RECOVERY DEVICE FOR RECOVERING TISSUE

DE502021007258D1Active Publication Date: 2025-05-08ERBE ELEKTROMEDIZIN GMBH
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Patent Information

Application Number
DE502021007258
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-02-26
Publication Date
2025-05-08
Estimated Expiration
2041-02-26

AI Technical Summary

Technical Problem

Existing devices for retrieving tissue from liquid-filled body cavities, such as the bladder, face challenges in safely absorbing and removing large tissue sections without leaving behind individual cells or fluid, especially when using instruments with limited working channels like endoscopes.

Method used

A mounting facility with a bag-like structure equipped with a hydrophilic water-permeable filter membrane, allowing for the absorption of tissue while excluding fluid, thereby reducing the bag's volume and enabling its removal through narrow access routes.

Benefits of technology

The solution enables safe and efficient absorption of large tissue sections, allowing for complete removal of tumors without disassembly, reducing the risk of tissue residue and recurrence.

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Description

[0001] The invention relates to a retrieval device for retrieving tissue from a human or animal patient, in particular, for example, from fluid-filled body cavities, such as the urinary bladder.

[0002] Devices and equipment for retrieving tissue that has been detached from its surrounding tissue during a surgical procedure on a patient are known, for example, from DE 699 07 796 T2. The instrument comprises an insertion tube through which an axially movable pusher tube extends. This is connected at its distal end to curved retaining rails from which a bag hangs. A thread pulled through the upper edge of the bag allows it to be closed.

[0003] US 2001 / 0002437 A1 discloses a retrieval bag that can be made of transparent plastic, flexible knit, mesh, or loosely woven material. This retrieval bag is suitable for laparoscopic use. It is inserted in a folded form into a body cavity using a rod through a corresponding channel of a laparoscope, where it is unfolded and opened, and filled with tissue to be removed. It can then be closed and withdrawn from the body cavity through the laparoscope.

[0004] US 2020 / 0060665 A1 also discloses a retrieval bag that includes a filter made of a sponge-like material. In contrast, WO 2011 / 049918 A1 discloses a retrieval bag made of mesh fabric or a mix of mesh fabric and film.

[0005] Further retrieval devices with bags are known from WO 93 / 15671, US 6,350,267 B1, EP 2 353 511 A1, US 2012 / 0158010 A1, US 6,228,095 B1, US 5,341,815, EP 2 605 709 A2, WO 2012 / 026809 A2, EP 2 497 429 A1, US 2013 / 0023895 A1, and US 5,109,542. The latter document discloses a retrieval bag provided with a gas outlet. A hydrophobic air-filtering material or membrane is provided as such. Due to its water-repellent effect, the hydrophobic filter material prevents liquid from passing through but allows gas to escape.

[0006] During tissue resection in fluid-filled body cavities, such as the bladder, it may be important to completely recapture pathologically altered tissue, such as malignant tissue, as large, undivided pieces as possible and remove them from the body cavity without leaving behind any individual tissue fragments or cells. Any retrieval bags must be accordingly generously sized. On the other hand, such retrieval bags must be removed from the patient through access routes, such as the working channel of an endoscope.

[0007] Based on this, it is the object of the invention to provide a retrieval device and a method for retrieving tissue with which tissue can be safely picked up and by means of which the tissue can be safely removed from the patient's body via the working channel of an access instrument, such as an endoscope.

[0008] This problem is solved with the features of claim 1:

[0009] The retrieval device according to the invention comprises a retrieval bag for retrieving cells from a fluid-filled cavity within a patient's body. The fluid can be an endogenous fluid, e.g., urine, bile, pancreatic secretion, cerebrospinal fluid, or an externally supplied fluid, e.g., sodium chloride solution. The retrieval bag has a filling opening and a rigid or flexible traction device connected to the retrieval bag. Furthermore, the retrieval bag has at least one section made of a hydrophilic, water-permeable filter membrane. Such a filter membrane is understood to be any filter membrane whose pore size is so small that it reliably retains tissue shreds and cells of the retrieved tissue. This makes it possible, when the retrieval bag is closed, to reduce it by squeezing out water to a volume that is not significantly larger than the volume of the collected tissue.The retrieval device is therefore particularly suitable for use in fluid-filled body cavities. It prevents the retrieval bag from taking up unnecessary space due to the amount of absorbed water. This allows even relatively large tissue sections to be accommodated in the retrieval bag in their entirety, while still allowing the bag to be removed from the patient after expelling excess fluid through the relatively narrow working channel of an instrument providing access, such as an endoscope or cystoscope.

