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M Hosokawa

Publications and source records attributed to M Hosokawa.

At least 19 recordsLinked to original sources

Genetic analysis of lifespan in hybrid progeny derived from the SAMP1 mouse strain with accelerated senescence.

The SAMP1 mouse, a senescence-accelerated mouse prone (SAMP) strain, shows accelerated senescence coupled with a short lifespan as a genetic trait, and has been used in gerontological research. The accelerated senescence and short lifespan of SAMP strains is considered to be under the control of multiple genes. To identify the chromosomal regions encompassing the genes for the accelerated senescence and short lifespan, we performed whole genome scanning with polymorphic marker loci in a progeny from a cross between the SAMP1 strain and normal B10.BR strain. A genetically recessive effect of the amyloidogenic Apoa2(c) allele from SAMP1 on chromosome 1 to shorten the lifespan was demonstrated in the progeny, consistent with the previous report. The recessive effect was observed also at D1Mit67, D5Mit267, D6Mit384 and D19Mit33, suggesting the presence of genes for accelerated senescence in the SAMP strains around these loci. Other markers on chromosomes 8, 14, 16, and 17, however, exhibited a dominant or additive effect to shorten or prolong the lifespan, demonstrating a complex genetic control of the trait.

Aging↗

Age-associated DNA damage is accelerated in the senescence-accelerated mice.

We investigated how the DNA status correlates with the aging process in organisms, in different organs and in tissues using two inbred strains of mice, which are genetically related but have different senescence patterns. The SAMP1 mice belong to an accelerated senescence-prone and short lived strain, the other, SAMR1 mice are from an accelerated senescence-resistant and long lived strain. Using the alkaline filter elution technique, pieces of tissues from six organs: lung, intestine, liver, brain, muscle, and heart have been examined for DNA damage, mainly DNA single strand breaks. It was shown that in newborns the DNA damage is minimal, and it was increased significantly with calendric age in all organs in both strains. Although the correlation of DNA damage with aging differed in the different six organs, damage was significantly higher in SAMP1 mice than SAMR1 mice at later life in all organs. This is another remarkable example for the strong correlation of DNA damage and aging process, especially with senescence acceleration.

Aging↗

Learning deficiency and alterations in acetylcholine receptors and protein kinase C in the brain of senescence-accelerated mouse (SAM)-P10.

The senescence-accelerated mouse (SAM) is known to be a murine model for accelerated aging. A novel inbred SAMP10 has shown age-related brain atrophy and learning deficiency. In the present study, we investigated the changes in learning ability and in ligand binding with muscarinic acetylcholine (mACh) receptors, alpha adrenoceptors and protein kinase C in SAMP10. In Morris's water maze task, in a control strain of SAMR1 at 9 months, the escape latency and path length decreased with increasing trial days, in contrast, escape latency and path length did not decrease in SAMP10. These results indicate that SAMP10 exhibits learning deficiency. The ligand binding activity of mACh receptors decreased in the hippocampus of SAMP10 and the protein kinase C level in the hippocampus of SAMP10 was lower than that of SAMR1. On the other hand, there was no significant difference between SAMR1 and SAMP10 regarding ligand binding activity of alpha(1) and alpha(2) adrenoceptors. Thus, a reduction of mACh receptors and protein kinase C in the brain seems to underlie dysfunction of learning and memory in SAMP10.

Aging, Premature↗

Tubular aggregates in the skeletal muscle of the senescence-accelerated mouse; SAM.

We investigated the skeletal muscles of nine strains of senescence accelerated mouse (SAM), DDD, AKR/J, C57BL/6J, A/J and BALB/c mice. We found that male SAMP8, SAMP7, C57BL/6J, A/J and BALB/c mice expressed tubular aggregates (TAs) in their skeletal muscle. Among these strains, the SAMP8 strain, which exhibits a short life span and various age-associated neurodegenerative disorders plus mitochondrial dysfunction, showed TAs more markedly than the others. Thus, we compared SAMP8 mice against SAMR1 mice, an accelerated senescence-resistant strain. Light- and electron micrographs showed that male SAMP8 mice exhibited an age-dependent aggravation of TA accumulation. There were no significant differences in the serum lactate/pyruvate levels between the SAMP8 and SAMR1 mice. However, the serum creatine kinase (CK) levels of the 3 and 6-month-old SAMP8 mice were higher than that of the corresponding SAMR1 mice. Considering the serum CK levels and the mitochondrial dysfunction of SAMP8 mice, we conclude that the TAs may be involved in the homeostasis of energy metabolism that is not appropriately regulated in the SAMP8 mouse mitochondrion.

