Typical female 2nd–4th finger length (2D:4D) ratios in male-to-female transsexuals—possible implications for prenatal androgen exposure

2006 ◽  
Vol 31 (2) ◽  
pp. 265-269 ◽  
Author(s):  
H SCHNEIDER ◽  
J PICKEL ◽  
G STALLA
2008 ◽  
Vol 103 (3) ◽  
pp. 783-792 ◽  
Author(s):  
Martin Voracek

The associations of digit ratio (2D:4D), a likely marker for prenatal androgen exposure, and absolute finger length, a likely marker for postnatal androgen exposure, with self-reports on three Pavlovian temperament dimensions (strength of excitation, strength of inhibition, and mobility of nervous processes) were investigated in a sample of 84 men and 114 women. In men, left-hand 2D:4D was weakly, but significantly, negatively associated with strength of inhibition, and also weakly negatively, but not significantly, associated with the two other temperament dimensions. These effects were absent for men's right-hand 2D:4D. Finger lengths of both hands in men were weakly, but significantly, positively associated with mobility of nervous processes scores. All associations for women were negligible. Both prenatal and postnatal androgen action may contribute to small amounts of individual differences in Pavlovian temperament dimensions in men but apparently not in women.


2014 ◽  
Vol 32 (4_suppl) ◽  
pp. 231-231
Author(s):  
Michael Stolten ◽  
Elisa Ledet ◽  
Aryeneesh Dotiwala ◽  
Eric Luk ◽  
A. Oliver Sartor ◽  
...  

231 Background: During gestation, development of the prostate is dependent on a functional androgen receptor and the presence of dihydrotestosterone. Prenatal androgen exposure has been correlated with a range of diseases including prostate cancer (PCa). Historically, the ratio of the second to the fourth digit (2D:4D) has been linked to prenatal androgen levels; however, the use of alternate finger ratios have been shown to be a greater indicator of prenatal androgen exposure compared to the traditional 2D:4D ratio. Studies have shown that the distal fingertip extent of the second digit (2T:2D) was also associated with prenatal androgens. This study aims to use alternative digit ratio measurements to determine aggressiveness of PCa. Our hypothesis is that alternative digit ratios are more sensitive to prenatal androgen levels, and a better predictor of disease than the traditional 2D:4D ratio. Methods: Digital measurements were made from hand scans of PCa patients. All fingers on the right hand were measured from the basal crease to the fingertip as well as the distal fingertip extent of the second digit. Race, family history (FH) (first degree relatives with PCa), and age at diagnosis were recorded. These clinical covariates were then compared to the finger length ratios which were dichotomized based on the median values and analyzed for possible correlations. Results: Hand measurements were taken on 350 Caucasian (CA) and 100 African American (AA) PCa patients. AA men were more likely to have a smaller 2D:3D (P < 0.0001) and 2D:4D digit ratio (P < 0.0001), and larger 3D:5D (P = 0.0002) and 4D:5D (P = 0.0125) when compared to CA men. AA men with a smaller 2T:2D ratio were younger at the time of diagnosis (P = 0.0446). Additionally, AA men with a larger 2D:5D ratio were more likely to have a FH of PCa (P= 0.0238). Conclusions: Alternative finger length ratios show strong differences between AA and CA men. In AA men, alternative digit ratios are associated with age of PCa diagnosis and FH of PCa. These hypothesis generating results require validation in a larger cohort, but may provide insight to the underlying racial disparity observed in PCa. Finger length may represent a unique, non-invasive predictor of PCa, specifically age of onset and FH in AA men.


2021 ◽  
Author(s):  
Wojciech Kuczyński ◽  
Tetsuro Hoshino ◽  
Aleksandra Kudrycka ◽  
Aleksandra Małolepsza ◽  
Urszula Karwowska ◽  
...  

