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1.
The question was investigated of whether for crypt epithelia of the jejunum of the mouse all cells labelled after a single injection of 3H-TdR subsequently divide or whether cells exist in the crypt which synthesize metabolic DNA and, therefore, do not undergo division after labelling.
A double labelling experiment was performed with a first injection of 3H-TdR followed 1 hr later by an injection of 14C-TdR. Then from double emulsion autoradiographs of isolated squashed crypts the number of 3H-only, 14C-only and double labelled cells and mitoses were counted.
The double labelling produced a narrow, 1 hr wide sub-population of 3H-only labelled cells. This subpopulation of S cells completed its division before labelled cells were lost from the crypts by migration onto the villi. The results showed that this subpopulation of 3H-only cells completely doubled within 3 hr and then remained constant through 6 hr. From this result it was concluded that every cell labelled after a single injection of 3H-TdR divides.
From the same autoradiographs the flow rate through the end of mitosis was measured. From the flow rate and the mitotic index a mitotic duration of 0·5 hr was determined. The agreement of this measured mitotic time with the value calculated from the labelling index, mitotic index and S duration is also strong evidence that every labelled cell divides.
Both experiments show that the intestinal crypt does not contain cells synthesizing metabolic DNA.  相似文献   

2.
The kinetics of neutrophilic granulocytes in the blood of rats were investigated using in vivo 3H-TdR labelling and autoradiography. The radioactive precursor was administered by single injection, repeated injections at 5 hr intervals and continuous infusion. The appearance of labelled granulocytes in the blood and in the sputum was recorded up to 120 hr after tracer application. In contrast to results after a single injection of 3H-TdR, complete labelling of the blood granulocyte pool was achieved when the DNA precursor was given by continuous infusion or four repeated injections at 5 hr intervals. In the latter experiments, an exponential replacement of unlabelled blood granulocytes by labelled granulocytes could be demonstrated, the mean intravascular half-life being 5·7 hr. This figure is in good agreement with values obtained by isotopic techniques in other mammalian species.  相似文献   

3.
Cell kinetic parameters of cells in the crypt of the jejunum of the mouse were obtained autoradiographically. A number of different methods used in cell proliferation studies were applied to the same animal strain kept under constant conditions. In order to avoid effects of geometrical factors, squashes of isolated crypts were used.
The generation time was determined by the per cent labelled mitoses method of Quastler, modified by double labelling with 3H- and 14C-TdR. This modified method permits a more exact determination of the generation time. The duration of the cycle was 14 hr.
Double labelling experiments in which an injection of 3H-TdR was followed by an injection of 14C-TdR after 1 hr showed that the cell flux was 7.0%/hr at the beginning of the S-phase and 7.68%/hr at the end. Assuming steady state growth a constant cell flux of 7.15%/hr within the whole cycle can be derived from the measured generation time of 14 hr. These results clearly show that the crypt epithelia constitute a steady state system with constant frequency distribution of the cells throughout the cycle.
The per cent labelled mitoses method after a single injection of 3H-TdR as well as double labelling experiments with 3H- and 14C-TdR give an estimate of the S-phase of 8.0 or 7.4 hr respectively. Double determinations lead to a value of 0.54 or 0.52 hr respectively for the duration of mitosis and to values of 77% and 72%  相似文献   

4.
A detailed study of the cellular proliferation kinetics in interfollicular plucked and unplucked mouse skin has been made in Swiss albino mice, using tritiated thymidine autoradiography. Diurnal variations in mitotic and labelling indices were demonstrated in both systems.
The mean cell cycle times for unplucked and plucked skin were estimated by four different methods and found to be 100 ± 10 and 47 ± 3 hr respectively. Most of the difference was due to the shortening of G1 phase after plucking. Repeated labelling at intervals shorter than the DNA synthesis times resulted in all the basal layer cells becoming labelled, so that the growth fraction was unity, in unplucked and plucked skin.
A well-defined second wave of labelled mitoses was seen at about 100 hr after labelling the unplucked (i.e. normal) mouse skin.
A double labelling technique using 14C-TdR and 3H-TdR with a single layer of emulsion gave reasonable values for the duration of the DNA synthesis phase.  相似文献   

