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Biomedical subjects

M Sears

Publications and source records attributed to M Sears.

At least 55 records · Page 3Linked to original sources

Forskolin lowers intraocular pressure in rabbits, monkeys, and man.

Topical ocular application of forskolin, a diterpene that increases intracellular cyclic adenosine monophosphate by stimulating adenylate cyclase directly without cell surface mediation, lowered intraocular pressure (IOP) in rabbits, monkeys, and volunteers who were free from eye disease. In man 50 microliters of a topical suspension of 1% forskolin significantly lowered IOP in 1 h, the effect reaching a peak at 2 h but remaining significant for at least 5 h. Outflow pressure fell by 70% on average. Forskolin and its analogues represent a new class of drugs active against glaucoma which differ in their molecular actions from any previously used drug.

Adenylyl Cyclases↗

A major pathway for the regulation of intraocular pressure.

There has been a suspicion on the part of many clinicians and research scientists that intraocular pressure can be regulated by neural and/or humoral influences upon the rate of aqueous humor formation. It has been difficult, if not impossible, to separate specific influences of the central nervous system upon intraocular pressure from vascular induced or other secondary alterations. The past two decades have witnesses a great deal of study of the role of the adrenergic nervous system upon the regulation of intraocular pressure. From the investigations it is possible to formulate an integrated concept that can place years of work and speculation on a firm molecular foundation. The secretory tissue of the eye, the ciliary processes, contain an enzyme receptor complex, comprised by receptor complex, comprised by receptor bound membrane proteins, the catalytic moiety of the enzyme, a guanyl nucleotide regulatory protein (or N protein) and other features. The enzyme can be activated by well known neurohumoral or humoral agents that consist of catecholamines, glycoprotein hormones produced by the hypothalamic pituitary axis, and other related compounds, including placental gonadotropin. These compounds cause the ciliary epithelia to produce cyclic AMP at an accelerated rate. Cyclic AMP, as a second messenger, causes, either directly or indirectly, a decrease in the rate of aqueous humor formation that may be modulated by cofactors. Clinical syndromes fit the experimental data so that an integrated explanation can be given for the reduced intraocular pressure witnessed under certain central nervous system and adrenergic influences. The molecular biology of this concept provides important leads for future investigations that bear directly both upon the regulation of intraocular pressure and upon glaucoma.

Adenylyl Cyclases↗

Ciliary epithelia of the mammalian eye in cultured explants.

The ultrastructural characteristics of ciliary epithelium from bovine, pigmented rabbit, and fetal albino rabbit were studied in cultured explants. The tips of ciliary processes were cultured in plastic dishes with Dulbecco Modified Eagle Medium (DMEM) containing 5% fetal bovine serum. More than half of the explants adhered to the plastic culture dish, and epithelial cells spread as monolayers within a few days. Initially the explant contains two layers, the outer (nonpigmented cells) and the inner (pigmented cells). Later the explant exhibits three layers: 1) outermost lightly pigmented flattened cells, 2) an outer layer of non-pigmented cells, and 3) an inner layer of densely pigmented cuboidal cells. The cells of the outermost layer are continuous with the cells of the inner layer. A narrow space lies between the outermost layer and the outer layer. The columnar cells in the outer layer contain well developed organelles but no pigment granules; they possess a basement membrane, lateral interdigitations, and junctional complexes near their apices. Numerous focal junctions and some ciliary channel-like structures were detected between the columnar cells of the outer layer and the cuboidal cells of the inner layer. The cuboidal cells of the inner layer are filled with pigment granules. These observations suggest that the columnar cells of the outer layer are nonpigmented epithelium, the cuboidal cells of the inner layer are pigmented epithelium, and the flattened cells in the outermost layer are derived from pigmented epithelium.

Animals↗

Neurohypophyseal peptides and the eye: use of synthetic analogs in analyzing effects on the pupil.

