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1.
Arch Dermatol Res ; 315(7): 2003-2009, 2023 Sep.
Article En | MEDLINE | ID: mdl-36877308

BACKGROUND: Lymphocyte enhancer-binding factor-1 (LEF1) is responsible for melanocyte proliferation, migration and differentiation and its downregulation may result in depigmentation in vitiligo. Narrowband UVB (NB-UVB) phototherapy is known to enhance melanocyte migration from hair follicles to lesional epidermis; hence, it may have a role in the upregulation of LEF1. OBJECTIVES: We intended to assess the expression of LEF1 both before and after NB-UVB therapy and correlate it with the extent of re-pigmentation. MATERIALS AND METHODS: In this prospective cohort study, 30 patients of unstable non-segmental vitiligo were administered NB-UVB phototherapy for 24 weeks. Skin biopsies were obtained from acral and non-acral sites in all patients, both prior to initiation and after completion of phototherapy and LEF1 expression was measured. RESULTS: Amongst the 16 patients who completed the study, at 24 weeks, all patients achieved > 50% re-pigmentation. However, > 75% re-pigmentation was achieved in only 11.1% of acral patches, whereas it was achieved in a significantly higher number of non-acral patches (66.6%) (p = 0.05). A significant increase was observed in the mean fluorescent intensity of the LEF1 gene in both acral as well as non-acral areas at 24 weeks as compared to baseline (p = 0.0078), However, no difference was observed between acral and non-acral lesions in the LEF1 expression at 24 weeks or the change in LEF1 expression from baseline. CONCLUSION: LEF1 expression modulates the re-pigmentation of vitiligo lesions after treatment with NBUVB phototherapy.


Lymphoid Enhancer-Binding Factor 1 , Pigmentation , Vitiligo , Lymphoid Enhancer-Binding Factor 1/genetics , Lymphoid Enhancer-Binding Factor 1/metabolism , Ultraviolet Rays , Phototherapy/adverse effects , Phototherapy/standards , Vitiligo/genetics , Vitiligo/therapy , Humans , Male , Female , Adult , Middle Aged , Pigmentation/genetics , Pigmentation/radiation effects , Up-Regulation/radiation effects , Prospective Studies , India , Immunohistochemistry
2.
J Photochem Photobiol B ; 241: 112670, 2023 Apr.
Article En | MEDLINE | ID: mdl-36841175

BACKGROUND: Antimicrobial blue light (aBL) kills a variety of bacteria, including Porphyromonas gingivalis. However, little is known about the transcriptomic response of P. gingivalis to aBL therapy. This study was designed to evaluate the selective cytotoxicity of aBL against P. gingivalis over human cells and to further investigate the genetic response of P. gingivalis to aBL at the transcriptome level. METHODS: Colony forming unit (CFU) testing, confocal laser scanning microscopy (CLSM), and scanning electron microscopy (SEM) were used to investigate the antimicrobial effectiveness of blue light against P. gingivalis. The temperatures of the irradiated targets were measured to prevent overheating. Multiple fluorescent probes were used to quantify reactive oxygen species (ROS) generation after blue-light irradiation. RNA sequencing (RNA-seq) was used to investigate the changes in global gene expression. Following the screening of target genes, real-time quantitative polymerase chain reaction (RT-qPCR) was performed to confirm the regulation of gene expression. RESULTS: A 405 nm aBL at 100 mW/cm2 significantly killed P. gingivalis within 5 min while sparing human gingival fibroblasts (HGFs). No obvious temperature changes were detected in the irradiated surface under our experimental conditions. RNA-seq showed that the transcription of multiple genes was regulated, and RT-qPCR revealed that the expression levels of the genes RgpA and RgpB, which may promote heme uptake, as well as the genes Ftn and FetB, which are related to iron homeostasis, were significantly upregulated. The expression levels of the FeoB-2 and HmuR genes, which are related to hydroxyl radical scavenging, were significantly downregulated. CONCLUSIONS: aBL strengthens the heme uptake and iron export gene pathways while reducing the ROS scavenging pathways in P. gingivalis, thus improving the accumulation of endogenous photosensitizers and enhancing oxidative damage to P. gingivalis.


Color , Gene Expression Regulation, Bacterial , Genes, Bacterial , Iron , Light , Porphyrins , Porphyromonas gingivalis , Porphyrins/metabolism , Iron/metabolism , Porphyromonas gingivalis/cytology , Porphyromonas gingivalis/genetics , Porphyromonas gingivalis/metabolism , Porphyromonas gingivalis/radiation effects , Biological Transport/genetics , Biological Transport/radiation effects , Humans , Gingiva/cytology , Fibroblasts/cytology , Fibroblasts/radiation effects , Hydroxyl Radical/metabolism , Heme/metabolism , Up-Regulation/radiation effects , Homeostasis/radiation effects , Down-Regulation/radiation effects , Microbial Viability/radiation effects , Reactive Oxygen Species/metabolism , Aerobiosis , Genes, Bacterial/radiation effects , Gene Expression Regulation, Bacterial/genetics , Gene Expression Regulation, Bacterial/radiation effects
3.
Cells ; 11(2)2022 01 12.
Article En | MEDLINE | ID: mdl-35053361

