Plasma protein (albumin) catabolism by the tumor itself--implications for tumor metabolism and the genesis of cachexia.
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Biomedical subjects
Publications and source records attributed to H Sinn.
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We have recently presented evidence that a macrophage scavenger receptor-mediated pathway is responsible for the hepatic uptake of unfractionated heparins and low-molecular-weight heparins (LMWHs) in the rat. The same receptor-mediated pathway was partially responsible for the removal of oxidized low-density lipoprotein. Unfractionated and fractionated LMWHs exert their anticoagulatory effects predominately by reversibly binding to the plasma glycoprotein antithrombin III. In this study LMWHs modified by endpoint attachment of tyramine were radiolabeled and their fractions with low or high affinity to AT-III studied in vivo in rats. The high-affinity fraction was predominately cleared from the circulation by a hepatic uptake mechanism. About 25% of the injected high-affinity tracer material was recovered, whereas only about 8% of the low-affinity material was found in the liver after 180 minutes. Blocking the scavenger receptor-mediated liver RES uptake mechanism by maleylated bovine serum albumin led to a considerable decline in liver uptake (9 versus 25%). The low-affinity material was rapidly eliminated into the urine after 180 minutes. About 45% of the low-affinity material was excreted versus 23% of the high-affinity material. Tight binding to AT-III prevented LMWH-tyramine from being rapidly cleared from the circulation via the kidneys into the urine; instead, the scavenger receptor-mediated hepatic uptake mechanism seemed to be more dominant in removing material with high affinity to AT-III from blood.
Linking chemotherapeutic drugs to a macromolecular carrier system may enhance tumor targeting, reduce toxicity and overcome drug resistance mechanisms. As an elementary model to evaluate the pharmacological properties of macromolecular drug carrier systems we chose rat serum albumin (RSA) for carrier and methotrexate (MTX) as antineoplastic drug. The conjugation procedure yielded conjugates with an approximate 1:1 molar loading rate (MTX(1)-RSA). In the first part of the study a residualizing [111In]DTPA protein label was used for mapping in vivo the catabolic sites of the native carrier protein and of the MTX(1)-RSA drug conjugate in Walker 256 carcinosarcoma bearing rats. The tumor accumulation was about 14% of the injected dose for the RSA and MTX(1)-RSA tracers after 24 h. Tracer entrapment by organs with an active mononuclear phagocyte system was low (liver below 7% and spleen below 1.5% of the injected dose after 24 h). The 1:1 conjugation of MTX to RSA did not decisively alter the pharmacokinetic properties nor the tumor or tissue distribution of the native carrier protein RSA. In the second part of the study the different properties of the MTX(1)-RSA conjugate were compared with MTX in vivo. About 2 mg MTX/kg body weight either of the drug conjugate or of the original drug were injected after being additionally spiked with radiolabeled tracers. Plasma concentrations were simultaneously determined by immunological and radioactive means. After 24 h about 12% MTX(1)-RSA was found in circulation compared to 0.03% MTX. Favorable tumor accumulation rates of about 14% were achieved for MTX(1)-RSA versus 0.04% for MTX. About 45-fold more of the injected dose of [3H]MTX accumulated in the liver as compared to the tumor (1.5 versus 0.03%) after 24 h. Conjugation of MTX to RSA reversed this ratio in favor of the tumor to 1:1.4 (13.6 versus 9.6%). In conclusion, the potential therapeutic benefit of the MTX(1)-RSA conjugate lies in its very long tumor exposure time and its improved tumor accumulation rate compared to conventional MTX. In addition the conjugation to albumin might enhance the therapeutic effects over those achieved by long-term continuous infusion of MTX, as MTX(1)-RSA enters the cells by a different uptake mechanism. This might also help to circumvent MTX resistance mechanisms, such as a reduction in folate receptor numbers or impaired MTX polyglutamylation.
