46,XX Testicular Disorder of Sex Development (DSD): A Case Report and Systematic Review
Abstract
:1. Introduction
Case Report
2. Materials and Methods
2.1. Search Strategy
2.2. Inclusion and Exclusion Criteria
2.3. Data Extraction
3. Results
3.1. Search Results
3.2. Synthesis of Results
4. Discussion
- DSD with atypical sex chromosome configurations, including Turner syndrome, Klinefelter syndrome, and conditions with 46,XX or 46,XY karyotypes;
- XY DSD characterized by 46,XY karyotype;
- XX DSD comprised of conditions characterized by 46,XX karyotype and androgen excess, such as congenital adrenal hyperplasia, P450 oxidoreductase deficiency, or exogenous causes [42].
- The hypothesis of target gene mutation [57]. It supposes the structural gene that determines human gender may be located in autosome, which is regulated by the inhibition of the X chromosome and the activation of the Y chromosome. 46,XX individuals, due to defects in the inhibition of the X chromosome, which results in spontaneous activation of the downstream gene in the absence of the SRY gene, transform into 46,XX males.
- The hypothesis of SOX9 gene (SRY box-related gene 9) overexpression. SOX are a large gene family, in which SOX9 is located in 17q24.3–q25.1 and homologous with SRY High-Mobility Group box (HMG)-box as high as 60%. Early studies confirmed that SOX9 was mainly involved in bone formation and the regulation of Sertoli cell differentiation [58], which was also expressed in the precursor cell of supporting cells with the SRY gene expression. In addition, the fact that SOX9 can be found in spinal animals and mammals, compared with the SRY gene which can be found only in mammals, might indicate that SOX9 was a more ancient gene involved in sex differentiation than the SRY gene. Huang et al. [59] reported the case of a SRY-negative 46,XX male patient, and chromosome analysis showed the existence of overlapping of the SOX9 gene. Malki et al. [60] found that prostaglandin D2 (PGD2) could induce the expression of SOX9 in a normal female rat gonad in vitro. Thus, up-regulation of SOX9 expression caused by chromosomal abnormalities or mediated by other bypass activation (e.g., PGD2) may result in the occurrence of SRY-negative 46,XX male patients.
- The hypothesis of Xp-Yp translocation. It supposes that the ends of the XY chromosomes’ abnormal exchange (Xp-Yp translocation) occurs during paternal sperm meiosis and results in X-type sperm containing the SRY gene, which could lead to 46,XX offspring when combined with eggs. PCR can detect the SRY gene, however, only to find it translocated in the X chromosome by FISH. In Brazil, Domenice et al. [61] found that 90% of 46,XX males carried Y chromosome material, including the SRY gene, in most cases. It indicated that the Y chromosome fragment containing the SRY gene translocation may be an important factor for the occurrence of SRY+ 46,XX male patients.
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
