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A Riches

Publications and source records attributed to A Riches.

15 recordsLinked to original sources

Synthesis and biological evaluation of analogues of the tetrapeptide N-Acetyl-Ser-Asp-Lys-Pro (AcSDKP), an inhibitor of primitive haematopoietic cell proliferation.

The tetrapeptide N-Acetyl-Ser-Asp-Lys-Pro (AcSDKP), an inhibitor of haematopoietic stem cell proliferation, reduces in vivo and in vitro the damage to the stem cell compartment resulting from treatment with chemotherapeutic agents or ionizing radiations. In order to provide new molecules likely to improve the myeloprotection displayed by this tetrapeptide, we have prepared a set of analogues of AcSDKP. These compounds are derived from the parent peptide by substitution or modification of the N- or of the C-terminus, or substitution of side chains. We report here that almost all investigated analogues retain the antiproliferative activity reducing in vitro the proportion of murine Colony-Forming Units Granulocyte, Macrophage (CFU-GM) in S-phase and inhibiting the entry into cycle of High Proliferative Potential Colony-Forming Cells (HPP-CFC). This shows that the polar groups of Ser, Asp or Lys are critical for the expression of biological activity, but that the modification of the N- or C-terminus mostly yielded compounds still retaining antiproliferative activity and devoid of toxicity. The efficacy of AcSDKP analogues in preventing in vitro the primitive haematopoietic cells from entering into cycle makes these molecules new candidates for further in vivo investigations.

Animals↗

A prospective controlled trial of an ultrathin versus a conventional endoscope in unsedated upper gastrointestinal endoscopy.

BACKGROUND AND STUDY AIMS: Upper gastrointestinal endoscopy is performed without sedation in many countries. Unsedated patients experience more discomfort during endoscopy than sedated patients, but few studies have examined factors which could be modified to minimize discomfort during the procedure. We assessed the effect of endoscope diameter on patient discomfort during unsedated transoral gastroscopy. PATIENTS AND METHODS: A total of 322 patients attending for unsedated endoscopy were examined using an endoscope of diameter either 6.0 mm or 9.8 mm. Patients completed a two-part questionnaire assessing tolerance of the procedure and discomfort during it. RESULTS: There was failure to complete the initial unsedated endoscopy in three of 163 patients in the 6.0 mm group and 14 of 159 in the 9.8 mm group (P = 0.009). Patients in the 6.0 mm group reported less discomfort both during endoscope insertion (P < 0.0001) and during the remainder of the procedure (P < 0.0001). 14% of patients in the 6.0 mm group indicated that they would request sedation if a further endoscopy were necessary, compared with 31% in the 9.8 mm group (P = 0.0005). CONCLUSIONS: Ultrathin endoscopes may have a role in clinical practice if randomized comparative studies with standard-bore instruments confirm that they do not compromise diagnostic quality.

Adolescent↗

Neoplastic transformation and cytogenetic changes after Gamma irradiation of human epithelial cells expressing telomerase.

Neoplastic transformation of human epithelial cells by radiation has previously been investigated using cell lines immortalized with viral vectors. There are disadvantages to this approach, and we report here the results of studies using a human retinal pigment epithelial cell line (340RPE-T53) immortalized by treatment with telomerase. After exposure of the cells to fractionated doses of gamma radiation, there was a marked increase in anchorage-independent growth of the surviving cells. The cloned cell lines derived from these anchorage-independent cultures exhibited an increased growth rate in vitro and were serum-independent compared with the parent cell line. The parent cell line maintained a stable diploid karyotype. The cell lines cloned after irradiation with the lower doses (10 x 2 Gy) were hypodiploid with loss of chromosome 13 and a high level amplification of 10p11.2 associated with a deletion of the remaining short arm segment of chromosome 10 distal to 10p11.2. In contrast, the cell lines cloned after irradiation with the higher doses (15 x 2 Gy) were near-tetraploid with derivative chromosomes present characterized by SKY analysis. Thus this human epithelial cell line immortalized with telomerase provides an improved model to investigate mechanisms of radiation carcinogenesis.

Cell Adhesion↗

In vitro effect of acetyl-N-Ser-Asp-Lys-Pro (AcSDKP) analogs resistant to angiotensin I-converting enzyme on hematopoietic stem cell and progenitor cell proliferation.