[0010] The retrieval device according to the invention is particularly advantageous when using a cystoscope, which typically has only one working channel. The ability to remove excess fluid from the retrieval bag, thus reducing its volume, allows the bag to accommodate large pieces of tissue, allowing tumors to be removed in their entirety without having to dissect them. This also eliminates the need for the surgeon to repeatedly switch between the instrument and the retrieval device.

[0011] The retrieval bag's filling opening can be provided with a closure device, which can be formed, for example, by a profiled strip closure. This allows for a fluid-tight closure of the retrieval bag. The profiled strip closure has two complementary strips that can be locked together along their entire length, thereby providing a fluid-tight seal for the retrieval bag's filling opening. For this purpose, the two strips of the profiled strip closure can be tightly and permanently connected at the proximal and distal ends to prevent any fluid that might contain cells from escaping when closed.

[0012] The closure device has an open position in which the retrieval bag is wide open and can receive tissue and fluid. Furthermore, the closure device has a closed position in which the retrieval bag's receiving opening is closed. Preferably, the closure device is pre-tensioned toward its open position. The two strips of the profile strip closure are resiliently curved away from each other.

[0013] The retrieval bag can have two preferably flexible side walls that rest on top of each other when the retrieval bag is closed. This helps to expel fluid, especially water, from the retrieval bag. The flexibility of the side walls is preferably high enough that the retrieval bag can be folded into a coil that fits through the working channel of an endoscope or cystoscope.

[0014] The retrieval bag may be equipped with a wringing device. This can be used to force any liquid, especially water, collected by the retrieval bag out of the bag after it has been closed. The hydrophilic filter membrane allows water and aqueous solutions to escape, but retains cells and tissue fragments.

[0015] The hydrophilic water-permeable filter membrane according to the invention comprises an arrangement of one or more layers of the same or different filter material.

[0016] The retrieval bag can be made entirely of the hydrophilic, water-permeable filter material. However, it can also have at least one non-water-permeable section, for example in the form of a plastic film from which one or both side walls of the retrieval bag are formed. The plastic film can have windows at one or more locations, in or to which the hydrophilic, water-permeable filter membrane is attached.

[0017] The filter material according to the invention is a fleece or a porous film.

[0018] The filter material is preferably a woven, braided or knitted fabric.

[0019] The filter material can be selected from the group of the following materials: polyethersulfone (PES) with or without support material, e.g. polyester, acrylic polymer, polyamide (PA) or polyethylene terephthalate, polysulfone (PS), polyethylene terephthalate hydrophilized polytetrafluoroethylene (PTFE), cellulose acetate (CA), cellulose nitrate (CN), cellulose acetate with cellulose nitrate (MCE), nylon (NY), polycarbonate (PCTE), polyvinylidene difluoride (PVDF). In addition, the filter material can consist of coated fibers or microperforated films, e.g. of cellulose fibers, for example a paper-like nonwoven made of cellulose fibers, which can be coated with an impregnation of, for example, 2,2-dimethoxy-2-phenylacetophenone and 3-(1H,1H,2H,2H-perfluorooctyl)-1-vinylimidazolium iodide and 3,3'-(hexane)-1,6-diyl)bis(1-vinylimidazolium)dibromide and acetonitrile, propan-1-ol.The following materials have proven to be particularly suitable: polyethersulfone (PES), acrylic polymer, polyamide (PA) and polyethylene terephthalate.

[0020] The filter material according to the invention has a maximum pore size of less than 5 µm. Smaller upper limits for the pore size can be provided, such as 3 µm, 2 µm, 1.2 µm, 0.8 µm, 0.65 µm, 0.45 µm, or 0.2 µm. Although very small pore sizes are usable in principle, it is also considered to set the smallest pore size at no less than 2 µm, thus achieving high water permeability of the filter membrane while simultaneously reliably retaining typical tumor cells.

[0021] With the retrieval device described above, a retrieval procedure can be carried out as follows: First, the retrieval bag is inserted into a body cavity in a folded or rolled-up state, for example through the working channel of an endoscope or cystoscope, and then released there so that it is ready to receive cell material. After the material to be retrieved has been introduced into the retrieval bag, the retrieval bag is closed. Subsequently, to reduce the volume of the retrieval bag, any fluid trapped therein is removed from the retrieval bag through the filter membrane. The retrieval bag, thus reduced in volume, can then be removed from the patient's body cavity through the working channel of the endoscope or cystoscope or another access point.