UNSTRUCTURED Background The ratio of second finger length to fourth finger length (2D:4D) is considered to be a negative correlate of prenatal androgen exposure and a positive correlate of prenatal oestrogen. Therefore males, on average, have a lower value of 2D:4D ratio as compared to females. Coincidentally, various brain regions are sensitive to prenatal androgen exposure, and their function in adulthood may be influenced by these prenatal actions of sex hormones. An example of such a brain region is the preoptic area which is involved in sleep and sexual functions. The objective of this study is to assess the relationship between prenatal androgen exposure (indicated by the 2D:4D ratio) and various physiological (sex hormone levels, sleep-wake parameters), psychological (mental health), as well as sexual parameters in young healthy adults. Methods The study consists of two phases: 1. In Phase I, we will conduct a survey-based study and anthropometric assessments (including 2D:4D ratio, body mass index) in healthy young adults. Using validated questionnaires, we will collect self-report data on sleep quality, sexual function, sleep chronotype, anxiety and depressive symptoms. 2. In Phase II, a sub-sample of Phase I will have polysomnography, physiological and genetic assessments. The sample recruited to this phase will comprise 100 healthy adults in each institution involved. Sleep architecture data will be obtained using a portable polysomnography. Venous blood will be drawn before and after polysomnograpy night and urine sample will be obtained in the morning. The level of testosterone, estradiol, progesterone, luteinizing hormone, follicle stimulating hormone, prolactin, melatonin and circadian regulatory proteins (CLOCK, TIM, PER) and a few miRNAs expression level, will be measured. The rest and activity cycle will be monitored using an actigraphy for a 7 days period. Discussion The impact of the study may help to better understand the role of plausible prenatal androgen exposure on sleep physiology, mental health and sexual quality of life in young adults.


2013 ◽  
Vol 21 ◽  
pp. S266
Author(s):  
M. de Kruijf ◽  
H.J. Kerkhof ◽  
S. Bierma-Zeinstra ◽  
C. Zillikens ◽  
A.G. Uitterlinden ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Luisa Ernsten ◽  
Lisa M. Körner ◽  
Martin Heil ◽  
Gareth Richards ◽  
Nora K. Schaal

AbstractHands and digits tend to be sexually dimorphic and may reflect prenatal androgen exposure. In the past years, the literature introduced several hand and digit measures, but there is a lack of studies in prepubertal cohorts. The available literature reports more heterogeneous findings in prepubertal compared to postpubertal cohorts. The comparability of the available studies is further limited by the study design and different measurement techniques. The present study compared the reliability and sex differences of available hand and digit measures, namely digit lengths of 2D, 3D, 4D, 5D, digit ratios 2D:4D, 2D:5D, 3D:4D, 3D:5D, 4D:5D, relative digit lengths rel2, rel3, rel4, rel5, directional asymmetry of right and left 2D:4D (Dr-l), hand width, length, and index of 399 male and 364 female 6-month-old German infants within one study using only indirect and computer-assisted measurements. The inter-examiner reliability was excellent while the test-retest reliability of hand scans was only moderate to high. Boys exhibited longer digits as well as wider and longer hands than girls, but smaller digit ratios, with ratios comprising the fifth digit revealing the largest effect sizes. Other hand and digit ratios revealed sex differences to some extent. The findings promote the assumption of sexual dimorphic hand and digit measures. However, by comparing the results of the available literature, there remains an uncertainty regarding the underlying hypothesis. Specifically in prepubertal cohorts, i.e. before the influence of fluctuating hormones, significant effects should be expected. It seems like other factors than the influence of prenatal androgens contribute to the sexual dimorphism in hand and digit lengths.


2021 ◽  
Vol 36 (Supplement_1) ◽  
Author(s):  
A Kusamoto ◽  
M Harada ◽  
J M Azhary ◽  
C Kunitomi ◽  
E Nose ◽  
...  

