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Determination of Reproductive Competence by Confirming Pubertal Onset and Performing a Fertility Assay in Mice and Rats
Published on: October 13, 2018
Sexual development and fertility of Loxl1-/- male mice
Hadley M Wood1, Una J Lee, Drina Vurbic
1Glickman Urological and Kidney Institute, Cleveland Clinic, Cleveland, Ohio 44195, USA. damasem@ccf.org
Abstract:
Our objective was to investigate the genitourinary defects and fertility of the male lysyl oxidase-like 1 gene (Loxl1) knockout (Loxl1(-/-)) mouse, with particular attention to fecundity and testicular, epididymal, gubernacular, and penile histopathology, which may lead us to a better understanding of the role of the elastin-homeostasis gene, LOXL1, in male sexual development. Genital morphometric evaluation of 6- to 9-month-old male Loxl1(-/-) mice (n = 26) was compared with C57Bl/6 controls (n = 24). Measurements included: body weight, scrotal development, evidence of feminization (nipples or vaginal pouch), penile malformations, anogenital distance, and absence/presence and size of perineal bulge. Sperm production was estimated using a standardized technique. A breeding program was conducted to determine how much of the infertility observed in Loxl1(-/-) pairs was due to the male factor. Finally, we performed histopathologic comparison of the genitourinary organs of Loxl1(-/-) and control mice. Loxl1(-/-) mice weighed less than their age-matched C57Bl/6 counterparts (P < .001). Size-adjusted perineal bulge was larger (P < .001), and resting location of the gonads was higher intra-abdominally (P = .048) in the Loxl1(-/-) mice. Estimates of daily sperm counts revealed that the Loxl1(-/-) mice had lower sperm production (P = .048). Loxl1(-/-) males bred with control females demonstrated relative fecundity values intermediate between Loxl1(-/-) pairs (lowest fecundity) and control pairs (highest fecundity), suggesting a component of male-factor infertility. No histologic differences were noted using hematoxylin-eosin or specialized elastin staining of the gonads, gubernaculum, and penis. Although further studies are warranted, these findings suggest a subtle and likely multifactorial role of the LOXL1 protein in male sexual development and fertility.
Insights
Male mice lacking the lysyl oxidase-like 1 gene (Loxl1) exhibit reduced body weight and sperm production. These Loxl1 knockout mice show subtle genitourinary defects, contributing to male-factor infertility.
Area of Science:
- Reproductive biology and genetics
- Developmental biology
- Biochemistry
Background:
- Lysyl oxidase-like 1 (LOXL1) is crucial for elastin homeostasis, a key component of connective tissues.
- The role of LOXL1 in male sexual development and fertility remains incompletely understood.
Purpose of the Study:
- To investigate genitourinary defects and fertility in male lysyl oxidase-like 1 gene knockout (Loxl1(-/-)) mice.
- To elucidate the function of LOXL1 in male sexual development and reproductive health.
Main Methods:
- Comparative analysis of Loxl1(-/-) mice and C57Bl/6 controls for morphometric and histopathological assessments.
- Sperm production estimation and breeding trials to evaluate male fertility.
- Histological examination of testicular, epididymal, gubernacular, and penile tissues.
Main Results:
- Loxl1(-/-) mice displayed significantly lower body weight and increased perineal bulge size.
- Reduced intra-abdominal gonad location and decreased daily sperm counts were observed in Loxl1(-/-) mice.
- Breeding studies indicated a male-factor contribution to infertility in Loxl1(-/-) pairs, though no histological differences were found.
Conclusions:
- LOXL1 plays a subtle role in male sexual development and fertility.
- The findings suggest a multifactorial involvement of LOXL1 in male reproductive health.
- Further research is warranted to fully understand the mechanisms underlying LOXL1's function.
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