DAF-16-dependent activation of a dauer-associated genetic program in the C. elegans insulin/IGF-1 daf-2(e1370) mutant leads to accumulation of large amounts of glycogen with concomitant upregulation of glycogen synthase, GSY-1. Glycogen is a major storage sugar in C. elegans that can be used as a short-term energy source for survival, and possibly as a reservoir for synthesis of a chemical chaperone trehalose. Its role in mitigating anoxia, osmotic and oxidative stress has been demonstrated previously. Furthermore, daf-2 mutants show increased abundance of the group 3 late embryogenesis abundant protein LEA-1, which has been found to act in synergy with trehalose to exert its protective role against desiccation and heat stress in vitro, and to be essential for desiccation tolerance in C. elegans dauer larvae. Here we demonstrate that accumulated glycogen is not required for daf-2 longevity, but specifically protects against hyperosmotic stress, and serves as an important energy source during starvation. Similarly, lea-1 does not act to support daf-2 longevity. Instead, it contributes to increased resistance of daf-2 mutants to heat, osmotic, and UV stress. In summary, our experimental results suggest that longevity and stress resistance can be uncoupled in IIS longevity mutants.


Caenorhabditis elegans Proteins , Caenorhabditis elegans , Glycogen , Longevity , Receptor, Insulin , Stress, Physiological , Up-Regulation , Animals , Caenorhabditis elegans/physiology , Caenorhabditis elegans/radiation effects , Caenorhabditis elegans Proteins/genetics , Caenorhabditis elegans Proteins/metabolism , Energy Metabolism/radiation effects , Glycogen/biosynthesis , Glycogen/metabolism , Heat-Shock Response/radiation effects , Longevity/physiology , Longevity/radiation effects , Mutation/genetics , Osmotic Pressure/radiation effects , Receptor, Insulin/genetics , Receptor, Insulin/metabolism , Stress, Physiological/radiation effects , Survival Analysis , Trehalose/metabolism , Ultraviolet Rays , Up-Regulation/radiation effects
4.
Int J Mol Sci ; 23(2)2022 Jan 17.
Article En | MEDLINE | ID: mdl-35055167

The receptor tyrosine kinase AXL (RTK-AXL) is implicated in therapy resistance and tumor progression in glioblastoma multiforme (GBM). Here, we investigated therapy-induced receptor modifications and how endogenous RTK-AXL expression and RTK-AXL inhibition contribute to therapy resistance in GBM. GBM cell lines U118MG and SF126 were exposed to temozolomide (TMZ) and radiation (RTX). Receptor modifications in response to therapy were investigated on protein and mRNA levels. TMZ-resistant and RTK-AXL overexpressing cell lines were exposed to increasing doses of TMZ and RTX, with and without RTK-AXL tyrosine kinase inhibitor (TKI). Colorimetric microtiter (MTT) assay and colony formation assay (CFA) were used to assess cell viability. Results showed that the RTK-AXL shedding product, C-terminal AXL (CT-AXL), rises in response to repeated TMZ doses and under hypoxia, acts as a surrogate marker for radio-resistance. Endogenous RTX-AXL overexpression leads to therapy resistance, whereas combination therapy of TZM and RTX with TKI R428 significantly increases therapeutic effects. This data proves the role of RTK-AXL in acquired and intrinsic therapy resistance. By demonstrating that therapy resistance may be overcome by combining AXL TKI with standard treatments, we have provided a rationale for future study designs investigating AXL TKIs in GBM.


Benzocycloheptenes/pharmacology , Brain Neoplasms/genetics , Drug Resistance, Neoplasm/drug effects , Glioblastoma/genetics , Proto-Oncogene Proteins/genetics , Receptor Protein-Tyrosine Kinases/genetics , Temozolomide/pharmacology , Triazoles/pharmacology , Brain Neoplasms/metabolism , Brain Neoplasms/therapy , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Proliferation/radiation effects , Cell Survival/drug effects , Cell Survival/radiation effects , Combined Modality Therapy , Drug Resistance, Neoplasm/radiation effects , Gene Expression Regulation, Neoplastic/drug effects , Gene Expression Regulation, Neoplastic/radiation effects , Glioblastoma/metabolism , Glioblastoma/therapy , Humans , Proto-Oncogene Proteins/metabolism , Receptor Protein-Tyrosine Kinases/metabolism , Signal Transduction/drug effects , Signal Transduction/radiation effects , Tumor Hypoxia/drug effects , Tumor Hypoxia/radiation effects , Up-Regulation/drug effects , Up-Regulation/radiation effects , Axl Receptor Tyrosine Kinase
5.
Molecules ; 26(24)2021 Dec 17.
Article En | MEDLINE | ID: mdl-34946730

Excess melanin deposition in the skin causes cosmetic problems. HSP70 upregulation decreases microphthalmia-associated transcription factor (MITF) expression, which eventually decreases tyrosinase activity and melanogenesis. Ultraviolet (UV) radiation upregulates p53, which increases the melanocortin receptor (MC1R) and MITF. Furthermore, HSP70 decreases p53 and radiofrequency irradiation (RF) increases HSP70. We evaluated whether RF increased HSP70 and decreased p53, consequently decreasing the MITF/tyrosinase pathway and melanogenesis in UV-B radiated animal skin. Various RF combinations with 50, 100, and 150 ms and 5, 10, and 15 W were performed on the UV-B radiated mouse skin every 2 d for 28 d. When RF was performed with 100 ms/10 W, melanin deposition, evaluated by Fontana-Masson staining, decreased without skin crust formation in the UV-B radiated skin. Thus, we evaluated the effect of RF on decreasing melanogenesis in the HEMn and UV-B radiated skin at a setting of 100 ms/10 W. HSP70 expression was decreased in the UV-B radiated skin but was increased by RF. The expression of p53, MC1R, and MITF increased in the UV-B radiated skin but was decreased by RF. The expression of p53, MC1R, and MITF increased in the α-MSH treated HEMn but was decreased by RF. The decreasing effects of RF on p53, MC1R, CREB and MITF were higher than those of HSP70-overexpressed HEMn. The decreasing effect of RF on p53, MC1R, CREB, and MITF disappeared in the HSP70-silenced HEMn. MC1R, CREB, and MITF were not significantly decreased by the p53 inhibitor in α-MSH treated HEMn. RF induced a greater decrease in MC1R, CREB, and MITF than the p53 inhibitor. Therefore, RF may have decreased melanin synthesis by increasing HSP70 and decreasing p53, thus decreasing MC1R/CREB/MITF and tyrosinase activity.


