Publications by authors named "Thais C Paim"

Article Synopsis
  • - Therapies for severe burn injuries are challenging, but the study explores using decellularized human amniotic membrane (DhAM) combined with adipose-derived mesenchymal stromal cells (AD-MSCs) as a potential treatment strategy for second-degree burns in animals.
  • - In a preclinical model, the combination of DhAM and AD-MSCs demonstrated significant healing improvements compared to standard treatments, with no adverse effects observed in animal organs, and promoted healthy skin regeneration.
  • - The healing process was correlated with increased CD73 expression, which may aid in wound healing by releasing adenosine, a molecule that helps reduce inflammation, especially as CD11b labeling (an inflammatory marker) was lower in the Dh
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Metal injection molding (MIM) has become an important manufacturing technology for biodegradable medical devices. As a biodegradable metal, pure iron is a promising biomaterial due to its mechanical properties and biocompatibility. In light of this, we performed the first study that manufactured and evaluated the in vitro and in vivo biocompatibility of samples of iron porous implants produced by MIM with a new eco-friendly feedstock from natural rubber (Hevea brasiliensis), a promisor binder that provides elastic property in the green parts.

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Biodegradable metallic materials (BMMs) are expected to corrode gradually in vivo after providing the structural support to the tissue during its regeneration and healing processes. These characteristics make them promising candidates for use in stents. These endoprostheses are produced from metal alloys by casting and thermomechanical treatment.

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A film of chitosan, gelatin and liposome has been designed for dermatological applications. Several adaptations were required throughout development to facilitate in vitro analysis, physicochemical characterization and biocompatibility evaluation. The final version of the film was characterized by differential scanning calorimetry, evaluation of swelling and scanning electron microscopy.

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Bioactive glasses have potential applications in the field of regenerative medicine due to their bioactivity that permits interaction with both hard and soft tissues. In the same way, mesenchymal stromal cells (MSCs) have been experimentally tested as part of engineered constructs considering their self-renewal and multipotent capacities. However, to design an association, it is crucial to investigate the physical properties of bioglass 45S5, as well as its biocompatibility.

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