Albumin dominates the plasma proteins in man. Following our observation that albumin turnover in rodent tumors is markedly increased, we will present evidence that albumin can be employed as an efficient carrier for targeting cytostatic agents like methotrexate (MTX) into tumors. The considerable discrepancy in the molecular weight of MTX (454 Da) and albumin (about 67,000 Da) tempted researchers to load multiple drug molecules on one carrier molecule. It was supposed that the optimal therapeutic efficacy of MTX protein conjugates could be achieved by increasing the number of the molecules of MTX attached to the carrier. In this paper we will show that only loading rates of close to 1 mol of the cytostatic drug MTX/mol of albumin offer optimal conditions for targeting MTX-albumin conjugates into rodent tumors. Conjugates bearing 5, 7, 10 and 20 molecules of MTX on average showed considerable alterations in the HPLC profiles of the conjugates compared to albumin. Conjugates carrying 5-20 mol MTX, tagged with a residualizing radiolabel, were efficiently trapped by the liver before reaching the tumor. The tumor uptake rates of these conjugates declined dramatically with an increasing molecular load of the cytotoxic drug linked to albumin. Competition experiments with maleylated bovine serum albumin and fucoidan revealed that scavenger receptors present on the cells of the liver monocyte macrophage system were involved in this process. For further preclinical and clinical studies, we chose MTX-albumin conjugates, derivatized at a molar ratio of 1:1. These conjugates enjoy the same favorable tumor targeting properties like albumin, e.g. high tumor uptake rates, low liver uptake rates and a very long biological half-life.
An X-ray beam of 3 x 10(7) photons s(-1) with 2 x 10(8) relative energy resolution has been obtained at a third-generation synchrotron undulator X-ray source using the (13 13 13) Bragg reflection from a silicon perfect crystal. The production of these 25.70 keV X-rays with 450 +/- 50 mueV bandpass opens up new possibilities in X-ray optics and spectroscopies.
There is evidence that oxidized-LDL plays an important role in atherogenesis. We now report on the in vivo interaction between unfractionated heparin and oxidized LDL in rats. The recovery rates of the native LDL particles ranged between 75% and 85% of the injected dose. Heparin did not interfere with the clearance rates of native LDL. After administration of radioactive labeled oxidized-LDL particles, 26% of the material was measured in circulation after 5 minutes, 8% after 20 minutes, and 3% after 60 minutes. After injection of heparin 2 minutes prior to oxidized-LDL tracer particles, 44% of the tracer was found in blood after 5 minutes, 23% after 20 minutes, and 9% after 60 minutes. Oxidized-LDL tracer particles disappeared from blood with an alpha half-life of 5 minutes and a beta half-life of 7.5 minutes. After receptor blocking with unfractionated heparin the alpha half-life of the oxidized-LDL tracer was prolonged to 17.5 minutes and the beta half-life to 27.5 minutes. These results indicate that heparin molecules of a comparatively small molecular weight competed the scavenger receptor mediated uptake of oxidized-LDL particles in vivo. Oxidized-LDL particles are known to mediate their pro-atherosclerotic activity in part by stimulating smooth muscle cell proliferation by a scavenger receptor-mediated pathway. It can be speculated, if heparins interfere with the uptake of oxidized-LDL, heparins might thus in part exert their known antiatherosclerotic properties.
Neutralization of heparin with its antidote protamine is associated with side effects such as pulmonary hypertension. The pharmacodynamic effects of protamine treatment are well documented. However, little is known about metabolic fate of heparin-protamine complexes. Twenty Wistar rats received a 131I-labeled low-molecular-weight heparin tracer intravenously. Four groups of animals were formed: a control group receiving the tracer, a second group receiving protamine after tracer application, a third group receiving maleylated bovine serum albumin (mal-BSA) prior to tracer and protamine injections to inhibit scavenger receptors of the reticuloendothelial system, and the last group receiving preformed heparin-protamine aggregates. All animals were examined by scintigraphy. Blood and tissue samples were analyzed for radioactivity. Protamine injection 2 min after heparin tracer application lead to a rapid decline in blood radioactivity. The radioactivity in the liver increased from 17% for the control to 43% after protamine application. Injection of mal-BSA prior to protamine prevented tracer accumulation in the liver and increased urine excretion (34% versus 20%). In vitro preformed heparin-protamine precipitates were rapidly trapped in the liver. We present evidence that, like the polyanionic heparin, polyanionic heparin-protamine complexes are phagocytosed by a scavenger receptor-mediated mechanism by macrophages, predominantly in the liver. The amount, the size, and the charge density of the complexes might trigger a mediator release from macrophages leading to phenomena such as pulmonary hypertension.
