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Sinteza antigenov s transgenimi rastlinami za izdelavo cepiv proti hepatitisu B
ID Kuhar, Nika (Author), ID Luthar, Zlata (Mentor) More about this mentor... This link opens in a new window

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Abstract
Hepatitis B je globalni zdravstveni problem, ki povzroča akutne in kronične okužbe jeter ter lahko vodi do ciroze in jetrnega raka. Uporaba transgenih rastlin za sintezo HBsAg antigenov predstavlja napredek v proizvodnji cepiv proti hepatitisu B. Ta metoda omogoča izdelavo na stroškovno učinkovit, varen in okolju prijazen način. Gensko spremenjene rastline, ki sintetizirajo HBsAg, olajšajo povečanje proizvodnje cepiv in zmanjšujejo tveganja, povezana s tradicionalnimi metodami. Postopek vključuje gensko transformacijo rastlinskih celic z vnosom transgena za HBsAg, čemur sledi regeneracija, ekspresija HBeAg oz. antigena E, ekstrakcija in čiščenje antigena s pomočjo naprednih tehnik. Prednosti te metode vključujejo nižje stroške proizvodnje in večjo varnost cepiv. Poleg tega je ta pristop prijazen do okolja in trajnostno naravnan. Uporaba transgenih rastlin za proizvodnjo cepiv lahko znatno izboljša dostopnost cepiv, zlasti v državah z omejenimi viri, kar bi prispevalo k zmanjšanju razširjenosti hepatitisa B in izboljšanju javnega zdravja. Optimizacije cepiva s vključenimi antigeni potekajo na večih ravneh. Med najpomembnejše spadajo izbira rastlinske vrste, oblike transgena ter kombinacije različnih antigenov virusa hepatitisa B. Izboljšave na področju sinteze antigenov in razvoja cepiv ter njihove učinkovite uporabe zmanjšujejo pojavnost novih okužb ter dolgoročne zdravstvene zaplete, povezane s to boleznijo.

Language:Slovenian
Keywords:transgene rastline, sinteza antigena, antigen HbeAg, virus HBV, hepatitis B, cepivo
Work type:Bachelor thesis/paper
Organization:BF - Biotechnical Faculty
Year:2024
PID:20.500.12556/RUL-161205 This link opens in a new window
COBISS.SI-ID:207182083 This link opens in a new window
Publication date in RUL:08.09.2024
Views:44
Downloads:12
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Secondary language

Language:English
Title:Synthesis of antigens with transgenic plants for the production of vaccines against hepatitis B
Abstract:
Hepatitis B is a global health issue that causes acute and chronic liver infections and can lead to cirrhosis and liver cancer. The use of transgenic plants for the synthesis of HBsAg antigens represents a significant advancement in the production of vaccines against hepatitis B. This method allows for cost-effective, safe, and environmentally friendly vaccine production. Genetically modified plants that synthesize HBsAg facilitate increased vaccine production and reduce risks associated with traditional methods. The process involves the genetic transformation of plant cells by introducing the HBsAg gene, followed by antigen extraction and purification using advanced techniques. The advantages of this method include lower production costs and greater vaccine safety. Additionally, this approach is more sustainable and environmentally friendly. The use of transgenic plants for vaccine production can significantly improve vaccine accessibility, especially in resource-limited countries, contributing to the reduction of hepatitis B prevalence and the improvement of public health. Vaccine optimization occurs at multiple levels of antigen acquisition, with key aspects including the choice of plant species, the form of the transgene, and the combinations of different hepatitis B virus antigens. Improvements in antigen synthesis and vaccine development reduce the incidence of new infections and long-term health complications associated with this disease.

Keywords:trangenic plants, antigen synthesis, antigen HBeAg, virus HBV, hepatitis B, vaccine

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