Aging↗

Blood-brain barrier permeability in the periventricular areas of the normal mouse brain.

The main objective of this study was to assess the blood-brain barrier (BBB) permeability in periventricular areas of the normal mouse brain to test the hypothesis that the fragility of the BBB in periventricular areas may play a role in periventricular white matter lesions. Vascular permeability to intravenously injected horseradish peroxidase (HRP) was examined in the periventricular areas of adult mouse brain using light and electron microscopy. Staining for HRP appeared in the periventricular area adjacent to medial side of the lateral ventricle as well as in BBB-free areas, in the lateral septal nucleus, in the medial portion of the hippocampus and in the dorsal portion of the thalamus. In addition, the staining for HRP appeared in ependymal cell layer located near the choroid plexus and was found early after HRP injection in the wall of some vessels located at medial side of the optic tract. Ultrastructural examination of the vessel wall revealed that staining for HRP in the perfusion-fixed mice after circulation of the tracer for 5 min appeared in the perivascular space, in the basal lamina, in several vesicular profiles of the endothelial cell cytoplasm including abluminal pits, in vesicular profiles of perivascular cells and in the adjacent extracellular space. In the mice perfusion-fixed after HRP circulation for 90 min, staining for HRP in the vessels at medial side of the optic tract appeared in the cytoplasm of the perivascular cells, in vesicular structures of the endothelial cell cytoplasm such as plasmalemmal vesicles, endosomes and multivesicular bodies and occasionally in the vascular basal lamina. No clear staining reaction for HRP was found in the periventricular areas adjacent to lateral side of the lateral ventricles. These findings indicate that the BBB in the periventricular area adjacent to medial side of the lateral ventricle near the root of the choroid plexus is not so tight as it is in the cortex or in the lateral periventricular areas, and suggest that the perivascular cells play a scavenger role in the periventricular area as a component of the BBB. In addition, they indicate that blood-borne macromolecules can also invade the areas adjacent to the ventricles such as the lateral septal nucleus, the medial portion of the hippocampus and the dorsal portion of the thalamus.

Animals↗

Prevalence of Barrett's esophagus and expression of mucin antigens detected by a panel of monoclonal antibodies in Barrett's esophagus and esophageal adenocarcinoma in Japan.

Barrett's esophagus (BE) is an acquired disorder associated with a high incidence of adenocarcinoma of the lower esophagus. Moreover, it has been reported that short-segment BE may be associated with adenocarcinoma of the esophagogastric junction. The objective of this study was to define the prevalence of BE and the mucin profile in BE, including the short-segment type, and to compare the mucin profile in BE with the profiles of Barrett's adenocarcinoma and distal esophageal adenocarcinoma among Japanese. In total, 650 adult subjects underwent endoscopic examination for evaluation of BE. Although the prevalence of traditional (long segment) BE was 0.62%, the overall prevalence of BE including short-segment type was 15.7%. In Barrett's epithelium, the short-segment type predominantly had gastric type mucin, while the middle- and long-segment types possessed intestinal mucin, especially colonic type mucin (sulfo-Lewis(a)), with high frequency. In Barrett's epithelium with adenocarcinoma, all Barrett's epithelium adjacent to carcinomas showed a predominance of immunoreactivity to sulfo-Lewis(a). In Barrett's adenocarcinomas, colonic type mucin was detected in 100% by monoclonal antibody (MoAb) 91.9H. Small-intestinal mucin and gastric mucin were stained in 50% and 12.5% of the subjects, respectively. Colonic type mucin was also detected with high frequency (80%) in distal esophageal adenocarcinomas without Barrett's epithelium. These data suggest that the epitope, not of small-intestinal type or gastric type mucin, but of colonic type mucin (sulfo-Lewis(a)), may be associated with, at least in part, the malignant phenotype of BE.

Adenocarcinoma↗

Effective priming of cytotoxic T lymphocyte precursors by subcutaneous administration of peptide antigens in liposomes accompanied by anti-CD40 and anti-CTLA-4 antibodies.

