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GSPure® Circ-OCT4 (homo)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-OCT4 (mmu)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-OVA
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-PRKCI
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-PTEN-L (homo)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-PTEN-L (mmu)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-PVT1 (homo)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-PVT1 (mmu)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-SMARCA5
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-SOX2 (homo)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-SOX2 (mmu)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-SOX8 (homo)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-SOX8 (mmu)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-sTGFβR2 (homo)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-sTGFβR2 (mmu)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-TERT
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-Tert
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-TP53
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-Trp53
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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GSPure® Circ-VEGFA165 (homo)
100 μg / 500 μg / 1 mg / 5 mg In recent years, a large number ofcircRNA molecules have been found in organisms to exert biological functions through various pathways. Breakthrough research showing that natural circRNAs can serve as translation templates to directly translate peptides or proteins has made it possible to develop circRNA as a carrier for therapeutic drugs; compared with linear RNAs such as mRNA, the closed-loop structure of circRNA greatly prolongs its half-life in the body, and this stable structure is highly favorable for sustained expression of functional proteins/peptides.

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