Systemic toxicity and inadequate tumour uptake of chemotherapeutic agents limit effective therapy of disseminated malignant disease. We seek to use macromolecules for improved delivery of therapeutic agents to tumours, and hope to use radiotracer procedures to identify those malignancies able to accumulate the transport molecule. A literature search identified in vitro and animal experimental data which indicated that serum albumin is taken up in malignancies. Selected cytostatic drugs can be bound to albumin, which suggests the suitability of the molecule as a potential transport vehicle. We therefore evaluated indium-111 labelled human serum albumin (HSA) to determine the frequency of its accumulation in bronchogenic tumours. Single-photon emission tomographic (SPET) images were obtained in 23 patients 48 h after intravenous injection of 1.5 mCi 111In diethylenetriamine penta-acetic acid (DTPA)-HSA. SPET imaging with technetium-99m labelled erythrocytes was included in the protocol to assess the influence which vascularity has on the HSA-based images. All patients went on to surgery. We documented the histological diagnosis, T-stage and differentiation grade. The scintigraphic examination demonstrated HSA uptake in three squamous cell carcinomas and four adenocarcinomas. Of these, six malignancies accumulating HSA had 2.2-5.4 times, the tracer concentrations observed in comparable background regions. Small cell carcinoma failed to accumulate the labelled HSA during the 2-day scintigraphic evaluation. The HSA images did not appear to represent tumour vascularity. T-stage and differentiation grade failed to predict which tumours would demonstrate HSA uptake.(ABSTRACT TRUNCATED AT 250 WORDS)
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Photodynamic therapy (PDT) has recently attracted much attention, especially among urologists, because it appears to be a selective form of cancer treatment which causes minimal damage to normal surrounding tissues. In this study we made use of a new class of photosensitizers for the laser-induced fluorescence diagnosis (LIFD) and photodynamic therapy of human renal cell carcinoma xenotransplanted into nude mice. The purpose of this study was to evaluate the recently developed photosensitizing drug THOPP-MPEG for its efficacy as photosensitizer for LIFD and PDT of renal cell carcinoma. THOPP-MPEG was injected intraperitoneally (0.5 micrograms/g body weight) into the mice 6-8 days after tumor transplantation. On the 18th day after transplantation, the tumors reached a diameter of 3-4 mm. Seven days after administration of the drug the tumor-bearing kidney was irradiated percutaneously with a total light dose of 2 x 60 J/cm2 and a power density in the irradiated area of less than 150 mW/cm2. A continuous-beam argon-pumped dye laser (656 nm) was used. After excitation with laser light (488-514 nm), the vital tumor clusters and the surrounding tissues invaded with tumor cells showed intense red coloration by laser-induced fluorescence. Subsequent to the light exposure (656 nm), a heavy tumor necrosis of up to 3-5 mm resulted. No THOPP-MPEG phototoxicity in normal surrounding tissue at a dose of up to 100 mg/kg body weight was seen. We believe the future role of PDT in the management of tumors of the kidney to be adjuvant within the concept of conservative kidney-preserving surgery.
A new generation of lipophilic heparins has been developed that show longer-lasting inhibitory effects on the coagulation system. We have studied the radiopharmacokinetics of a derivatized low-molecular-weight heparin (LMWH) with a residualizing lipophilic tyramine-deoxysorbitol label in comparison with conventional LMWH after intravenous application into Wistar rats. Whole body scintigraphy and analysis of the blood and organ distribution of different tracer preparations revealed that the lipophilically derivatized LMWH substance was predominantly trapped in the liver RES by a scavenger receptor-mediated mechanism. After the saturable uptake mechanism was blocked by maleylated bovine serum albumin, 41.4% of the lipophilic LMWH tracer circulated in blood, as compared with 18.4% of the control and 1% of conventional LMWH. The same results were attained by a competition experiment with an excess of unfractionated heparin. Urinary excretion of the lipophilic tracer among the rats in this competition experiment was considerably lower (13.7%) as compared with conventional LMWH (53.0%). Experiments with lipophilic LMWH tracer bound nonspecifically to rat serum albumin confirmed that the prolonged half-life might in part be due to an increased affinity for albumin. About 59% of the activity of the lipophilic tracer bound to albumin was found in the liver reticuloendothelial system, and only 3.3% were excreted to urine 3 hours after injection. Further studies are necessary to evaluate the accumulation rates and the metabolic fate of lipophilically derivatized heparins in the case of an impeded reticuloendothelial system uptake before attempts are made to therapeutically apply these compounds.