Effects of neurohypophyseal (NHP) and synthetic analogs on the pupil of the rabbit were explored. This was prompted by the recent emergence of synthetic analogs with selective agonist and antagonist properties. The miotic effect of the NHP was examined in an isolated iris preparation. Minimum concentrations of arginine-vasopressin (AVP) needed to cause threshold pupillary constriction were approximately 10(-10) M. The miotic potency of several NHP analogs correlated best with their pressor activity. In addition, the synthetic NHP pressor antagonist d(CH2)5 Tyr(Me)AVP specifically antagonized the miotic effect, confirming that a pressorlike receptor mediates this pharmacologic action of the NHP. We also employed the technique of in vivo intravitreal administration of pharmacologic doses of the NHP in the rabbit. Once again, potent miotic activity was demonstrated. The relative miotic potency of the NHP in vivo provided further support to the relationship between the NHP "pressor" receptor and pupillary constriction. We believe that the use of a variety of NHP natural and synthetic analogs may also prove helpful in investigating potential physiological effects of the NHP on other intraocular smooth muscle.

Animals↗

Serum bank for biological markers for breast cancer.

A bank of serum specimens from women at varying risks of breast cancer has been established. Panels of test specimens can be secured by qualified investigators to evaluate newly discovered biological markers for breast cancer, to verify preliminary data, and to compare performance of established assays among different laboratories. Panels consisting of coded 1-ml vials of sera will be sent upon request to approved investigators. The procedure for application for serum panels is described.

Blood Banks↗

Comparison of induction chemotherapies for metastatic breast cancer. An Eastern Cooperative Oncology Group Trial.

Patients with advanced breast carcinoma and no prior chemotherapy were prospectively evaluated to assess the induction capabilities of cyclophosphamide, methotrexate and 5-fluorouracil (CMF), Adriamycin and vincristine (AV), and CMF plus prednisone (CMFP). The crossover responsiveness from CMF or CMFP to AV and of AV to CMF were also assessed. A disproportionate randomization led to 166 analyzable cases on AV, 79 on CMF were also assessed. A disproportionate randomization led to 166 analyzable cases on AV, 79 on CMF and 86 on CMFP induction. One hundred and twelve patients were evaluated on crossover. Induction response rates were similar with 56% on AV, 57% on CMF and 63% on CMFP. Crossover response rates ranged from 32% to 41%. CMFP and AV were superior to CMF in terms of response duration (P = 0.05), and CMFP was superior to either in terms of time to treatment failure (P = 0.04), and survival (P = 0.03). Treatment failures occurred in only the on-study organ sites of disease in 73% of the patients and did not appear to be related to the response achieved. CMF was associated with more thrombocytopenia than either AV or CMFP (P = 0.03). AV was associated with fewer infections than CMFP (P = 0.02), less diarrhea than CMFP (P = 0.04), more emesis than CMF (P = 0.02), and more neurologic toxicity than either CMF or CMFP (P less than 0.0001). There was also more emesis with CMF than with CMFP (P = 0.006). CMFP was associated with greater delivery of CMF than was the CMF regimen despite a similar day 1 leukocyte distribution. These results strongly suggest that CMF(P) and AV are clinically noncross-resistant regimens, that AV and CMF are essentially equivalently active induction regimens, and that CMFP is superior to CMF and AV.

Aged↗

Fine structural studies of ciliary processes after treatment with cholera toxin or its B subunit.

Delivery of 2 micrograms of cholera toxin (CT), a specific, irreversible activator of adenyl cyclase, via the blood causes dilation of capillaries and stromal edema of the ciliary processes. These morphologic changes occur within 3 h, are maximal at 12 to 24 h, then gradually return to normal by 72 h. In the late phase of hypotony, ultrastructural changes in the ciliary epithelia, similar to Greeff vesicles, are due to a "paracentesis effect" from hypotony, caused by decreased aqueous flow through the eye. Delivery of 2 micrograms of the B subunit of CT (Sub-B) causes very mild capillary dilation and stromal edema of ciliary processes. These changes reach their peak at 3 h, then return to normal at 24 h. No significant damage occurred to the pigmented or non-pigmented epithelium with either agent. No hemorrhage, invasion of inflammatory cells or appearance of fibrin exudates in the ciliary processes could be detected.

Animals↗

Ultracytochemistry of cholera-toxin binding sites in ciliary processes.