The tetrapeptide Acetyl-N-Ser-Asp-Lys-Pro (AcSDKP), an inhibitor of hematopoietic stem cell proliferation, is known to reduce in vivo the damage resulting from treatment with chemotherapeutic agents or ionizing radiation on the stem cell compartment. Recently, AcSDKP has been shown to be a physiological substrate of the N-active site of angiotensin I-converting enzyme (ACE). Four analogs of the tetrapeptide expressing a high stability towards ACE degradation in vitro have been synthesized in order to provide new molecules likely to improve the myeloprotection displayed by AcSDKP. These analogs are three pseudopeptides with a modified peptidic bond, Ac-Serpsi(CH2-NH)Asp-Lys-Pro, Ac-Ser-Asppsi(CH2-NH)Lys-Pro, Ac-Ser-Asp-Lyspsi(CH2-N)Pro, and one C-terminus modified peptide (AcSDKP-NH2). We report here that these analogs reduce in vitro the proportion of murine colony-forming units-granulocyte/macrophage in S-phase and inhibit the entry into cycle of high proliferative potential colony-forming cells. The efficacy of AcSDKP analogs in preventing in vitro primitive hematopoietic stem cells from entering into cycle suggests that these molecules could be new candidates for the powerful inhibition of hematopoietic stem and progenitor cell proliferation in vivo.

Animals↗

Lisinopril, an angiotensin I-converting enzyme inhibitor, prevents entry of murine hematopoietic stem cells into the cell cycle after irradiation in vivo.

The hemoregulatory peptide N-Acetyl-Ser-Asp-Lys-Pro (AcSDKP) has been shown in vivo to inhibit the cycling of murine hematopoietic stem cells triggered into S-phase by either cytotoxic drug administration or irradiation. This property, further confirmed using in vitro models, demonstrates that the peptide has an in vivo protective effect on the hematopoietic system. AcSDKP has been shown to be a physiological substrate of angiotensin I-converting enzyme (ACE), which catabolizes the peptide through a dipeptidasic activity. Thus, oral administration of ACE inhibitor to humans has led to an increase in the plasma AcSDKP concentration. In the present paper, we report on the in vivo effect of lisinopril, an ACE inhibitor, on the proliferative status of murine hematopoietic stem cells triggered into S-phase by irradiation. Administration of lisinopril (10 mg/kg) 1 hour after irradiation led to a 90 to 100% inhibition of murine plasma ACE activity as observed during the first 4 hours postirradiation. This inhibition was correlated with a 600% increase in the endogenous plasma AcSDKP level and a total suppression at 24 hours of entry of the hematopoietic stem cell into the cell cycle. We discuss the possible role of ACE in the regulation of hematopoietic stem cell proliferation through control of the AcSDKP concentration.

Angiotensin-Converting Enzyme Inhibitors↗

Radiation-induced carcinogenesis: studies using human epithelial cell lines.

It has proved difficult to develop suitable models to study radiation-induced carcinogenesis by using human epithelial cells. However, immortalised human epithelial cell lines have proved useful. Unirradiated cells from the human keratinocyte cell line (HPV-G) and the human embryonic lung cell line (L132) were found to be tumourigenic in T-cell-deficient mice; thus, they are not suitable for transformation studies. Human urothelial cell lines (SV-HUC-1, NT11, BC16) and the human thyroid epithelial cell line (HTori-3) were nontumourigenic. The urothelial cell lines were refractory to radiation-induced carcinogenesis, and only one small tumour was observed in 57 mice that received irradiated cells. Whereas tumours were not produced following irradiation of these urothelial cells, changes in anchorage-independent growth were observed after a single dose of 8 Gy gamma-irradiation but not after 2 or 4 Gy. Irradiation of the human thyroid epithelial cell line (HTori-3) in vitro resulted in tumour formation. Passaging of the cells in vitro before injection did not seem to be critical. Some of the cell lines derived from the primary thyroid tumours exhibited p53 mutations in exons 5, 6, 7, and 8, as detected by single-stranded conformational polymorphism (SSCP) analysis. Thus, the human thyroid epithelial cell line (HTori-3) looks promising as a model for investigating the molecular events in radiation-induced carcinogenesis.

Animals↗

A double-blind randomized trial of low-dose versus high-dose topical anaesthesia in unsedated upper gastrointestinal endoscopy.