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Authors | Age Years | Weight kg | Height cm | HD | GM | Testes Volume | Penis Size | Pubic Hair | ED | Libido |
---|---|---|---|---|---|---|---|---|---|---|
Guzman et al. [5] | 20 | 76 | 169 | Normal | No | Small | Normal | Normal | No | Normal |
Gunes et al. [6] | 30 | 70 | 155 | Poor | Yes | Small | Normal | Normal | No | Normal |
Gunes et al. [6] | 16 | 65 | 152 | Normal | No | Small | Normal | Normal | No | Normal |
Valetto et al. [7] | 35 | 48 | 152 | Normal | No | NA | Normal | NA | No | Normal |
Kim et al. [8] | 29 | 62 | 165 | Normal | No | NA | NA | NA | Yes | NA |
Xiao et al. [9] | 27 | NA | 170 | NA | NA | NA | Small | NA | No | NA |
Queralt et al. [10] | 31 | 58 | 170 | Normal | No | NA | NA | NA | NA | NA |
Baziz et al. [11] | 44 | NA | NA | Normal | Yes | Small | Normal | NA | No | Normal |
Tomomasa et al. [12] | 25 | 55 | 177 | Normal | No | Small | NA | Normal | NA | Normal |
Chung Jung et al. [13] | 17 | NA | 154 | Normal | No | Small | Normal | Normal | No | Normal |
Wang et al. [14] | 20 | NA | NA | Poor | No | Small | Normal | Inverted | No | Normal |
Ahsan T et al. [15] | 24 | NA | NA | Poor | Yes | Small | Normal | Normal | No | Normal |
Jain et al. [16] | 38 | 63 | 162 | Normal | Yes | NA | Normal | NA | Yes | NA |
Yencilek et al. [17] | 26 | 72 | 165 | Normal | No | NA | Small | NA | No | NA |
Pepene et al. [18] | 28 | 65 | 167 | Normal | Yes | Small | Normal | NA | No | Normal |
Mustafa et al. [19] | 30 | 75 | 170 | Normal | Yes | NA | Normal | NA | NA | Normal |
Majzoub et al. [20] | 40 | 84 | 175 | Normal | No | NA | Normal | NA | No | Normal |
Majzoub et al. [20] | 31 | NA | NA | Normal | No | NA | Normal | NA | No | Normal |
Majzoub et al. [20] | 35 | NA | NA | Poor | Yes | NA | Normal | NA | Yes | Normal |
Majzoub et al. [20] | 39 | 74 | 160 | Normal | No | Small | Normal | NA | No | Normal |
Majzoub et al. [20] | 29 | 77 | 181 | Normal | No | NA | Normal | NA | No | Normal |
Majzoub et al. [20] | 32 | 86 | 170 | Normal | Yes | NA | Normal | NA | No | Normal |
Onrat et al. [21] | 23 | NA | NA | Normal | No | Small | Normal | NA | No | Normal |
Hado et al. [22] | 76 | NA | 157 | Normal | Yes | NA | NA | NA | No | Normal |
Rigola et al. [23] | 33 | NA | NA | Normal | No | NA | Normal | NA | NA | NA |
Dauwerse et al. [24] | 61 | NA | 171 | NA | No | Small | Normal | NA | NA | NA |
Ryan et al. [25] | 40 | NA | NA | Poor | No | NA | 3.6 | NA | No | NA |
Gao et al. [26] | NA | NA | 163 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 163 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 162 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 161 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 158 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 162 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 162 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 161 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 160 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 160 | NA | NA | NA | NA | NA | NA | NA |
