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Biomedical subjects

M Z Sun

Publications and source records attributed to M Z Sun.

12 recordsLinked to original sources

Tenascin and fibronectin distribution in human normal and pathological synovium.

Tenascin is a glycoprotein found mainly in the extracellular matrix of developing and malignant tissues. The distribution of this molecule in normal and pathological synovia from patients with osteoarthritis (OA) and rheumatoid arthritis (RA) was investigated by indirect immunofluorescence utilizing specific monoclonal antibodies. The same technique was used to study total fibronectin (tFn) in synovial tissues as well as ED-A and ED-B containing fibronectin (Fn) isoforms (A-Fn, B-Fn), generated by alternative splicing of pre-mRNA. Tenascin was found in normal synovium just beneath the whole lining cell layer. However, a higher density and spreading pattern of distribution was observed in OA and RA sections. A-Fn and B-Fn isoforms were prominent and widespread throughout the normal synovial lining; in hypercellular synovial lining (in RA and OA samples), A-Fn and B-Fn were also observed spreading in the sublining, as well as tFn.

Antibodies, Monoclonal

[The effect of lovastatin in the treatment of primary hypercholesterolemia].

The effect of Lovastatin, an HMG. CoA reductase inhibitor, on serum lipids and apolipoproteins was studied in 40 cases of primary hypercholesterolemia in a 4-month period of treatment. The level of serum lipids did not change significantly after a 35-day period of placebo treatment as compared with that of the baseline (P greater than 0.5). The patients then took Lovastatin with the evening meal in a daily dose from 20 to 80 mg for 3 months. The results were as follows: Lovastatin reduced significantly the mean serum level of total cholesterol (TC) by 31.5% (P less than 0.001), LDL-C by 39.8% (P less than 0.001), Apo-B by 27.3% (P less than 0.002), and the ratio TC/HDL-C by 35.9% (P less than 0.01). It also reduced the mean serum level of triglycerides (TG) by 22.1% (P greater than 0.05) and increased that of HDL-C by 6.3% (P greater than 0.2) and Apo-AI by 1.6% (P greater than 0.5), but without much significance. The drug was well tolerated by all the patients. Transient elevation of CPK was noticed in 2 patients and AKP in one patient. 7 patients complained of gastrointestinal discomfort. All these side effects did not necessitate stop of the medication. We are, therefore, of the opinion that Lovastatin is an effective agent for lowering the serum level of TC, LDL-C and Apo-B.

Adult

Simultaneous electric activities of pain-excitation and pain-inhibition neurons in nucleus parafascicularis of thalamus in rats during acute morphine tolerance.

When acute morphine-tolerated rat was administered by ip morphine (10 mg/kg) which was effective before the acute tolerance to morphine, both the inhibitory effect of morphine on the electric discharges of pain-excitation neurons (PEN) in nucleus parafascicularis (PF) and the excitatory effect of morphine on the electric activities of pain-inhibition neurons (PIN) were simultaneously weakened, or even vanished. If a large dose of morphine (20 mg) was given ip, the modulating action of morphine on simultaneous electric discharges of PEN and PIN reappeared. It is obvious that the phenomenon of acute morphine tolerance and the antagonism to morphine tolerance can be explicitly expressed on the level of central neurons.

Animals

[The influence of GABA injected into cerebral ventricle on electrical activities of pain-excitation neurons and pain-inhibition neurons in nucleus parafascicularis of the thalamus of rats].

The influence of intraventricular injection of GABA on electrical activities of PEN and PIN in nucleus parafascicularis of the thalamus of rats was studied. The results showed that GABA could significantly inhibit the electrical discharges of PEN and increase the electrical discharges of PIN. So it was believed that intraventricularly injected GABA could antagonize or partly antagonize the excitatory action of noxious stimuli and might thus produce analgesia.

Animals

The simultaneous discharges of two neurons in N. Pf and RF and the influences on them by stimulating central gray matter.

This paper employs the method of simultaneous recording of the electric discharges of two neurons with two microelectrodes to study the interrelationship of simultaneous electric activities of pain excitation neurons (PEN) and pain inhibition neurons (PIN) in N. parafascicularis (Pf) of thalamus and reticular formation (RF) of midbrain in 42 rats. The results prove: (i) There are both PEN and PIN in RF in midbrain and they act coordinately; (ii) noxious messages may simultaneously act on PEN and PIN in N. Pf and RF, and the reciprocal coordination of electric activities of these two kinds of neurons is very obvious; (iii) stimulating central gray matter or injecting morphine may weaken the activities of PEN simultaneously, with the opposite effects on PIN.

Action Potentials