BACKGROUND: Upper gastrointestinal endoscopy is frequently performed on unsedated subjects. Pharyngeal anaesthesia is thought to improve patient tolerance to the procedure but the optimum dose of anaesthesia is not known. The aim of this study was to assess the benefits of low-dose vs. high-dose topical anaesthesia in unsedated gastroscopy. METHODS: One hundred and fourteen subjects attending for diagnostic gastroscopy were studied. Patients were randomized to receive either 30 mg or 100 mg of topical pharyngeal lidocaine spray prior to endoscopy in a double-blind fashion. Subjects completed a questionnaire before and after endoscopy. RESULTS: A similar proportion of patients in each group required intravenous sedation because of discomfort or anxiety during the procedure (P = 0.48). The high-dose group experienced less discomfort during endoscope insertion (P = 0.002) and throughout the examination (P = 0.01). Overall satisfaction was almost identical in the two groups (P = 0.85) and a similar percentage of the high-dose and low-dose groups stated that they would request sedation prior to future endoscopy (37 vs. 44%; P = 0.48). Further analysis showed that apprehensive patients and younger patients reported relatively high levels of discomfort, and that female subjects were more likely to express a preference for sedation at any future gastroscopy. CONCLUSION: High-dose pharyngeal anaesthesia reduces patient discomfort during unsedated upper gastrointestinal endoscopy. However, patient tolerance is also influenced by clinical features, which might be useful in deciding which patients are suitable for this procedure.

Administration, Topical↗

The molecular specificity of action of the tetrapeptide acetyl-N-Ser-Asp-Lys-Pro (AcSDKP) in the control of hematopoietic stem cell proliferation.

The hemoregulatory tetrapeptide Acetyl-N-Ser-Asp-Lys-Pro (AcSDKP, M(r) = 487 amu) prevents the recruitment of hematopoietic stem cells into S phase. AcSDKP does not possess inherent inhibitory activity against hematopoietic stem cells, rather it appears to act by "blocking" the action of a hematopoietic stem cell proliferation stimulator present in extracts of regenerating hematopoietic tissue. The molecular specificity of this action was investigated using a number of peptide analogues of AcSDKP and evaluating their ability to "block" the recruitment of a primitive murine hematopoietic precursor (high proliferative potential colony forming cell HPP-CFC) into S phase following incubation with a hematopoietic stem cell proliferation stimulator. The capacity of AcSDKP to compromise the action of the hematopoietic stem cell proliferation stimulator was not evident for either AcSDDKP or AcSD beta KP, two structurally distinct forms of the molecule; similar no stimulator-"blocking" activity was observed for the tripeptide Ala-Asp-Lys (ADK, M(r) = 332 amu), while the tripeptide Ser-Asp-Lys (SDK, M(r) = 348 amu) was active. It would appear that the hemoregulatory action of AcSDKP is specific and that the tripeptide sequence SDK may be a significant component of the molecule.

Amino Acid Sequence↗

Catabolism of the tetrapeptide N-Ac-Ser-Asp-Lys-Pro (AcSDKP), an inhibitor of hematopoietic stem cell (CFU-S) proliferation, following in vitro incubation with hematopoietic tissues from normal and leukemic mice.

The comparative degradation of N-Ac-Ser-Asp-Lys-Pro (AcSDKP), a negative regulator controlling the proliferation of the hematopoietic pluripotent stem cell, was investigated following incubation with plasma, bone marrow and spleen cells from normal mice and mice bearing a transplantable myeloid leukemia. Using the tetrapeptide, specifically radiolabelled in the lysyl residue, degradation of [3H]AcSDKP was followed by measurement of [3H]Lys formation resulting from its catabolism. It was shown that already after 1 h the degradation of AcSDKP in plasma from leukemic mice was higher compared to that following incubation in plasma from normal mice, whereas incubation with bone marrow cells exhibits a small difference only after 4 hours incubation. However, no increase of AcSDKP catabolic activity was observed following incubation with spleen cells from leukemic animals when compared with incubation of normal spleen cells.

Animals↗

The mechanism of action of the tetrapeptide acetyl-N-Ser-Asp-Lys-Pro (AcSDKP) in the control of haematopoietic stem cell proliferation.

The mechanism of action of the haemoregulatory tetrapeptide Acetyl-N-Ser-Asp-Lys-Pro (AcSDKP, M(r) = 487 amu), was investigated using an in vitro assay of a murine high proliferative potential colony-forming cell (HPP-CFC) which responds to proliferation regulators of the haematopoietic stem cell population. AcSDKP had no direct inhibitory effect on the number, or the proportion in S phase, of the committed granulocyte-macrophage progenitor (GM-CFC), or cycling HPP-CFC populations. However, AcSDKP blocked the action of a stimulator of haematopoietic stem cell proliferation, preventing the switching of quiescent HPP-CFC into cell cycle. It would appear that AcSDKP exerts its inhibitory haemoregulatory role indirectly, by preventing stimulator action on haematopoietic stem cells.

