engineering have been used to improve preparation of biomaterials from natural sources suitable for the use in bone regeneration. However, the application of DBM in tissue engineering is still a challenge, because the mechanical properties which are essential to bear tensile and load and the risk of transmission of disease by donor are still a matter of homework. A solution to this problem is to blend natural and synthetic polymers to complement defects and make them ideal biomaterials. An ideal biomaterial improves survival, adhesion, proliferation, induction, and differentiation of cells in the biomaterial after in vivo transplantation. In this review, we will look at the study of DBM made of natural and synthetic materials giving a direction for future research.


Asunto(s)
Materiales Biocompatibles , Productos Biológicos , Matriz Ósea , Cartílago , Ingeniería de Tejidos/métodos , Humanos
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