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Biomedical subjects

B H Cho

Publications and source records attributed to B H Cho.

At least 37 records · Page 2Linked to original sources

The politics of herbal drugs in Korea.

Hanbang, the Korean medical practice with origins in classical Chinese texts, is a prominent part of the Korean health care system. Hanbang physicians, called hanuisas, are looked down on by biomedical doctors, but their practice has enjoyed increasing popularity for several decades. As the market for herbal preparations has become more lucrative, biomedical pharmacists have begun to participate in it. The Pharmaceutical Act in 1993 explicitly allowed pharmacists to prescribe and dispense herbal drugs. This provoked a bitter public conflict between hanuisas and pharmacists, involving street demonstrations and strikes. The hanuisas asserted that the pharmacists were unqualified to assume their traditional practice. They also agitated for recognition in the state-sponsored system of health care and for the state's support for developing Hanbang medicine. This paper attributes the conflicts concerning Hanbang to the expanding market for herbal preparations, Korean nationalism, and to the oversupply of biomedical pharmacists.

Health Policy↗

Effects of allyl mercaptan and various allium-derived compounds on cholesterol synthesis and secretion in Hep-G2 cells.

The present study was undertaken to compare the effects of allyl mercaptan (AM), a major metabolite of garlic, with several garlic constituents and extracts on cytotoxicity, cholesterol synthesis and its secretion in Hep-G2 cells. The cells were grown in Dulbecco's modified Eagle's medium (DMEM) supplemented with 10% fetal bovine serum (FBS), and treated with 5, 25, 50, 125, 250 and 500 microg/ml of AM, diallyl disulfide (DD), diallyl trisulfide (DT), steam-distilled garlic oil (SD) or vinyl-dithiin oil of garlic (VD) for 4 h. At concentrations up to 50 microg/ml, no significant cytotoxic effect was found in any group, but at concentrations above 250 microg/ml, the cell viability decreased drastically in all groups compared to the control. The treatment of cells with 25 microg/ml (non-cytotoxic concentration) of AM, DD, DT, SD for 4 h significantly inhibited [3H]acetate incorporation into cholesterol compared to that of the control (P < 0.05). The secretion of cholesterol into the medium was also significantly decreased in all groups except for VD. The treatment of cells with those allium constituents had no effect on either [3H]acetate incorporation into fatty acids or [3H]glycerol incorporation into triglyceride or phospholipid.

Allium↗

Synthesis of phosphatidylserine in carrot cells cultured under carbon-source starvation.

When carrot suspension cells were cultured on medium containing no carbon source (starvation), the levels of phosphatidylserine (PS) increased transiently 3-4 d after the initiation of starvation while levels of most other phospholipid (PL) species decreased. We previously reported that fatty acids of these PLs served as an alternative carbon source during starvation. The present study showed that cells possess two different biosynthetic pathways involving phosphatidylcholine (PC)/phosphatidylethanolamine (PE) exchange enzymes and PS synthase to synthesize PS. These activities peaked similarly 4 d after the initiation of starvation and coincided with the peak of PS level. The synthesis of serine was also significantly activated during starvation. The activity of phosphoserine aminotransferase (PSAT) which is involved in serine synthesis increased with a time course similar to that of the increase in the PS level. These observations suggest that the increase in PS level plays an important role in membranes which are degraded during starvation.

CDPdiacylglycerol-Serine O-Phosphatidyltransferase↗

Correction of axillary burn scar contracture with the thoracodorsal perforator-based cutaneous island flap.

Axillary scar contracture is observed frequently after severe burn insult and is usually accompanied by injuries to the adjacent area. Although many therapeutic methods, including skin grafting, Z-plasties, local flaps, island flaps, and free flaps, have been established, each technique has its own advantages and disadvantages in specific situations. The decision regarding which technique to use can only be made after consideration is given to the merits of the individual case. We applied thoracodorsal perforator-based cutaneous flaps to 5 patients with axillary burn scar contractures and damaged adjacent tissues. In 1 patient both axillae were involved. Elevated flaps as large as 11 x 27 cm in size were used. All flaps survived completely even when raised in scar tissue. The donor sites were closed primarily except one, which needed a skin graft. Three patients obtained satisfactory release with more than 160 deg shoulder abduction. In 2 patients, release was incomplete with only 110 deg shoulder abduction, but neither one required a second release. The range of motion in terms of shoulder abduction was improved preoperatively (30-90 deg) to postoperatively (110-170 deg). The thoracodorsal perforator-based cutaneous flap presents a very useful reconstructive method for the treatment of axillary defects.