Recently it has been shown that modulation of CD40 molecules on antigen (Ag) carrying dendritic cells (DC) can bypass T cell help, resulting in priming cytotoxic T lymphocytes (CTL) specific for the Ag. In the present study we attempted to prime peptide Ag-specific CTL by a new method in which a peptide Ag in liposome (liposomal peptide), consisting of phosphatidylserine and phosphatidylcholine (3:7), was administrated subcutaneously with anti-CD40 and/or CTLA-4 monoclonal antibodies (mAb) to mice. We found that the subcutaneous administration of the liposomal peptide with both anti-CD40 and anti-CTLA-4 mAb enhanced CTL responses comparing with those induced by the liposomal peptide alone or the liposomal peptide plus each mAb. It was shown that liposomes were critical for induction of the CTL activity. Flow cytometry analysis of a peptide-bearing DC in lymph nodes (LN) and measurement of serum IL-12 indicated that anti-CD40 mAb promoted migration of DC to the LN, where DC might differentiate and acquire ability of priming CTL. These findings provide a possibility that our procedure is applicable to cancer patients.

Abatacept↗

Gastric mucosal damage caused by monochloramine in the rat and protective effect of taurine: endoscopic observation through gastric fistula.

BACKGROUND AND STUDY AIMS: The mechanism of Helicobacter pylori-induced gastric mucosal injury is unknown, but H. pylori infection is conducive to accumulation in the stomach of monochloramine, a cytotoxic substance. The present study involved morphological investigation of the damaging effects of monochloramine on rat gastric mucosa, using endoscopic observations through a gastric fistula. The study also examined the protective effect of taurine against monochloramine-induced gastric mucosal lesions in rats. MATERIALS AND METHODS: The effects of monochloramine in rats were studied by administering the substance via a gastrostomy, which was then used to conduct a series of endoscopic observations. Local blood flow was measured using a laser Doppler method. Histological examination was carried out after 24 hours. Various monochloramine concentrations were used, and some animals were pretreated with taurine, a monochloramine scavenger, via the gastrostomy. RESULTS: Endoscopically, monochloramine was found to produce hemorrhagic mucosal erosions, mainly in the gastric body, in a time-dependent and concentration-dependent manner. Blood flow was decreased in advance of mucosal erosion. Taurine prevented mucosal injury by 30 mM monochloramine, the highest concentration tested. CONCLUSIONS: Although only the first 24 hours of mucosal injury were observed in the present study, the most likely mechanisms by which monochloramine caused injury to the gastric mucosa appeared to be both oxidative damage and a reduction in blood flow, impairing the mucosal defense mechanism.

Analysis of Variance↗

Serum lipid concentrations and mean life span are modulated by dietary polyunsaturated fatty acids in the senescence-accelerated mouse.

The senescence-accelerated mouse (SAMP8) is an animal model used in studies of aging. This study was undertaken to investigate the effects of dietary PUFA on longevity (Experiment 1) and serum lipid concentrations (Experiment 2) in SAMP8 mice. Male mice were fed either an (n-3) PUFA-rich (9 g/100 g perilla oil) or an (n-6) PUFA-rich (9 g/100 g safflower oil) diet beginning at 6 wk of age. Experiment 1: The groups did not differ in body weight gain, but those fed perilla oil had significantly lower scores of senescence relative to those fed safflower oil (P<0.05). The mean life span of mice fed perilla oil was 357+/-21 d and of those fed safflower oil, 426+/-24 d (P<0.05). Pathological studies revealed that the incidence of tumors was significantly lower in the perilla oil group than in the safflower oil group (P<0.05). Approximately half the mice fed perilla oil had died after 10 mo, and the direct causes closely connected with death could not be specified. Experiment 2: The serum total cholesterol, HDL cholesterol, triglyceride and phospholipid concentrations were significantly lower in the perilla oil group than in the safflower oil group (P<0.01). A marked decrease of serum HDL cholesterol and apolipoprotein A-II (ApoA-II)concentrations in advanced age were observed in the mice fed perilla oil (P<0.01). Ten-month-old mice fed perilla oil had a significantly greater ratio of apolipoprotein A-I (ApoA-I) to ApoA-II than those fed safflower oil. Separation of HDL subfractions revealed that the smaller HDL species were much more abundant than the larger HDL species in both dietary oil groups. These findings suggest that dietary (n-3) and (n-6) PUFA differ in their effects on serum lipid metabolism which may modulate the mean life span of SAMP8 mice fed each dietary oil.