HSP70 Heat-Shock Proteins/biosynthesis , Melanins/biosynthesis , Radio Waves , Skin Pigmentation/radiation effects , Ultraviolet Rays , Up-Regulation/radiation effects , Animals , Male , Mice
6.
Int J Mol Sci ; 22(23)2021 Dec 01.
Article En | MEDLINE | ID: mdl-34884828

Rapeseed (Brassica napus) is one of the major important oil crops worldwide and is largely cultivated in the Qinghai-Tibetan plateau (QTP), where long and strong solar-radiation is well-known. However, the molecular mechanisms underlying rapeseed's response to light stress are largely unknown. In the present study, the color of rapeseed seedlings changed from green to purple under high light (HL) stress conditions. Therefore, changes in anthocyanin metabolism and the transcriptome of rapeseed seedlings cultured under normal light (NL) and HL conditions were analyzed to dissect how rapeseed responds to HL at the molecular level. Results indicated that the contents of anthocyanins, especially glucosides of cyanidin, delphinidin, and petunidin, which were determined by liquid chromatography-mass spectrometry (LC-MS), increased by 9.6-, 4.2-, and 59.7-fold in rapeseed seedlings exposed to HL conditions, respectively. Next, RNA-sequencing analysis identified 7390 differentially expressed genes (DEGs), which included 4393 up-regulated and 2997 down-regulated genes. Among the up-regulated genes, many genes related to the anthocyanin-biosynthetic pathway were enriched. For example, genes encoding dihydroflavonol reductase (BnDFR) and anthocyanin synthase (BnANS) were especially induced by HL conditions, which was also confirmed by RT-qPCR analysis. In addition, two PRODUCTION OF ANTHOCYANIN PIGMENTATION 2 (BnPAP2) and GLABRA3 (BnGL3) genes encoding MYB-type and bHLH-type transcription factors, respectively, whose expression was also up-regulated by HL stress, were found to be associated with the changes in anthocyanin biosynthesis. Many genes involved in the jasmonic acid (JA)-biosynthetic pathway were also up-regulated under HL conditions. This finding, which is in agreement with the well-known positive regulatory role of JA in anthocyanin biosynthesis, suggests that the JA may also play a key role in the responses of rapeseed seedlings to HL. Collectively, these data indicate that anthocyanin biosynthesis-related and JA biosynthesis-related pathways mediate HL responses in rapeseed. These findings collectively provide mechanistic insights into the mechanisms involved in the response of rapeseed to HL stress, and the identified key genes may potentially be used to improve HL tolerance of rapeseed cultivars through genetic engineering or breeding strategies.


Anthocyanins/biosynthesis , Biosynthetic Pathways/genetics , Cyclopentanes/metabolism , Oxylipins/metabolism , Transcriptome/radiation effects , Anthocyanins/analysis , Brassica napus/chemistry , Brassica napus/growth & development , Brassica napus/metabolism , Cyclopentanes/analysis , Light , Oxylipins/analysis , Pigmentation/genetics , Plant Leaves/chemistry , Plant Leaves/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , RNA, Plant/metabolism , Transcription Factors/genetics , Transcription Factors/metabolism , Up-Regulation/radiation effects
7.
PLoS Biol ; 19(11): e3001471, 2021 11.
Article En | MEDLINE | ID: mdl-34788294

Trichoplax adhaerens is the simplest multicellular animal with tissue differentiation and somatic cell turnover. Like all other multicellular organisms, it should be vulnerable to cancer, yet there have been no reports of cancer in T. adhaerens or any other placozoan. We investigated the cancer resistance of T. adhaerens, discovering that they are able to tolerate high levels of radiation damage (218.6 Gy). To investigate how T. adhaerens survive levels of radiation that are lethal to other animals, we examined gene expression after the X-ray exposure, finding overexpression of genes involved in DNA repair and apoptosis including the MDM2 gene. We also discovered that T. adhaerens extrudes clusters of inviable cells after X-ray exposure. T. adhaerens is a valuable model organism for studying the molecular, genetic, and tissue-level mechanisms underlying cancer suppression.