Adult↗

Human periplakin: genomic organization in a clonally unstable region of chromosome 16p with an abundance of repetitive sequence elements.

Periplakin, a member of the plakin family of proteins, has been recently characterized by cDNA cloning, and the corresponding gene, PPL, has been mapped to human chromosome 16p13.3 (Aho et al., 1998, Genomics 48: 242-247). Periplakin has also been shown to serve as an autoantigen in a malignancy-associated autoimmune blistering disease, paraneoplastic pemphigus (Mahoney et al., 1998, J. Invest. Dermatol. 111: 308-313). In this study, we have elucidated the intron-exon organization of human PPL and characterized its promoter region. The flanking 5' sequences were rich in G and C ( approximately 80%) and included multiple AP2 sites and a SP1 site, while no canonical TATA or CCAAT sequences were found. The functionality of the upstream sequences (-709 to +135) as a promoter in cultured epidermal keratinocytes was detected by a CAT reporter gene, and a limited region (-382 to +135) showed activity in cultured dermal fibroblasts, attesting to cell-type specificity of the promoter. The genomic organization, including the intron-exon borders, was determined by direct nucleotide sequencing of human genomic P1 clones. Comparative analysis of cDNA and genomic sequences revealed that PPL consists of 22 exons, with the distribution of exons in PPL being consistent with that of other plakin genes: 21 small exons, separated by large introns, encode the amino-terminal globular domain, and 1 large exon encodes the entire rod and the tail domains. Characterization of four P1 clones spanning the PPL locus revealed multiple Alu repeats, 20 of them within 33 kb of the entirely sequenced segments (0.60/kb), in addition to numerous MIR and L1 elements. These repetitive elements could lead to the clonal instability detected throughout the genomic P1 clones and may give rise to the genomic rearrangements possibly underlying the paraneoplastic pemphigus.

Base Sequence↗

Down-regulation of insulin-like growth factor binding proteins and growth modulation in hepatoma cells by retinoic acid.

We observed that all-trans-retinoic acid (RA) down-regulated insulin-like growth factor binding proteins (IGFBPs) in cultured human hepatoma cells (Hep 3B, PLC/PRF/5, and Hep G2); therefore, we characterized the role of this down-regulation in cell growth. Treatment with 10 micromol/L RA revealed a rapid decrease in IGFBP-3 within 2 days, and continued treatment with RA for 6 days resulted in a time-dependent stimulation of Hep 3B cell growth. However, RA treatment decreased IGFBP-1 in PLC/PRF/5 cells and in Hep G2 cells, and the growth-stimulatory activity of RA was transient and less prominent, and was finally obliterated in both cell lines. The addition of 5 ng/mL or 50 ng/mL insulin-like growth factors (IGFs) did not change the growth effects elicited by RA. The addition of IGFBP-3 (1,000 ng/mL) inhibited the growth of Hep 3B cells and counteracted the growth-stimulatory activity of RA, but not completely, suggesting that RA has direct growth-stimulatory activity and that this is enhanced by autocrine down-regulation of IGFBP-3. IGFBP-3 also inhibited the growth of PLC/PRF/5 cells and of Hep G2 cells. Treatment with phosphorylated IGFBP-1 (1,000 ng/mL) alone or with RA did not affect the growth of PLC/PRF/5 cells or Hep G2 cells. However, addition of dephosphorylated IGFBP-1, derived from in vivo dephosphorylation of the phosphorylated form, stimulated the growth of both cell lines, independent of interaction with IGF-I. From these observations, we propose that RA down-regulates IGFBPs, which in turn causes autocrine modulation of cell growth independent of IGF in hepatoma cells in vitro or in vivo. In addition, RA regulates IGFBPs at the posttranscriptional (Hep 3B cells and Hep G2 cells) or transcriptional level (PLC/PRF/5 cells) in a cell-specific manner.

Carcinoma, Hepatocellular↗

Surgical correction of cryptotia using Medpor.

