| Literature DB >> 28471415 |
Elisabetta Albi1, Marcus Krüger2, Ruth Hemmersbach3, Andrea Lazzarini4, Samuela Cataldi5, Michela Codini6, Tommaso Beccari7, Francesco Saverio Ambesi-Impiombato8, Francesco Curcio9.
Abstract
Physical and mental health requires a correct functioning of the thyroid gland, which controls cardiovascular, musculoskeletal, nervous, and immune systems, and affects behavior and cognitive functions. Microgravity, as occurs during space missions, induces morphological and functional changes within the thyroid gland. Here, we review relevant experiments exposing cell cultures (normal and cancer thyroid cells) to simulated and real microgravity, as well as wild-type and transgenic mice to hypergravity and spaceflight conditions. Well-known mechanisms of damage are presented and new ones, such as changes of gene expression for extracellular matrix and cytoskeleton proteins, thyrocyte phenotype, sensitivity of thyrocytes to thyrotropin due to thyrotropin receptor modification, parafollicular cells and calcitonin production, sphingomyelin metabolism, and the expression and movement of cancer molecules from thyrocytes to colloids are highlighted. The identification of new mechanisms of thyroid injury is essential for the development of countermeasures, both on the ground and in space, against thyroid cancer. We also address the question whether normal and cancer cells show a different sensitivity concerning changes of environmental conditions.Entities:
Keywords: hypergravity; microgravity; space environment; thyroid cancer; thyroid gland
Mesh:
Year: 2017 PMID: 28471415 PMCID: PMC5454885 DOI: 10.3390/ijms18050972
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Formation of 3D spheroids: RO82-W-1 cells cultured for 3/7 days at static 1× g results in a 2D monolayer, while incubation on the RPM or on a clinostat shows 3D aggregates (multicellular spheroids; MCS). (A) RO82-W-1 cells cultured for 3 d at static 1× g; (B) MCS (arrows) formed on the RPM after 3 days; (C) MCS (arrow) formed on the clinostat after 3 days; (D) MCS (arrows) of RO82-W-1 cells cultured for 7 days on the clinostat; (E) RO82-W-1 cells cultured for 7 days at static 1× g; (F) Adherent cells and large MCS (arrow) formed on the RPM after 7 days. For more details see [17].
Research on thyroid cells under the effects of altered gravity (green: normal cells, yellow: cancer cells).
| Cells | Exposure Device | Dur. | Analyses and Most Important Findings | Ref. | |
|---|---|---|---|---|---|
| Primary thyrocytes | 14 d |
Morphology: spheroid formation Protein content: thyroglobulin | [ | ||
| HTU-5 | 1 d |
Immunofluorescence microscopy: cytokeratin filaments thickened and shortened, extended from poorly defined organizing centers; vimentin formed a coiled aggregate closely associated with the nucleus | [ | ||
| 3 d |
STRING network analysis Mass spectrometry: high quantities of glycolytic enzymes and marginal quantities of citric acid cycle enzymes | [ | |||
| Nthy-3-1-ori | 7 d |
Morphology: spheroid formation Gene expression of genes involved in cytoskeleton forming ( Protein content (MAP profiling): IL-6 | [ | ||
| 2 h |
Gene expression of genes involved in apoptosis ( | [ | |||
|
Gene expression of genes involved in apoptosis ( | |||||
| ML-1 | 22 s | Relationship between cytoskeleton and ECM under altered gravity
Morphology: F-actin/cytokeratin cytoskeleton altered, no signs of apoptosis or necrosis Microarray: 2430 significantly regulated transcripts Gene expression of genes involved in forming cytoskeleton ( | [ | ||
| 12 h |
Morphology: spheroid formation Protein content: ECM proteins Protein secretion: Tg | [ | |||
| 2 d |
Morphology: spheroid formation, signs of apoptosis Protein content: apoptosis: Fas | [ | |||
| 1 d |
Morphology: spheroid formation, induced apoptosis Protein content: fT3 | [ | |||
| 1 d |
Immunofluorescence microscopy: cytokeratin filaments coalesced and shortened, extended from poorly defined organizing centers; enormous elevation on vimentin filaments Protein content: Talin | [ | |||
| 3 d |
Morphology: spheroid formation Protein content: IL-6 | [ | |||
| 7 d | Proteome analysis
Protein content: glutathione S-transferase P Mass spectrometry: 202 different polypeptide chains identified compared to 1 | [ | |||
| 22 s |
Gene expression of genes involved in forming cytoskeleton ( | [ | |||
| 2 h |
Gene expression of genes involved in cytoskeleton modulation ( | [ | |||
| 22 s |
Gene expression of genes involved in forming cytoskeleton ( | [ | |||
| 2 h |
