Related Experiment Video
Updated: Nov 25, 2025

Studying Chronic Exposure of Mice to Ultraviolet B Radiation
Published on: August 19, 2025
Exosomal MiR-769-5p Exacerbates Ultraviolet-Induced Bystander Effect by Targeting TGFBR1
Na Ni1, Weiwei Ma1, Yanling Tao1
1Department of Dermatology, The First Affiliated Hospital of Nanjing Medical University, Nanjing, China.
Abstract:
Exosomal microRNAs have been investigated in bystander effect, but it is unclear whether microRNA works in ultraviolet radiation-induced bystander effects (UV-RIBEs) and what the underlying mechanism could be. Exosomes from ultraviolet (UV)-irradiated human skin fibroblasts (HSFs) were isolated and transferred to normal HSFs, followed by the detection of proliferation rate, oxidative damage level, and apoptosis rate. Exosomal miRNAs were evaluated and screened with miRNA sequencing and quantitative reverse transcriptase-polymerase chain reaction method. MiRNA shuttle and bystander photodamage reactions were observed after transfection of miR-769-5p. MiR-769-5p targeting gene transforming growth factor-β1 (TGFBR1), and TGFBR1 mRNA 3'-untranslated region (UTR) was assessed and identified by Western blotting and dual-luciferase reporter assay. Bystander effects were induced after being treated with isolated exosomes from UV-irradiated HSFs. Exosomal miR-769-5p expression was significantly upregulated. Human skin fibroblasts showed lower proliferation, increasing oxidative damage, and faster occurrence of apoptosis after transfection. Exosome-mediated transfer of miR-769-5p was observed. Upregulation of miR-769-5p induced bystander effects, whereas downregulation of miR-769-5p can suppress UV-RIBEs. In addition, miR-769-5p was found to downregulate TGFBR1 gene expression by directly targeting its 3'-UTR. Our results demonstrate that exosome-mediated miR-769-5p transfer could function as an intercellular messenger and exacerbate UV-RIBEs. MiR-769-5p inhibits the expression of TGFBR1 by targeting TGFBR1 mRNA 3'-UTR.
Insights
Exosomes transfer miR-769-5p between human skin fibroblasts, worsening ultraviolet radiation-induced bystander effects (UV-RIBEs). This microRNA targets TGFBR1, mediating photodamage and apoptosis in recipient cells.
Area of Science:
- Cell Biology
- Molecular Biology
- Dermatology
Background:
- Ultraviolet radiation (UV) exposure can induce bystander effects in skin cells.
- The role of exosomal microRNAs in UV-induced bystander effects (UV-RIBEs) remains unclear.
- Understanding intercellular communication mechanisms in UV photodamage is crucial for skin health.
Purpose of the Study:
- To investigate the role of exosomal microRNAs in UV-RIBEs.
- To elucidate the underlying mechanism of exosome-mediated intercellular communication in UV photodamage.
- To identify specific microRNAs involved in UV-RIBEs and their molecular targets.
Main Methods:
- Isolation and transfer of exosomes from UV-irradiated human skin fibroblasts (HSFs) to normal HSFs.
- Assessment of cell proliferation, oxidative damage, and apoptosis rates.
- miRNA sequencing, quantitative reverse transcriptase-polymerase chain reaction, Western blotting, and dual-luciferase reporter assay to identify and validate miRNA targets.
Main Results:
- Exosomes from UV-irradiated HSFs induced bystander effects in normal HSFs.
- Exosomal miR-769-5p was significantly upregulated and mediated UV-RIBEs.
- miR-769-5p directly targeted the 3'-untranslated region (UTR) of TGFBR1, downregulating its expression and leading to reduced proliferation, increased oxidative damage, and enhanced apoptosis.
Conclusions:
- Exosome-mediated transfer of miR-769-5p acts as an intercellular messenger exacerbating UV-RIBEs.
- miR-769-5p plays a critical role in mediating UV-induced photodamage and apoptosis through TGFBR1 inhibition.
- Targeting exosomal miR-769-5p may offer a therapeutic strategy for mitigating UV-induced skin damage.
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