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Torstensson, S.

Publications and source records attributed to Torstensson, S..

4 recordsLinked to original sources

Cell type-resolved transcriptomic map of skeletal muscle in women with polycystic ovary syndrome

Polycystic ovary syndrome (PCOS) is associated with skeletal muscle insulin resistance, fibrosis, and lipotoxicity, yet the cellular origins remain unknown. Here, we present a comprehensive cellular atlas of skeletal muscle from hyperinsulinemic and hyperandrogenic women with PCOS and controls of similar age, weight, and BMI. Analysis of 72,247 nuclei from 19 biopsies revealed cell-type-specific dysregulation in PCOS, with fiber-type-specific metabolic impairment, converging with pro-fibrotic reprogramming of fibro-adipogenic progenitors (FAPs) and enhanced FAP-myofiber crosstalk, characterized by enhanced collagen and laminin signaling. Metformin intervention for 16-weeks selectively reversed PCOS-associated transcriptional dysregulation in FAPs, revealing heterogeneous cellular responses in skeletal muscle. In vitro, PCOS myotubes retained metabolic dysfunction, yet show normalized glucose responsiveness, indicating plasticity despite metabolic memory. Systemic hyperinsulinemia and hyperandrogenemia correlated with transcriptional signatures in muscle fibers and FAPs, linking endocrine imbalance to pro-fibrotic remodeling. These findings identify novel therapeutic targets beyond conventional insulin-sensitizing approaches. Highlights- First single-nuclei atlas of human skeletal muscle in women with PCOS - FAPs subpopulations display activated pro-fibrotic phenotype - Metformin selectively targets distinct cell populations - Hyperinsulinemia and hyperandrogenemia correlate with transcriptional signatures of skeletal muscle fibers and FAPs

physiology↗

Implantation failure linked to altered uterine NK cells in PCOS-like mice

Uterine NK (uNK) cells are essential for reproductive function, yet little is known how they are affected in polycystic ovary syndrome (PCOS), despite the strong association between PCOS and reproductive complications. We demonstrate that implantation failure coincides with distinct phenotypic alterations of uNK cells in a PCOS-like mouse model. Hyperandrogenism caused an increased influx of conventional NK (cNK) cells into the uterus, which contributed to an augmented uNK cell population, while tissue-resident NK (trNK) cells remained unchanged. Notably, CD69+ trNK cells were reduced and seemingly compensated by an upregulated expression of CD69 on cNK cells in the uterus. The maturation of uNK cells was disrupted and plausibly linked to an inability of cNK cells to convert into trNK cells. The inhibited maturation was associated with a reduced expression of the inhibitory receptor NKG2A, demonstrating an impaired education of uNK cells. This disruption of uNK cells could contribute to endometrial dysfunction and may be an underlying factor to reproductive comorbidities such as implantation failure, miscarriage and pre-eclampsia in PCOS.

immunology↗

Androgens modulate the immune profile in a mouse model of polycystic ovary syndrome

Polycystic ovary syndrome (PCOS) is associated with a low-grade inflammation, but it is unknown how hyperandrogenism, the hallmark of PCOS, affects the immune system. Using a well-established PCOS-like mouse model, we demonstrate that androgen exposure affects immune cell populations in reproductive, metabolic, and immunological tissues differently in a site-specific manner. Co-treatment with flutamide, an androgen receptor antagonist, prevents most of these alterations, demonstrating that these effects are mediated through androgen receptor activation. Dihydrotestosterone (DHT)-exposed mice display a drastically reduced eosinophil population in uterus compared to controls, coupled with lower levels of eotaxin (CCL11), suggesting a reduced recruitment from blood. Decreased frequencies of eosinophils were also seen in visceral adipose tissue (VAT). A higher expression level of CD69, a marker of activation or tissue residency, was consistently found on natural killer (NK) cells in all analyzed tissues. However, a higher frequency of NK cells and elevated levels of IFN-{gamma} and TNF- were only seen in uteri of androgen-exposed mice, while NK cell frequencies were unaffected in all other analyzed compartments. Distinct alterations of macrophages in ovaries, uterus and VAT were also found in DHT-exposed mice and could potentially be linked to PCOS-like traits of the model. Indeed, androgen-exposed mice were insulin resistant and displayed an aberrant immune profile in VAT, albeit unaltered fat mass. Collectively, we demonstrate that hyperandrogenism causes tissue-specific alterations of immune cells in reproductive organs and VAT, which could have considerable implications on tissue function and contribute to the reduced fertility and metabolic comorbidities associated with PCOS.

immunology↗

The role of B cells in immune cell activation in polycystic ovary syndrome

Variations in B cell numbers are associated with polycystic ovary syndrome (PCOS) through unknown mechanisms. Here we demonstrate that B cells are not central mediators of PCOS pathology and that their frequencies are altered as a direct effect of androgen receptor activation. Hyperandrogenic women with PCOS have increased frequencies of age-associated double-negative B memory cells and increased levels of circulating immunoglobulin M (IgM). However, the transfer of serum IgG from women into wild-type female mice induces only an increase in body weight. Furthermore, RAG1 knock-out mice, which lack mature T- and B cells, fail to develop any PCOS-like phenotype. In wild-type mice, co-treatment with flutamide, an androgen receptor antagonist, prevents not only the development of a PCOS-like phenotype but also alterations of B cell frequencies induced by dihydrotestosterone (DHT). Finally, B cell-deficient mice, when exposed to DHT, are not protected from developing a PCOS-like phenotype. These results urge further studies on B cell functions and their effects on autoimmune comorbidities highly prevalent among women with PCOS. SummaryAndrogen receptor activation alters B cell frequencies and functionality as the transfer of human PCOS IgG increase weight in female mice. Lack of B cells does not protect from the development of a PCOS phenotype, suggesting an unrecognized role for B cells in PCOS autoimmune comorbidities. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=110 SRC="FIGDIR/small/525671v2_ufig1.gif" ALT="Figure 1"> View larger version (28K): org.highwire.dtl.DTLVardef@15802fborg.highwire.dtl.DTLVardef@12bd154org.highwire.dtl.DTLVardef@1bc14a9org.highwire.dtl.DTLVardef@f08d2b_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