Cryptotia is a congenital auricular anomaly found more commonly in Orientals than whites. The characteristics of cryptotia are the invagination of the upper part of the auricle under the temporal skin and the deformity of the auricular cartilage. The goals of the repair of cryptotia are to release the upper ear from the side of the head to restore the retroauricular groove, to correct the malposition, and to correct the cartilaginous deformity. To lengthen the skin between the superior portion of the auricle and the scalp, the authors used both the modified Z-plasty and the temporal advancement flap. We partially detached the abnormal insertion of the superior auricular muscle at the upper part of the helix to make it weak. After complete exposure of the posterior aspect of the upper auricular cartilage, the constricted intrinsic transverse and oblique muscles were cut, and everting horizontal mattress sutures were inserted on the antihelix to expand the constricted body and crus of the antihelix. Thereafter, an ultrathin Medpor sheet (0.85-mm thickness) was fixed with 6-0 nylon sutures to the posterior aspect of the corrected antihelical cartilage for lengthening and splinting the relatively shortened upper pole of the deformed cartilage. This operative method is thought to be useful in maintaining the lengthened auricular height and shape, and in preventing the relapse of ear cartilage deformities.

Adolescent↗

Microsurgical replantation of a partial ear, with leech therapy.

Ear reconstruction is very difficult to perform and often results in a devastating deformity. The use of microsurgical replantation techniques has allowed very favorable aesthetic results. The authors report a case of partial ear replantation without venous repair with the use of medicinal leeches to decompress the acute venous congestion that occurred during postoperative care. Medicinal leech therapy can be very useful in partial ear replantation in cases with no venous repair.

Adult↗

Effect of the fat composition of a single meal on the composition and cytotoxic potencies of lipolytically-releasable free fatty acids in postprandial plasma.

Ingestion of a meal increases plasma levels of triglyceride (TG)-rich lipoproteins through the secretion of intestine-derived chylomcirons and liver-derived very low density lipoproteins (VLDL). We have determined the effects of the fat composition of a single meal on the composition of TG in TG-rich lipoproteins (VLDL + chylomicrons) and circulating and lipolytically-releasable free fatty acids (FFA) in postprandial (PP) plasma and on the cytotoxic potencies of the lipolytically-released FFA to cultured arterial wall cells. PP lipemia was induced by feeding fasted normolipidemic human subjects with a meal rich in saturated fat (SF) and another meal rich in polyunsaturated fat (PUF), or vice versa; each meal provided 65% of energy as fat, and polyunsaturated to saturated fatty acid ratios (P/S) of the SF and PUF in the meals were 0.40 and 2.49, respectively. The mean P/S of TG in TG-rich lipoproteins (1.43) and circulating FFA (1.46) in 4 h PP plasma of PUF were significantly higher than those in PP plasma of SF (0.44 and 0.59, respectively) in fasting plasma (0.52 and 0.53, respectively). In vitro lipolysis of fasting and PP serum by purified bovine milk lipoprotein lipase (LpL) resulted in a marked (8.8-12.3-fold) increase in the serum FFA level. The P/S of serum FFA in postlipolysis fasting and PP serum were consistently higher than that of FFA or that of TG associated with TG-rich lipoproteins in prelipolysis fasting and PP serum, indicating that polyunsaturated TG in VLDL and/or chylomicrons is more susceptible than saturated TG to lipolysis. When postlipolysis serum was interacted with cultured endothelial cells and mouse peritoneal macrophages (MPM), the lipolytically-released FFA in PP serum of SF and PUF disrupted the barrier function of endothelial cells and were cytotoxic to cultured MPM; FFA in postlipolysis fasting serum was not cytotoxic. FFA in postlipolysis PP serum of PUF were consistently more potent than that in postlipolysis PP serum of SF. Further study showed that all long-chain monounsaturated FFA and polyunsaturated FFA, but not saturated FFA, incorporated into lipoproteins (LDL) were cytotoxic to cultured MPM. In conclusion, despite the generally well-accepted belief that SF is more atherogenic than PUF, the present study provides in vitro evidence that the lipolytic remnant products of TG-rich lipoproteins produced after a meal rich in PUF are more injurious to arterial wall cells than those produced after a meal rich in SF.

Adult↗

Cellular uptake of stearic, oleic, linoleic, and linolenic acid and their effects on synthesis and secretion of lipids in Hep-G2 cells.