Reduced hepatic membrane receptors for acetylated low-density lipoprotein (acetyl-LDL) and maleylated BSA (Mal-BSA) with apparent molecular masses of 35 kDa, 85 kDa and 15 kDa have been extracted from rat liver and separated by affinity chromatography as described by us previously [Ottnad, Via, Sinn, Freidrich, Ziegler & Dresel (1990) Biochem. J. 265, 689-698]. Binding of these three reduced scavenger receptors to oxidatively modified LDL has been now examined. Competition studies with receptor-phosphatidylcholine complexes and 131I-acetyl-LDL and 131I-Mal-BSA as ligands were conducted. Mal-BSA, acetyl-LDL and fully oxidized LDL were used as competitors, and differentiated in the three receptors three types of binding site: a class I binding site for acetyl-LDL, Mal-BSA and fully oxidized LDL; a class II binding site recognizing only 131I-Mal-BSA and class III binding sites recognizing 131I-Mal-BSA and fully oxidized LDL. The results of competition studies with mildly oxidized LDL and polyadenylic acid demonstrated that the binding sites might be even more heterogenous. Thus there is evidence that the reconstituted receptors either have several binding sites for each of the various ligands or are functionally different, despite the fact that they do not differ in their apparent molecular masses.
In the present in vivo study the uptake kinetics of radioiodinated albumin were determined in normal organs, and tumours of rats using sequential scintigraphy. Rat serum (RSA) was radioiodinated either directly at a tyrosine residue (d-RSA), or indirectly at a residualizing marker tagged to the albumin (rm-RSA). These labelling procedures did not alter the kinetics of labelled albumin, as shown by blood disappearance curves. Directly labelled albumin was shown to have tumour uptake. Residualizing markers like tyramine-cellobiose (TCB), tyramine-deoxysorbitol (TDS) and aminonaphthaltyrimide-deoxysorbitol (ANTDS) are metabolically inert. After the intracellular degradation of the albumin carrier the TCB-, TDS- and ATNDS-residues accumulate in the lysosomes, particularly those of tumour cells. It was able to be demonstrated that residualizing-marker tagged albumin-bound radioactivity was five times higher after 72 h than the tumour radioactivity after use of directly labelled RSA. These data found support when whole-body retention of directly labelled RSA, and residualizing marker-RSAs, were determined. After 72 h, 60% of 131I bound to RSA directly had been excreted, compared to only 25% of the activity attached indirectly to RSA with a residualizing marker. Whole-body autoradiography of rats injected with directly labelled RSA, or residualizing marker-RSA, support these results. Most of the radioactivity of directly labelled RSA was excreted within 24 h, whereas labelled residualizing marker-RSAs were also stored in tumour and liver tissue. ANTDS bound to RSA allows fluorescence microscopy. Cryosections of tumours from rats preinjected 10 min and 24 h with ANTDS-RSA before dissection, demonstrated that the fluorescence is localized on and in tumour cells. This indicates that cellular uptake of the marker takes place. Fluorescence was not observed in muscle tissue. This appears to suggest that the albumin uptake is greater in tumours than in normal tissue, and that it is metabolized in the tumour cells.
Fractionated and unfractionated heparins are widely used as antithrombotic agents. Because of their heterogeneous composition, it is difficult to study the pharmacokinetics of these drugs. We now report on a new method for labeling low molecular weight heparins with 131I by binding tyramine to the anhydromannose end of the molecules. We examined the pharmacokinetics of the compound by intravenous injection of 131I-tyramine-heparin into Wistar rats. About 18% of the activity was found in the liver, whereas 33% was detected in urine. Biological activity in terms of Factor Xa inhibition was measurable. Since evidence from cell culture experiments implies that reticuloendothelial cell system receptors might be involved in heparin metabolism, maleylated BSA, a substance known to block scavenger receptors, was injected before the radiolabeled heparin compound. The liver uptake was reduced from 17.4 to 4.8%. Injection of unfractionated heparin before tracer application caused a considerable increase in urine excretion of the tracer substance. To our knowledge, this is the first report that liver uptake of heparins is linked to scavenger receptor mediated mechanisms in vivo. This interaction of heparins with scavenger receptors might play an important role in the biology of the vessel wall.