[0022] Details and further developments of the invention are apparent from the individual figures of the drawing, the accompanying description, and the dependent claims. They show: Figure 1 the distal end of a cystoscope with a retrieval device with a retrieval bag stored therein, in perspective view, Figure 2 the recovery bag Figure 1 , in open state, ready to receive cell material, in perspective view, Figure 3 a partial view of the upper edge of the retrieval bag, in a perspective cut-away view to illustrate its closure device, Figure 4 the locking device according to Figure 3 , in closed position, in vertical section, Figure 5 a section of the wall of the bag with filter membrane, Figure 6 a modified version of the wall of the retrieval bag with filter membrane, Figure 7a recovery device with wringing device for the recovery bag.

[0023] In Figure 11 shows a retrieval device 11 inserted into a cystoscope 10, to which retrieval bag 12 belongs. The retrieval device 11 can be inserted via a working channel 13 of the cystoscope 10 into a body cavity 14 of a patient, such as a urinary bladder or other body cavities in which a surgical procedure such as a tumor resection or other tissue resection is to be performed. The body cavity 14 is typically filled with fluid, such as an endogenous fluid, e.g. urine, bile, pancreatic secretion, cerebrospinal fluid, or an administered fluid, e.g. sodium chloride solution. The cystoscope 10 only has the working channel 13, through which various instruments can be inserted into the body cavity 14. Such instruments are pushed through the working channel 13 alternately with the retrieval device 11.The cystoscope 10 has a viewing device 15 through which the surgical site can be observed. The viewing device 15 can be a camera with optics and lighting or another image-transmitting device.

[0024] Instead of the cystoscope 10, however, an endoscope can also be used which has further working channels, such as, for example, a channel instead of the viewing device 15, through which the instruments can be transferred into the body cavity 14, wherein, optionally, the retrieval device 11 can also be located in the working channel 13.

[0025] Such instruments can be, for example, electrosurgical instruments with a wire electrode, loop electrode, or the like, which can be used to separate tissue sections from other tissue composites. The retrieval bag serves to receive and securely contain such tissue sections, which can then be safely packaged in the retrieval bag and removed from the body cavity 14 through the working channel 13.

[0026] The recovery bag 12 is in Figure 2 illustrated separately. It preferably has two flat side walls 16, 17, which may be made of a thin, flexible plastic material, such as a plastic film, e.g., polyethylene or a similar material. The side walls 16, 17 are cut and merge into one another at an edge 18 or are connected to one another there, so that they can be laid flat on top of one another.

[0027] The side walls 16, 17 are connected at the top to a closure device 19, which is designed, for example, as a profile strip closure and has two complementary strips 20, 21. The strip 20 is, as shown in Figure 3, for example, C-shaped in cross-section and thus has two resilient legs that define a channel 22 between them. The strip 21 is preferably formed by a round profile, which, as Figure 4 shows, fits into the channel 22 between the spring legs 23, 24.

[0028] The strips 20, 21 of the closure device 19 are preferably made of a flexible plastic. Figure 2 shows, they are slightly curved in the relaxed position so that they release a filling opening 25 on the recovery bag 12. Figure 2illustrates the filling opening 25 in the open position. However, when the two strips 20, 21 engage over their entire length, the recovery bag 12 is closed, and the closure device 19 is then in the closed position. Due to the curvature of the strips 20, 21 in the relaxed state, the closure device 19, however, is, as Figure 2 , is prestressed toward its open position. However, if it is closed, any stiffness of the side walls 16, 17, which may be provided, results in them tending to abut one another, whereby the interior space enclosed by the recovery bag 12 tends to shrink.

[0029] The retrieval bag 12 may consist entirely or, as indicated in Figures 1 and 2, only partially of a hydrophilic, water-permeable filter membrane 26, which occupies a section 27 of the retrieval bag 12 or its side wall 17. An identical or similar filter membrane 26 may also be provided on the other side wall 16, if required.

[0030] The filter membrane 26 is in Figure 5 illustrated separately. It is arranged at a window 28 of the otherwise preferably water-impermeable side wall 16 and is firmly connected to the edge of the window 28. For example, the filter membrane can be arranged on the side of the side wall 16 or 17 facing the interior and glued or welded to the edge of the window 28.

[0031] The filter membrane 26 may be a nonwoven or a porous film and may contain or consist of one or more substances selected from the following group:

[0032] Polyethersulfone (PES), acrylic polymer, polyamide (PA) or polyethylene terephthalate, polysulfone (PS), hydrophilized polytetrafluoroethylene (PTFE), cellulose acetate (CA), cellulose nitrate (CN), cellulose acetate with cellulose nitrate (MCE), nylon (NY), polycarbonate (PCTE) and / or polyvinylidene difluoride (PVDF).

