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1.
EMBO J ; 38(18): e100849, 2019 09 16.
Article in English | MEDLINE | ID: mdl-31424120

ABSTRACT

The placenta is an autonomous organ that maintains fetal growth and development. Its multinucleated syncytiotrophoblast layer, providing fetal nourishment during gestation, exhibits characteristics of cellular senescence. We show that in human placentas from pregnancies with intrauterine growth restriction, these characteristics are decreased. To elucidate the functions of pathways regulating senescence in syncytiotrophoblast, we used dynamic contrast-enhanced MRI in mice with attenuated senescence programs. This approach revealed an altered dynamics in placentas of p53-/- , Cdkn2a-/- , and Cdkn2a-/- ;p53-/- mice, accompanied by histopathological changes in placental labyrinths. Human primary syncytiotrophoblast upregulated senescence markers and molecular pathways associated with cell-cycle inhibition and senescence-associated secretory phenotype. The pathways and components of the secretory phenotype were compromised in mouse placentas with attenuated senescence and in human placentas from pregnancies with intrauterine growth restriction. We propose that molecular mediators of senescence regulate placental structure and function, through both cell-autonomous and non-autonomous mechanisms.


Subject(s)
Cyclin-Dependent Kinase Inhibitor p16/genetics , Fetal Growth Retardation/genetics , Gene Regulatory Networks , Placenta/diagnostic imaging , Tumor Suppressor Protein p53/genetics , Animals , Cellular Senescence , Disease Models, Animal , Female , Gene Expression Regulation , Humans , Magnetic Resonance Imaging , Mice , Phenotype , Placenta/metabolism , Pregnancy , Signal Transduction , Trophoblasts/metabolism
2.
Am J Obstet Gynecol ; 227(3): 486.e1-486.e10, 2022 09.
Article in English | MEDLINE | ID: mdl-35430228

ABSTRACT

BACKGROUND: Post-COVID-19 vaccine boosting is a potent tool in the ongoing pandemic. Relevant data regarding this approach during pregnancy are lacking, which affects vaccination policy guidance, public acceptance, and vaccine uptake during pregnancy. We aimed to investigate the dynamics of anti-SARS-CoV-2 antibody levels following SARS-CoV-2 infection during pregnancy and to characterize the effect of a single postinfection vaccine booster dose on the anti-SARS-CoV-2 antibody levels in parturients in comparison with the levels in naïve vaccinated and convalescent, nonboosted parturients. STUDY DESIGN: Serum samples prospectively collected from parturients and umbilical cords at delivery at our university-affiliated urban medical center in Jerusalem, Israel, from May to October 2021, were selected and analyzed in a case-control manner. Study groups comprised the following participants: a consecutive sample of parturients with a polymerase chain reaction-confirmed history of COVID-19 during any stage of pregnancy; and comparison groups selected according to time of exposure comprising (1) convalescent, nonboosted parturients with polymerase chain reaction-confirmed COVID-19; (2) convalescent parturients with polymerase chain reaction-confirmed COVID-19 who received a single booster dose of the BNT162b2 messenger RNA vaccine; and (3) infection-naïve, fully vaccinated parturients who received 2 doses of the BNT162b2 messenger RNA vaccine. Outcomes that were determined included maternal and umbilical cord blood anti-SARS-CoV-2 antibody levels detected at delivery, the reported side effects, and pregnancy outcomes. RESULTS: A total of 228 parturients aged 18 to 45 years were included. Of those, samples from 64 were studied to characterize the titer dynamics following COVID-19 at all stages of pregnancy. The boosting effect was determined by comparing (1) convalescent (n=54), (2) boosted convalescent (n=60), and (3) naïve, fully vaccinated (n=114) parturients. Anti-SARS-CoV-2 antibody levels detected on delivery showed a gradual and significant decline over time from infection to delivery (r=0.4371; P=.0003). Of the gravidae infected during the first trimester, 34.6% (9/26) tested negative at delivery, compared with 9.1% (3/33) of those infected during the second trimester (P=.023). Significantly higher anti-SARS-CoV-2 antibody levels were observed among boosted convalescent than among nonboosted convalescent (17.6-fold; P<.001) and naïve vaccinated parturients (3.2-fold; P<.001). Similar patterns were observed in umbilical cord blood. Side effects in convalescent gravidae resembled those in previous reports of mild symptoms following COVID-19 vaccination during pregnancy. CONCLUSION: Postinfection maternal humoral immunity wanes during pregnancy, leading to low or undetectable protective titers for a marked proportion of patients. A single boosting dose of the BNT162b2 messenger RNA vaccine induced a robust increase in protective titers for both the mother and newborn with moderate reported side effects.


