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Ligand size and valency strongly influence the receptor uptake and clearance of tumor angiogenesis imaging agents. The structures of successful imaging agents exhibit a high degree of variability, encompassing small monovalent arginine-glycine-aspartic acid (RGD)-containing peptides, multivalent RGD-oligomers, and a monoclonal antibody against integrin alpha-v-beta-3 (alpha-v-beta-3). We have pursued a nanoscale approach to imaging of angiogenesis using rationally designed polyamidoamine (PAMAM) dendrimers covalently adorned with RGD-cyclopeptides. An orthogonal oxime-ligation strategy was applied to chemoselectively effect conjugation of the PAMAM dendrimers with RGD-cyclopeptides for targeting alpha vbeta 3. Fluorescent dyes for optical imaging and chelates for gadolinium-based magnetic resonance (MR) imaging were subsequently appended to create robust multimodal macromolecular imaging agents. Fluorescence microscopy revealed selective binding of the resulting RGD peptide-bearing dendrimer with empty chelates to alpha-v-beta-3-expressing cells, but somewhat reduced selectivity was observed following Gd(III) complexation. The expected incomplete saturation of chelates with Gd(III) ions permitted radiometal complexation, and an in vivo tissue distribution of the resulting agent in M21 melanoma tumor-bearing mice showed mostly renal and reticuloendothelial accumulation, with the tumor:blood ratio peaking (3.30+/-0.03) at 2 h postinjection.  相似文献   
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NMR-guided fractionation of two independent collections of the marine cyanobacteria Lyngbya majuscula obtained from Papua New Guinea and Oscillatoria sp. collected in Panama led to the isolation of the new lipids serinolamide A (3) and propenediester (4). Their structures were determined by NMR and MS data analysis. Serinolamide A (3) exhibited a moderate agonist effect and selectivity for the CB1 cannabinoid receptor (Ki=1.3 μM, >5-fold) and represents the newest addition to the known cannabinomimetic natural products of marine origin.  相似文献   
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Polyethylene glycol (PEG) surface modification can make nanomaterials highly hydrophilic, reducing their sequestration in the reticuloendothelial system. In this study, polyamidoamine (PAMAM) dendrimers bearing gadolinium (Gd) chelates were PEGylated with different PEG-chain lengths, and the effects on paramagnetic and pharmacokinetic properties were evaluated. Specifically, Gd chelate-bearing PAMAM dendrimers (generations 4 and 5; G4 and G5) were conjugated with two different PEG chains (2 kDa and 5 kDa; 2k and 5k). Long PEG chains (5k) on the smaller (G4) dendrimer resulted in reduced relaxivity compared to non-PEGylated dendrimers, whereas short PEG chains (2k) on a larger (G5) dendrimer produced relaxivities comparable to non-PEGylated G4 dendrimers. The relaxivity of all PEGylated or lysine-conjugated dendrimers increased at higher temperature, whereas that of intact G4 Gd-PAMAM dendrimer decreased. All PEGylated dendrimers had minimal liver and kidney uptake and remained in circulation for at least 1 hour. Thus, surface-PEGylated Gd-PAMAM dendrimers showed decreased plasma clearance and prolonged retention in the blood pool. Shorter PEG, higher generation conjugates led to higher relaxivity. FROM THE CLINICAL EDITOR: In this study, polyamidoamine dendrimers bearing gadolinium (Gd) chelates were PEGylated with different PEG-chain lengths, and the effects on paramagnetic and pharmacokinetic properties were evaluated.  相似文献   
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Geoffrey W. Harris, inspired by Francis H. Marshall, began the experimental studies in order to demonstrate a vascular connection between the hypothalamus and the adenohypophysis, with neuropeptides as messengers. This confirmed his theory that the mechanism consists in that the nerve fibers in the hypothalamus release hormonal substances in the capillaries of the primary plex in the medium eminence, and that these substances are carried by the vessels of the portal circulation to stimulate or inhibit the pars distalis cells of the hypophysis. This theory placed the hypothalamus as the fundamental structure to understand the link between the brain and the hypophysis. Later, it was known the structure of neurohormones, particularly the responsible for producing gonadotrophins. By this way, it was possible to go into the processes involved in reproduction. This was the origin of neuroendocrinology, gestated by investigations made in the reproduction of animals, including man. The purification, sequentiation and synthesis of the hormone that controls the FSH and LH production have allowed to study the physiology and disorders of the neuroendocrine circuit.  相似文献   
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BACKGROUND/AIMS: Hormone replacement therapy (HRT) is associated with an increased risk of thromboembolism dependent on the type of HRT; therefore, we compared therapy effects of intranasal with oral estrogens on coagulation and fibrinolysis markers in postmenopausal women. METHODS: A randomized study in which 29 healthy hysterectomized women received intranasal 17beta-estradiol or oral estrogens for 3 months. RESULTS: There were no significant differences in the baseline characteristics between groups. Those women receiving intranasal estradiol showed a mild increment in plasminogen activator inhibitor-1 (PAI-I) (from 6.8 +/- 3.5 to 9.6 +/- 3.9 U/ml, p < 0.01); however, fibrinogen, factor VII-tissue factor complex (VIIa-rTF), antithrombin III (ATIII), protein C (PC) activity, protein S (PS) activity, plasminogen (PLG), and tissue-type plasminogen activator antigen (t-PA) were unchanged. In contrast, oral unopposed estrogens elevated t-PA (from 4.9 +/- 2.9 to 9.6 +/- 5.1 ng/ml, p < 0.01) in parallel with a decrement in PAI-I (from 5.2 +/- 4.0 to 2.7 +/- 1.7 U/ml, p < 0.05) and VIIa-rTF (from 201.2 +/- 181.0 to 140.6 +/- 108.7 mU/ml, p < 0.05). Fibrinogen, ATIII, PC, PS, and PLG were unchanged. CONCLUSIONS: Nasal 17beta-estradiol had no effect on the coagulation markers, except a moderate increment in PAI-1. In contrast, oral estrogens elicited a decrement in both VIIa-rTF and PAI-1; however, those changes did not surpass normal limits.  相似文献   
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