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A Novel in vivo Gene Transfer Technique and in vitro Cell Based Assays for the Study of Bone Loss in Musculoskeletal Disorders
Published on: June 8, 2014
Soluble guanylate cyclase as a novel treatment target for osteoporosis
Jisha Joshua1, Gerburg K Schwaerzer, Hema Kalyanaraman
1Departments of Medicine (J.J., G.K.S., H.K., G.R.B., R.B.P.), Bioengineering (E.C., R.S.S.), Mathematics (M.L.), and Family and Preventive Medicine (F.V.), University of California, San Diego, La Jolla, California 92093-0652.
Abstract:
Osteoporosis is a major health problem leading to fractures that cause substantial morbidity and mortality. Current osteoporosis therapies have significant drawbacks, creating a need for novel bone-anabolic agents. We previously showed that the nitric oxide/cyclic GMP (cGMP)/protein kinase G pathway mediates some of the anabolic effects of estrogens and mechanical stimulation in osteoblasts and osteocytes, leading us to hypothesize that cGMP-elevating agents may have bone-protective effects. We tested cinaciguat, a prototype of a novel class of soluble guanylate cyclase activators, in a mouse model of estrogen deficiency-induced osteoporosis. Compared with sham-operated mice, ovariectomized mice had lower serum cGMP concentrations, which were largely restored to normal by treatment with cinaciguat or low-dose 17β-estradiol. Microcomputed tomography of tibiae showed that cinaciguat significantly improved trabecular bone microarchitecture in ovariectomized animals, with effect sizes similar to those obtained with estrogen replacement therapy. Cinaciguat reversed ovariectomy-induced osteocyte apoptosis as efficiently as estradiol and enhanced bone formation parameters in vivo, consistent with in vitro effects on osteoblast proliferation, differentiation, and survival. Compared with 17β-estradiol, which completely reversed the ovariectomy-induced increase in osteoclast number, cinaciguat had little effect on osteoclasts. Direct guanylate cyclase stimulators have been extremely well tolerated in clinical trials of cardiovascular diseases, and our findings provide proof-of-concept for this new class of drugs as a novel, anabolic treatment strategy for postmenopausal osteoporosis, confirming an important role of nitric oxide/cGMP/protein kinase G signaling in bone.
Insights
Novel drugs that increase cyclic GMP (cGMP) show promise for treating osteoporosis. Cinaciguat, a soluble guanylate cyclase activator, improved bone density and formation in a mouse model, offering a potential new anabolic therapy.
Area of Science:
- Bone biology and pharmacology
- Endocrinology and metabolic diseases
Background:
- Osteoporosis poses a significant health risk, necessitating new treatments beyond current therapies.
- The nitric oxide/cyclic GMP (cGMP)/protein kinase G pathway is implicated in the bone-protective effects of estrogen and mechanical stimuli.
Purpose of the Study:
- To investigate the potential of cGMP-elevating agents as a novel therapeutic strategy for osteoporosis.
- To evaluate the efficacy of cinaciguat, a soluble guanylate cyclase activator, in a mouse model of estrogen deficiency-induced osteoporosis.
Main Methods:
- Ovariectomized mice were treated with cinaciguat or 17β-estradiol.
- Serum cGMP levels, bone microarchitecture (microcomputed tomography), osteocyte apoptosis, and bone formation parameters were assessed.
- Osteoclast numbers were quantified.
Main Results:
- Cinaciguat treatment restored reduced serum cGMP levels in ovariectomized mice.
- Cinaciguat significantly improved trabecular bone microarchitecture and enhanced bone formation, comparable to estrogen therapy.
- Cinaciguat effectively reduced osteocyte apoptosis but had minimal impact on osteoclast numbers.
Conclusions:
- Soluble guanylate cyclase activators like cinaciguat represent a promising new class of anabolic agents for postmenopausal osteoporosis.
- The nitric oxide/cGMP/protein kinase G pathway plays a crucial role in bone metabolism and presents a viable therapeutic target.
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