Gao et al. [26] | NA | NA | 161 | NA | NA | NA | NA | NA | NA | NA |
Rizvi et al. [27] | 33 | 85.8 | 177 | NA | NA | NA | Normal | NA | No | NA |
Minor et al. [28] | 24 | NA | NA | NA | Yes | NA | NA | NA | NA | NA |
Rajender et al. [29] | 34 | 64 | 156 | Normal | No | NA | Normal | NA | NA | NA |
Tan et al. [30] | NA | NA | 176 | Normal | Yes | NA | Small | NA | No | NA |
Zakharia et al. [31] | 65 | 65 | 165 | NA | Yes | NA | Normal | NA | No | NA |
Chiang et al. [32] | 33 | NA | NA | NA | NA | NA | NA | NA | No | NA |
Chiang et al. [32] | 34 | NA | NA | NA | NA | NA | NA | NA | NA | NA |
Chiang et al. [32] | 52 | NA | NA | NA | NA | NA | Small | NA | NA | NA |
Wu et al. [33] | NA | NA | NA | NA | NA | NA | NA | NA | NA | NA |
Wu et al. [33] | NA | NA | NA | NA | NA | NA | NA | NA | NA | NA |
Wu et al. [33] | NA | NA | NA | NA | NA | NA | NA | NA | NA | NA |
Wu et al. [33] | NA | NA | NA | NA | NA | NA | NA | NA | NA | NA |
Wu et al. [33] | NA | NA | NA | NA | NA | NA | NA | NA | NA | NA |
Chernykh et al. [34] | 37 | 74 | 160 | Poor | Yes | NA | NA | NA | NA | NA |
Butler et al. [35] | 31 | 72 | 169 | Normal | Yes | NA | Normal | NA | No | NA |
Castineyra et al. [36] | 28 | NA | 180 | Normal | Yes | NA | NA | NA | NA | NA |
Castineyra et al. [36] | 35 | NA | 170 | Normal | NA | Small | NA | NA | NA | NA |
Castineyra et al. [36] | 28 | NA | 160 | Poor | NA | NA | NA | NA | NA | NA |
Castineyra et al. [36] | 39 | NA | 174 | Poor | NA | NA | NA | NA | NA | NA |
Castineyra et al. [36] | 24 | NA | 172 | Normal | NA | NA | NA | NA | NA | NA |
Fuse et al. [37] | 30 | 90 | 172 | Normal | No | NA | NA | NA | NA | NA |
Pais et al. [38] | 29 | 82 | 170 | Normal | Yes | NA | Small | NA | No | NA |
Wegner et al. [39] | 35 | 81 | 167 | Normal | No | NA | Normal | NA | NA | NA |
Micic et al. [40] | 25 | 63 | 171 | Poor | No | NA | NA | NA | No | NA |
Matthews et al. [41] | 27 | 68 | 166 | Poor | No | NA | NA | NA | NA | |
Our case | 36 | 74 | 165 | NA | Yes | Small | Normal | NA | No | Normal |
Authors | FSH mIU/mL | LH mIU/mL | TT ng/mL | E2 pg/mL | PRL ng/mL |
---|---|---|---|---|---|
Guzman et al. [5] | 27.9 | 16.5 | 2.3 | 24.8 | 24.5 |
Gunes et al. [6] | 37.88 | 18.96 | 0.51 | 17.57 | 17.54 |
Gunes et al. [6] | 41.05 | 14.55 | 2.16 | 32 | 24.11 |
Valetto et al. [7] | 23.9 | 17.7 | 3.06 | NA | 7.13 |
Kim et al. [8] | 76 | 41 | 1.79 | NA | NA |
Xiao et al. [9] | 47 | 18.7 | 1.80 | NA | 14.6 |
Queralt et al. [10] | 62.2 | 25.8 | 3.23 | 17 | NA |
Baziz et al. [11] | 51 | 11.71 | NA | NA | NA |
Tomomasa et al. [12] | 19.7 | 10.3 | 4.28 | NA | NA |
Chung Jung et al. [13] | 25.1 | 11.4 | 4.3 | 30.1 | 16.8 |
Wang et al. [14] | 77.5 | 40.75 | 4.64 | NA | 15.59 |
Ahsan T et al. [15] | 35 | 21 | 1.8 | NA | NA |
Jain et al. [16] | 76.6 | 36.3 | 1.20 | NA | NA |
Yencilek et al. [17] | 45.6 | 48.9 | 2.70 | NA | 9.4 |
Pepene et al. [18] | 43.9 | 25.3 | 3.33 | NA | NA |
