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Biomedical subjects

D Grothe

Publications and source records attributed to D Grothe.

7 recordsLinked to original sources

[Recurrent micro-satellite stable colonic cancer: prolonged survival of 16 years without adjuvant therapy].

Long-term survival in malignant disease is often linked to intensified therapeutic interventions. We report the case of a colonic cancer in a 78 years old female patient, who underwent her first operation in 1987 for a symptomatic T4 carcinoma. Since then, the patient has always denied any form of follow-up examination and adjuvant therapy. Recently, she has undergone her fourth operation, which for the first time demonstrated peritoneal carcinosis, and is still in very good health.Clinical experience shows that in some cases standard therapies may unexpectedly produce extremely long survival times. This has to be kept in mind when the value of prognostic markers is discussed and limits the validity of survival data in the context of small scale studies dealing with especially extended therapeutic protocols.

Adenocarcinoma, Mucinous↗

Gabapentin does not alter single-dose lithium pharmacokinetics.

Lithium (Li) and gabapentin are both exclusively eliminated by renal excretion. When used in combination, a competitive drug-drug interaction could possibly alter Li renal excretion with important clinical implications considering the rather narrow therapeutic index of Li. This study examined the single-dose pharmacokinetic profiles of Li in 13 patients receiving placebo and then steady-state gabapentin (mean daily dose: 3,646.15 mg). During both phases, a single 600-mg dose of Li was orally administered with serial Li levels obtained at time zero and at 0.25, 0.5, 1, 2, 3, 4, 8, 12, 24, 48, and 72 hours. The pharmacokinetic parameters assessed were the following: area under the concentration time curve (AUC) for Li, maximal concentration of Li (Li Cmax), and time to reach peak Li concentration (Li Tmax). For patients receiving gabapentin, the mean Li AUC at 72 hours was 9.91+/-3.54 mmol x hr/mL and did not differ significantly from the mean Li AUC of 10.19+/-2.89 mmol x hr/mL for patients receiving placebo. The mean Li Cmax was 0.69+/-0.13 mmol/L for gabapentin patients and did not differ from the mean Li Cmax of 0.72+/-0.15 mmol/L for placebo patients. The mean serum Li Tmax was 1.38+/-0.62 hours for gabapentin patients and did not differ significantly from the mean serum Li Tmax of 1.5+/-0.91 hours for placebo patients. These data indicate that gabapentin treatment at this high therapeutic dose does not cause clinically significant alterations in short-term Li pharmacokinetics in patients with normal renal function. These preliminary data warrant further controlled study in a larger, more heterogenous patient sample and a longer duration of assessment, but they do suggest that these two medications may be administered in combination for the management of bipolar disorder.

Acetates↗

Case study: risperidone-induced hepatotoxicity in pediatric patients.

The purpose of this case study is to document hepatic adverse effects associated with long-term risperidone use in pediatric populations. Charts of all patients admitted to the National Institute of Mental Health (NIMH) from December 1993 to April 1996 who had been treated with risperidone were screened for hepatotoxicity and weight gain. From the medical records of 13 psychotic children admitted to the NIMH and treated with risperidone, 2 children (both male) who presented with obesity, liver enzyme abnormalities, and confirmatory evidence of fatty liver were identified. In each case liver damage was reversed after discontinuation of risperidone and/or associated weight loss. The observations suggest that long-term risperidone therapy is possibly associated with hepatotoxicity in male pediatric patients. It is recommended that pediatric patients treated with risperidone have baseline liver function tests, careful monitoring of weight, and periodic monitoring of liver function tests during the maintenance phase of therapy.

Adolescent↗

Effects of microgravitation on electrofusion of plant cell protoplasts.

Electrofusion of evacuolated with vacuolated mesophyll protoplasts of Nicotiana tabacum was performed as part of the German Sounding Rocket Program (TEXUS 17, 1988). The results indicate a significant increase not only in the yield of 1:1 hybrids, but also in homo- and multifusion products. Hybrids obtained under microgravity have been shown to be viable to a higher degree with respect to their ability for light-dependent O2-evolution (independent of other substrates than bicarbonate). This finding is of interest for fusion experiments where only limited numbers of fusion partners are available (e.g. protoplasts from embryogenic tissues) or where fusion yields are extremely low under 1 x gravity (e.g. protoplasts of different specific density).

Cell Fusion↗

Alprazolam-related digoxin toxicity.

An elderly woman developed a high serum digoxin concentration resulting in toxicity when alprazolam was added to her digoxin therapy. The reduced renal clearance of digoxin is postulated as the mechanism for this interaction.

Aged↗

Orientation of Paramecium under the conditions of weightlessness.

A cell culture of Paramecium with a precise negative gravitaxis was exposed to 4 x l0(-6) g during a parabolic flight of a sounding rocket for 6 min. Computer image analysis revealed that without gravity stimulus the individual swimming paths remained straight. In addition, three reactions could be distinguished. For about 30 s, paramecia maintained the swimming direction they had before onset of low gravity. During the next 20 s, an approximate reversal of the swimming direction occurred. This period was followed by the expected random swimming pattern. Similar behavior was observed under the condition of simulated weightlessness on a fast-rotating clinostat. Control experiments on the ground under hyper-gravity on a low-speed centrifuge microscope and on a vibration test facility proved that the observed effects were caused exclusively by the reduction of gravity.

Acceleration↗