Subject(s)
COVID-19 Vaccines , COVID-19 , Viral Vaccines , Antibodies, Viral , BNT162 Vaccine , COVID-19/prevention & control , COVID-19 Vaccines/adverse effects , Humans , Immunity, Humoral , Infant, Newborn , RNA, Messenger , SARS-CoV-2 , Vaccines, Synthetic , Viral Vaccines/adverse effects , mRNA Vaccines
3.
Proc Natl Acad Sci U S A ; 115(10): E2429-E2436, 2018 03 06.
Article in English | MEDLINE | ID: mdl-29444856

ABSTRACT

Placental functions, including transport and metabolism, play essential roles in pregnancy. This study assesses such processes in vivo, from a hyperpolarized MRI perspective. Hyperpolarized urea, bicarbonate, and pyruvate were administered to near-term pregnant rats, and all metabolites displayed distinctive behaviors. Little evidence of placental barrier crossing was observed for bicarbonate, at least within the timescales allowed by 13C relaxation. By contrast, urea was observed to cross the placental barrier, with signatures visible from certain fetal organs including the liver. This was further evidenced by the slower decay times observed for urea in placentas vis-à-vis other maternal compartments and validated by mass spectrometric analyses. A clear placental localization, as well as concurrent generation of hyperpolarized lactate, could also be detected for [1-13C]pyruvate. These metabolites also exhibited longer lifetimes in the placentas than in maternal arteries, consistent with a metabolic activity occurring past the trophoblastic interface. When extended to a model involving the administration of a preeclampsia-causing chemical, hyperpolarized MR revealed changes in urea's transport, as well as decreases in placental glycolysis vs. the naïve animals. These distinct behaviors highlight the potential of hyperpolarized MR for the early, minimally invasive detection of aberrant placental metabolism.


Subject(s)
Magnetic Resonance Imaging/methods , Placenta/physiology , Pre-Eclampsia/diagnostic imaging , Animals , Bicarbonates/metabolism , Carbon Isotopes/chemistry , Disease Models, Animal , Female , Humans , Lactic Acid/metabolism , Male , Monitoring, Physiologic , Placenta/diagnostic imaging , Pre-Eclampsia/diagnosis , Pre-Eclampsia/metabolism , Pregnancy , Pyruvic Acid/chemistry , Pyruvic Acid/metabolism , Rats , Rats, Wistar
4.
Int J Cancer ; 146(8): 2209-2217, 2020 04 15.
Article in English | MEDLINE | ID: mdl-31661557

ABSTRACT

Pancreatic cancers, both adenocarcinomas and endocrine tumors are characterized by varying levels of aberrant angiogenesis and fibrotic microenvironment. The difficulty to deliver drugs and treat the disease has been attributed in part to the vascular architecture and tissue/ECM density. Here we present longitudinal three-dimensional intravital imaging of vascular and tumor microenvironment remodeling in spontaneous transgenic tumors (RIP1-Tag2 insulinomas) and orthotopically injected tumors (KPC adenocarcinomas). Analysis of the data acquired in insulinomas revealed major differences in tumor blood vessel branching, fraction volume, number of branch points segments, vessel straightness and length compared to the normal tissue. The aggressive adenocarcinoma presented widespread peritumoral vascular remodeling and heterogeneous vascular distribution. Longitudinal imaging was used to acquire sequential vascular remodeling data during tumor progression. This work demonstrates the potential for using a pancreatic intravital imaging window for direct visualization of the tumor heterogenic microenvironments during tumor progression.


Subject(s)
Pancreatic Neoplasms/blood supply , Pancreatic Neoplasms/diagnostic imaging , Animals , Carcinoma, Pancreatic Ductal/blood supply , Carcinoma, Pancreatic Ductal/diagnostic imaging , Cell Line, Tumor , Extracellular Matrix , Intravital Microscopy/methods , Mice , Mice, Inbred C57BL , Mice, Transgenic , Neovascularization, Pathologic/diagnostic imaging , Pancreas/blood supply , Tumor Microenvironment
5.
Br J Cancer ; 123(2): 216-225, 2020 07.
Article in English | MEDLINE | ID: mdl-32390007