[0033] Alternative filter materials are possible, provided they are made of a hydrophilic material or of a material with a hydrophilic coating or finish. The filter material is permeated by pores that lead from one flat side of the filter membrane to its other flat side, thus forming a fluid passage through which water can escape from the interior of the retrieval bag 12 into the environment. The upper limit for the size of the pores is preferably less than 12 µm and thus below the cell size of tumor cells. Preferably, the largest pore diameter is at most 5 µm, more preferably at most 3 µm or less. Preferably, the pore size is only slightly less than 0.2 µm. In particularly preferred embodiments, the pore diameter is greater than 0.2 µm.

[0034] The recovery bag 12 is, as Figure 2can be seen, connected to a traction means 29, for example a plastic wire or a rope, which is preferably connected to a corner of the retrieval bag 12, at which the closure device 19 ends. The traction means 29 has a length which is greater than the length of the endoscope or cystoscope 10, so that the end of the traction means 29 of the retrieval bag 12 Figure 1 is accessible from the outside (outside the patient). The pulling means 29 extends through a push rod 30, which can be designed like a tube and has a longitudinal slot 31 at its distal end. The longitudinal slot is dimensioned such that the closure device 19 is closed, ie the strips 20, 21 are pressed into one another in a locking manner, when the retrieval bag is pulled into the longitudinal slot 31 by a relative movement between the push rod 30 and the pulling means 29. The pulling means 29 is preferably designed to be flexible and can thus transmit pulling forces, but not pushing forces.

[0035] The retrieval device described so far works as follows: To collect tissue, the retrieval bag 12 can first be rolled up and positioned in front of or in one end 32 of the push rod 30, with the traction means 29 extending through or along the push rod 30. By means of the push rod 30, the rolled-up retrieval bag 12 is then pushed through the working channel 13 of the endoscope or cystoscope 10 into the body cavity 14 of a patient. The retrieval bag 12 is released upon exiting the working channel 13 of the endoscope or cystoscope 10, so that its filling opening 25 exposes the interior of the retrieval bag 12. The strips 20, 21 spring away from each other, so that a space is also created between the side walls 16, 17. The surgeon can now, for example, remove tissue in one piece from an operation site using another instrument guided through the other working channel 15 and transfer it through the filling opening 25 into the retrieval bag 12.Once this operation is complete, the push rod 30 is moved in the distal direction, with the pulling means 29 remaining axially held so that the bag 12 cannot follow the axial movement of the push rod 30. As a result, the push rod 30 slides with its longitudinal slot 31 over the upper end of the retrieval bag 12, thereby permanently closing the closure device 19. The closed retrieval bag 12 remains closed and cannot be opened within the body cavity 14, even accidentally. The pulling means 29 can pull the retrieval bag 12 into the longitudinal slot 31, but can no longer push it out. If the proximal end of the pulling means 29 is connected to the proximal end of the push rod 30, the retrieval bag cannot be pushed out of the longitudinal slot 31 when it is pulled out of the cystoscope 10 or endoscope through the working channel 13 by means of the push rod 30.For this purpose, connecting means can be provided at the proximal ends of the push rod 30 and the traction means.

[0036] Due to the rigidity of the side walls 16, 17 and / or the rigidity of the filter membrane 26, the interior of the retrieval bag 12 now tends to decrease in volume. Fluid present in the retrieval bag 12 and collected from the body cavity 14, particularly water or aqueous substances, can escape from the retrieval bag 12 through the hydrophilic filter membrane 26. However, the collected tissue remains in the retrieval bag 12. This bag can now be carefully reduced in size, for example, by rotating the push rod 30, wrapping it around its end, and withdrawing it through the working channel 13. It can also be removed from the patient together with the endoscope or cystoscope 10.

[0037] Modifications of the invention are possible. For example, according to Figure 6Instead of a window 28 in the side wall 17, a number of smaller windows 28a, 28b, etc., may be provided, which are covered by the filter membrane 26. Furthermore, it is possible to provide several filter membranes 26a, 26b instead of a single filter membrane 26. The filter membranes 26a, 26b may be regarded as layers of a filter membrane, with the intervening perforated side wall 17 forming a support. Alternatively, the filter membranes 26 may be Figure 5 or the filter membranes 26a and / or 26b according to Figure 6each have a multi-layer structure. The individual layers can be made of the same or different materials, which can be selected from the list of materials above. Other functionally similar materials are possible. They can be arranged directly on top of each other or at a distance from each other. In particular, many membranes can be made from individual films with openings that are larger than the tumor cells, e.g. (even significantly) larger than 12 µm. By connecting several such films in different layered orientations, a composite membrane with smaller openings is created, because the individual films overlap. This simplifies production and reduces the resistance of the water flowing through.