DNA Repair/genetics , Placozoa/genetics , Radiation Tolerance/genetics , Up-Regulation/genetics , Animals , DNA Damage/genetics , DNA Damage/radiation effects , DNA Repair/radiation effects , Gene Expression Regulation/radiation effects , Placozoa/anatomy & histology , Placozoa/radiation effects , Radiation Exposure , Sequence Analysis, DNA , Up-Regulation/radiation effects , Whole Genome Sequencing , X-Rays
8.
J Photochem Photobiol B ; 223: 112296, 2021 Oct.
Article En | MEDLINE | ID: mdl-34450363

Mycosporine-like amino acids (MAAs) are promising natural antioxidative compounds with cosmetic applications for the prevention of skin aging. In this study, we evaluated the protective effects of natural resources-derived MAA-containing emulsions on mouse ear tissue exposed to UV irradiation. DBA/2CrSlc male mice were irradiated by UV light at 120 mJ/cm2/day for 9 days. MAA-containing emulsions were prepared using mycosporine-2-glycine (M2G), shinorine (SHI), or porphyra-334 (P334) and applied to mice ears at a dose of 50 mg/ear/day. After that, collected ear skin tissues were subjected to the observation of melanocytes, investigation for antioxidative stress markers, and measurement of advanced glycation-end products (AGEs). In addition, the antiglycative effects of MAAs were investigated in vitro. MAA-containing emulsions prepared in this study upregulated the activities of total superoxide dismutase (SOD) and catalase (CAT) in mouse ear tissue exposed to UV irradiation. Increased accumulation of copper/zinc (Cu/Zn) -SOD and/or CAT was also found in mouse ear tissue on which M2G- or P334-containing emulsion had been applied. Furthermore, P334 exhibited an antiglycative effect on elastin in vitro. Although MAA-containing emulsions have antioxidative effects as well as in vitro antiglycation, a protective effect by the accumulation of AGEs in mice ears exposed to UV was not observed. Thus, application of MAA-containing emulsions stimulated or protected the expression of antioxidant-associated proteins, thereby leading to upregulation of antioxidative activities in mouse ear skin samples tissues under UV irradiation. Additional optimization of MAA-containing emulsions, including composition, process, and dosage should be considered for further improvement of efficacy.


Antioxidants/pharmacology , Emulsions/chemistry , Skin/drug effects , Ultraviolet Rays , Animals , Antioxidants/chemistry , Catalase/metabolism , Cyclohexanols/chemistry , Cyclohexanols/pharmacology , Cyclohexanones/chemistry , Cyclohexanones/pharmacology , Cyclohexylamines/chemistry , Cyclohexylamines/pharmacology , Glycine/analogs & derivatives , Glycine/chemistry , Glycine/pharmacology , Glycosylation/drug effects , Glycosylation/radiation effects , Male , Mice , Mice, Inbred DBA , Skin/radiation effects , Superoxide Dismutase/metabolism , Up-Regulation/drug effects , Up-Regulation/radiation effects
9.
Cells ; 10(8)2021 08 13.
Article En | MEDLINE | ID: mdl-34440856

The primary cause of colorectal cancer (CRC) recurrence is increased distant metastasis after radiotherapy, so there is a need for targeted therapeutic approaches to reduce the metastatic-relapse risk. Dysregulation of the cell-surface glycoprotein podocalyxin-like protein (PODXL) plays an important role in promoting cancer-cell motility and is associated with poor prognoses for many malignancy types. We found that CRC cells exposed to radiation demonstrated increased TGFß and PODXL expressions, resulting in increased migration and invasiveness due to increased extracellular matrix deposition. In addition, both TGFß and PODXL were highly expressed in tissue samples from radiotherapy-treated CRC patients compared to those from patients without this treatment. However, it is unclear whether TGFß and PODXL interactions are involved in cancer-progression resistance after radiation exposure in CRC. Here, using CRC cells, we showed that silencing PODXL blocked radiation-induced cell migration and invasiveness. Cell treatment with galunisertib (a TGFß-pathway inhibitor) also led to reduced viability and migration, suggesting that its clinical use may enhance the cytotoxic effects of radiation and lead to the effective inhibition of CRC progression. Overall, the results demonstrate that downregulation of TGFß and its-mediated PODXL may provide potential therapeutic targets for patients with radiotherapy-resistant CRC.


Colorectal Neoplasms/pathology , Radiation, Ionizing , Sialoglycoproteins/metabolism , Transforming Growth Factor beta/metabolism , Up-Regulation/radiation effects , Cadherins/genetics , Cadherins/metabolism , Cell Line, Tumor , Cell Movement/drug effects , Cell Movement/radiation effects , Cell Survival/drug effects , Cell Survival/radiation effects , Colorectal Neoplasms/metabolism , Epithelial-Mesenchymal Transition/genetics , Epithelial-Mesenchymal Transition/radiation effects , Humans , Neoplasm Metastasis , Prognosis , Pyrazoles/pharmacology , Quinolines/pharmacology , RNA Interference , RNA, Small Interfering/metabolism , Sialoglycoproteins/antagonists & inhibitors , Sialoglycoproteins/genetics , Transforming Growth Factor beta/antagonists & inhibitors , Vimentin/genetics , Vimentin/metabolism
10.
Int J Mol Sci ; 22(16)2021 Aug 04.
Article En | MEDLINE | ID: mdl-34445085

Retinal ganglion cells (RGCs) undergo dendritic pruning in a variety of neurodegenerative diseases, including glaucoma and autosomal dominant optic atrophy (ADOA). Axotomising RGCs by severing the optic nerve generates an acute model of RGC dendropathy, which can be utilized to assess the therapeutic potential of treatments for RGC degeneration. Photobiomodulation (PBM) with red light provided neuroprotection to RGCs when administered ex vivo to wild-type retinal explants. In the current study, we used aged (13-15-month-old) wild-type and heterozygous B6;C3-Opa1Q285STOP (Opa1+/-) mice, a model of ADOA exhibiting RGC dendropathy. These mice were pre-treated with 4 J/cm2 of 670 nm light for five consecutive days before the eyes were enucleated and the retinas flat-mounted into explant cultures for 0-, 8- or 16-h ex vivo. RGCs were imaged by confocal microscopy, and their dendritic architecture was quantified by Sholl analysis. In vivo 670 nm light pretreatment inhibited the RGC dendropathy observed in untreated wild-type retinas over 16 h ex vivo and inhibited dendropathy in ON-center RGCs in wild-type but not Opa1+/- retinas. Immunohistochemistry revealed that aged Opa1+/- RGCs exhibited increased nitrosative damage alongside significantly lower activation of NF-κB and upregulation of DJ-1. PBM restored NF-κB activation in Opa1+/- RGCs and enhanced DJ-1 expression in both genotypes, indicating a potential molecular mechanism priming the retina to resist future oxidative insult. These data support the potential of PBM as a treatment for diseases involving RGC degeneration.