ABSTRACT

BACKGROUND: The extracellular matrix modulates the development of ovarian tumours. Currently, evaluation of the extracellular matrix in the ovary is limited to histological methods. Both magnetic resonance imaging (MRI) and two-photon microscopy (2PM) enable dynamic visualisation and quantification of fibrosis by endogenous contrast mechanisms: magnetisation transfer (MT) MRI and second-harmonic generation (SHG) 2PM, respectively. METHODS: Here, we applied the MT-MRI protocol for longitudinal imaging of the stroma in orthotopic human ovarian cancer ES-2 xenograft model in CD1 athymic nude mice, and for orthotopically implanted ovarian PDX using a MR-compatible imaging window chamber implanted into NSG mice. RESULTS: We observed differences between ECM deposition in ovarian and skin lesions, and heterogeneous collagen distribution in ES-2 lesions. An MR-compatible imaging window chamber enabled visual matching between T2 MRI maps of orthotopically implanted PDX grafts and anatomical images of their microenvironment acquired with a stereomicroscope and SHG-2PM intravital microscopy of the collagen. Bimodal MRI/2PM imaging allowed us to quantify the fibrosis within the same compartments, and demonstrated the consistent results across the modalities. CONCLUSIONS: This work demonstrates a novel approach for measuring the stromal biomarkers in orthotopic ovarian tumours in mice, on both macroscopic and microscopic levels.


Subject(s)
Magnetic Resonance Imaging , Optical Imaging , Ovarian Neoplasms/diagnostic imaging , Ovary/diagnostic imaging , Animals , Cell Line, Tumor , Collagen/metabolism , Extracellular Matrix/genetics , Extracellular Matrix/pathology , Female , Heterografts , Humans , Mice , Ovarian Neoplasms/diagnosis , Ovarian Neoplasms/pathology , Ovary/pathology , Tumor Microenvironment/genetics
6.
Arterioscler Thromb Vasc Biol ; 39(8): 1602-1613, 2019 08.
Article in English | MEDLINE | ID: mdl-31189431

ABSTRACT

OBJECTIVE: The early embryo implantation is characterized by enhanced uterine vascular permeability at the site of blastocyst attachment, followed by extracellular-matrix remodeling and angiogenesis. Two TG (transglutaminase) isoenzymes, TG2 (tissue TG) and FXIII (factor XIII), catalyze covalent cross-linking of the extracellular-matrix. However, their specific role during embryo implantation is not fully understood. Approach and Results: For mapping the distribution as well as the enzymatic activities of TG2 and FXIII towards blood-borne and resident extracellular-matrix substrates, we synthetized selective and specific low molecular weight substrate analogs for each of the isoenzymes. The implantation sites were challenged by genetically modifying the trophoblast cells in the outer layer of blastocysts, to either overexpress or deplete TG2 or FXIII, and the angiogenic response was studied by dynamic contrast-enhanced-magnetic resonance imaging. Dynamic contrast-enhanced-magnetic resonance imaging revealed a decrease in the permeability of decidual vasculature surrounding embryos in which FXIII were overexpressed in trophoblast cell. Reduction in decidual blood volume fraction was demonstrated when either FXIII or TG2 were overexpressed in embryonic trophoblast cell and was elevated when trophoblast cell was depleted of FXIII. These results were corroborated by histological analysis. CONCLUSIONS: In this study, we report on the isoenzyme-specific roles of TG2 and FXIII during the early days of mouse pregnancy and further reveal their involvement in decidual angiogenesis. Our results reveal an important magnetic resonance imaging-detectable function of embryo-derived TG2 and FXIII on regulating maternal angiogenesis during embryo implantation in mice.Visual Overview: An online visual overview is available for this article.


Subject(s)
Embryo Implantation/physiology , Factor XIII/physiology , GTP-Binding Proteins/physiology , Magnetic Resonance Imaging/methods , Neovascularization, Physiologic/physiology , Transglutaminases/physiology , Animals , Female , Fibrinogen/physiology , Mice , Pregnancy , Protein Glutamine gamma Glutamyltransferase 2
9.
J Am Chem Soc ; 140(50): 17456-17464, 2018 12 19.
Article in English | MEDLINE | ID: mdl-30484648

ABSTRACT

It has been demonstrated that divalent zinc ions packaged with insulin in ß-cell granules can be detected by MRI during glucose-stimulated insulin secretion using a gadolinium-based Zn2+-sensitive agent. This study was designed to evaluate whether a simpler agent design having single Zn2+-sensing moieties but with variable Zn2+ binding affinities might also detect insulin secretion from the pancreas. Using an implanted MR-compatible window designed to hold the pancreas in a fixed position for imaging, we now demonstrate that focally intense "hot spots" can be detected in the tail of the pancreas using these agents after administration of glucose to stimulate insulin secretion. Histological staining of the same tissue verified that the hot spots identified by imaging correspond to clusters of islets, perhaps reflecting first-responder islets that are most responsive to a sudden increase in glucose. A comparison of images obtained when using a high-affinity Zn2+ sensor versus a lower-affinity sensor showed that the lower-affinity sensors produced the best image contrast. An equilibrium model that considers all possible complexes formed between Zn2+, the GdL sensor, and HSA predicts that a GdL sensor with lower affinity for Zn2+ generates a lower background signal from endogenous Zn2+ prior to glucose-stimulated insulin secretion (GSIS) and that the weaker binding affinity agent is more responsive to a further increase in Zn2+ concentration near ß-cells after GSIS. These model predictions are consistent with the in vivo imaging observations.