Aging↗

Therapeutic effect of basic fibroblast growth factor on experimental pancreatitis in rat.

Basic fibroblast growth factor (bFGF) is one of the mitogens that facilitate endothelial proliferation and angiogenesis. This study was designed to examine the therapeutic effect of bFGF on experimental pancreatitis in rat. Edematous pancreatitis was induced by intraperitoneal injections of cerulein (50 microg/kg) at hourly intervals. BFGF (70 nmol/kg) was administered intraperitoneally after induction of pancreatitis. DNA synthesis of isolated pancreatic acinar cells of normal rats was determined as the uptake of 5-bromo-2'-deoxyuridine (BrdU) into the cells. Immunohistochemical staining of DNA synthesis in acinar cells during cerulein-induced pancreatitis was also examined with BrdU labeling in vivo technique. Cerulein administration increased serum amylase, lipase level, and wet weight of pancreatic tissue. Treatment with bFGF markedly ameliorated all these parameters. In primary culture system of isolated pancreatic acinar cells of normal rats, bFGF caused a dose-dependent increase in BrdU incorporation into DNA, showing an EC50 value of 0.8 nmol/L and a maximum response of 2.5-fold increase at a concentration of 400 nmol/L. bFGF treatment (70 nmol/kg) markedly increased BrdU labeling in the nucleus of acinar cells of the pancreatitis rats group in immunohistochemical examination when compared with control without bFGF treatment. Treatment with bFGF may represent a promising therapeutic concept for patients with acute pancreatitis.

Animals↗

Phenacetin deacetylase activity in human liver microsomes: distribution, kinetics, and chemical inhibition and stimulation.

Microsomal and cytosolic phenacetin deacetylase activities were examined in human liver and kidneys. Kinetic properties of the activities were also studied in human liver microsomes. Phenacetin deacetylase activity was predominantly localized in the liver microsomal fraction. The specific activities of phenacetin deacetylation in liver cytosol and in kidney microsomes and cytosol were all less than 5% of that in liver microsomes. In human liver microsomes, Eadie-Hofstee plots for phenacetin deacetylation were monophasic, indicating a single-enzyme catalytic reaction. The Michaelis-Menten parameters, K(m) and V(max), for the deacetylation were 4.7 mM and 5.54 nmol/min/mg of protein, respectively. The intrinsic clearance, calculated as V(max)/K(m), was 1.18 microl/min/mg of protein. Although the organophosphate bis(4-nitrophenyl)phosphoric acid markedly inhibited the reaction in human liver microsomes, the activity has a tolerance to the treatment of phenylmethylsulfonyl fluoride, a serine hydrolase inhibitor. Prazosin, a peripheral alpha(1)-adrenergic antagonist, noncompetitively inhibited the phenacetin deacetylation with a K(i) value of 19.0 microM. Flutamide, a nonsteroidal androgen receptor antagonist, stimulated the activity by up to 349%. This increase was accompanied by a decrease in the K(m) value and no change in the V(max) value, resulting in an increase in the intrinsic clearance by up to 700% of the control. These results suggest that the phenacetin deacetylase localized in human liver microsomes has not only a catalytic site but also a negative and/or positive modulation site or sites.

Carboxylic Ester Hydrolases↗

[Possible clinical application of immunochemotherapy experimented in animals].

The author has been investigating the value of combination chemotherapy in order to augment the effects of immunotherapy (biotherapy) for experimental tumors in animals. The accumulated evidence from experimental immunochemotherapy is briefly reviewed in this paper; for example, low-dose chemotherapy not only reduced tumor burden but also brought about immunological effects such as restoration of anti-tumor immune responses. The paper also contains a summary of the immune escape mechanisms frequently observed in tumor-bearing hosts. Clinically, immunotherapy is generally applied to cancer patients in order to overcome the immune escape mechanisms and restore the immune responses to tumor cells. It is hard to expect, however, that the various strategies of cancer immunotherapy which show strong immunological effects in immunocompetent hosts would overcome the immune escape mechanisms in tumor-bearing hosts. The combined use of chemotherapy enhanced the effects of immunotherapy in the experiments. The author suggests that low-dose chemotherapy can augment the immune responses to tumor cells by overcoming the immune escape mechanisms in tumor-bearing hosts. Other findings presented are that the activity of immunosuppressor T cells or the production of an immuno-suppressive cytokine, TGF-beta, by tumor cells could be selectively inhibited by low-dose chemotherapy. On the basis of such evidence in animal experiments, the author presents his proposals for clinical cancer treatments.