Mustafa et al. [19] | NA | 40.7 | 2.11 | 16.6 | 8.5 |
Majzoub et al. [20] | 38 | 12 | 3.35 | 29 | 13.6 |
Majzoub et al. [20] | 14 | 6 | 1.29 | 25 | 3.2 |
Majzoub et al. [20] | 10 | 23 | 0.74 | 5.7 | NA |
Majzoub et al. [20] | 28 | 15 | 0.74 | NA | NA |
Majzoub et al. [20] | 13.4 | 12 | 2.46 | 19 | NA |
Majzoub et al. [20] | 29.7 | 16.9 | 0.95 | NA | 12 |
Onrat et al. [21] | 9.95 | 17.3 | 0.20 | NA | NA |
Hado et al. [22] | 27.8 | 21 | 2.59 | NA | NA |
Rigola et al. [23] | NA | NA | NA | NA | NA |
Dauwerse et al. [24] | 13 | 10 | 3.25 | 31.3 | NA |
Ryan et al. [25] | 1 | NA | NA | 10 | NA |
Gao et al. [26] | 93.6 | 19.4 | 3.08 | 33 | 17.9 |
Gao et al. [26] | 24.7 | 14.4 | 2.77 | 43 | 18.5 |
Gao et al. [26] | NA | NA | 1.29 | NA | NA |
Gao et al. [26] | 81.6 | 27.7 | 1.37 | 19.8 | 22.9 |
Gao et al. [26] | 13.1 | 3.61 | 2.44 | 34 | 9.67 |
Gao et al. [26] | 54.7 | 19.4 | 1.72 | 27 | 10.08 |
Gao et al. [26] | 37.1 | 16.5 | 3.19 | 28 | 9.88 |
Gao et al. [26] | 43 | 33.9 | 2.16 | 22 | 7.28 |
Gao et al. [26] | 72 | 34.6 | 3.36 | 19.8 | 10 |
Gao et al. [26] | 49 | 26.8 | 1.80 | 19.8 | 15.8 |
Gao et al. [26] | 87.7 | 31.4 | 5.21 | 30.5 | 49.6 |
Rizvi et al. [27] | 46 | 23 | 2.07 | NA | NA |
Minor et al. [28] | 55.4 | 28.4 | 0.119 | NA | NA |
Rajender et al. [29] | 25.8 | 15.8 | 5.8 | NA | NA |
Tan et al. [30] | 21 | 34 | 2.63 | 25 | NA |
Zakharia et al. [31] | 72 | 61 | 2.40 | NA | 16.3 |
Chiang et al. [32] | 46.5 | 17.6 | 2.03 | NA | 27.05 |
Chiang et al. [32] | 54.3 | 19.6 | 2.17 | NA | 8.15 |
Chiang et al. [32] | 64.3 | 20.2 | 1.44 | NA | 16.08 |
Wu et al. [33] | 35.5 | 13.8 | 1.95 | 30.5 | 4.6 |
Wu et al. [33] | 29.2 | 12.9 | 1.55 | 19.1 | 3.6 |
Wu et al. [33] | 45.9 | 25.1 | 2.56 | 26.7 | 7.8 |
Wu et al. [33] | 33.7 | 22.3 | 2.41 | 29.1 | 10.9 |
Wu et al. [33] | 31.4 | 19.6 | 2.01 | 22.1 | 7.8 |
Chernykh et al. [34] | 26.9 | 13.5 | 2.90 | NA | NA |
Butler et al. [35] | 51 | NA | 4.77 | NA | NA |
Castineyra et al. [36] | 50 | 16 | 3.00 | 28 | 14 |
Castineyra et al. [36] | 3.5 | 6.2 | 7.00 | 38 | 3.4 |
Castineyra et al. [36] | 21 | 5.2 | 1.40 | 19 | 8.1 |
Castineyra et al. [36] | 6.7 | 4.2 | 5.60 | 30 | 6.2 |
Castineyra et al. [36] | 45 | 40 | 3.00 | 20 | 5.4 |
Fuse et al. [37] | 47 | 60 | 1.60 | NA | NA |
Pais et al. [38] | 53 | 45 | 2.67 | NA | NA |
Wegner et al. [39] | 23.7 | 37.1 | 6.30 | NA | 3.8 |
Micic et al. [40] | 31 | 18 | 3.19 | 47 | 6.8 |
Matthews et al. [41] | 46 | 19 | 2.82 | 33 | 9.87 |
Our case | 24.7 | 9.4 | 2.7 | 14 | 12.2 |
Authors | Presence of SRY | Location of SRY |
---|---|---|
Guzman et al. [5] | + | NA |
Gunes et al. [6] | + | NA |
Gunes et al. [6] | + | NA |
Valetto et al. [7] | NA | NA |
Kim et al. [8] | NA | NA |
Xiao et al. [9] | − | NA |
Queralt et al. [10] | + | NA |
Baziz et al. [11] | + | NA |
Tomomasa et al. [12] | + | NA |
Chung Jung et al. [13] | + | NA |
Wang et al. [14] | + | NA |
Ahsan T et al. [15] | NA | NA |
Jain et al. [16] | + | NA |
Yencilek et al. [17] | NA | NA |