Subject(s)
Contrast Media/chemistry , Coordination Complexes/chemistry , Insulin Secretion/physiology , Insulin/metabolism , Pancreas/metabolism , Zinc/metabolism , Animals , Binding Sites , Contrast Media/chemical synthesis , Coordination Complexes/chemical synthesis , Gadolinium/chemistry , Humans , Insulin-Secreting Cells/metabolism , Magnetic Resonance Imaging/methods , Male , Mice, Inbred C57BL , Pancreas/cytology , Protein Binding , Serum Albumin, Human/chemistry , Serum Albumin, Human/metabolism , Zinc/chemistry
10.
Proc Natl Acad Sci U S A ; 112(16): 5147-52, 2015 Apr 21.
Article in English | MEDLINE | ID: mdl-25825771

ABSTRACT

Therapies that promote angiogenesis have been successfully applied using various combinations of proangiogenic factors together with a biodegradable delivery vehicle. In this study we used bimodal noninvasive monitoring to show that the host response to a proangiogenic biomaterial can be drastically affected by the mode of implantation and the surface area-to-volume ratio of the implant material. Fluorescence/MRI probes were covalently conjugated to VEGF-bearing biodegradable PEG-fibrinogen hydrogel implants and used to document the in vivo degradation and liberation of bioactive constituents in an s.c. rat implantation model. The hydrogel biodegradation and angiogenic host response with three types of VEGF-bearing implant configurations were compared: preformed cylindrical plugs, preformed injectable microbeads, and hydrogel precursor, injected and polymerized in situ. Although all three were made with identical amounts of precursor constituents, the MRI data revealed that in situ polymerized hydrogels were fully degraded within 2 wk; microbead degradation was more moderate, and plugs degraded significantly more slowly than the other configurations. The presence of hydrogel degradation products containing the fluorescent label in the surrounding tissues revealed a distinct biphasic release profile for each type of implant configuration. The purported in vivo VEGF release profile from the microbeads resulted in highly vascularized s.c. tissue containing up to 16-fold more capillaries in comparison with controls. These findings demonstrate that the configuration of an implant can play an important role not only in the degradation and resorption properties of the materials, but also in consequent host angiogenic response.


Subject(s)
Magnetic Resonance Imaging , Neovascularization, Physiologic , Prostheses and Implants , Animals , Cross-Linking Reagents/pharmacology , Fluorescence , Hydrogels/pharmacology , Image Processing, Computer-Assisted , Immunohistochemistry , Neovascularization, Physiologic/drug effects , Rats , Vascular Endothelial Growth Factor A/pharmacology
11.
Proc Natl Acad Sci U S A ; 111(28): 10353-8, 2014 Jul 15.
Article in English | MEDLINE | ID: mdl-24969421

ABSTRACT

Mammalian models, and mouse studies in particular, play a central role in our understanding of placental development. Magnetic resonance imaging (MRI) could be a valuable tool to further these studies, providing both structural and functional information. As fluid dynamics throughout the placenta are driven by a variety of flow and diffusion processes, diffusion-weighted MRI could enhance our understanding of the exchange properties of maternal and fetal blood pools--and thereby of placental function. These studies, however, have so far been hindered by the small sizes, the unavoidable motions, and the challenging air/water/fat heterogeneities, associated with mouse placental environments. The present study demonstrates that emerging methods based on the spatiotemporal encoding (SPEN) of the MRI information can robustly overcome these obstacles. Using SPEN MRI in combination with albumin-based contrast agents, we analyzed the diffusion behavior of developing placentas in a cohort of mice. These studies successfully discriminated the maternal from the fetal blood flows; the two orders of magnitude differences measured in these fluids' apparent diffusion coefficients suggest a nearly free diffusion behavior for the former and a strong flow-based component for the latter. An intermediate behavior was observed by these methods for a third compartment that, based on maternal albumin endocytosis, was associated with trophoblastic cells in the interphase labyrinth. Structural features associated with these dynamic measurements were consistent with independent intravital and ex vivo fluorescence microscopy studies and are discussed within the context of the anatomy of developing mouse placentas.