Gene expression of genes involved in cytoskeleton forming ( | [ | |||
| UCLA | 3 d |
Morphology: spheroid formation Protein content: integrin-β1 | [ | ||
| CGTH W-1 | 3 d |
Morphology: collagen-chains found Gene expression: | [ | ||
|
STRING network analysis: Considerable number of candidates for gravi-sensitive proteins detected. Clusters of strongly interacting enzymes involved in carbohydrate metabolism, protein Mass spectrometry: low quantities of glycolytic enzymes and marginal quantities of citrate cycle enzymes, abnormal LDH A-chains | [ | ||||
| 2 h |
Gene expression of genes involved in cytoskeleton forming ( | [ | |||
| FTC-133 | 10 d | [ | |||
|
Morphology: spheroid formation Microarray: 2881 significantly regulated transcripts; genes involved in several biological processes: apoptosis, cytoskeleton, adhesion/extracellular matrix, proliferation, stress response, migration, angiogenesis, signal transduction, regulation of cancer cell proliferation and metastasis Gene expression of genes involved in extracellular matrix ( | |||||
| 12 d | [ | ||||
|
Morphology: no spheroid formation Mass spectrometry: 180 different polypeptide chains identified Protein content: enhanced production of proteins related to the extracellular matrix | |||||
| 369 s |
Life-cell imaging (FLUMIAS) with FTC-133 cells expressing the Lifeact-GFP marker protein for the visualization of F-actin: significant alterations of the cytoskeleton | [ | |||
| ~3 h |
Microarray: 63 significantly regulated transcripts Gene expression during the PFC was often regulated in the opposite direction compared with the RPM or Space | [ | |||
|
Life-cell imaging Gene expression of genes involved in cytoskeleton forming ( | [ | ||||
| 4 h |
Morphology: spheroid formation Gene expression: |
Protein content: decreased cytokine release | [ | ||
| 4 h |
Protein content: increased cytokine release | ||||
| 1 d | Analysis of MCS formation
Morphology: spheroid formation, apoptosis enhanced Microarray: 487 significantly regulated transcripts Protein content: NF-κB p65 Gene expression: AD: | [ | |||
| 3 d | Proteomic analysis with focus cytoskeletal and membrane-associated proteins to understand forming of larger MCS by FTC-133 cells
FF-IEF/SDS-PAGE/mass spectrometry: integrin α5 chains, myosin-10 and filamin B only found in protein solution of FTC-133 cells → possible role in binding fibronectin Gene expression: | [ | |||
| 3 d |
STRING network analysis: considerable number of candidates for gravi-sensitive proteins detected. Clusters of strongly interacting enzymes involved in carbohydrate metabolism, protein formation, degradation, and cell shaping and proteins regulating cell growth. Mass spectrometry: high quantities of glycolytic enzymes and moderate quantities of citric acid cycle enzymes, abnormal LDH B-chains | [ | |||
| 10 d |
Morphology: spheroid formation Microarray: 2881 significantly regulated transcripts Gene expression: of genes involved in extracellular matrix ( | [ | |||
| 7 d |
Morphology: formation of larger and numerous spheroids than normal cells Gene expression of genes involved in cytoskeleton forming ( Protein content (MAP profiling): IL-6 | [ | |||
| 2 h |
Life-cell imaging Gene expression of genes involved in cytoskeleton forming ( | [ | |||
| 2 h |
Life-cell imaging Gene expression of genes involved in cytoskeleton forming ( | ||||
| FRTL-5 (rat) | 5-7 d |
Activity: less-responsive to TSH stimulation in terms of cAMP | [ | ||
| 1 h |
cells functionally respond to the variable gravity force in a dose-dependent manner in terms of cAMP production following TSH-stimulation | [ | |||
| 379 s |
Morphology: irregular shape, rearrangement of the cell membrane Activity: no response to TSH, shedding of TSH-R in the supernatant Protein content: Bax | [ | |||
| Thyroid gland (mouse) | 91 d |
Morphology: increase in average follicle size Protein content: sphingomyelinase | [ | ||
| 3 mo |
Morphology: thyroid follicles appeared more organized Protein content: caveolin-1 | [ | |||
| 90 d |
Protein content: HBME-1 | [ | |||
| 90/91 d |
Protein content: TSHR cholesterol | [ | |||
AD, adherent cells; CN, clinostat; Dur., duration; d, day; h, hour; LSC, low speed centrifuge; MCS, multicellular spheroids; mo, month; MuSIC, multi-sample incubator centrifuge; PFC, parabolic flight campaign; r-µg, real microgravity; RPM, random positioning machine; s-µg, simulated microgravity; s, second; SAHC, short-arm human centrifuge; ↑, upregulation; ↓, downregulation; ↗, slight upregulation; ↘, slight downregulation; →, not regulated.