5.
Abstract. The central zone of the rat lens epithelium, extending half way from the centre to the periphery of a whole mount preparation, normally has less than 1% of the cells in the cell cycle at any given time. Mechanical wounding initiates a burst of proliferation in the central zone. DNA synthesis begins 14 hr after wounding followed by mitosis 10 hr later. When [3H]TdR was applied at 2 hr prior to S phase, some moderately heavy and some light labelling was observed after the onset of S phase. When [3H]TdR was applied 5 hr before S phase (9 hr after wounding), all the cells were lightly labelled. Only small amounts of the label were available to these cells 5 hr after application. It is significant that there was labelling in this group because it indicates the persistence of relatively small intracellular pools of [3H]TdR for several hours after the initial 'pulse' labelling of cells. Determinations of the duration of S phase were based on the assumption that pulse labelling may be affected by the persistence of the pools of [3H]TdR and consequent light labelling of the cells.  相似文献   

6.
A method was developed for calculating cell population kinetics with the aid of double pulse labelling with 3H-TdR. The labelling index was measured from auto-radiographs of the oral epithelium of two groups of 30-day-old rats. One group was injected once with 3H-TdR the other twice, with a time interval of 90 min between injections. DNA synthesis time was calculated from the equation:
   
where T s= synthesis time; LI1= labelling index in the single-injected group; LI2= labelling index in the double-injected group; and T i= time interval between injections. Synthesis time in the palate was 4.8 hr and 7.6 hr in the tongue. Generation time was calculated from the equation: T g= ( T s/LI1) × 100, where T g= generation time. Generation time in the palate was 46.1 hr and 75.8 hr in the tongue  相似文献   

7.
A long-lived thymidine pool in epithelial stem cells   总被引:2,自引:0,他引:2  
Abstract. The labelling index (LI) of the individual basal cell positions of the anterior column of mouse tongue filiform papillae was assessed with time after an injection of [3H]TdR at 12.00 hours (the minimum point in the circadian LI rhythm). An initial doubling of the LI in the stem cell zone due to cell division was followed by a second rise of 14–16% 16 hr after injection and this occurred even in the presence of vincristine. Although the uptake of [3H]TdR and the initial LI doubling were largely prevented by a preceding injection of hydroxyurea, the 14–16% LI rise was still observed. The possible explanations are discussed, the favoured one being that an average of one of the six or seven cells (the stem cell) in each stem cell zone can store [3H]TdR in a long-lived precursor pool for at least 16 hr before being utilized for DNA synthesis. This complements previously published work which suggested that one cell in each stem cell zone may selectively segregate DNA at mitosis.  相似文献   

8.
Abstract. DNA synthesis in rat hepatocytes, from livers regenerating after 70% hepatectomy, was assessed by flow cytometric determination of nuclear DNA content and by incorporation of [3H]thymidine. Parenchymal liver cells were isolated by collagenase perfusion and low-speed centrifugation. Nuclei from the isolated cells were prepared for flow cytometry by a treatment with detergent, pepsin and RNase, and stained with ethidium bromide. Parallel samples of cells were incubated with [3H]thymidine and analysed for rate of incorporation of radioactivity into DNA and for labelling index determination.
The flow cytometric measure of the replicative response, i.e. the presence of cells with S-phase DNA content within the diploid and tetraploid cell populations, was compared with the incorporation of [3H]thymidine. For each of fourteen animals, including two control rats and twelve partially hepatectomized animals killed either before (at 13 hr after hepatectomy), at the onset (16 and 18 hr) or at the peak (24 hr) of regenerating activity, a fairly good correlation was found between the different methods. Satisfactory resolution of the flow cytometric detection of S-phase cells was indicated by a sorting experiment using an Ortho (system 50-H) cell sorter which demonstrated that after [3H]thymidine injection in vivo 88% of the diploid and 84% of the tetraploid S-phase nuclei were labelled, while labelling in the G1-fractions was only 2 and 7%, respectively.  相似文献   