Animals↗

cDNA cloning, characterization and stable expression of novel human brain carboxylesterase.

The DNA sequence encoding a novel human brain carboxylesterase (CES) has been determined. The protein is predicted to have 567 amino acids, including conserved motifs, such as GESAGG, GXXXXEFG, and GDHGD which comprise a catalytic triad, and the endoplasmic reticulum retention motif (HXEL-COOH) observed in CES families. Their gene products exhibited hydrolase activity towards temocapril, p-nitrophenyl-acetate and long-chain acyl-CoA. Since the molecular masses of these gene products are similar to those that exist in capillary endothelial cells of the human brain [Yamamda et al. (1994) Brain Res. 658, 163-167], these CES isozymes may function as a blood-brain barrier to protect the central nervous system from ester or amide compounds.

Amino Acid Sequence↗

Association of matrilysin expression with recurrence and poor prognosis in human esophageal squamous cell carcinoma.

Matrix metalloproteinase-7 (matrilysin) has been implicated in tumor invasion and metastasis as well as tumor initiation and growth. In this study, we analyzed an association between immunohistochemically detected matrilysin expression at the invasive front in esophageal squamous cell carcinomas and clinicopathological characteristics and determined whether matrilysin predicts recurrence and/or survival Matrilysin expression at the invasive front was detected in 49% of 100 carcinoma tissues and was associated with the depth of invasion (P < 0.0001), advanced tumor stage (P = 0.0159), recurrences (P = 0.0002), and recurrences within the first postoperative year (P = 0.002). Patients with matrilysin-positive carcinoma had a significantly shorter disease-free and overall survival time than did those with a matrilysin-negative one (P < 0.0001). Matrilysin remained a significant predictive value for disease-free and overall survival in multivariate analysis, including conventional clinicopathological factors (P = 0.0007 and 0.0004, respectively). Our results suggest that matrilysin may play a key role in the progression of esophageal carcinoma and that its detection may be useful for the prediction of recurrence and poor prognosis and, possibly, for selecting patients for anti-matrix metalloproteinase therapy.

Carcinoma, Squamous Cell↗

Intraoperative radiation therapy to the upper mediastinum and nerve-sparing three-field lymphadenectomy followed by external beam radiotherapy for patients with thoracic esophageal carcinoma.

BACKGROUND: In patients with thoracic esophageal carcinoma, radical dissection of the upper mediastinal lymph nodes often leads to complications such as recurrent laryngeal nerve palsy and subsequent pulmonary disorders. Intraoperative radiation therapy (IORT) to the upper mediastinum and nerve-sparing three-field lymphadenectomy followed by external beam radiotherapy has been developed to improve the locoregional control rate without resulting in these major postoperative complications. METHODS: Three-field lymphadenectomy, including cervical, mediastinal, and abdominal lymph node dissection, was performed. Dissection of the upper mediastinum was conservative to preserve recurrent laryngeal nerve function. IORT of 12-25 grays (Gy) was applied to the upper mediastinum. Postoperative radiation therapy (PORT) of 45 Gy in 16 fractions over 4 weeks was applied to the entire neck and upper mediastinum using an external X-ray beam. Between 1989-1996, 121 patients with thoracic esophageal carcinoma underwent surgery and received IORT, and 103 of these patients underwent PORT as part of their treatment schedule. RESULTS: The surgical mortality rate was 0.8% (1 of 121 cases). The overall 5-year survival rate was 34.4% and the cause specific 5-year survival rate was 54.8%. The cause specific 5-year survival rate for pN0 tumors was 79.4% and was 43.8% for pN1 tumors. No patients died with locoregional recurrence in the mediastinal lymph nodes. Recurrent laryngeal nerve palsy was observed in 25 patients (21%), but the palsy remained for > 1 month in only 13 patients (11%). Mechanical ventilation support for > 48 hours was required for 22 patients (18.2%). Fatal tracheal ulcers occurred in 4 of 18 patients who received the highest IORT dose of 25 Gy. CONCLUSIONS: Three-field lymphadenectomy to preserve recurrent laryngeal nerves and IORT using 12-20 Gy followed by 45-Gy PORT effectively reduced locoregional recurrence, recurrent laryngeal nerve palsy, and pulmonary complications caused by radical surgical dissections. The minimally effective dose of IORT appears to be < or = 15 Gy, a factor that will be further evaluated with longer follow-up.

