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Marja Komulainen

Publications and source records attributed to Marja Komulainen.

4 recordsLinked to original sources

Relation of aromatase gene polymorphism and hormone replacement therapy to serum estradiol levels, bone mineral density, and fracture risk in early postmenopausal women.

BACKGROUND: After the menopause, estrogen synthesis from androgens and androgen precursors by aromatase is the main source of circulating estrogens. AIM: To evaluate whether aromatase gene (CYP19)polymorphism affects circulating estradiol (E2) levels, bone mineral density (BMD), BMD change or fracture risk. METHODS: A 5-year randomized hormone replacement therapy (HRT) trial on 331 early postmenopausal women (mean baseline age 52.7 +/- 2.3 years). The participants consisted of two treatment groups: the HRT group (n = 151) received a sequential combination of 2 mg estradiol valerate and 1 mg cyproterone acetate with or without vitamin D3, 100-300 IU + 93 mg calcium as lactate/day, and the non-HRT group (n = 180) received 93 mg calcium alone or in combination with vitamin D3, 100-300 IU/day for 5 years. BMD was measured from lumbar spine and proximal femur (DXA) before and after the 5-year trial. All new symptomatic, radiographically defined fractures were recorded during the follow-up. The polymorphism (intron 4 TTTA repeat) of CYP19 was evaluated after PCR amplification of the polymorphic site. CYP19 polymorphism was divided into three repeat groups: short (length of 7 or 8 in both alleles; n = 135), long (length of 11 or higher in both alleles; n = 47), and medium (rest of the values; n = 149). RESULTS: Of the baseline characteristics, only physical activity was associated with CYP19 polymorphism (P = 0.04) and a borderline significance was observed with previous fractures (P = 0.05). In the HRT or non-HRT groups, the 5-year serum E2 change was not associated with CYP19 polymorphism (P = 0.87 and 0.74, respectively). Further, the polymorphism did not influence the calculated annual changes of lumbar or femoral neck BMD during the 5-year follow-up in the HRT (P = 0.60 and 0.17, respectively) or non-HRT (P = 0.92 and 0.80, respectively) groups. In all, 28 women sustained 33 fractures during the follow-up. The CYP19 polymorphism was not significantly associated with fracture risk (P = 0.89 and 0.23 respectively; Cox proportional hazards model) in the HRT or non-HRT groups. CONCLUSIONS: CYP19 polymorphism was not associated with circulating E2 levels, BMD values, or fracture risk in these early postmenopausal Finnish women. If such an association exists in women, it may become apparent in older age groups.

Aromatase↗

Relation of androgen receptor gene polymorphism to bone mineral density and fracture risk in early postmenopausal women during a 5-year randomized hormone replacement therapy trial.

In women, the influence of androgens on bone health is not clear. It has been suggested that the androgen receptor (AR) genotype is associated with bone mineral density and serum androgen levels in pre- and perimenopausal women, but the association between AR genotype, bone mineral density, and fracture risk has not been studied in postmenopausal women. Therefore, we studied whether AR polymorphism affects bone mineral density, bone mineral density change, or fracture risk in a 5-year randomized hormone replacement therapy (HRT) trial on 331 early postmenopausal women (mean baseline age, 52.7 +/- 2.3 years). The participants consisted of two treatment groups: the HRT group (n = 151) received a sequential combination of 2 mg estradiol valerate and 1 mg cyproterone acetate with or without vitamin D3, 100-300 IU + 93 mg calcium as lactate/day, and the non-HRT group (n = 180) received 93 mg calcium alone or in combination with vitamin D3, 100-300 IU/day for 5 years. Bone mineral density was measured from lumbar spine and proximal femur (DXA) before and after the 5-year trial. All new symptomatic, radiographically defined fractures were recorded during the follow-up. The length of CAG repeat in exon 1 of AR gene was evaluated after polymerase chain reaction (PCR) amplification. The subjects were divided into three repeat groups according to AR alleles. None of the baseline characteristics were associated with AR gene polymorphism and HRT treatment. The polymorphism did not influence the calculated annual changes of lumbar or femoral neck bone mineral density during the 5-year follow-up in the HRT (p = 0.926 and 0.146, respectively) or non-HRT (p = 0.818 and 0.917, respectively) groups. In all, 28 women sustained 33 fractures during the follow-up. Thus, the numbers of fractures were limited. The AR repeat length variation was not significantly associated with fracture risk in the HRT or non-HRT groups (p = 0.632 and 0.459, respectively; Cox proportional hazards model). In conclusion, AR gene polymorphism was not associated with baseline bone mineral density, 5-year bone mineral density change, or fracture risk in early postmenopausal Finnish women.

Aged↗

Relation of estrogen receptor-alpha gene polymorphism and hormone replacement therapy to fall risk and muscle strength in early postmenopausal women.

BACKGROUND: Several factors may increase fracture risk, among them reduced bone mineral density (BMD), increased bone resorption, microarchitectural deterioration of bone, increased fall risk, and decreased muscle strength. We have previously reported that PvuII polymorphism of the estrogen receptor-alpha (ER alpha) gene is associated with bone loss rate, fracture risk, and response to hormone replacement therapy (HRT) in early postmenopausal Finnish women. METHOD: We studied the influence of the ER alpha genotype on fall risk and muscle strength in a 5-year randomized HRT trial of 331 early postmenopausal women (subgroup of the population-based OSTPRE study, Kuopio, Finland). A 5-year postal inquiry in May 1994 included questions on falls during the previous 12 months. Grip strength was measured with dynamometer. The ER alpha gene polymorphism was analysed using PCR and PvuII restriction enzyme digestion. RESULTS. In all, 97 out of the 331 women reported falls. Half of those (56%) were slip falls, mostly during the winter season. In the HRT group, the ER alpha genotype was associated with fall risk (P = 0.002, logistic regression). The risk of falls (RR) was higher in women with the PP genotype than in those with the Pp (RR = 5.26, 95% CI 1.98-13.94, P = 0.001) or the pp (RR = 3.84, 95% CI 1.46-10.12, P = 0.007) genotype. When the falls were divided into slip (environment-related) and non-slip (endogenous) falls, the non-slip falls were associated with the genotype (P = 0.004), but the slip falls were not so clearly (P = 0.061). When all falls and non-slip falls were adjusted to the number of chronic health disorders and the variable time-since-menopause, the difference between the genotypes persisted (P = 0.003 and P = 0.010, respectively). In the non-HRT group, the ER alpha genotype was not associated with fall risk. The baseline or the 5-year grip strength values were not influenced by the ER alpha genotype. In conclusion, ER alpha polymorphism is associated with fall risk, especially with non-slip falls, in early postmenopausal Finnish women during the HRT. We have previously reported that, during HRT, women with the P allele have decreased fracture risk and that they may preferentially derive benefit from the positive effect of HRT on BMD. This suggests that the influence of ER alpha polymorphism may depend on the target tissue (bone versus the nervous system). CONCLUSIONS: In these early postmenopausal, non-osteoporotic and relatively healthy women, the increased fall risk associated with the PP genotype was not associated with increased fracture risk, possibly due to improved bone strength during the HRT although falls generally predispose to fractures.

Accidental Falls↗