9.
The sites of cell proliferation and the duration of the S-phases in epithelia (tongue, stomach, duodenum, jejunum, ileum and descending colon) of the pouchless opossum, Marmosamitis , have been studied following the injection of tritiated thymidine. the sites of cell proliferation in these epithelia are not significantly different than those reported for rodent tissues. On the other hand, measurements of the mean duration of DNA synthesis revealed great variability in this phase: tongue (12.8 hr), stomach (>14.0 hr), duodenum (8.5 hr), jejunum (8.6 hr), ileum (9.7 hr) and descending colon (11-3 hr). In addition, the values obtained for the mean duration of t2 (G2+2/1M) are fairly constant among the various epithelia. It is concluded that the times obtained for the average duration of the S-phases are longer and more variable in M. mitis than similar observations reported on renewing epithelia of eutherian mammals.  相似文献   

10.
The cell proliferation kinetics following induced DNA synthesis in the mouse seminal vesicle were measured after treatment with testosterone propionate. Fraction labelled mitosis curves at 24, 48 and 72 hr after injection gave t 2 values of 1·5, 2·0 and 1·8 hr respectively, and t s values of 10·5, 8·0 and 8·0 hr. T c measured 48 hr after stimulation was 17·5 hr. Growth fraction rose from 0·14 at 24 hr to 0·64 at 48 hr, and fell to 0·32 by 72 hr. A simple model is proposed in which the rise and fall of mitotic index and labelled index is determined by the 'cell distribution ratio'.  相似文献   

11.
Abstract. In Snell dwarf mice, the influence of short-term treatment with human growth hormone (hGH) or thyroxine on the proliferative and sulphation activity of the proximal tibial growth plate was studied. By autoradiographic methods, the [3H]methylthymidine incorporation after a single injection was measured, after 2 hr incorporation time. the labelling index was calculated and the number of labelled mitoses was counted. In addition, the distribution of the labelled nuclei over the proliferating and degenerating zones was determined by continuous labelling for 25 and 73 hr.
In untreated dwarf mice after [3H]-methylthymidine administration, the number of labelled nuclei in the growth plate is low. Labelling occurs, as expected, mainly in the cells of the proliferative zones. the number of labelled nuclei in control dwarf mice was similar after 25 and 73 hr continuous labelling. This suggests that many cells are in a resting Go or prolonged G1 phase. Both hGH and T4 treatment induce a significant increase of the number of labelled nuclei per growth plate and of the number of mitoses. Since hormonal treatment induces a small number of mitoses after 2 hr incorporation of the label, the minimal G2 phase of the cell cycle is less than 2 hr. In addition, treatment with hGH and T4 stimulates chondrocytes in the zone of proliferative and hypertrophic cells to actively incorporate [35S]-sulphate.  相似文献   

12.
Cell proliferation in the murine thymus was studied in vivo under normal conditions and from 0 to 24 hr after a single injection of a water-soluble extract from mouse thymus, mouse spleen, and mouse skin. The thymus extract reduced during the first 24 hr the mitotic activity 40%; the spleen extract had a weaker inhibitory effect. The skin extract had no such effect. The thymus extract and spleen extract inhibited the flux of cells into the S phase 0–8 hr after the injection of the extract. Initial labelling index was also reduced in this period. Eight hours after injection of the thymus or spleen extracts the inhibited cells initiated DNA synthesis. The rate of progression of blast cells through the cell cycle was normal 24 hr after the injection of the extracts. It was deduced from the analysis that the thymus extract inhibits processes triggering Go/Gi cells into DNA synthesis, the inhibition of G2 efflux being of minor importance. Finally a model for the regulation of proliferating thymic blast cells and the emigration of small lymphocytes from the thymus is proposed.  相似文献   

13.
Abstract. Evidence in favour of labelling of DNA in excess of requirements for mitosis was found in adult organs showing no mitosis (heart muscle and brain), in organs with low mitotic indexes (liver, seminal vesicle) and, more recently, in the small intestine of rodents, in bone formation and in growing roots of Vicia faba. A survey of published data showed higher labelling indexes than would be expected from the data for S, M and t c deducted from labelled mitoses curves. to improve the accuracy of the data needed for a complete assessment the duration of mitosis (M) and the proportion of cells which are no longer in the mitotic cycle in the crypts were determined using Colcemid. the fact that all cells in the villi are derived from the crypts and that there is no cell-loss in the villi was checked by cell-counts.
The results show that 3040%of the labelled nuclei found in crypts of the jejunum of mice at 1 hr after injection of 3H-thymidine do not proceed to mitosis.
The labelling after the last mitosis is interpreted as formation of the metabolic DNA necessary for the function of the differentiated cells in the villi. There is some evidence that metabolic DNA necessary for the processes of mitosis might be lost  相似文献   