Subject(s)
Contrast Media/pharmacology , Magnetic Resonance Imaging , Optical Imaging , Placental Circulation/physiology , Pregnancy/physiology , Trophoblasts/cytology , Animals , Female , Mice
12.
Int J Cancer ; 139(8): 1788-98, 2016 10 15.
Article in English | MEDLINE | ID: mdl-27242346

ABSTRACT

Metastatic ovarian cancer, the most lethal of gynecologic malignancies, is typically managed by debulking surgery, followed by chemotherapy. However, despite significant efforts, survival rate remains low. We have previously demonstrated, in mouse models, a specific systemic homing of labeled fibroblasts to solid ovarian tumors. Here, we demonstrate the feasibility of utilizing this specific homing of genetically modified fibroblasts for detection and targeted therapy of orthotopic metastatic ovarian carcinoma model in immune-deficient mice. Using an in vivo metastatic mouse model for ovarian cancer, we demonstrated that fibroblasts expressing fluorescent reporters injected intra-peritoneally, were specifically recruited to peritoneal tumor nodules (resulting in 93-100% co-localization). We further used fibroblasts over expressing the soluble receptor variant of VEGFR1 (s-Flt1). Mice bearing tumors were injected weekly with either control or s-Flt1 expressing fibroblasts. Injection of s-Flt1 expressing fibroblasts resulted in a significant reduction in the ascites volume, reduced vascularization of adherent metastases, and improved overall survival. Using fluorescently labeled fibroblasts for tumor detection with readily available intra-operative fluorescence imaging tools may be useful for tumor staging and directing biopsies or surgical efforts during exploratory or debulking surgery. Fibroblasts may serve as a beacon pointing to the otherwise invisible metastases in the peritoneal cavity of ovarian cancer patients. Utilizing the recruited fibroblasts also for targeted delivery of anti angiogenic or antitumor molecules may aid in controlling tumor progression. Thus, these results suggest a novel approach for targeting ovarian tumor metastases for both tumor detection and therapy.


Subject(s)
Fibroblasts/pathology , Neoplasms, Glandular and Epithelial/pathology , Ovarian Neoplasms/pathology , Animals , Carcinoma, Ovarian Epithelial , Cell Line, Transformed , Cell Line, Tumor , Female , Fibroblasts/metabolism , Fibroblasts/transplantation , Fluorescent Dyes/administration & dosage , Fluorescent Dyes/chemistry , Haplorhini , Heterografts , Humans , Mice , Mice, Nude , Neoplasms, Glandular and Epithelial/blood supply , Neoplasms, Glandular and Epithelial/diagnostic imaging , Neoplasms, Glandular and Epithelial/therapy , Ovarian Neoplasms/blood supply , Ovarian Neoplasms/diagnostic imaging , Ovarian Neoplasms/therapy , Vascular Endothelial Growth Factor Receptor-1/biosynthesis
13.
Radiology ; 280(1): 68-77, 2016 07.
Article in English | MEDLINE | ID: mdl-26780539

ABSTRACT

Purpose To generate magnetic resonance (MR) imaging-derived, oxygen-hemoglobin dissociation curves and to map fetal-placental oxygen-hemoglobin affinity in pregnant mice noninvasively by combining blood oxygen level-dependent (BOLD) T2* and oxygen-weighted T1 contrast mechanisms under different respiration challenges. Materials and Methods All procedures were approved by the Weizmann Institutional Animal Care and Use Committee. Pregnant mice were analyzed with MR imaging at 9.4 T on embryonic days 14.5 (eight dams and 58 fetuses; imprinting control region ICR strain) and 17.5 (21 dams and 158 fetuses) under respiration challenges ranging from hyperoxia to hypoxia (10 levels of oxygenation, 100%-10%; total imaging time, 100 minutes). A shorter protocol with normoxia to hyperoxia was also performed (five levels of oxygenation, 20%-100%; total imaging time, 60 minutes). Fast spin-echo anatomic images were obtained, followed by sequential acquisition of three-dimensional gradient-echo T2*- and T1-weighted images. Automated registration was applied to align regions of interest of the entire placenta, fetal liver, and maternal liver. Results were compared by using a two-tailed unpaired Student t test. R1 and R2* values were derived for each tissue. MR imaging-based oxygen-hemoglobin dissociation curves were constructed by nonlinear least square fitting of 1 minus the change in R2*divided by R2*at baseline as a function of R1 to a sigmoid-shaped curve. The apparent P50 (oxygen tension at which hemoglobin is 50% saturated) value was derived from the curves, calculated as the R1 scaled value (x) at which the change in R2* divided by R2*at baseline scaled (y) equals 0.5. Results The apparent P50 values were significantly lower in fetal liver than in maternal liver for both gestation stages (day 14.5: 21% ± 5 [P = .04] and day 17.5: 41% ± 7 [P < .0001]). The placenta showed a reduction of 18% ± 4 in mean apparent P50 values from day 14.5 to day 17.5 (P = .003). Reproduction of the MR imaging-based oxygen-hemoglobin dissociation curves with a shorter protocol that excluded the hypoxic periods was demonstrated. Conclusion MR imaging-based oxygen-hemoglobin dissociation curves and oxygen-hemoglobin affinity information were derived for pregnant mice by using 9.4-T MR imaging, which suggests a potential to overcome the need for direct sampling of fetal or maternal blood. Online supplemental material is available for this article.


