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  1. 25 Οκτ 2021 · Gelatine has been considered one of the most promising biopolymers. Despite its biodegradability, biocompatibility and unique biological properties, gelatine exhibits poor mechanical and adhesive properties, limiting its end-use applications.

  2. 1 Ιαν 2021 · According to Jakhar et al. [36], gelatin can be found in the scale, connective tissue, bones, intestines of the animal, and the skin via a partial hydrolysis process which can produce high molecular weight gelatin biopolymer.

  3. Numerous applications in drug delivery include drug targeting systems for oral, nasal, ocular, and transdermal routes [102]. For this purpose, chitosan has been used in the development of gels, films, oral tablets, beads, and microspheres [103].

  4. Among the natural biopolymers used in the production of DDSs, gelatin is a promising multifunctional candidate due to its innumerable advantageous properties such as biocompatibility, biodegradability, and low immunogenicity.

  5. 10 Ιουλ 2015 · Gelatin has broad advantages for biomedical pharmaceutical applications. Firstly, it is cheap and readily available, with high biocompatibility and biodegradability. Secondly, as a denatured product, gelatin is much less antigenic than collagen (Elzoghby et al. 2012).

  6. 30 Απρ 2023 · Gelatin, a well-known biocompatible polymer, is a derivative of collagen obtained by the heat denaturation of collagen. The properties of gelatin vary depending on the sources and extraction techniques.

  7. 1 Δεκ 2019 · Therefore, fish gelatin may be a good nutrition supplement that can be used in combination with current drugs such as analgesics and anti-inflammatory drugs to treat osteoarthritis and to get a better curative effect.

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