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Preparation Method of Nano/Macroporous Bone Tissue Scaffolds for Regenerative Medicine
SUMMARY In the field of tissue engineering, one of the most important primary goals is the development of scaffold structure that would help repair damaged or diseased tissue to its original state. Material selection is an essential parameter for the bioscaffold. Additionally, the geometrical architecture of the bioscaffold is very important. Bioactive...
Published: 8/2/2021
|
Inventor(s):
Himanshu Jain
,
Ana Marques
,
Rui Almeida
Keywords(s):
Biomedical Applications
,
Bone Regeneration
,
Medical Treatment
,
Nano/Macroporosity
,
Nanotechnology
,
Regenerative Medicine
,
Scaffold
Category(s):
Biomaterials
,
Green Construction > Life Sciences
Fabrication of Interconnected Nano-Macro Porous Glass by the Melt-Quench-Heat-Etch Method
SUMMARY Lehigh University has developed a superior method for creating nano-macro porous glass. The method uses sucrose as a macro pore former and dissolving sucrose phase in water at room temperature for large scale nano-porosity (100-300 nm) for virus separation. It exploits the advantages of the conventional meltquench processing, as well as allows...
Published: 8/2/2021
|
Inventor(s):
Himanshu Jain
,
Hassan Moawad
Keywords(s):
Biomedical
,
Biomedical Applications
,
Bone Regeneration
,
Medical Treatment
,
Melt-Quench
,
Nanotechnology
,
Regenerative Medicine
,
Scaffold
Category(s):
Green Construction > Life Sciences