# The Immune System in Antarctic and Subantarctic Fish of the Genus Harpagifer Is Affected by the Effects of Combined Microplastics and Thermal Increase

**Authors:** Daniela P. Nualart, Pedro M. Guerreiro, Kurt Paschke, Stephen D. McCormick, Chi-Hing Christina Cheng, Luis Vargas-Chacoff

PMC · DOI: 10.3390/ijms26209968 · International Journal of Molecular Sciences · 2025-10-13

## TL;DR

This study shows that Antarctic and subantarctic fish have immune responses affected by microplastics and rising temperatures, with combined stressors causing complex effects.

## Contribution

The study is the first to investigate the combined effects of microplastics and thermal stress on the immune system of Antarctic fish.

## Key findings

- Exposure to microplastics or thermal increase alone up-regulated immune-related gene transcripts in some tissues.
- Combined exposure to microplastics and thermal increase caused tissue-dependent down-regulation of immune transcripts.
- Combined stressors in a bath experiment increased immune-related transcripts, especially after 48 hours.

## Abstract

Rising ocean temperatures due to climate change, combined with the intensification of anthropogenic activity, may lead to changes in the physiology and distribution of native species. Compounding climate stress, microplastic particles (MPs) enter the oceans through wastewater and the breakdown of macroplastics. Depending on their composition, they can be harmful and act as a vehicle for toxic substances, although their effects on native Antarctic and subantarctic species are unknown. Notothenioid fish are members of this group and are found inside and outside Antarctica, such as the Harpagifer, which has adapted to the cold and is particularly sensitive to thermal increases. Here, we aimed to evaluate the innate immune response in the head kidney, spleen, and foregut of two notothenoid fish, Harpagifer antarcticus and Harpagifer bispinis, exposed to elevated temperatures and PVC (polyvinyl chloride) microplastics. Adults from both species were collected on King George Island (Antarctica) and Punta Arenas (Chile), respectively. Specimens were assigned to a control group or exposed to a temperature increase (TI) or PVC microplastics (MPs), separately or in combination (MPs + TI). MP exposures were oral (gavage) for 24 h or aqueous (in a bath) for 24 and 48 h. Using real-time qPCR, we evaluated the relative gene expression of markers involved in the innate immune response, including tlr2 (toll-like receptor 2), tlr4 (toll-like receptor 4), myd88 (myeloid differentiation factor 88), nfkb (nuclear factor kb), il6 (interleukin 6), and il8 (irterleukin 8). We found differences between treatments when H. antarcticus and H. bispinis were exposed independently to MPs or thermal increase (TI) in the experiment with a cannula, showing an up-regulation in transcripts. In contrast, a down-regulation was observed when exposed in combination to MP + TI, which looked to be tissue-dependent. However, transcripts related to innate immunity in the bath experiment increased when exposure to both stressors was combined, mostly at 48 h. These results highlight the importance of evaluating the effects of multiple stressors, both independently and in combination, and whether these species will have the capacity to adapt or survive under these conditions, especially in waters where temperature is increasing and pollution is also rising, primarily from MP-PVC, a plastic widely used in various industries and among the population.

## Linked entities

- **Genes:** TLR2 (toll like receptor 2) [NCBI Gene 7097], TLR4 (toll like receptor 4) [NCBI Gene 7099], MYD88 (MYD88 innate immune signal transduction adaptor) [NCBI Gene 4615], NFKB1 (nuclear factor kappa B subunit 1) [NCBI Gene 4790], IL6 (interleukin 6) [NCBI Gene 3569], CXCL8 (C-X-C motif chemokine ligand 8) [NCBI Gene 3576]
- **Chemicals:** MPs (PubChem CID 20473)
- **Species:** Harpagifer antarcticus (taxon 43256), Harpagifer bispinis (taxon 166258)

## Full-text entities

- **Genes:** MYD88 (MYD88 innate immune signal transduction adaptor) [NCBI Gene 4615] {aka IMD68, MYD88D, WM1}, TLR4 (toll like receptor 4) [NCBI Gene 7099] {aka ARMD10, CD284, TLR-4, TOLL}, TLR2 (toll like receptor 2) [NCBI Gene 7097] {aka CD282, TIL4}, IL6 (interleukin 6) [NCBI Gene 3569] {aka BSF-2, BSF2, CDF, HGF, HSF, IFN-beta-2}, CXCL8 (C-X-C motif chemokine ligand 8) [NCBI Gene 3576] {aka GCP-1, GCP1, IL8, LECT, LUCT, LYNAP}
- **Chemicals:** MP-PVC (-), MP (MESH:D000080545), PVC (MESH:D011143)
- **Species:** Haliclystus antarcticus (species) [taxon 654955], Harpagifer antarcticus (Antarctic spiny plunderfish, species) [taxon 43256], Harpagifer bispinis (Magellan plunderfish, species) [taxon 166258]

## Full text

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## Figures

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## References

80 references — full list in the complete paper: https://tomesphere.com/paper/PMC12563894/full.md

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Source: https://tomesphere.com/paper/PMC12563894