microRNA Adenovirus Particles
Product DetailsApplicationCase
StudyFAQ
Product Details
MicroRNAs (miRNAs), 18–24 nt RNA molecules, regulate mRNA stability and translation. They impact cellular processes
and play a crucial role in cancer development. Recombinant adenoviruses provide efficient gene delivery to mammalian
cells without genomic integration, excelling in expressing proteins and delivering microRNA for translational
repression, making them exceptional for in vivo applications. Creative Biogene offers adenovirus miRNAs
with comprehensive human genome coverage. Our premade adenovirus-delivered miRNAs provide ready-to-use, efficient
gene silencing. For time-saving solutions, choose from a variety of hsa-miRNAs integrated into premade adenovirus.
Additionally, we offer custom miRNA adenovirus construction and production services to accommodate your research
budgets.
Benefits of Our microRNA Adenovirus Particles
- Comprehensive miRNome Coverage: Creative Biogene offers adenovirus miRNAs covering the human
genome, ensuring diverse tools for gene regulation studies.
- Efficient Gene Silencing: Ready-to-use adenovirus miRNAs enable reliable and efficient gene
silencing in target cells.
- Convenient Premade Adenovirus: Ready-to-transfect adenoviruses carrying hsa-miRNAs provide
convenience, saving time in experimental setup.
- Versatile in vivo Delivery: Adenovirus serves as an excellent tool for in
vivo microRNA delivery, enhancing possibilities for gene regulation studies.
- Custom miRNA Adenovirus Services: Creative Biogene offers customizable adenovirus services for
tailored miRNA constructs, providing flexibility in research design.
Browse All microRNA Adenovirus Particles
Application
miRNA adenovirus particles offer extensive coverage of the human genome. This innovative solution facilitates
in-depth exploration of miRNA functions, gene silencing mechanisms, and disease modeling. With a commitment to
advancing research, Creative Biogene ensures ready-to-use, high-quality adenovirus microRNAs, delivering a seamless
experience for researchers seeking reliable and comprehensive tools in the field of functional genomics. Utilize
Creative Biogene's microRNA Adenovirus Particles to accomplish the following:
- Functional Analysis of miRNA: MicroRNA Adenovirus provides researchers with a powerful tool for
in-depth exploration of specific miRNA functions, enabling the emulation of miRNA's biological roles.
- Gene Silencing Mechanism Studies: Facilitating gene silencing mediated by miRNA guidance,
contributes to unraveling the molecular mechanisms regulating gene expression within cells.
- Disease Model Research: In disease studies, the establishment of relevant disease models is
achievable using miRNA Adenovirus, particularly when specific miRNA expression abnormalities are associated with
disease onset and progression.
- Exploration of Therapeutic Strategies: Serving as a platform for investigating the potential
roles of miRNA in disease treatment, it aids in the discovery of novel therapeutic strategies.
- Efficient Gene Delivery: Overcoming limitations of traditional transfection methods, it
achieves efficient and stable miRNA delivery, proving particularly valuable for cell types that are challenging
to transfect.
Case Study
Case Study 1
In obesity-associated chronic inflammation, constraining subcutaneous white adipose tissue (WAT) expansion
accelerates insulin resistance and type 2 diabetes. The researchers correlate miR-30a expression in subcutaneous WAT
with insulin sensitivity in obese mice and humans. To test if restoring miR-30a enhances insulin sensitivity,
adenovirus (Adv) expressing miR-30a was injected into diabetic mice's subcutaneous fat pad. Exogenous miR-30a
expression in obese mice's WAT improved insulin sensitivity, reduced hepatic fat deposition, and decreased WAT
inflammation. Proteomic and RNA-Seq analyses revealed miR-30a targeting STAT1, limiting interferon-gamma (IFN-γ)
activity, preventing WAT restriction, and insulin sensitivity reduction.
Figure 1. DIO mice received subcutaneous injections of Adv expressing
miR-30a or GFP. Robust miR-30a expression, confirmed by GFP reporting, is significantly elevated in inguinal WAT.
(Koh, E. H., et al., 2018).
Case Study 2
Follicular development in ovaries is complex, impacting fertility. The researchers, using RNA sequencing, in situ
hybridization, and in vitro/ or in vivo models, explored miR-338-3p's role. Elevated miR-338-3p is
observed in ovarian insufficiency patients, affecting granulosa cell proliferation, estradiol production, and early
follicular development. MiR-338-3p's involvement in TGF-β-dependent regulation is suggested. In vivo,
miR-338-3p disrupts oocyte mitochondrial membrane potential and estrous cycles. This research informs on
miR-338-3p's role in abnormal follicular development, aiding infertility diagnosis and treatment.
Figure 2. Neonatal D1 and D4 female CD1 (ICR) mice underwent cervical
dislocation. Ovaries were isolated, categorized into three groups, and cultured. Adenoviral vectors (adv-EGFP or
adv-miR-338-3p) were transfected. After 48 h, ovaries were fixed and subjected to HE staining. (Xu Z, et
al., 2023).
FAQ
Q: What is the primary purpose of MicroRNA Adenovirus Particles in molecular research?
A: MicroRNA Adenovirus Particles are designed for the delivery and modulation of microRNA expression,
allowing researchers to investigate the functional implications of specific microRNAs in cellular
processes.
Q: How are these adenovirus particles engineered to target specific microRNAs?
A: MicroRNA Adenovirus Particles can be customized to carry and express specific microRNA sequences,
providing a targeted approach for the functional study of individual microRNAs.
Q: What advantages do these adenovirus particles offer in studying microRNA function compared to other
methods?
A: Adenovirus particles ensure efficient delivery of microRNAs into a wide range of cell types.
Researchers can modulate the expression of specific microRNAs, allowing precise control over
experimental conditions.
Q: In what experimental scenarios are MicroRNA Adenovirus Particles particularly valuable?
A: These particles are valuable in experiments where researchers aim to elucidate the roles of specific
microRNAs in processes such as cell differentiation, proliferation, apoptosis, and disease development.
Q: How can researchers control the level and duration of microRNA expression using these particles?
A: Researchers have control over the level and duration of microRNA expression by adjusting viral titers
and optimizing experimental conditions, allowing for temporal and dose-dependent regulation.
* For research use only. Not intended for any clinical use.