Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Successful i-GONAD in Brown Norway Rats by Modification of in vivo Electroporation Conditions

View through CrossRef
Improved-Genome editing via Oviductal Nucleic Acids Delivery (i-GONAD) was developed for in situ genome editing of the preimplantation embryos present within the oviductal lumen of mice. This method is based on intra-oviductal instillation of genome editing components and subsequent in vivo electroporation (EP) in the entire oviduct. Therefore, i-GONAD differs from the previous methods (i.e., zygote microinjection and in vitro EP) in producing genome-edited mice, which relied on ex vivo handling of preimplantation embryos and egg transfer to the recipient females. We have previously demonstrated that i-GONAD can be successfully applied to produce genome-edited rats, including albino Sprague-Dawley and albino Lewis rats (however, not pigmented Brown Norway [BN] rats). We observed that the successful i-GONAD was dependent on the mouse strain used; for example, in random-bred mice, such as ICR and C3H/He × C57BL/6, it was successful under relatively stringent electrical conditions but not in the C57BL/6 strain. Under less stringent conditions, i-GONAD was successful in the C57BL/6 strain. We speculated that this would also be true for i-GONAD using BN rats. On applying a current of >500 mA, we failed to obtain rat offspring (fetuses/newborns); however, i-GONAD under a current of 100-300 mA using NEPA21 (NEPA GENE) led to the production of genome-edited BN rats with efficiencies of 75%-100%. Similarly, i-GONAD, under a current of 150-200 mA using CUY21EDIT II (BEX Co.) led to the production of genome-edited BN rats with efficiencies of 24%-55%. These experiments suggest the importance of selecting the appropriate current value, depending on the rat strain used, when performing i-GONAD.
Title: Successful i-GONAD in Brown Norway Rats by Modification of in vivo Electroporation Conditions
Description:
Improved-Genome editing via Oviductal Nucleic Acids Delivery (i-GONAD) was developed for in situ genome editing of the preimplantation embryos present within the oviductal lumen of mice.
This method is based on intra-oviductal instillation of genome editing components and subsequent in vivo electroporation (EP) in the entire oviduct.
Therefore, i-GONAD differs from the previous methods (i.
e.
, zygote microinjection and in vitro EP) in producing genome-edited mice, which relied on ex vivo handling of preimplantation embryos and egg transfer to the recipient females.
We have previously demonstrated that i-GONAD can be successfully applied to produce genome-edited rats, including albino Sprague-Dawley and albino Lewis rats (however, not pigmented Brown Norway [BN] rats).
We observed that the successful i-GONAD was dependent on the mouse strain used; for example, in random-bred mice, such as ICR and C3H/He × C57BL/6, it was successful under relatively stringent electrical conditions but not in the C57BL/6 strain.
Under less stringent conditions, i-GONAD was successful in the C57BL/6 strain.
We speculated that this would also be true for i-GONAD using BN rats.
On applying a current of >500 mA, we failed to obtain rat offspring (fetuses/newborns); however, i-GONAD under a current of 100-300 mA using NEPA21 (NEPA GENE) led to the production of genome-edited BN rats with efficiencies of 75%-100%.
Similarly, i-GONAD, under a current of 150-200 mA using CUY21EDIT II (BEX Co.
) led to the production of genome-edited BN rats with efficiencies of 24%-55%.
These experiments suggest the importance of selecting the appropriate current value, depending on the rat strain used, when performing i-GONAD.

Related Results

BIOLOGI REPRODUKSI IKAN TENGGIRI (Scomberomorus commerson Lacepede, 1800) DI PERAIRAN TELUK KWANDANG, LAUT SULAWESI
BIOLOGI REPRODUKSI IKAN TENGGIRI (Scomberomorus commerson Lacepede, 1800) DI PERAIRAN TELUK KWANDANG, LAUT SULAWESI
Penelitian tentang aspek biologi tenggiri di Indonesia masih jarang dilakukan, padahal upaya pemanfaatannya telah lama dilakukan oleh nelayan. Ikan tenggiri di Teluk Kwandang penan...
Hormonal induction of gonad maturation in female tinfoil barb fish (Barbonymus schwanenfeldii) using spawnprim hormone
Hormonal induction of gonad maturation in female tinfoil barb fish (Barbonymus schwanenfeldii) using spawnprim hormone
The aim of this study was to analyze the effect of spawnprim hormone induction with different doses on gonadal maturity of tinfoil barb fish broodstock (Barbonymus schwanenfeldii)....
Abstract 819: Investigating the impacts of membrane potential on nano-electroporation efficacy
Abstract 819: Investigating the impacts of membrane potential on nano-electroporation efficacy
Abstract Electroporation has been shown to be an effective method of intracellular drug delivery and tissue ablation, however it faces significant challenges not onl...
Optimizing the electroporation parameters forHeterometopus palaeformis (strain RAJCA) v1
Optimizing the electroporation parameters forHeterometopus palaeformis (strain RAJCA) v1
Cell viability after incubation with different electroporation buffers, Phosphate buffered saline (PBS) is used as an electroporation buffer for many eukaryotic cells. However, we...
Optimizing the electroporation parameters forHeterometopus palaeformis (strain RAJCA) v1
Optimizing the electroporation parameters forHeterometopus palaeformis (strain RAJCA) v1
Cell viability after incubation with different electroporation buffers, Phosphate buffered saline (PBS) is used as an electroporation buffer for many eukaryotic cells. However, we...
Effects of 5,5′-diphenylhydantoin on the thyroid status in rats
Effects of 5,5′-diphenylhydantoin on the thyroid status in rats
Schröder-van der Elst JP, van der Heide D, van der Bent C, Kaptein E, Visser TJ, DiStefano JJ, Effects of 5,5′diphenylhydantoin on the thyroid status in rats. Eur J Endocrinol 1996...
Electroporation: An Effective Method For In Vivo Gene Delivery
Electroporation: An Effective Method For In Vivo Gene Delivery
Background: Gene therapy is a promising approach for the treatment of various diseases, including cancer, hereditary disorders, and some viral infections. The development of effici...
Single Prolonged Stress Alters Vasopressin and Orexin System Expression in Sprague Dawley Rats
Single Prolonged Stress Alters Vasopressin and Orexin System Expression in Sprague Dawley Rats
Posttraumatic stress disorder (PTSD) is a complex psychiatric disorder triggered by a terrifying event, causing severe anxiety and nightmares. Studies showed that patients with PTS...

Back to Top