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  2. Antisense therapy - Wikipedia

    en.wikipedia.org/wiki/Antisense_therapy

    Antisense therapy is a form of treatment that uses antisense oligonucleotides (ASOs) to target messenger RNA (mRNA). ASOs are capable of altering mRNA expression through a variety of mechanisms, including ribonuclease H mediated decay of the pre-mRNA, direct steric blockage, and exon content modulation through splicing site binding on pre-mRNA. [1]

  3. Oligonucleotide - Wikipedia

    en.wikipedia.org/wiki/Oligonucleotide

    Antisense oligonucleotides can be used to target a specific, complementary (coding or non-coding) RNA. If binding takes place this hybrid can be degraded by the enzyme RNase H. [12] RNase H is an enzyme that hydrolyzes RNA, and when used in an antisense oligonucleotide application results in 80-95% down-regulation of mRNA expression. [6]

  4. Antisense RNA - Wikipedia

    en.wikipedia.org/wiki/Antisense_RNA

    Secondly, off target toxicity also represents a big problem. Despite the locus-specific nature of the endogenous asRNAs, only 10–50% synthesized oligonucleotides showed expected targeting effect. One possible reason for this problem is the high requirement on the structure of the asRNAs to be recognized by the target sequence and RNase H.

  5. Off-target activity - Wikipedia

    en.wikipedia.org/wiki/Off-target_activity

    An example of this is the repurposing of the antimineralocorticoid and diuretic spironolactone, which was found to produce feminization and gynecomastia as side effects, for use as an antiandrogen in the treatment of androgen-dependent conditions like acne and hirsutism in women. [1] Metformin also causes off-target activity. [citation needed]

  6. Gapmer - Wikipedia

    en.wikipedia.org/wiki/Gapmer

    Gapmer antisense oligonucleotides (ASOs) have the potential to cause unintended, off-target effects. These off-target effects are produced when the gapmer binds to mRNA with a sufficient degree of complementarity to the target mRNA, blocking or down-regulating the translation of unintended proteins. [12] The functional consequences of gapmer ...

  7. Morpholino - Wikipedia

    en.wikipedia.org/wiki/Morpholino

    It appears that these effects are sequence-specific; as in most cases, if a Morpholino is associated with non-target effects, the 4-base mismatch Morpholino will not trigger these effects. A cause for concern in the use of Morpholinos is the potential for "off-target" effects.

  8. Pharmacogenomics - Wikipedia

    en.wikipedia.org/wiki/Pharmacogenomics

    The interaction between the drug and this site results in a modification of the target that may include inhibition or potentiation. [15] Most of the pharmacogenetic interactions that involve drug targets are within the field of oncology and include targeted therapeutics designed to address somatic mutations (see also Cancer Pharmacogenomics ).

  9. Antagomir - Wikipedia

    en.wikipedia.org/wiki/Antagomir

    Antagomirs, also known as anti-miRs, are a class of chemically engineered oligonucleotides designed to silence endogenous microRNAs (also known as miRNAs or miRs). [1] [2] [3] Antagomirs are a kind of antisense oligonucleotide, as their sequence is complementary to their specific miRNA target. Their structure has modifications so as to make ...