Publications by authors named "Martha E Londono"

Diabetic retinopathy (RD) is a microvascular disease that can cause the formation of fragile neovessels, increasing the risk of hemorrhages and leading to vision loss. Current therapies are based on the intravitreal injection of anti-VEGF (vascular endothelial growth factor), which is invasive and can cause secondary effects. The development of new treatments that complement the current therapies is necessary to improve the patient's outcomes.

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Due to their fascinating chemical, optical, electrical, and biological properties carbon dots (CDs or CDots), carbon quantum dots (CQDs), and graphene quantum dots (GQDs) have attracted attention in biosensing as they can greatly improve the detection limit, sensitivity, and selectivity of biosensors. In general, CDs, CQDs, and GQDs are a class of carbon-based nanomaterials that are characterized by extraordinary fluorescence, a size less than 10 nm, high stability, low toxicity, and being easy to synthesize and presenting functional groups in their surface area that vary according to their synthesis source. In this review, a general description of the main methods and precursors reported in the scientific literature for the synthesis of CDs, CQDs, and GQDs are presented, as well as the chemical, optical, electrical, and biological properties that stand out the most from them; moreover, the main objective of this review is to summarize the application of these carbonaceous nanomaterials in biosensors for the detection of communicable and non-communicable diseases.

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The occurrence of bone-related disorders and diseases has dramatically increased in recent years around the world. Demineralized bone matrix (DBM) has been widely used as a bone implant due to its osteoinduction and bioactivity. However, the use of DBM is limited because it is a particulate material, which makes it difficult to manipulate and implant with precision.

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The green synthesis of biomaterials is of significant interest as it enables the safe and sustainable preparation of noble metallic nanoparticles for medical applications. Microalgae polysaccharides have received attention due to their outstanding properties such as biocompatibility, biodegradability and low cost. In addition, due to their variety of remarkable biological and physicochemical properties, polysaccharide-based nanoparticles have advantageous features yet to be explored.

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