We analyse LDL oxidation in vitro in the presence of copper (II) ions and differentiate a lag phase and a rapid peroxidation phase. We demonstrate that a physiological concentration of albumin does not alter the kinetics of the dienes in the oxidizing LDL but reduces the fluorescence of the oxidizing LDL and alters the biological properties of oxidized LDL. We find in rats after intravenous administration of oxidized LDL, that it is rapidly cleared from the circulating blood. The presence of albumin during the peroxidation phase, however, reduces the fraction of oxidized LDL with rapid blood clearance. We propose that some lipid peroxidation products formed in oxidizing LDL are hydrophilic enough to diffuse into the aqueous buffer from where they react either with the epsilon-amino-groups of apolipoprotein B or albumin. Effective scavengers for these hydrophilic endproducts of the LDL oxidation pathways such as albumin might reduce modification of the LDL and might be useful to reduce its atherogenicity.
The binding characteristics of reduced hepatic membrane proteins for acetylated low-density lipoprotein (acetyl-LDL) and maleylated bovine serum albumin (Mal-BSA) have been examined. Two receptor activities were extracted from hepatic membranes in the presence of octyl beta-D-glucoside and beta-mercaptoethanol, and were separated by chromatography on Mal-BSA-Sepharose 4B. The receptors were revealed by ligand blotting. The active binding proteins had apparent molecular masses of 35 and 15 kDa in SDS/polyacrylamide gels. Equilibrium studies with protein-phosphatidylcholine complexes indicated that the reduced 35 kDa protein expresses two binding sites for Mal-BSA and one for acetyl-LDL, whereas the 15 kDa protein-phosphatidylcholine complex binds 131I-Mal-BSA and 131I-acetyl-LDL with a 4:1 stoichiometry. 131I-Mal-BSA binding was linear with both proteins, with a Kd of 4.8 nM at the 35 kDa protein and a Kd of 5.6 nM at the 15 kDa protein. The 35 kDa protein displayed saturable binding of 131I-acetyl-LDL with a Kd of 5 nM; the 15 kDa binding protein bound 131I-acetyl-LDL with a Kd of 2.3 nM. A 85 kDa protein was obtained by Mal-BSA-Sepharose chromatography when the hepatic membranes had been solubilized with Triton X-100 in presence of GSH/GSSG. This protein displayed saturable 131I-Mal-BSA binding with a Kd of 30 nM and 131I-acetyl-LDL binding with a Kd of 6.5 nM. The 131I-Mal-BSA binding capacity was four times higher than that of 131I-acetyl-LDL. Competition studies with the 35 kDa, 15 kDa and 85 kDa proteins binding Mal-BSA, acetyl-LDL, formylated albumin and polyanionic competitors provide evidence for the existence of more than one class of binding sites at the reduced binding proteins.
The success of extremity perfusion and the protection from systemic side effects largely depend upon the prevention of systemic drug leakage from the extremity circulation. The use of autologous 111-Indium labelled erythrocytes for leakage control allows a continuous exact surveillance and timely correction of the tourniquet position in case a major leak should occur. A total of 97 patients were studied. In 6 patients (= 6%) the perfusion had to be discontinued within the first 30 min due to an uncorrectable leak of greater than 20%. In 31 patients (= 32%), a major leak could be reduced by manipulation of the tourniquet. No systemic side-effects could be observed in any of our patients. Applying leakage control by means of 111-Indium labelled erythrocytes extremity perfusion has proved to be a safe procedure in patients with high risk or recurrent malignant melanoma and soft tissue sarcoma.
The potential of small unilamellar liposomes coupled to anti-tumour monoclonal antibodies (immunoliposomes) to accumulate in solid tumour tissue was tested in two systems, i.e. a human malignant melanoma xenografted into nude mice and a syngeneic murine lymphoma ESb.Mp exhibiting spontaneous metastasis to the liver. Both monoclonal antibodies tested were partly released from immunoliposomes within a few hours, thus generating a seemingly constant level of circulating antibody. Nevertheless it was possible to follow the biodistribution of intact immunoliposomes by virtue of a radioiodine label incorporated into the lipid moiety. It was found that in both tumor systems, though they differed with respect to the size of lesions and maybe also to the vascular architecture of surrounding tissue, immunoliposome uptake was virtually nil. The blockade of uptake into solid tumour tissue was caused by the limited availability of immunoliposomes due to their moderate stability, but especially by the inability of the particulate carrier to extravasate.