Subject(s)
Hemoglobins/metabolism , Hyperoxia/metabolism , Hypoxia/metabolism , Magnetic Resonance Imaging/methods , Oxygen/metabolism , Placenta/metabolism , Animals , Female , Fetus , Image Processing, Computer-Assisted/methods , Liver/diagnostic imaging , Liver/embryology , Liver/metabolism , Mice , Mice, Inbred ICR , Placenta/diagnostic imaging , Pregnancy , Respiration
14.
Biol Reprod ; 94(1): 14, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26490838

ABSTRACT

Ovarian tissue cryopreservation and transplantation is one of a few available treatments for fertility preservation in women diagnosed with cancer. Rapid revascularization is essential for reducing hypoxic damage after grafting and protecting the primordial follicles reserve. Using a mouse model of heterotopic ovarian graft transplantation, we have delineated the role of endothelial Akt1 expression using longitudinal magnetic resonance imaging follow-up to quantify angiogenic response. Endothelial Akt1 activation in ovarian grafts promoted angiogenesis to support the graft during posttransplantation hypoxic period. Similarly, simvastatin therapy activated Akt1 at the transplantation site and improved the revascularization and vascular support of ovarian grafts. These results serve as an important first step toward pharmacological intervention to improve revascularization of ovarian grafts and restoration of fertility in cancer survivors. The pro-angiogenic effects reported here may extend beyond improving ovarian graft reception in fertility preservation and could potentially be used for different organ or tissue transplantation.


Subject(s)
Neovascularization, Physiologic/genetics , Ovary/blood supply , Ovary/transplantation , Proto-Oncogene Proteins c-akt/genetics , Animals , Cryopreservation , Female , Graft Survival/drug effects , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology , Hypoxia/metabolism , Infertility, Female/therapy , Magnetic Resonance Imaging , Mice , Neovascularization, Physiologic/drug effects , Ovarian Follicle/drug effects , Proto-Oncogene Proteins c-akt/biosynthesis , Proto-Oncogene Proteins c-akt/drug effects , Regional Blood Flow , Simvastatin/pharmacology
15.
Mol Imaging ; 14: 366-72, 2015.
Article in English | MEDLINE | ID: mdl-26162372

ABSTRACT

The goal of this work was to study the efficacy of the positron emission tomography (PET) tracers 2-deoxy-2-[18F]fluoro-D-glucose ([18F]FDG) and 64Cu-diacetyl-bis(N4-methylthiosemicarbazone) ([64Cu]ATSM) and in monitoring placental and fetal functional response to acute hyperoxia in late-term pregnant mice subjected to experimentally induced chronic hypoxia. E15 mice were maintained at 12% inspired oxygen for 72 hours and then imaged during oxygen inhalation with either [18F]FDG to monitor nutrient transport or 64Cu-ATSM to establish the presence of hypoxia. Computed tomography (CT) with contrast allowed clear visualization of both placentas and fetuses. The average ratio of fetal to placental [18F]FDG uptake was 0.45 ± 0.1 for the hypoxic animals and 0.55 ± 0.1 for the normoxic animals, demonstrating a significant decrease (p = .0002) in placental function in dams exposed to chronic hypoxic conditions. Hypoxic placentas and fetuses retained more 64Cu-ATSM compared to normoxic placentas and fetuses. Herein we report first-in-mouse PET imaging of fetuses employing both tracers [18F]FDG (metabolism) and 64Cu-ATSM (hypoxia). [18F]FDG PET/CT imaging allowed clear visualization of placental-fetal structures and supported quantification of tracer uptake, making this a sensitive tool for monitoring placental function in preclinical rodent models. These measurements illustrate the potentially irreversible damage generated by chronic exposure to hypoxia, which cannot be corrected by acute exposure to hyperoxia.