Cholera toxin reduces the rate of aqueous humor in concentrations (10-11M) that do not disturb the morphology of the aqueous-humor forming epithelial cells of the ciliary processes of the rabbit eye. The search for an endogenous mediator of aqueous-humor formation comparable to cholera toxin in its mode of operation prompted us to map the distribution of cell surface receptors for cholera toxin in the ciliary processes of the eyes of rabbits. Cytochemical studies were carried out with the use of conjugates of cholera toxin to fluorescein isothiocyanate (CT-FITC) and to horseradish peroxidase (CT-HRP), and of the B subunit of cholera toxin to horseradish peroxidase (B-HRP). Multiple fluorescent CT-FITC binding sites were observed on the outer nonpigmented epithelial layer near the crests of the processes. Processes incubated with CT-HRP in vitro showed surface staining of 30-40% of the nonpigmented epithelial cells. A prominent reaction product was observed along the basal and lateral plasma membranes of these cells. In vivo studies carried out after arterial infusion of B-HRP showed a reproducible dense reaction product between the apical surfaces of the pigmented epithelium (PE) and of the nonpigmented epithelium (NPE) facing each other. Aggregations of reaction product were observed with the electron microscope in the extracellular space between the apices of PE and NPE. The apical plasma membrane of the endothelium of the blood vessels near the crests of the ciliary processes was stained after either in vivo or in vitro exposure to peroxidase conjugates. These findings indicate that the cell-surface receptors which mediate the action of cholera toxin on aqueous humor formation are very likely localized in the apical plasma membranes of the epithelium of the ciliary processes.

Animals↗

Enzyme-linked immunosorbent assay of substance P: a study in the eye.

A solid phase enzyme-linked immunosorbent assay for quantitation of substance P is presented. The assay measures the capacity of soluble substance P to compete with the solid phase antigen for a limited quantity of specific substance P antibody. The solid-phase antigen consists of a synthetic substance P.poly-D-glutamic acid conjugate coated to polystyrene micro-ELISA plate wells. Soluble substance P and antibodies to substance P are first preincubated together and then added to the wells containing solid-phase antigen. Subsequently the wells are incubated with anti-antibodies conjugated to alkaline phosphatase. The wells are finally incubated with p-nitrophenyl phosphate an the absorbance is read in a spectrophotometer 16--24 hr after the start of the assay. The threshold for detection of substance P was 5--10 pg per well (0.25 ml). Substance P was extracted from rabbit eyes and the values obtained with the present method are compared with previously reported values based on radioimmunoassay.

Animals↗

A prospective evaluation of chemohormonal therapy remission maintenance in advanced breast cancer.

From October 1973 to October 1977 the ECOG prospectively evaluated cyclophosphamide, methotrexate, and fluorouracil (CMF) versus CMF plus fluoxymesterone (CMFH) maintenance therapies in responders to 6 months of induction therapy which consisted of either CMF, CMF plus prednisone (CMFP), or adriamycin plus vincristine (AV). Following the maintenance randomization 12% of the patients converted from a PR to a CR status. The median time from randomization to treatment failure was 9.5 months for CMFH and 6.7 months for CMF (p = 0.03). This difference was observed only for partial responders (p = 0.01) and not for complete responders. Patients receiving CMFH tended to maintain higher hemoglobin, leukocyte, and platelet levels, and receive a higher dosage of each of the cytotoxic drugs. The results are taken as evidence that the addition of fluoxymesterone to a maintenance CMF regimen provides a therapeutic advantage. It is hypothesized that this effect is due at least in part to fluoxymesterone associated maintenance of improved marrow function resulting in greater myelosuppressive drug delivery.

Aged↗

The miotic effect of substance P on the isolated rabbit iris.

The effect of substance P on the rabbit iris was investigated by continuously monitoring the pupil size in vitro. Continuous perfusion with substance P caused a concentration-dependent contraction of the iridial sphincter muscle. The threshold was 2 x 10(-10) M. A concentration-response curve was made for 60 sec exposures of the iris to substance P. Blockade of muscarinic, nicotinic, alpha-, and beta-adrenergic receptors as well as blockade with the putative presynaptic substance P-blocking agent baclofen did not affect the constrictor response to substance P. Pretreatment of the rabbits with indomethacin was also without effect. No effect of substance P was seen on the isolated iridial dilator muscle. Although the miotic response to substance P was observed in a calcium-free perfusion fluid, EGTA added to calcium-free perfusate diminished the effect of substance P. The response of the iris to substance P and the time course of the response make it likely that substance P is involved in the miosis of the nerve-mediated irritative response of the eye.