14.
Lymphocytes obtained from CLL patients exhibited a delayed and reduced response to PHA when cultured in diffusion chambers. DNA synthesis (8–10 hr) and general time (15–19 hr) of the late-developing CLL blasts were consistent with normal values ( T s: 8–10 hr; T c: 14–17 hr). However, the G2 period of CLL blasts seemed more variable, and their mitotic index during the response at 5–6 days was 30–50% of the values determined for normal blasts during their peak response at 2–3 days.  相似文献   

15.
In Italico and Wistar rats maintained at room temperature 1% of nuclei of cells in the adrenal medulla incorporate 3H-thymidine. Following intermittent exposure to cold, the numbers incorporating increase to 10% and 7% in Italico and Wistar strains respectively. Only in the Wistar strain does the increase occur during actual exposure.
Assuming S to be 6–8 hr the labelling indices actually determined indicate a turnover time of DNA of 21–29 days. Since mitotic indices in experimental and control animals were found to be 0.004% without colchicine treatment and 0.009% after 3 hr of colchicine treatment, the turnover times of cells were calculated to be 1388–3125 days. To correlate mitotic indices and labelling indices, an S period of 400 hr would have to be assumed. It is concluded therefore that: (i) most of the observed labelling of DNA is due to metabolic turnover of DNA and only a small proportion represents pre-mitotic synthesis, (ii) differences in the rates of DNA synthesis found during exposure to cold in Italico and Wistar rats respectively are sufficient to account for the differences in reduction of DNA previously found between the two strains under these experimental conditions.  相似文献   

16.
RNA synthesis was studied at different phases of the cell cycle of chick embryo fibroblasts, which were synchronized by medium replacement in the confluent phase. The synthesis of DNA started at 4 hr and continued for 8 hr. RNA synthesis increased with time after medium change. The ratio of total amount of radioactivity in nuclear RNA prepared at 0, 2 and 8 hr was 1.0:1.03:5.05. The distribution of radioactive RNA in the sedimentation pattern was similar, showing remarkable incorporation in 45S region of ribosomal precursor RNA. The base composition of newly synthesized RNA, however, varied at different time intervals after medium replacement. Even within the G1 phase, the molar percentage of G and C was quite different. Treatment with actinomycin D at a concentration of 0.02 μg/ml for 1 hr specifically inhibited ribosomal RNA synthesis. At 2 hr after medium change, ribosomal and AU-rich RNA including larger than 28S were synthesized in about equal amounts.  相似文献   

17.
Abstract. 131Iododeoxyuridine (131IDU) was injected into normal and partially hepatectomized rats, and the specificity of incorporation of this thymidine analogue into liver DNA was determined 2, 24 and 48 hr following intramuscular injection. At 2 and 24 hr after 131DU injection, a major proportion of radioactivity in the liver was in the acid-soluble fraction, whereas 48 hr after injection the label in the acid-soluble fraction had decreased considerably. In liver obtained 2 hr after injection of 131IDU, only 1.8–16.6% of the total radioactivity were in DNA. If, however, the tissue was subjected to formalin fixation, the acid-soluble label was extracted selectively, and of the remaining radioactivity 64–88% was in DNA. Therefore, the radioactivity that is not extracted by formalin may be used as a measure of DNA synthesis at the time of injection of 131IDU, thus obviating time-consuming biochemical fractionation procedures.  相似文献   