Subject(s)
Hyperoxia/therapy , Hypoxia/therapy , Positron-Emission Tomography/methods , Acute Disease , Analysis of Variance , Animals , Chronic Disease , Female , Mice , Pregnancy
16.
Am J Pathol ; 184(2): 431-41, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24262753

ABSTRACT

Angiogenesis is a hallmark of cancer, and its noninvasive visualization and quantification are key factors for facilitating translational anticancer research. Using four tumor models characterized by different degrees of aggressiveness and angiogenesis, we show that the combination of functional in vivo and anatomical ex vivo X-ray micro-computed tomography (µCT) allows highly accurate quantification of relative blood volume (rBV) and highly detailed three-dimensional analysis of the vascular network in tumors. Depending on the tumor model, rBV values determined using in vivo µCT ranged from 2.6% to 6.0%, and corresponds well with the values assessed using IHC. Using ultra-high-resolution ex vivo µCT, blood vessels as small as 3.4 µm and vessel branches up to the seventh order could be visualized, enabling a highly detailed and quantitative analysis of the three-dimensional micromorphology of tumor vessels. Microvascular parameters such as vessel size and vessel branching correlated very well with tumor aggressiveness and angiogenesis. In rapidly growing and highly angiogenic A431 tumors, the majority of vessels were small and branched only once or twice, whereas in slowly growing A549 tumors, the vessels were much larger and branched four to seven times. Thus, we consider that combining highly accurate functional with highly detailed anatomical µCT is a useful tool for facilitating high-throughput, quantitative, and translational (anti-) angiogenesis and antiangiogenesis research.


Subject(s)
Neoplasms/blood supply , Neoplasms/diagnostic imaging , Neovascularization, Pathologic/diagnostic imaging , X-Ray Microtomography , Animals , Cell Line, Tumor , Cell Proliferation , Humans , Immunohistochemistry , Mice , Neoplasms/pathology , Neovascularization, Pathologic/pathology , Xenograft Model Antitumor Assays
17.
Reproduction ; 148(1): 87-98, 2014 Jul.
Article in English | MEDLINE | ID: mdl-24700326

ABSTRACT

Oocyte quality is a well-established determinant of embryonic fate. However, the molecular participants and biological markers that affect and may predict adequate embryonic development are largely elusive. Our aim was to identify the components of the oocyte molecular machinery that part take in the production of a healthy embryo. For this purpose, we used an animal model, generated by us previously, the oocytes of which do not express Cx43 (Cx43(del/del)). In these mice, oogenesis appears normal, fertilisation does occur, early embryonic development is successful but implantation fails. We used magnetic resonance imaging analysis combined with histological examination to characterise the embryonic developmental incompetence. Reciprocal embryo transfer confirmed that the blastocyst evolved from the Cx43(del/del) oocyte is responsible for the implantation disorder. In order to unveil the genes, the impaired expression of which brings about the development of defective embryos, we carried out a genomic screening of both the oocytes and the resulting blastocysts. This microarray analysis revealed a low expression of Egr1, Rpl21 and Eif4a1 in Cx43(del/del) oocytes and downregulation of Rpl15 and Eif4g2 in the resulting blastocysts. We propose that global deficiencies in genes related to the expression of ribosomal proteins and translation initiation factors in apparently normal oocytes bring about accumulation of defects, which significantly compromise their developmental capacity. The blastocysts resulting from such oocytes, which grow within a confined space until implantation, may be unable to generate enough biological mass to allow their expansion. This information could be implicated to diagnosis and treatment of infertility, particularly to IVF.


Subject(s)
Blastocyst/metabolism , Embryo Implantation, Delayed/genetics , Gene Expression Regulation, Developmental , Oocytes/metabolism , Protein Biosynthesis/genetics , Animals , Connexin 43/deficiency , Connexin 43/genetics , Embryo Transfer , Eukaryotic Initiation Factors/deficiency , Eukaryotic Initiation Factors/genetics , Female , Genotype , Magnetic Resonance Imaging , Mice, Inbred C57BL , Mice, Knockout , Phenotype , Pregnancy , Ribosomal Proteins/deficiency , Ribosomal Proteins/genetics
18.
Nat Med ; 13(4): 498-503, 2007 Apr.
Article in English | MEDLINE | ID: mdl-17351627

ABSTRACT

Ferritin, the iron storage protein, was recently suggested to be a candidate reporter for the detection of gene expression by magnetic resonance imaging (MRI). Here we report the generation of TET:EGFP-HAferritin (tet-hfer) transgenic mice, in which tissue-specific inducible transcriptional regulation of expression of the heavy chain of ferritin could be detected in vivo by MRI. We show organ specificity by mating the tet-hfer mice with transgenic mice expressing tetracycline transactivator (tTA) in liver hepatocytes and in vascular endothelial cells. Tetracycline-regulated overexpression of ferritin resulted in specific alterations of the transverse relaxation rate (R(2)) of water. Transgene-dependent changes in R(2) were detectable by MRI in adult mice, and we also found fetal developmental induction of transgene expression in utero. Thus, the tet-hfer MRI reporter mice provide a new transgenic mouse platform for in vivo molecular imaging of reporter gene expression by MRI during both embryonic and adult life.