Abstract Study question From when do abnormality in gut microbiome and phenotypes of PCOS appear during the process of growth? Summary answer Reproductive phenotypes of PCOS appear from 6 weeks and metabolic phenotypes from 12 weeks onward. Alteration in gut microbiome appears as early as 4 weeks. What is known already The etiology of PCOS remains largely unknown, however PCOS is considered as a complex multigenic disorder with strong epigenetic and environmental influence. Previous studies have suggested that fetal over-exposure to androgens could be the main factor of the development of PCOS after birth. On the other hands, recent studies on both human and PCOS rodent models have demonstrated the association between PCOS and alteration of gut microbiome in adulthood. Furthermore, it was recently reported that gut microbiome in obese adolescent with PCOS is different from obese adolescent without PCOS. Study design, size, duration A rodent PCOS model induced by prenatal dehydroepiandrosterone (DHT) exposure was applied to this study. Phenotypes and gut microbiome were compared between PCOS model mice (n = 12/group) and control mice (n = 10/group) at each stage of growth; 4 weeks (prepuberty), 6 weeks (puberty), 8 weeks (adolescent), 12 weeks (young adult), and 16 weeks (adult). The determinants for PCOS phenotypes are onset of puberty, estrous cycle, morphology of ovaries, serum testosterone level, body weight, and insulin resistance. Participants/materials, setting, methods Pregnant dams were subcutaneously injected on days of 16, 17, and 18 of gestation with either sesame oil for control groups or sesame oil containing 250µg of DHT for prenatal DHT groups. The evaluation of PCOS phenotypes and gut microbiome in female offspring were performed at each stage of growth. For examination of gut microbiota, next generation sequencing and bioinformatics analysis of 16S rRNA genes were performed on DNA extracted from mouse fecal samples. Main results and the role of chance Prenatal DHT mice exhibited delayed puberty onset, disrupted estrous cycle, and significantly increased testosterone levels from 6 weeks onward. Significantly increased atretic antral follicles were observed in prenatal DHT mice at 6, 12, and 16 weeks. Prenatal DHT mice showed significantly decreased body weight at 4, 6, 8 weeks and increased body weight from 12 weeks onward. As for gut microbiome, alpha-diversity was significantly different between control and prenatal DHT mice from 8 weeks onward and beta-diversity was significantly different at 6 and 8 weeks. Altered composition of gut microbiota was observed as early as 4 weeks. At phylum level, Firmicutes are significantly increased in prenatal DHT mice at 4 and 8 weeks and decreased at 16 weeks. Actinobacteria phylum showed significant decrease at 6 and 8 weeks in prenatal DHT mice. At genus level, relative abundance of several bacterial taxa significantly differed between control and prenatal DHT mice; some taxa, such as Allobaculum, Adlercreutzia, Bilophila, Clostridium, Gemella, Gemmiger, Roseburia, Ruminococcus, Staphylococcus, and Sutterella, exhibited constant increase or decrease in prenatal DHT mice during the process of growth. Interestingly, Roseburia was never detected in prenatal DHT mice, while approximately half of control mice harbored Roseburia at 12 and 16 weeks. Limitations, reasons for caution It is not clearly determined whether alteration in gut microbiome is cause or result of PCOS development, although the changes in gut microbiome seemed to precede the appearance of typical PCOS phenotypes in the present study. Mouse model does not completely recapitulate human PCOS. Wider implications of the findings: Our findings suggest that prenatal androgen exposure causes alteration of gut microbiome from pre-puberty onward, even before PCOS phenotypes become apparent. Intervention for girls at risk of PCOS with pre/pro-biotics may prevent them from developing PCOS in future. Trial registration number Not applicable


Gut Microbes ◽  
2018 ◽  
pp. 1-22 ◽  
Author(s):  
Shermel B. Sherman ◽  
Nadeen Sarsour ◽  
Marziyeh Salehi ◽  
Allen Schroering ◽  
Blair Mell ◽  
...  

2019 ◽  
Vol 7 (8) ◽  
pp. 86 ◽  
Author(s):  
Elisabet Stener-Victorin ◽  
Maria Manti ◽  
Romina Fornes ◽  
Sanjiv Risal ◽  
Haojiang Lu ◽  
...  

Women with polycystic ovary syndrome (PCOS) exhibit compromised psychiatric health. Independent of obesity, women with PCOS are more susceptible to have anxiety and depression diagnoses and other neuropsychiatric disorders. During pregnancy women with PCOS display high circulating androgen levels that may cause prenatal androgen exposure affecting the growing fetus and increasing the risk of mood disorders in offspring. Increasing evidence supports a non-genetic, maternal contribution to the development of PCOS and anxiety disorders in the next generation. Prenatal androgenized rodent models reflecting the anxiety-like phenotype of PCOS in the offspring, found evidence for the altered placenta and androgen receptor function in the amygdala, together with changes in the expression of genes associated with emotional regulation and steroid receptors in the amygdala and hippocampus. These findings defined a previously unknown mechanism that may be critical in understanding how maternal androgen excess can increase the risk of developing anxiety disorders in daughters and partly in sons of PCOS mothers. Maternal obesity is another common feature of PCOS causing an unfavorable intrauterine environment which may contribute to psychiatric problems in the offspring. Whether environmental factors such as prenatal androgen exposure and obesity increase the offspring’s susceptibility to develop psychiatric ill-health will be discussed.


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