18.
The duration of the mitotic cycle and of its components was analysed for each of the six successive generations of differentiating spermatogonia (A1, A2, A3, A4, intermediate and B), using radioautographed whole mounts of seminiferous tubules from testes of adult Sprague-Dawley rats. Cell cycles were determined from two successive waves of per cent labeled metaphases obtained during the period of 81 hr after a single dose of 3H-thymidine. Except for the A1 spermatogonia, all spermatogonial types (A2 to B) had similar cell cycle durations of 41-42.5 hr and comparable pre-DNA synthesis phases (G1) of 11-13 hr. Although the combined duration of DNA synthesis (S) and the post-synthesis phase (G2) remained identical for all the cell types including A1, there was a progressive lengthening of the S period at the expense of G2 during the process of spermatogonial maturation. This change was most marked during the transition from A1 to A3 spermatogonia when the S period increased from 14 hr to 21 hr, and the G2 phase shortened from 13 hr to 7.5 hr. This feature seems to be unique to germ cells and may be associated with an increasing amount of heterochromatin in the nucleus. Excluding the development of type A1 cells, the entire process of spermatogonial maturation lasted for 208 hr. Combined data on cell cycle times indicated that every 313 hr or 13 days, a new sequence of spermatogonial differentiation was initiated by the A1 cells. This was equivalent to the duration of one 'cycle' of the seminiferous epithelium as measured by other techniques.  相似文献   

19.
THE KINETICS OF GRANULOSA CELLS IN DEVELOPING FOLLICLES IN THE MOUSE OVARY   总被引:1,自引:0,他引:1  
This investigation describes the kinetics of the granulosa cells in medium-sized follicles type 3b, 4 and 5a in ovaries of 28-day-old Bagg mice. the method of labelling with 3H-thymidine followed by high resolution autoradiography is used in the experimental work, which consist of determining percentage labelled mitosis (PLM-) and continuous labelling (CL-) curves. In order to analyse the data by computer two alternative hypotheses A and B are set up. Both include the assumptions of no cell loss, exponential growth and a resting compartment Q. In hypothesis A cells from Q re-enter the mitotic cycle via the normal DNA-synthesis compartment Sp. Hypothesis B includes beside compartment Sp a special DNA-synthesis compartment Sq where only cells from Q are synthesizing DNA, and these cells re-enter the mitotic cycle via the G2 compartment. the mean transit time in Sq is considered to be longer than the mean transit time in Sq. On the basis of the hypothesis mathematical expressions for the PLM- and CL-curves are obtained, and by means of a computer the theoretical curves are fitted to the experimental values: thereby all relevant cell kinetical parameters are estimated. Hypothesis B seems to give the best fit between the theoretical and experimental curves. the estimated parameters are: mean cycle times, μc= (56.1 hr, 56.1 hr and 22.3 hr for type 3b, 4 and 5a respectively), doubling times, T D= (96.4 hr, 118.6 hr and 59.1 hr) and the proportion of cells in Q, p Q = (0.60, 0.71 and 0.69).  相似文献   

20.
A double isotope DNA labelling method has been used to determine the duration of DNA synthesis (S) in bone marrow lymphoid cells classified by their nuclear diameters in smears. Incorporation of 3H-thymidine was confined almost entirely to marrow lymphoid cells of 8·0-15·0 μm nuclear diameter (large lymphoid cells). After exposure to 3H-thymidine in vivo and 14C-thymidine 40-104 min later in vitro , the proportion of cells labelled with 3H alone to those labelled with 14C(±3H) in radioautographic smears, plotted against time indicated the efflux from S per hour. Collectively, 28·3 ± 1·1% of all large lymphoid cells were in S and the efflux from S was 15·1% per hour. With decreasing cell size (nuclear diameter) the efflux fell progressively from 28·3% per hour (11·0 μm) to 9·2% per hour (8·0-8·9 μm) and the proportion of cells in S declined from 54·9 ± 2·3% to 14·8 ± 1·6%. Influx into S, measured in vitro by reversing the sequence of isotopes, closely resembled the corresponding efflux values in vivo relative to cell size. Most DNA synthesizing marrow large lymphoid cells belonged to a subgroup with deeply basophilic cytoplasm. The results demonstrate that basophilic large lymphoid cells in the marrow are actively proliferating and have a mean S phase duration of 6·6 hr. The largest marrow lymphoid cells (11·0 μm) proliferate most rapidly (S phase, 3·5 hr; maximum cell cycle time, 6·4 hr) while S duration is prolonged progressively to 10·9 hr for the smaller cells (8·0-8·9 μm).  相似文献   

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