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D Toewe

Publications and source records attributed to D Toewe.

4 recordsLinked to original sources

A newly developed LDL-binding material.

Results of in vitro and ex vivo experiments with a newly developed LDL-binding material are presented. This material consists of macroporous bead cellulose which is capable to bind selectively LDL. LDL-cholesterol is considerably decreased after contacts of plasma or serum samples with this bead cellulose. On the other hand high density lipoproteins (HDL) and other plasma components (proteins, enzymes, electrolytes, and metabolic substances) remained high or unchanged. Triglycerides (TG)--transported by very low density lipoproteins--are also bound up to a certain degree. 1 g of the adsorbent wet mass binds at least 20 mg cholesterol. The capacity suffices to decrease two- to threefold increased cholesterol and LDL plasma levels to the low normal range following passage of the sevenfold plasma volume' through two the three LDL adsorbent columns (results of perfusion experiments). In vitro and dog experiments revealed only slight drops of the hemolytic capacities of the classic complement pathway and moderate decreases of the alternative one. But no detectable side effects were noticed in the dog experiments.

Adsorption↗

Low density lipoprotein binding by macroporous bead cellulose.

Cellulose of a certain macroporous structure is capable of binding selectively low density lipoproteins (LDL) whilst maintaining high density lipoprotein (HDL) levels. It was ascertained that the porous structure of the cellulose causes binding of LDL and that also diffusion processes play a role. To a certain extent special bindings such as hydrogen bonds between cellulose and LDL and/or hydrophobic interactions may furthermore be of importance for the LDL fixation.

Adsorption↗

In vitro studies with selectively lipid adsorbing materials.

A new synthetic material was developed by ASAHI Chemical Industry Co., Ltd., Tokyo, Japan. In vitro studies revealed selective bindings of cholesterol, LDL (low density lipids) and beta-lipoprotein by this material. Maximal bindings were reached within 1 min, and therefore, the affinities of the LDL-adsorbent to these lipid components seem to be high. In contrast to these results the plasma values of HDL (high density lipids) and apoprotein A remained nearly unchanged. Triglycerides were removed only moderately. Investigations about lipid removing capacity of the new material with the plasma of patient with familiar hypercholesterolemia and studies about interactions with the complement system were also promising. Synthetic materials which are under development in G.D.R. showed similar lipid binding capacities.

Acrylic Resins↗