Optic Atrophy, Autosomal Dominant/therapy , Phototherapy , Protein Deglycase DJ-1/analysis , Retinal Ganglion Cells/pathology , Retinal Ganglion Cells/radiation effects , Animals , Disease Models, Animal , Light , Mice , Neuroprotection/radiation effects , Optic Atrophy, Autosomal Dominant/pathology , Retinal Degeneration , Retinal Ganglion Cells/cytology , Up-Regulation/radiation effects
11.
Int J Mol Sci ; 22(14)2021 Jul 07.
Article En | MEDLINE | ID: mdl-34298925

The Linear-No-Threshold (LNT) model predicts a dose-dependent linear increase in cancer risk. This has been supported by biological and epidemiological studies at high-dose exposures. However, at low-doses (LDR ≤ 0.1 Gy), the effects are more elusive and demonstrate a deviation from linearity. In this study, the effects of LDR on the development and progression of mammary cancer in FVB/N-Tg(MMTVneu)202Mul/J mice were investigated. Animals were chronically exposed to total doses of 10, 100, and 2000 mGy via tritiated drinking water, and were assessed at 3.5, 6, and 8 months of age. Results indicated an increased proportion of NK cells in various organs of LDR exposed mice. LDR significantly influenced NK and T cell function and activation, despite diminishing cell proliferation. Notably, the expression of NKG2D receptor on NK cells was dramatically reduced at 3.5 months but was upregulated at later time-points, while the expression of NKG2D ligand followed the opposite trend, with an increase at 3.5 months and a decrease thereafter. No noticeable impact was observed on mammary cancer development, as measured by tumor load. Our results demonstrated that LDR significantly influenced the proportion, proliferation, activation, and function of immune cells. Importantly, to the best of our knowledge, this is the first report demonstrating that LDR modulates the cross-talk between the NKG2D receptor and its ligands.


Breast Neoplasms/immunology , Breast Neoplasms/radiotherapy , Immunity/radiation effects , Animals , Breast Neoplasms/metabolism , Cell Proliferation/radiation effects , Female , Killer Cells, Natural/metabolism , Killer Cells, Natural/radiation effects , Ligands , Mice , NK Cell Lectin-Like Receptor Subfamily K/metabolism , Radiation Dosage , T-Lymphocytes/metabolism , T-Lymphocytes/radiation effects , Up-Regulation/radiation effects
12.
Cancer Sci ; 112(10): 4064-4074, 2021 Oct.
Article En | MEDLINE | ID: mdl-34251713

Programmed cell death ligand 1 (PD-L1) is a major immunosuppressive checkpoint protein expressed by tumor cells to subvert anticancer immunity. Recent studies have shown that ionizing radiation (IR) upregulates the expression of PD-L1 in tumor cells. However, whether an IR-induced DNA damage response (DDR) directly regulates PD-L1 expression and the functional significance of its upregulation are not fully understood. Here, we show that IR-induced upregulation of PD-L1 expression proceeds through both transcriptional and post-translational mechanisms. Upregulated PD-L1 was predominantly present on the cell membrane, resulting in T-cell apoptosis in a co-culture system. Using mass spectrometry, we identified PD-L1 interacting proteins and found that BCLAF1 (Bcl2 associated transcription factor 1) is an important regulator of PD-L1 in response to IR. BCLAF1 depletion decreased PD-L1 expression by promoting the ubiquitination of PD-L1. In addition, we show that CMTM6 is upregulated in response to IR and participates in BCLAF1-dependent PD-L1 upregulation. Finally, we demonstrated that the ATM/BCLAF1/PD-L1 axis regulated PD-L1 stabilization in response to IR. Together, our findings reveal a novel regulatory mechanism of PD-L1 expression in the DDR.


B7-H1 Antigen/metabolism , Radiation, Ionizing , Repressor Proteins/physiology , Tumor Suppressor Proteins/physiology , Apoptosis , Ataxia Telangiectasia Mutated Proteins/metabolism , B7-H1 Antigen/radiation effects , Cell Line, Tumor , Cell Membrane/metabolism , Coculture Techniques , DNA Damage , Humans , Jurkat Cells , MARVEL Domain-Containing Proteins/metabolism , MARVEL Domain-Containing Proteins/radiation effects , Mass Spectrometry , Myelin Proteins/metabolism , Myelin Proteins/radiation effects , Neoplasm Proteins/metabolism , Protein Modification, Translational , Protein Processing, Post-Translational , Repressor Proteins/deficiency , T-Lymphocytes/cytology , T-Lymphocytes/radiation effects , Tumor Suppressor Proteins/deficiency , Ubiquitination , Up-Regulation/radiation effects
13.
J Photochem Photobiol B ; 221: 112243, 2021 Aug.
Article En | MEDLINE | ID: mdl-34217028