Subject(s)
Ferritins/metabolism , Gene Expression Regulation/physiology , Magnetic Resonance Imaging/methods , Animals , Base Sequence , Blotting, Western , Embryo, Mammalian/metabolism , Endothelial Cells/metabolism , Ferritins/genetics , Gene Expression Regulation/drug effects , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , Hepatocytes/metabolism , Mice , Mice, Transgenic , Molecular Sequence Data , Tetracycline/metabolism , Tetracycline/pharmacology
19.
Cancer Cell ; 10(2): 159-70, 2006 Aug.
Article in English | MEDLINE | ID: mdl-16904613

ABSTRACT

Endothelial cells in growing tumors express activated Akt, which when modeled by transgenic endothelial expression of myrAkt1 was sufficient to recapitulate the abnormal structural and functional features of tumor blood vessels in nontumor tissues. Sustained endothelial Akt activation caused increased blood vessel size and generalized edema from chronic vascular permeability, while acute permeability in response to VEGF-A was unaffected. These changes were reversible, demonstrating an ongoing requirement for Akt signaling for the maintenance of these phenotypes. Furthermore, rapamycin inhibited endothelial Akt signaling, vascular changes from myrAkt1, tumor growth, and tumor vascular permeability. Akt signaling in the tumor vascular stroma was sensitive to rapamycin, suggesting that rapamycin may affect tumor growth in part by acting as a vascular Akt inhibitor.


Subject(s)
Endothelial Cells/pathology , Endothelium, Vascular/pathology , Neoplasms/blood supply , Neovascularization, Pathologic/metabolism , Proto-Oncogene Proteins c-akt/metabolism , Sirolimus/pharmacology , Animals , Capillary Permeability , Cells, Cultured , Edema/metabolism , Endothelial Cells/drug effects , Endothelium, Vascular/drug effects , Humans , Mice , Mice, Transgenic , Proto-Oncogene Proteins c-akt/genetics , Rats , Signal Transduction , Vascular Endothelial Growth Factor A/physiology
20.
Elife ; 132024 Feb 05.
Article in English | MEDLINE | ID: mdl-38314803

ABSTRACT

Background: Fetal growth restriction (FGR) is a pregnancy complication in which a newborn fails to achieve its growth potential, increasing the risk of perinatal morbidity and mortality. Chronic maternal gestational hypoxia, as well as placental insufficiency are associated with increased FGR incidence; however, the molecular mechanisms underlying FGR remain unknown. Methods: Pregnant mice were subjected to acute or chronic hypoxia (12.5% O2) resulting in reduced fetal weight. Placenta oxygen transport was assessed by blood oxygenation level dependent (BOLD) contrast magnetic resonance imaging (MRI). The placentae were analyzed via immunohistochemistry and in situ hybridization. Human placentae were selected from FGR and matched controls and analyzed by immunohistochemistry (IHC). Maternal and cord sera were analyzed by mass spectrometry. Results: We show that murine acute and chronic gestational hypoxia recapitulates FGR phenotype and affects placental structure and morphology. Gestational hypoxia decreased labyrinth area, increased the incidence of red blood cells (RBCs) in the labyrinth while expanding the placental spiral arteries (SpA) diameter. Hypoxic placentae exhibited higher hemoglobin-oxygen affinity compared to the control. Placental abundance of Bisphosphoglycerate mutase (BPGM) was upregulated in the syncytiotrophoblast and spiral artery trophoblast cells (SpA TGCs) in the murine gestational hypoxia groups compared to the control. Hif1α levels were higher in the acute hypoxia group compared to the control. In contrast, human FGR placentae exhibited reduced BPGM levels in the syncytiotrophoblast layer compared to placentae from healthy uncomplicated pregnancies. Levels of 2,3 BPG, the product of BPGM, were lower in cord serum of human FGR placentae compared to control. Polar expression of BPGM was found in both human and mouse placentae syncytiotrophoblast, with higher expression facing the maternal circulation. Moreover, in the murine SpA TGCs expression of BPGM was concentrated exclusively in the apical cell side, in direct proximity to the maternal circulation. Conclusions: This study suggests a possible involvement of placental BPGM in maternal-fetal oxygen transfer, and in the pathophysiology of FGR. Funding: This work was supported by the Weizmann Krenter Foundation and the Weizmann - Ichilov (Tel Aviv Sourasky Medical Center) Collaborative Grant in Biomedical Research, by the Minerva Foundation, by the ISF KillCorona grant 3777/19.


Subject(s)
Fetal Growth Retardation , Placenta , Humans , Pregnancy , Female , Mice , Animals , Placenta/metabolism , Fetal Growth Retardation/genetics , Fetal Growth Retardation/metabolism , Bisphosphoglycerate Mutase/genetics , Bisphosphoglycerate Mutase/metabolism , Trophoblasts/metabolism , Hypoxia/metabolism , Oxygen/metabolism
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