1981DiabetesRequires access

Characterization of Increased Plasma Dopamine-β-Hydroxylase Activity in Rats with Experimental Diabetes

Robert E. Schmidt, David M. Geller, Eugene M. Johnson

Open publisher page 10 citations

Abstract

Plasma dopamine-beta-hydroxylase (pDBH) activity is markedly elevated in chronic experimental streptozotocin (STZ) diabetes in the rat. Several possible explanations, all potentially relevant to the pathophysiology of diabetes, could explain this observation. The objective of this paper was to further delineate the behavior of pDBH in diabetes and examine several possible mechanisms fot the increase. Plasma DBH increases within 1 day of STZ administration, is fivefold elevated within 1 wk, and slowly reaches ninefold control values after several months. Similar changes result from alloxan-induced diabetes. The increase in pDBH activity correlates well with the severity of diabetes as assessed by plasma glucose levels. Reversal of the diabetic state with insulin administration or islet cell transplantation results in the decrease of pDBH activity toward normal values. Plasma DBH is not increased in hyperglycemic obese (ob/ob) mice, suggesting a primary dependence of pDBH elevation on reduced levels of insulin and not hyperglycemia per se. Guanethidine-sympathectomized and sympathectomized/adrenal demedullated animals, with 60% and 25% of control levels of pDBH, respectively, show the same percentage increase in pDBH activity with induction of diabetes, thus, the increase in pDBH does not result from a selective activation or dysfunction of the sympathetic nervous system or adrenal medulla in diabetic animals. No evidence is found for the alteration of the kinetic parameters, molecular size, or charge of pDBH in diabetes. Several mechanisms for the increase are considered.

About this research paper

What this paper is about

Plasma dopamine-beta-hydroxylase (pDBH) activity is markedly elevated in chronic experimental streptozotocin (STZ) diabetes in the rat. Several possible explanations, all potentially relevant to the pathophysiology of diabetes, could explain this observation. The objective of this paper was to further delineate the behavior of pDBH in diabetes and examine several possible mechanisms fot the increase. Plasma DBH increases within 1 day of STZ administration, is fivefold elevated within 1 wk, and slowly reaches ninefold control values after several months. Similar changes result from alloxan-induced diabetes. The increase in pDBH activity correlates well with the severity of diabetes as assessed by plasma glucose levels. Reversal of the diabetic state with insulin administration or islet cell transplantation results in the decrease of pDBH activity toward normal values. Plasma DBH is not increased in hyperglycemic obese (ob/ob) mice, suggesting a primary dependence of pDBH elevation on reduced levels of insulin and not hyperglycemia per se. Guanethidine-sympathectomized and sympathectomized/adrenal demedullated animals, with 60% and 25% of control levels of pDBH, respectively, show the same percentage increase in pDBH activity with induction of diabetes, thus, the increase in pDBH does not result from a selective activation or dysfunction of the sympathetic nervous system or adrenal medulla in diabetic animals. No evidence is found for the alteration of the kinetic parameters, molecular size, or charge of pDBH in diabetes. Several mechanisms for the increase are considered.

Why it matters

OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Plasma dopamine-beta-hydroxylase (pDBH) activity is markedly elevated in chronic experimental streptozotocin (STZ) diabetes in the rat. Several possible explanations, all potentially relevant to the pathophysiology of diabetes, could explain this observation. The objective of this paper was to further delineate the behavior of pDBH in diabetes and examine several possible mechanisms fot the increase. Plasma DBH increases within 1 day of STZ administration, is fivefold elevated within 1 wk, and slowly reaches ninefold control values after several months. Similar changes result from alloxan-induced diabetes. The increase in pDBH activity correlates well with the severity of diabetes as assessed by plasma glucose levels. Reversal of the diabetic state with insulin administration or islet cell transplantation results in the decrease of pDBH activity toward normal values. Plasma DBH is not increased in hyperglycemic obese (ob/ob) mice, suggesting a primary dependence of pDBH elevation on reduced levels of insulin and not hyperglycemia per se. Guanethidine-sympathectomized and sympathectomized/adrenal demedullated animals, with 60% and 25% of control levels of pDBH, respectively, show the same percentage increase in pDBH activity with induction of diabetes, thus, the increase in pDBH does not result from a selective activation or dysfunction of the sympathetic nervous system or adrenal medulla in diabetic animals. No evidence is found for the alteration of the kinetic parameters, molecular size, or charge of pDBH in diabetes. Several mechanisms for the increase are considered.

Key concepts: Internal medicine, Endocrinology, Diabetes mellitus, Guanethidine, Adrenal medulla, Streptozotocin, Insulin, Medicine

Related papers

Back to paper searchBrowse research topicsOriginal source
Characterization of Increased Plasma Dopamine-β-Hydroxylase Activity in Rats with Experimental Diabetes — Research Paper | ScholarLens