Due to their capacity to differentiate into the chondrogenic lineage, adipose-derived stromal/stem cells (ASC) are a promising source of therapeutically relevant cells for cartilage tissue regeneration. Their differentiation potential, however, varies between patients. In our study, we aim to stimulate ASC towards a more reliable chondrogenic phenotype using photobiomodulation (PBM). LED devices of either blue (475 nm), green (516 nm) or red (635 nm) light were used to treat human ASC from donors of varying chondrogenic potential. The treatment was applied either once during the 2D expansion phase or repeatedly during the 3D differentiation phase. Chondrogenic differentiation was assessed via pellet size, GAG/DNA content, histology and gene expression analysis. Reactions to PBM were found to be wavelength-dependent and more pronounced when the treatment was applied during expansion. Donors were assigned to responder categories according to their response to the treatment during expansion, whereby good responders were mainly donors with low intrinsic chondrogenic potential. Exposed to light, they revealed a particularly high relative increase in pellet size (more than twice the size of untreated controls after red light PBM), intense collagen type II immunostaining (low/absent in untreated controls) and activation of otherwise absent COL2A1 expression. Conversely, on a donor with high intrinsic chondrogenic potential, light had adverse effects. When applied with shorter wavelengths (blue, green), it led to reduced pellet size, GAG/DNA content and collagen type II immunostaining. However, when PBM was applied in 3D, the same donor was the only one to react with increased differentiation to all three wavelengths. We were able to demonstrate that PBM can be used to enhance or hamper chondrogenesis of ASC, and that success depends on treatment parameters and intrinsic cellular potential. The improvement of chondrogenesis in donors with low intrinsic potential highlights PBM as potent tool for cell-based cartilage regeneration. Its cost-effectiveness and ease of use make for an attractive treatment option to enhance the performance of ASC in cartilage tissue engineering.


Cell Differentiation/radiation effects , Chondrogenesis/radiation effects , Light , Adipose Tissue/cytology , Cell Culture Techniques , Cells, Cultured , Collagen Type II/genetics , Collagen Type II/metabolism , Down-Regulation/radiation effects , Humans , Interleukin-1beta/genetics , Interleukin-1beta/metabolism , Mesenchymal Stem Cells/cytology , Mesenchymal Stem Cells/metabolism , Up-Regulation/radiation effects
14.
J Radiat Res ; 62(5): 773-781, 2021 Sep 13.
Article En | MEDLINE | ID: mdl-34196706

Programmed death ligand 1 (PD-L1) expression on the surface of cancer cells affects the efficacy of anti-PD-1/PD-L1 immune checkpoint therapy. However, the mechanism underlying PD-L1 expression in cancer cells is not fully understood, particularly after ionizing radiation (IR). Here, we examined the impact of high linear energy transfer (LET) carbon-ion irradiation on the expression of PD-L1 in human osteosarcoma U2OS cells. We found that the upregulation of PD-L1 expression after high LET carbon-ion irradiation was greater than that induced by X-rays at the same physical and relative biological effectiveness (RBE) dose, and that the upregulation of PD-L1 induced by high LET carbon-ion irradiation was predominantly dependent on ataxia telangiectasia and Rad3-related (ATR) kinase activity. Moreover, we showed that the downstream signaling, e.g. STAT1 phosphorylation and IRF1 expression, was upregulated to a greater extent after high LET carbon-ion irradiation than X-rays, and that IRF1 upregulation was also ATR dependent. Finally, to visualize PD-L1 molecules on the cell surface in 3D, we applied immunofluorescence-based super-resolution imaging. The three-dimensional structured illumination microscopy (3D-SIM) analyses revealed substantial increases in the number of presented PD-L1 molecules on the cell surface after high LET carbon-ion irradiation compared with X-ray irradiation.


B7-H1 Antigen/biosynthesis , Bone Neoplasms/pathology , Gene Expression Regulation, Neoplastic/radiation effects , Heavy Ion Radiotherapy , Neoplasm Proteins/biosynthesis , Osteosarcoma/pathology , Ataxia Telangiectasia Mutated Proteins/antagonists & inhibitors , Ataxia Telangiectasia Mutated Proteins/physiology , B7-H1 Antigen/genetics , Cell Line, Tumor , Humans , Imaging, Three-Dimensional , Interferon Regulatory Factor-1/biosynthesis , Interferon Regulatory Factor-1/genetics , Linear Energy Transfer , Morpholines/pharmacology , Neoplasm Proteins/antagonists & inhibitors , Neoplasm Proteins/genetics , Phosphorylation/radiation effects , Protein Processing, Post-Translational/radiation effects , Pyrazines/pharmacology , Pyrones/pharmacology , RNA, Messenger/biosynthesis , RNA, Messenger/genetics , RNA, Neoplasm/biosynthesis , RNA, Neoplasm/genetics , STAT1 Transcription Factor/metabolism , Sulfones/pharmacology , Up-Regulation/radiation effects , X-Rays
15.
Cancer Cell ; 39(9): 1202-1213.e6, 2021 09 13.
Article En | MEDLINE | ID: mdl-34329585

Studies suggest that the efficacy of cancer chemotherapy and immunotherapy is influenced by intestinal bacteria. However, the influence of the microbiome on radiation therapy is not as well understood, and the microbiome comprises more than bacteria. Here, we find that intestinal fungi regulate antitumor immune responses following radiation in mouse models of breast cancer and melanoma and that fungi and bacteria have opposite influences on these responses. Antibiotic-mediated depletion or gnotobiotic exclusion of fungi enhances responsiveness to radiation, whereas antibiotic-mediated depletion of bacteria reduces responsiveness and is associated with overgrowth of commensal fungi. Further, elevated intratumoral expression of Dectin-1, a primary innate sensor of fungi, is negatively associated with survival in patients with breast cancer and is required for the effects of commensal fungi in mouse models of radiation therapy.