The present study was undertaken to examine the cellular uptake of stearic (18:0), oleic (18:1), linoleic (18:2), and linolenic acid (18:3), and their effects on synthesis and secretion of lipids in Hep-G2 cells. The cells were grown for 6 days in Dulbecco's modified Eagle's medium (DMEM) supplemented with 10% fetal bovine serum. On day 7, cells were incubated in a serum-free DMEM containing 0.25-1.0 mM of 18:0, 18:1, 18:2 or 18:3. The cellular uptake of these fatty acids was almost linear during the 4 hr incubation period, and no significant differences were noted among the fatty acids tested, regardless of their degree of unsaturation. The treatment of cells with 1.0 mM of these fatty acids stimulated triglyceride (TG) synthesis nearly ten-fold and phospholipid (PL) synthesis approx, two-fold compared with those of the control. The lipoprotein-TG secretion also increased and was the highest with 18:1 followed in descending order by 18:2, 18:3, and 18:0. The fatty acid treatment of cells also significantly increased the incorporation of 14C-acetate into the cellular and lipoprotein cholesterol compared with that of the control (p < 0.05). In addition, notable changes occurred in the fatty acid composition of cellular and medium lipids, which were enriched with the particular fatty acid present in the incubation medium. The findings that 18:0, 18:1, 18:2, and 18:3 were taken up by Hep-G2 cells at almost identical rates demonstrate that differences in the cellular synthesis of lipids and their secretion are attributable to the metabolic specificity of those fatty acids, rather than variable rates of their uptake.

Acetates↗

Potencies of lipoproteins in fasting and postprandial plasma to accept additional cholesterol molecules released from cell membranes.

To investigate the role of various lipoproteins in plasma to promote cholesterol efflux from cell membranes, potencies of lipoproteins in normolipidemic fasting and postprandial (PP) plasmas to accept additional cholesterol molecules from cell membranes were determined. We used red blood cells (RBCs) and lipoproteins in fresh blood as donors and acceptors of cell membrane cholesterol, respectively. When fresh fasting plasma (n=24) containing active lecithin:cholesterol acyltransferase (LCAT) and cholesteryl ester transfer proteins (CETP) was incubated with a 3-fold excess of autologous RBCs at 37 degrees C for 18 hours, plasma cholesterol levels increased by 19.6% (38.5+/-14.2 mg/dL) owing to an exclusive increase in the CE level. Very low density lipoprotein (VLDL), low density lipoprotein (LDL), and high density lipoprotein (HDL) fractions retained 48.1%, 26.3%, and 25.6% of the net cholesterol mass increase in fasting plasma, resulting in 91%, 8%, and 21% increases in their cholesterol contents, respectively. The PP plasma was 1.3-fold more potent than fasting plasma in promoting cholesterol efflux from RBCs by associating excess cholesterol with chylomicrons, resulting in a 356% increase in the cholesterol content of chylomicrons. These increases in lipoprotein cholesterol content indicate that chylomicrons were about 3.9x, 44x, and 17x more potent than fasting VLDL, LDL, and HDL, respectively, in accepting additional cholesterol molecules released from RBCs. The capacity of PP plasma to promote cholesterol efflux from RBCs was significantly correlated with plasma cholesterol levels (r=0.60, P<0.005), triglycerides (r=0.68, P<0.001), chylomicrons (r=0.90, P<0.001), VLDL (r=0.65, P<0.001), and LDL (r=0.47, P<0.025) but not with the levels of HDL (r= -0.34, P<0.20). In fasting plasma containing a low level of VLDL and HDL, isolated chylomicrons supplemented to the plasma were approximately 9x more potent than HDL in boosting the capacity of plasma to promote cholesterol efflux from RBCs. This study indicates that chylomicrons in PP plasma are the most potent ultimate acceptors of cholesterol released from cell membranes and that a low HDL level is not a factor that limits the ability of PP plasma to promote cholesterol efflux from cell membranes. Our data obtained from an in-vitro system suggest that PP chylomicrons may play a major role in promoting reverse cholesterol transport in vivo, since the transfer of cholesterol from cell membranes to chylomicrons will lead to the rapid removal of this cholesterol by the liver. HDL in vivo may promote reverse cholesterol transport by enhancing the rapid removal of chylomicrons from the circulation, since the rate of clearance of chylomicrons is positively correlated with the HDL level in plasma.

Adult↗

Structure and expression of the AWI 31 gene specifically induced by wounding in Arabidopsis thaliana.