Adrenergic alpha-Antagonists↗

Intraocular effects of substance P in the rabbit.

The intraocular effects of substance P (SP) were studied in rabbits by measuring the pupil diameter, intraocular pressure (IOP), and aqueous humor protein concentration. Most of the animals were pretreated with indomethacin to avoid any interaction with prostaglandins. Intracameral injection of 1 to 150 ng of SP caused strong and persistent miosis without appreciably affecting the aqueous humor protein concentration or IOP. Intracameral injection of 0.8 to 11 micrograms of SP also induced an increase in IOP (7 to 8 mm Hg) without any apparent concomitant disruption in the blood-aqueous barrier. Outflow facility of aqueous humor decreased by a mean value of 50% after intracameral injection of 0.8 to 1.5 microgram of SP. Since the increase in IOP could be prevented by iridectomy, it was probably caused by a pupillary block from the intense miosis induced by SP. No disruption in the blood-aqueous barrier could be detected after intra-arterial infusion of 10 micrograms of SP or intravitreal injection of 100 ng of SP, indicating that the ciliary epithelium was practically insensitive to exogenous SP. Topical as well as subconjunctival administration of up to 1 mg of SP did not cause any irritative response in the eye. The results show that with concentrations of SP causing intense miosis, the eye does not exhibit visible hyperemia and disruption of the blood-aqueous barrier. This finding is consistent with the hypothesis that after certain irritative stimuli, miosis is mediated by a pathway separate from the hyperemia and disruption of the blood-aqueous barrier.

Administration, Topical↗

Intraocular pressure and aqueous flow are decreased by cholera toxin.

Delivery of 2.1 microgram of cholera toxin, a specific, irreversible activator of adenylate cyclase, via the blood lowers IOP from 17.4 to 11.2 mm Hg in 81/2 hr. decreases net aqueous flow by about 50% in 8 hr, and doubles blood flow to the anterior uvea at 8 to 13 hr. Intravitreal injection of 0.26 microgram of cholera toxin lowered IOP from 15.0 to 9.6 mm Hg, but heat-inactivated toxin had no effect on IOP. The toxin activates adenylate cyclase from ciliary processes 2.2-fold and stimulates cyclic AMP production by ciliary processes 7.4 times. Absence of aqueous flare, normal protein concentrations in the aqueous, and histologic examination all confirmed the functional and structural integrity of the blood-aqueous barrier after cholera toxin infusion. The data point to an important role for ciliary process adenylate cyclase in regulation of aqueous flow and maintenance of IOP.

Adenylyl Cyclases↗

ATP is released into the rabbit eye by antidromic stimulation of the trigeminal nerve.

Antidromic stimulation of the trigeminal nerve produces an irritative response in the rabbit eye characterized by ipsilateral miosis, hyperemia, elevated intraocular pressure, and a disruption of the blood-aqueous barrier. The latter is a bilateral effect. The mediator or mediators involved in this response of the eye are unknown. Increased ATP levels in aqueous humor could be found after trigeminal stimulation. Treatment of rabbits with dipyridamole further increased ATP levels in aqueous humor after stimulation, confirming the findings of Holton that stimulation of sensory nerves causes a release of ATP. Intravitreal injections of ATP could not reproduce the ocular irritative response; however, an iridial hyperemia of long latency and an increase in aqueous humor protein levels were produced. The mechanism of this part of the reaction requires further study.

Adenosine Triphosphate↗

Increased pressure after paracentesis of the rabbit eye is completely accounted for by prostaglandin synthesis and release plus pupillary block.

Paracentesis of the anterior chamber of the rabbit eye results in hyperemia, increased protein in the aqueous, elevated intraocular pressure, and miosis. Aspirin does not affect miosis but attenuates the pressure and protein response by about 60%. Pupillary block resulting from miosis aggravates the rise in intraocular pressure (as does mydriasis). Pretreatment with aspirin plus iridectomy virtually eliminates the elevation of intraocular pressure consequent to paracentesis.

Animals↗