Antifungal Agents/administration & dosage , Bacteria/classification , Breast Neoplasms/therapy , Fungi/drug effects , Lectins, C-Type/genetics , Melanoma/therapy , Animals , Antifungal Agents/pharmacology , Bacteria/immunology , Breast Neoplasms/immunology , Breast Neoplasms/microbiology , Combined Modality Therapy , Down-Regulation , Female , Fungi/classification , Fungi/immunology , Gastrointestinal Microbiome/drug effects , Gastrointestinal Microbiome/radiation effects , Gene Expression Regulation, Neoplastic/radiation effects , Humans , Melanoma/immunology , Melanoma/microbiology , Mice , Symbiosis , T-Lymphocytes/metabolism , Tumor-Associated Macrophages/metabolism , Up-Regulation/drug effects , Up-Regulation/radiation effects , Xenograft Model Antitumor Assays
16.
J Photochem Photobiol B ; 221: 112245, 2021 Aug.
Article En | MEDLINE | ID: mdl-34182186

There is currently no clear understanding on the pathways involved in the process of cell inhibition by photobiomodulation (PBM). The present study evaluated the influence of PBM on the expression of autophagy markers in vitro in an in situ model of oral carcinoma. Oral squamous cell carcinoma (Cal27) and stromal fibroblasts (FG) cultures were used. The independent variables were 'cell type' (FG and CAL27) 'culture condition' (monocultures or co-cultures) and PBM (placebo and 36 J/cm2). The cultures were irradiated from a red LED source for mRNA expression and protein expression analyses. The autophagy markers evaluated were Beclin-1, LC3B and p62 as well as adjuvant markers (BAX Bcl-2, VEGF, CD105, CD34, PRDX1, PRDX4 and GRP78). The Cal27 cells upregulated the autophagy markers upon exposure to PBM both at the mRNA and protein expression levels, providing evidence to explain malignant cell inhibition by PBM.


Autophagy/genetics , Light , Up-Regulation/radiation effects , Beclin-1/genetics , Beclin-1/metabolism , Carcinoma, Squamous Cell/metabolism , Carcinoma, Squamous Cell/pathology , Cell Line , Coculture Techniques , Endoplasmic Reticulum Chaperone BiP , Humans , Microtubule-Associated Proteins/genetics , Microtubule-Associated Proteins/metabolism , Mouth Neoplasms/metabolism , Mouth Neoplasms/pathology , Proto-Oncogene Proteins c-bcl-2/genetics , Proto-Oncogene Proteins c-bcl-2/metabolism , RNA, Messenger/metabolism
17.
Biomed Pharmacother ; 141: 111801, 2021 Sep.
Article En | MEDLINE | ID: mdl-34146850

Plant-based natural extracts contain several nutrients and bioactive compounds, such as phenolics and flavonoids, that possess various health-promoting activities. This study investigated the effects of polyphenols from Pterocarpus santalinus hydroalcoholic extract (PSHE) against gamma radiation-induced derangements via the upregulation of Nrf2. Ultra High Performance Liquid Chromatography Coupled to High Resolution Mass Spectrometry (UHPLC-HRMS/MS) analysis was performed to identify the possible radioprotectors. In vivo and in vitro studies, namely Real-Time-PCR (RT-PCR) analysis, Reactive Oxygen Species (ROS) scavenging activity, lipid peroxidation and GSH levels, DNA damage and cell death studies, anti-inflammatory (Sandwich ELISA), immunomodulatory studies (antibody staining), and model free radical scavenging assays, were performed. Vanillic acid, protocatechuic acid, para-hydroxybenzoic acid, chlorogenic acid, TNF-α inhibitor (Eudesmin), isoflavone (Daidzein 7-o-glucoside), astragalin (Kaempferol 3-o-glycoside), and other polyphenols were identified in PSHE using UHPLC-HRMS/MS analysis. Prophylactic administration of PSHE (-1 h) rendered more than 33% survival in mice exposed to 8 Gy whole-body-irradiation with increased mice survival and recovery of bone marrow and spleen cellularity. Real-time RT-PCR analysis showed that PSHE treatment (50 µg/mL) upregulated Nrf2, HO-1, and GPX-1 in mice splenocytes. At 50 µg/mL, PSHE reduced ROSscavenging activity, mitochondrial and spleen membrane lipid peroxidation levels, DNA damage, and cell death, and increased GSH levels. At 10 µg/mL, PSHE treatment diminished the content of IL-6 and TNF-α. At 50 µg/mL, PSHE suppressed lymphocyte proliferation. These findings indicate that polyphenols of PSHE possess marked antioxidant, anti-inflammatory, and immunomodulatory capacities, which play important roles in the prevention of radiation damage.