Differential screening of an Arabidopsis cDNA library constructed from the plant tissues harvested 1 h after wounding resulted in the isolation of wound-inducible cDNA clones (Kim et al., 1994). The cDNA clones could be broadly classified into two groups according to the expression time of their transcripts. Nine clones from the 10 different wound-inducible cDNAs were rapidly induced, reaching a maximum level in approximately 1-1.5 h and then were progressively reduced after wounding. The cDNA clone AWI 31 showed steady accumulation of the transcripts and reached the maximum value at a later time point of 2.5 h and then started to decline. The corresponding gene of the AWI 31 in which the coding region was interrupted by an intron, had an open reading frame that predicted a protein of 386 amino acids. However, the gene product did not show any significant homology to other known proteins in the database. Northern hybridization study using the cDNA probe revealed that the gene was not regulated by other environmental stresses such as drought, high salt, low temperature, or a DPE herbicide treatment, indicating that the cDNA clone AWI 31 was specifically induced by wounding.

Amino Acid Sequence↗

Analysis of oil components and hydrocarbon-utilizing microorganisms during laboratory-scale bioremediation of oil-contaminated soil of Kuwait.

A huge amount of oil-contaminated soil remains unremediated in the Kuwait desert. The contaminated oil has the potentiality to cause pollution of underground water and to effect the health of people in the neighborhood. We have been studying bioremediation of Kuwait oil-contaminated soil. Chemical analyses of biodegraded compounds and isolation of petroleum hydrocarbon-decomposing microorganisms were carried out. From the chemical analyses, it was revealed that the decomposed compounds were mainly saturated fractions from alumina column chromatography and that the aromatic fractions were not decomposed well. Isolation of bacteria was carried out for eight kinds of hydrocarbons which are components of crude petroleum (n-hexadecane, 2,6,10,14-tetramethylpentadecane, 1,4-diisopropylbenzene, naphthalene, 1-methylnaphthalene, phenanthrene, anthracene, and perylene). Many of the n-hexadecane- and 2,6,10,14-tetramethylpentadecane-decomposing bacteria were isolated, but aromatic compound-decomposing bacteria were not enriched. It was concluded that the slow decomposition of aromatic compounds was due to the low population of aromatic compound-decomposing bacteria in the Kuwait desert soil.

Bacteria↗

Laboratory-scale bioremediation of oil-contaminated soil of Kuwait with soil amendment materials.

A huge amount of oil-contaminated soil remains unremediated in the Kuwait desert. The contaminated oil has the potentiality to cause pollution of underground water and to effect the health of people in the neighborhood. In this study, laboratory scale bioremediation experiments were carried out. Hyponex (Hyponex, Inc.) and bark manure were added as basic nutrients for microorganisms, and twelve kinds of materials (baked diatomite, microporous glass, coconut charcoal, an oil-decomposing bacterial mixture (Formula X from Oppenheimer, Inc.), and eight kinds of surfactants) were applied to accelerate the biodegradation of oil hydrocarbons. 15% to 33% of the contaminated oil was decomposed during 43 weeks' incubation. Among the materials tested, coconut charcoal enhanced the biodegradation. On the contrary, the addition of an oil-decomposing bacterial mixture impeded the biodegradation. The effects of the other materials were very slight. The toxicity of the biodegraded compounds was estimated by the Ames test and the tea pollen tube growth test. Both of the hydrophobic (dichloromethane extracts) and hydrophilic (methanol extracts) fractions showed a very slight toxicity in the Ames test. In the tea pollen tube growth test, the hydrophobic fraction was not toxic and enhanced the growth of pollen tubes.

Biodegradation, Environmental↗

Lipolysis-induced partitioning of free fatty acids to lipoproteins: effect on the biological properties of free fatty acids.