Adult↗

Toxicological significance in the cleavage of esterase-beta-glucuronidase complex in liver microsomes by organophosphorus compounds.

Egasyn is an accessory protein of beta-glucuronidase (beta-G) in the liver microsomes. Liver microsomal beta-G is stabilized within the luminal site of the microsomal vesicles by complexation with egasyn which is one of the carboxylesterase isozymes. We investigated the effects of organophosphorus compounds (OPs) such as insecticides on the dissociation of egasyn-beta-glucuronidase (EG) complex. The EG complex was easily dissociated by administration of OPs, i.e. fenitrothion, EPN, phenthionate, and bis-beta-nitrophenyl phosphate (BNPP), and resulting beta-G dissociated was released into blood, leading to the rapid and transient increase of plasma beta-G level with a concomitant decrease of liver microsomal beta-G level. In a case of phenthionate treatment, less increase in plasma beta-G level was observed, as compared with those of other OPs. This may be explained by the fact that phenthionate was easily hydrolyzed by carboxylesterase. Similarly, carbamate insecticides such as carbaryl caused rapid increase of plasma beta-G level. In contrast, no significant increase of plasma beta-G level was observed when pyrethroid insecticides were administered to rats. This is due to the fact that pyrethroids such as phenthrin and allethrin were easily hydrolyzed by A-esterase as well as carboxylesterase. On the other hand, addition of OPs to the incubation mixture containing liver microsomes caused the release of beta-G from microsomes to the medium. From these in vivo and in vitro data, it is concluded that increase of the plasma beta-G level after OP administration is much more sensitive biomarker than cholinesterase inhibition to acute intoxication of OPs and carbamates.

Animals↗

Assessment of DNA-protein crosslinks in the course of aging in two mouse strains by use of a modified alkaline filter elution applied to whole tissue samples.

Two different mouse strains have been used for determination of age dependence of DNA-protein crosslinks by alkaline filter elution: a long lived laboratory strain, NMRI and an accelerated senescence-prone, short lived strain, SAMP1. Five organs were selected: Brain, kidney, lung, heart and liver. Remarkably in all five organs of short lived SAMPI mice crosslinks increased significantly with age. In NMRI however only in brain and heart a significant rise in old age has been observed, while in the other organs there was no increase in DNA-protein crosslinking. Appreciable mitotic activity which is lacking in brain and heart could be the reason for this difference. Poor repair in all five organs could be an important component for the multiple ailments and shortened life span in SAMP1 mice.

Aging↗

Expression of the c-fos gene induced by parathyroid hormone in the bones of SAMP6 mice, a murine model for senile osteoporosis.

SAMP6 mice are a murine model for senile osteoporosis, characterized by low peak bone mass seen at 4 or 5 months of age. Parathyroid hormone (PTH)-induced c-fos expression was examined in the bones, bone-marrow cells and kidney tissues of 2-month-old male SAMP6 mice. SAMP2 mice, which have a higher peak bone mass, were used as controls. The expression of c-fos in the bone peaked at 30 min after 60 microg/kg of human PTH(1-34) administration. After peaking, the expression fell quickly in SAMP2 mice. This decrease in expression was delayed in SAMP6 mice and the expression was higher at 1 h than in SAMP2 mice. The phenomenon observed in the bone appears to be tissue specific as it was not seen in the bone-marrow cells or kidney tissue. Immunohistochemical studies showed that c-Fos protein was localized to the nuclei of some of the osteocytes and a few of the osteoblasts in the cortical bone, and that osteocytes expressing c-Fos protein increased after PTH treatment. These results suggest that osteocytes might contribute to the maintenance of higher levels of c-fos expression in the bones of SAMP6 mice and may be related to cortical osteopenia in these mice by modulating bone remodeling and/or modeling.

Animals↗