Gamma Rays/adverse effects , NF-E2-Related Factor 2/biosynthesis , NF-E2-Related Factor 2/radiation effects , Plant Extracts/pharmacology , Pterocarpus , Animals , Dose-Response Relationship, Drug , Free Radical Scavengers/isolation & purification , Free Radical Scavengers/pharmacology , Male , Mice , Mice, Inbred BALB C , Plant Extracts/isolation & purification , RAW 264.7 Cells , Up-Regulation/drug effects , Up-Regulation/radiation effects
18.
Int J Radiat Biol ; 97(9): 1324-1332, 2021.
Article En | MEDLINE | ID: mdl-34125651

PURPOSE: Recently, therapeutic effects of extremely low-frequency electromagnetic field (ELF-EMF) as complementary and alternative medicine, used in the oncology field to control disease symptoms. Micro RNAs (miRs) are responsible for the post-transcriptional regulation of gene expression in the cell. This study aimed to evaluate the expression changes of miR-144 and miR-375 in the human gastric adenocarcinoma cell line (AGS) under the exposure of ELF-EMF. MATERIALS AND METHODS: AGS cells were exposed to magnetic flux densities of 0.2 and 2 mT for 18 h, continuously and discontinuously (1.5 h on/1.5 h off). Cell viability was evaluated by MTT assay. Changes of miR-144 expression levels in AGS cells immediately after exposure and 18 and 36 h after the exposure cut-off was calculated by QRT-PCR. RESULTS: The cell viability of AGS cells was decreased under the exposure of 0.2 and 2 mT EMFs when compared to the control. Up-regulation of miR-144 and miR-375 were observed in AGS cells under the exposure of magnetic fields. CONCLUSIONS: The results indicated that the miR levels were significantly decreased 18 and 36 h after finishing the exposure, but not reached the normal range. The results of this investigation indicated that weak and moderate intermittent 50 Hz ELF-EMFs can induce changes in miRNA expression.


Electromagnetic Fields , MicroRNAs/genetics , Stomach Neoplasms/pathology , Up-Regulation/radiation effects , Cell Line, Tumor , Cell Survival/radiation effects , Humans , Transcriptional Activation/radiation effects
19.
Int J Mol Sci ; 22(9)2021 Apr 29.
Article En | MEDLINE | ID: mdl-33946760

Fagopyrum tataricum 'Hokkai T10' is a buckwheat cultivar capable of producing large amounts of phenolic compounds, including flavonoids (anthocyanins), phenolic acids, and catechin, which have antioxidant, anticancer, and anti-inflammatory properties. In the present study, we revealed that the maize transcription factor Lc increased the accumulation of phenolic compounds, including sinapic acid, 4-hydroxybenzonate, t-cinnamic acid, and rutin, in Hokkai T10 hairy roots cultured under long-photoperiod (16 h light and 8 h dark) conditions. The transcription factor upregulated phenylpropanoid and flavonoid biosynthesis pathway genes, yielding total phenolic contents reaching 27.0 ± 3.30 mg g-1 dry weight, 163% greater than the total flavonoid content produced by a GUS-overexpressing line (control). In contrast, when cultured under continuous darkness, the phenolic accumulation was not significantly different between the ZmLC-overexpressing hairy roots and the control. These findings suggest that the transcription factor (ZmLC) activity may be light-responsive in the ZmLC-overexpressing hairy roots of F. tataricum, triggering activation of the phenylpropanoid and flavonoid biosynthesis pathways. Further studies are required on the optimization of light intensity in ZmLC-overexpressing hairy roots of F. tataricum to enhance the production of phenolic compounds.


Fagopyrum/metabolism , Fagopyrum/radiation effects , Phenols/metabolism , Biosynthetic Pathways/genetics , Biosynthetic Pathways/radiation effects , Darkness , Fagopyrum/genetics , Flavonoids/biosynthesis , Gene Expression Regulation, Plant/radiation effects , Genes, Plant/radiation effects , Light , Plant Proteins/genetics , Plant Proteins/metabolism , Plant Roots/genetics , Plant Roots/metabolism , Plants, Genetically Modified , Transcription Factors/genetics , Transcription Factors/metabolism , Up-Regulation/radiation effects
20.
Sci Rep ; 11(1): 10177, 2021 05 13.
Article En | MEDLINE | ID: mdl-33986387

As a radiation biodosimetry tool, gene expression profiling is being developed using mouse and human peripheral blood models. The impact of dose, dose-rate, and radiation quality has been studied with the goal of predicting radiological tissue injury. In this study, we determined the impact of aging on the gene expression profile of blood from mice exposed to radiation. Young (2 mo) and old (21 mo) male mice were irradiated with 4 Gy x-rays, total RNA was isolated from whole blood 24 h later, and subjected to whole genome microarray analysis. Pathway analysis of differentially expressed genes revealed young mice responded to x-ray exposure by significantly upregulating pathways involved in apoptosis and phagocytosis, a process that eliminates apoptotic cells and preserves tissue homeostasis. In contrast, the functional annotation of senescence was overrepresented among differentially expressed genes from irradiated old mice without enrichment of phagocytosis pathways. Pathways associated with hematologic malignancies were enriched in irradiated old mice compared with irradiated young mice. The fibroblast growth factor signaling pathway was underrepresented in older mice under basal conditions. Similarly, brain-related functions were underrepresented in unirradiated old mice. Thus, age-dependent gene expression differences should be considered when developing gene signatures for use in radiation biodosimetry.


Gene Expression Regulation/genetics , Radiation Exposure , Transcriptome/radiation effects , Age Factors , Aging/genetics , Aging/radiation effects , Algorithms , Animals , Apoptosis/genetics , Apoptosis/radiation effects , Blood Cell Count , Computational Biology , Down-Regulation/radiation effects , Male , Mice, Inbred C57BL , Oligonucleotide Array Sequence Analysis , Phagocytosis/genetics , Phagocytosis/radiation effects , Signal Transduction/radiation effects , Up-Regulation/radiation effects , X-Rays
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