Free fatty acids (FFA) released during the lipolysis of triglyceride (TG)-rich lipoproteins in vivo are generally believed to be bound to serum albumin. When hypertriglyceridemic (HTG) sera were lipolyzed in vitro by purified bovine milk lipoprotein lipase (LpL), there was an 11- to 18-fold increase in serum FFA levels, and a major portion (> 80%) of the FFA in serum was partitioned to lipoprotein fractions. The greatest portion (33%) of FFA in lipolyzed HTG serum was associated with newly formed flocculent remnants that banded just below low density lipoproteins (LDL) in the density gradient tube. Very low density lipoprotein (VLDL), LDL, and high density lipoprotein (HDL) fractions in lipolyzed HTG serum contained 18- to 29-times more FFA molecules than those in prelipolysis serum. Analysis of the fatty acyl chain composition of FFA in lipolyzed HTG serum showed that the extent of partitioning of saturated FFA into the lipoprotein fractions relative to that of polyunsaturated FFA was about 4.5- to 11-times greater than that partitioned into the free protein fraction; most (84%) of FFA partitioned into flocculent remnants were saturated fatty acids. In vivo lipolysis of TG-rich lipoproteins in HTG subjects, induced by heparinization, resulted in only a small (2.8-fold) increase in serum FFA and little or no increase in the partitioning of FFA to lipoproteins. However, in vitro incubation of the postheparin serum at 37 degrees C for 90 min resulted in a 2.9- to 6.8-fold increase in the serum FFA level and the partitioning of > 66% of total serum FFA into lipoprotein fractions. Studies of the interaction of various plasma fractions from control and in vitro lipolyzed HTG serum with cultured mouse peritoneal macrophages (MPM) showed that FFA partitioned to lipoprotein fractions were highly cytotoxic to cultured MPM, whereas FFA partitioned to albumin at a 10 x greater concentration were not cytotoxic. The cytotoxic potencies of FFA bound to lipoproteins and albumin were further compared after in vitro incorporation of FFA (oleic acids) into LDL and to albumin. FFA bound to LDL but not to albumin were cytotoxic to cultured MPM; the cytotoxicity of FFA bound to LDL was more closely related to the FFA to LDL-cholesterol molar ratio than to the total FFA concentration in the culture dish. The ability of FFA bound to LDL and albumin to induce foam cell formation was studied in THP-1 monocyte-derived macrophages, which were less susceptible to cytotoxicity produced by FFA bound to LDL than MPM.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Identification of immunoreactive atrial natriuretic peptide in the gallbladder and bile juice of rabbit, pig and human.

The presence of immunoreactive atrial natriuretic peptide (irANP) in rabbit, pig and human gallbladders was investigated using radioimmunoassay and immunohistochemistry. Serial dilution curves of gallbladder tissue and bile juice extracts were paralleled to the standard curve of atriopeptin III. Gel filtration profiles of gallbladder tissue extracts showed a major peak corresponding to rat pro-ANP. The amounts of irANP in rabbit, pig and human gallbladders were 30.0 +/- 12.3 pg/mg (n = 7), 7.0 +/- 2.0 fg/mg (n = 7) and 17.7 +/- 2.0 fg/mg wet tissue (n = 8), respectively. Bile juice was also shown to contain irANP but with small molecular mass. The amounts of irANP in the rabbit, pig and human bile juice were 25.0 +/- 2.0 (n = 7) and 0.50 +/- 0.02 (n = 7), and 1.3 +/- 0.1 pg/ml (n = 8), respectively. The immunohistochemical staining of the rabbit gallbladder tissue revealed the presence of irANP in the luminal epithelium and smooth muscle layer. The amount of irANP was higher in the luminal epithelium than in the rest of the gallbladder tissue from rabbits (0.30 +/- 0.06 vs. 0.01 +/- 0.01 pg/microgram protein, P < 0.01). These findings suggest that ANP may be synthesized and stored in the gallbladder, and may have a role in the regulation of fluid balance and cystic motility.

Animals↗

Cyclobuxine protects the isolated rat heart from the myocardial injuries produced by ischemia and reperfusion.

Cyclobuxine is a steroidal alkaloid which was extracted from Buxus microphylla var. koreana Nakai. Extracts of Buxus microphylla var. koreana Nakai have been used as folk remedies of several diseases, including malaria and venereal diseases. In the present study, the possible protective effects of cyclobuxine against 60 min ischemia and subsequent 30 min reperfusion in isolated rat hearts were investigated. Ischemia induced a marked decline in contractile force and a gradual rise in resting tension. Reperfusion of the heart for 30 min resulted in a poor recovery of contractile force. When the heart was perfused in the presence of cyclobuxine (100 and 1000 ng/ml), a significant suppression of mechanical failure was seen. Ischemia also induced an immediate release of ATP metabolites and a release of creatine phosphokinase during reperfusion. Cyclobuxine inhibited the release of ATP metabolites, and slightly prevented the release of creatine phosphokinase during reperfusion. The ultrastructural damages induced by ischemia and subsequent reperfusion were significantly suppressed by cyclobuxine.

Animals↗