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huDMD(E8-30) Mouse
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huDMD(E8-30) Mouse
製品名
huDMD(E8-30) Mouse
製品ID
I001224
系統名
C57BL/6NCya-Dmdtm4(hDMD Exon 8-30)/Cya
背景情報
C57BL/6NCya
状況
このマウス系統を論文で使用する場合は、「huDMD(E8-30) Mouse(カタログ番号I001224)はサイアジェンから購入しました。」と引用してください。
HUGO-GT Humanized Models
製品タイプ
年齢
遺伝子型
性別
数量
標準的な配送方法では、少なくとも3匹のヘテロ接合体キャリアを保証しています。ホモ接合体キャリアや指定された性別の個体の繁殖サービスも利用可能です。
お見積もりについてはこちらまでご連絡ください
HUGO-GT Humanized Models
基本情報
検証 Data
関連リソース
基本情報
遺伝子名
遺伝子別名
BMD, CMD3B, MRX85, DXS142, DXS164, DXS206, DXS230, DXS239, DXS268, DXS269, DXS270, DXS272
NCBI ID
染色体
Chr X
MGI ID
さらに
系統詳細
Duchenne Muscular Dystrophy (DMD) is a severe, progressive, and disabling X-linked recessive genetic disorder characterized primarily by muscle atrophy. This disease leads to motor impairments, eventually requiring assisted ventilation, and often results in premature death. The primary cause of DMD is mutations in the DMD gene, which encodes the dystrophin protein. These mutations lead to a reduction or absence of dystrophin in muscle tissue, resulting in muscle atrophy and related complications [1]. The lack of dystrophin leads to the breakdown of the dystrophin-associated protein complex (DAPC) within the muscle membrane, disrupting the interaction between actin and the extracellular matrix, making the muscles more susceptible to damage. This susceptibility results in the gradual loss of muscle tissue and function, potentially leading to cardiomyopathy [2]. Researchers have identified thousands of different DMD gene mutations in patients with DMD. Deletion mutations account for approximately 60%–70%, while duplication mutations account for 5%–15%. These mutations are primarily concentrated in hotspot regions of the DMD gene, specifically between exons 45-55 (47%) and exons 3-9 (7%) [1].
Currently, gene therapy approaches for Duchenne Muscular Dystrophy (DMD) primarily include exon skipping and AAV supplementation, as well as emerging gene editing techniques like CRISPR. The exon skipping strategy involves using antisense oligonucleotide (ASO) drugs to bind to specific sequences of pre-mRNA, skipping the mutated exon and restoring the open reading frame (ORF) integrity, thus producing a truncated but partially functional dystrophin protein. Several ASO drugs targeting the DMD gene have been approved, such as Eteplirsen (targeting exon 51), Golodirsen (targeting exon 53), and Casimersen (targeting exon 45) developed by Sarepta, and Viltolarsen (targeting exon 53) developed by Nippon Shinyaku. Since most ASO and CRISPR-based gene editing therapies target the human DMD gene, humanizing mouse genes helps accelerate clinical applications for DMD therapies, considering the genetic differences between animals and humans.
The huDMD(E8-30) mouse is a humanized model of exons 8-30 of the Dmd gene, used for researching Duchenne Muscular Dystrophy. Homozygotes are viable and fertile. In addition, based on the independently developed TurboKnockout fusion BAC recombination technology, Cyagen provides other humanized models such as [hE49-53], [hE49-53, del E50], [hE44-45], [hE44-45, del E44], and [hE44-45, c.6438+2 T to A], covering most popular research areas and offering customized services based on different mutation needs.
参考文献
Duan D, Goemans N, Takeda S, Mercuri E, Aartsma-Rus A. Duchenne muscular dystrophy. Nat Rev Dis Primers. 2021 Feb 18;7(1):13.
Babbs A, Chatzopoulou M, Edwards B, Squire SE, Wilkinson IVL, Wynne GM, Russell AJ, Davies KE. From diagnosis to therapy in Duchenne muscular dystrophy. Biochem Soc Trans. 2020 Jun 30;48(3):813-821.
系統作製戦略
The genomic region spanning intron 7 (~5 kb) to intron 30 (~5 kb) of the mouse Dmd gene is replaced with the corresponding sequence from the human DMD gene.

Figure 1. Gene editing strategy of huDMD(E8-30) mice.
適用分野
Research on the pathogenesis of Duchenne Muscular Dystrophy (DMD);
Preclinical efficacy evaluation of DMD therapeutic drugs.
検証 Data
1. Sequencing
(A) Schematic of RT-PCR primer design for the human DMD gene. Five pairs of specific primers (F1/R1 to F5/R5) are shown on the hDMD transcript to ensure comprehensive coverage of the target region. (B) Sanger sequencing chromatogram of the RT-PCR product. The sequence of the amplified region is identical to the human DMD reference sequence, confirming successful humanization of exons 8–30 and accurate hDMD transcript expression in huDMD(E8-30) mice.

Figure 2. Sequencing results of huDMD(E8-30) mice.
2. Gene Expression
RT-qPCR results show that human DMD transcript is significantly expressed in the skeletal muscle, cerebral cortex, and heart of huDMD(E8-30) mice, but is undetectable in wild-type (WT) mice. Conversely, mouse Dmd is robustly expressed in WT mice but absent in huDMD(E8-30) mice (Bars represent mean±SEM).

Figure 3. Gene expression profiling in skeletal muscle, cerebral cortex, and heart of huDMD(E8-30) and wild-type (WT) mice (6-week-old hemizygous male mice; n≥3).
Note: Primers used to detect human DMD and mouse Dmd expression both target the Exon 13–14 region of their respective genes.
3. Protein Expression
Western blot analysis shows that huDMD(E8-30) mice express DMD protein normally in skeletal muscle and heart, with expression levels comparable to those in wild-type (WT) mice.

Figure 4. Western blot analysis of DMD protein expression in skeletal muscle and heart of huDMD(E8-30) and wild-type (WT) mice (6-week-old hemizygous male mice).
Note: The anti-mouse DMD antibody used for detection targets amino acids 3550–3678, corresponding to the genomic region of exons 78–79, which lies downstream of the humanized region.
4. Histopathology
(1)Gastrocnemius Muscle
H&E staining revealed that, compared to wild-type (WT) mice, huDMD(E8-30) mice exhibited well-defined myofiber boundaries, irregular myofiber shapes, and tightly packed, orderly alignment. Myonuclei were properly localized to the periphery, with no obvious signs of necrosis or inflammation. Scale bars: 500 µm (low magnification) and 50 µm (high magnification).

Figure 5. Histopathological assessment of gastrocnemius muscle in huDMD(E8-30) and wild-type (WT) mice via H&E staining (8-week-old hemizygous male mice).
(2)Myocardium
In both huDMD(E8-30) and wild-type (WT) mice, the endocardium and epicardium were clearly defined. Myocardial fibers were regularly arranged with distinct boundaries and consistent orientation. Cardiomyocytes exhibited abundant cytoplasm and contained one or two centrally located, oval nuclei. No obvious necrosis or inflammatory cell infiltration was observed. Scale bars: 500 µm (low magnification) and 50 µm (high magnification).

Figure 6. Histopathological assessment of myocardium in huDMD(E8-30) and wild-type (WT) mice via H&E staining (8-week-old hemizygous male mice).
関連リソース
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