Pepene et al. [18] | + | NA |
Mustafa et al. [19] | − | NA |
Majzoub et al. [20] | + | NA |
Majzoub et al. [20] | + | NA |
Majzoub et al. [20] | + | NA |
Majzoub et al. [20] | − | NA |
Majzoub et al. [20] | + | NA |
Majzoub et al. [20] | + | NA |
Onrat et al. [21] | + | NA |
Hado et al. [22] | + | NA |
Rigola et al. [23] | + | Xp |
Dauwerse et al. [24] | + | 16q |
Ryan et al. [25] | − | NA |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Gao et al. [26] | + | Xp |
Rizvi et al. [27] | + | Xp |
Minor et al. [28] | + | Xp |
Rajender et al. [29] | − | NA |
Tan et al. [30] | NA | NA |
Zakharia et al. [31] | NA | NA |
Chiang et al. [32] | + | Xp |
Chiang et al. [32] | + | Xp |
Chiang et al. [32] | − | NA |
Wu et al. [33] | + | Xp |
Wu et al. [33] | + | Xp |
Wu et al. [33] | + | Xp |
Wu et al. [33] | + | Xp |
Wu et al. [33] | + | Xp |
Chernykh et al. [34] | + | Xp |
Butler et al. [35] | + | Xp |
Castineyra et al. [36] | + | Xp |
Castineyra et al. [36] | + | Xp |
Castineyra et al. [36] | + | Xp |
Castineyra et al. [36] | + | Xp |
Castineyra et al. [36] | + | Xp |
Fuse et al. [37] | + | Xp |
Pais et al. [38] | + | Xp |
Wegner et al. [39] | + | Xp |
Micic et al. [40] | NA | NA |
Matthews et al. [41] | + | Xp |
Our case | + | Xp |
Patients | HD% Normal | GM% No | Penis size% Normal | ED% No | FSH mIU/mL Mean (SD) | LH mIU/mL Mean (SD) | TT ng/mL Mean (SD) | PRL ng/mL Mean (SD) |
---|---|---|---|---|---|---|---|---|
SRY+ | 73.3 | 55.2 | 90.9 | 90.0 | 38.63 (20.85) | 29.40 (19.09) | 2.64 (1.49) | 12.93 (9.32) |
SRY− | 66.7 | 57.1 | 60.0 | 85.7 | 51.74 (28.14) | 21.63 (9.56) | 2.49 (1.79) | 14.27 (4.07) |
p = 0.422 | p = 0.596 | p = 0.144 | p = 0.823 | p = 0.195 | p = 0.326 | p = 0.819 | p = 0.781 |
© 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Terribile, M.; Stizzo, M.; Manfredi, C.; Quattrone, C.; Bottone, F.; Giordano, D.R.; Bellastella, G.; Arcaniolo, D.; De Sio, M. 46,XX Testicular Disorder of Sex Development (DSD): A Case Report and Systematic Review. Medicina 2019, 55, 371. https://doi.org/10.3390/medicina55070371
Terribile M, Stizzo M, Manfredi C, Quattrone C, Bottone F, Giordano DR, Bellastella G, Arcaniolo D, De Sio M. 46,XX Testicular Disorder of Sex Development (DSD): A Case Report and Systematic Review. Medicina. 2019; 55(7):371. https://doi.org/10.3390/medicina55070371
Chicago/Turabian StyleTerribile, Marco, Marco Stizzo, Celeste Manfredi, Carmelo Quattrone, Francesco Bottone, Dario Ranieri Giordano, Giuseppe Bellastella, Davide Arcaniolo, and Marco De Sio. 2019. "46,XX Testicular Disorder of Sex Development (DSD): A Case Report and Systematic Review" Medicina 55, no. 7: 371. https://doi.org/10.3390/medicina55070371
APA StyleTerribile, M., Stizzo, M., Manfredi, C., Quattrone, C., Bottone, F., Giordano, D. R., Bellastella, G., Arcaniolo, D., & De Sio, M. (2019). 46,XX Testicular Disorder of Sex Development (DSD): A Case Report and Systematic Review. Medicina, 55(7), 371. https://doi.org/10.3390/medicina55070371