Amino Acid Sequence↗

Haematopoietic stem cell proliferation regulators investigated using an in vitro assay.

The in vivo CFU-S murine haematopoietic transplantation assay has allowed haematopoietic stem cell behaviour and regulation to be investigated; however, the in vivo nature of the CFU-S assay restricts its use. Recent use of combinations of haematopoietic colony-stimulating factors (CSFs) in vitro has cloned a population of colony-forming cells from haematopoietic tissue, characterised by high proliferative potential and proposed to be a component of the haematopoietic stem cell compartment. A high proliferative potential colony-forming cell (HPP-CFC) population was assayed from murine haematopoietic tissue using a combination of WEHi 3B myelomonocytic leukaemic cell line conditioned medium (a crude source of interleukin 3 (IL3)/multi-CSF) and L929 fibroblast cell line conditioned medium (a crude source of M-CSF/CSF-1). The proportion of HPP-CFC in S-phase was determined following incubation with an S-phase specific, cytotoxic agent. In normal bone marrow from CBA/H mice, 9% of HPP-CFC were in S-phase, while in sublethally X-irradiated, regenerating bone marrow, 50% of HPP-CFC were in S-phase, a close correlation with in vivo CFU-S kinetics. The kinetic state of appropriate HPP-CFC populations can be modified in vitro by incubation with stem cell specific regulators (inhibitor and stimulator). Both inhibitor and stimulator were titratable against the appropriate target HPP-CFC population. Results obtained showed a close correlation between the in vivo CFU-S and in vitro HPP-CFC titration data, reinforcing the belief that the HPP-CFC population is a developmentally early haematopoietic precursor, possibly a component of the haematopoietic stem cell compartment.

Animals↗

Transplantation and morphological studies of primary and passaged murine radiation-induced myeloid leukaemias.

Myeloid leukaemia can be induced reproducibly in CBA/H male mice following X-irradiation. After serial passage of the leukaemic cells into syngeneic recipients, they grow faster and require fewer cells for a take. Transplantation of primary leukaemias requires high cell doses unlike passaged lines derived from them. Passaging at low cell doses retains their primary-like growth and morphological properties. It would seem that these low cell dose passages may be a more useful model which can be used for investigating the biology and therapeutic responses of myeloid leukaemia than routinely passaged cell lines.

Animals↗

Organ culture studies of human prostatic adenocarcinomas.

The proliferative responses of human prostatic carcinoma have been evaluated in organ culture using [125I]-iododeoxyuridine ([125I]UdR) to monitor DNA synthesis. The morphological preservation was not influenced by the addition of fetal calf serum or insulin (5 mu gm/ml), transferrin (10 mu gm/ml), and thyrotropin releasing hormone (10(-9) M) to the active medium. Testosterone (4 X 10(-7) M) stimulated [125I]UdR uptake, whereas diethylstilboestrol (4 X 10(-6) M) had no direct effect on uptake. Both estramustine phosphate (4 X 10(-6) M) and oestradiol-17 beta (4 X 10(-6) M) inhibited uptake in a similar manner. Thus while explants of human prostatic carcinoma derived from transurethrally resected specimens can be well maintained in organ culture for a few days, proliferative responses are small and difficult to measure for individual patients.

Adenocarcinoma↗

Proliferative responses of cultured rat prostate and human benign prostatic hyperplasia.

The proliferative responses of rat prostate and human benign prostatic hyperplasia have been followed in organ culture using [125I] iododeoxyuridine uptake to monitor DNA synthesis. In serum-free cultures, testosterone induced a marked increase in DNA synthesis (three-fold) in 4- to 6-month-old rat prostates at concentrations of 4 x 10(-9) to 4 x 10(-6) M, whereas in greater than 12-month-old rat prostates the response was less marked. Human benign prostatic hyperplasia also showed an increased uptake at similar testosterone concentrations and of a similar magnitude to the response of greater than 12-month-old rat prostates. At 10(-5) M DNA synthesis was markedly suppressed in cultures of both rat and human prostate. The proliferative response of human benign prostatic hyperplasia increases up to days 3 to 4 in culture and then declines in both control and hormone-treated groups and may represent repair processes which appear to be hormone dependent.

Animals↗