[0038] Another variant shows Figure 7There, a wringing device 33 is assigned to the retrieval bag 12. This can be designed, for example, as a finger-like, fixed extension 34 or as an attachment cap, which extends distally away from the cystoscope 10 or an endoscope. In the case of an endoscope, instead of the extension, a corresponding rod can be inserted through the working channel 15, the distal end of which forms or replaces the extension 34. If the push rod 30 is rotated, the finger 34 prevents the retrieval bag 12 from rotating and thus presses water out of its interior, which can escape through the filter membrane 26.

[0039] For retrieving tissue, in particular pathogenic tissue, from a patient's body cavity, a retrieval device can be provided, which includes a retrieval bag 12 consisting entirely or partially of a hydrophilic, water-permeable filter membrane 26. The filter membrane 26 has a pore size of preferably less than 12 µm, more preferably less than 8 µm, and most preferably less than 5 µm, in order to reliably prevent the passage of pathogenic cells or other pathogenic material. However, the pores are at least large enough for water to easily escape from the retrieval bag 12. In this way, the retrieval bag 12, when filled, only requires the volume occupied by the tissue it contains and which is to be removed. Liquid present in the retrieval bag 12 can be displaced from the retrieval bag by the filter membrane 26 and thus does not contribute to its volume.This allows for the removal of relatively large pieces of tissue during tumor removal. This makes it possible to remove tumors in their entirety without having to dissect them within the body cavity. The risk of spreading malignant tissue and the associated risk of recurrence is thus significantly reduced. Reference symbol:

[0040] 10Cystoscope 11Retrieval device 12Retrieval bag 13Working channel 14Body cavity 15Working channel / optics 16, 17Side walls of the retrieval bag 12 18Rim 19Closing device 20Ledge with legs 23, 24 21Ledge 22Channel 23Legs 24Legs 25Filling opening 26Filter membrane 27Section of the retrieval bag 12 28Window 29Traction device 30Push rod 31Longitudinal slit 32Distal end of the push rod 30 33Wringing device 34Finger

Claims

1. A retrieval device (11) for retrieving tissue from a human or animal patient, having a retrieval bag (12) comprising a filling opening (25), having a pulling means (29) connected to the retrieval bag (12), characterized in that the retrieval bag (12) comprises at least one section (27) made of a hydrophilic water-permeable filter diaphragm (26), that that the hydrophilic water-permeable filter diaphragm (26) comprises an arrangement of one or more layers (26a, 26b) of the same or different filter material, that the filter material is a fleece or a porous film, and that the filter material has a pore size of less than 5 µm.

2. The retrieval device according to claim 1, characterized in that the filling opening (25) is provided with a closure device (19).

3. The retrieval device according to claim 2, characterized in that the closure device (19) is a profile strip closure (20, 21).

4. The retrieval device according to claim 2 or 3, characterized in that the closure device (19) has an open position and a closed position and that the closure device (19) is biased toward its open position.

5. The retrieval device according to any of the preceding claims, characterized in that the retrieval bag (12) comprises two flat sidewalls (16, 17).

6. The retrieval device according to claim 5, characterized in that the sidewalls (16, 17) are biased toward one another, when the retrieval bag (12) is closed.

7. The retrieval device according to any of the preceding claims, characterized in that a wringing device (33) is assigned to the retrieval bag (12).

8. The retrieval device according to claims 2, 3 or 4, characterized in that a push rod (30) having a longitudinal slit (31) is assigned to the closure device (19), wherein a part of the retrieval bag (12) accommodating the closure device (19) can be pulled into the longitudinal slit by means of the pulling means (29) in order to close the closure device (19).

9. The retrieval device according to any of the preceding claims, characterized in that the retrieval bag (12) comprises at least one section (16, 17) that is not water permeable.

10. The retrieval device according to claim 9, characterized in that the non-water-permeable section (16, 17) is formed by a plastic foil.

11. The retrieval device according to claim 1, characterized in that the filter material is selected from a group of the following materials: polyethersulfone (PES), acrylic polymer, polyamide (PA) or polyethylene terephthalate, polysulfone (PS), hydrophilized polytetrafluoroethylene (PTFE), cellulose acetate (CA), cellulose nitrate (CN), cellulose acetate with cellulose nitrate (MCE), nylon (NY), polycarbonate (PCTE), polyvinylidene difluoride (PVDF)12. The retrieval device according to claim 1 or 11, characterized in that the filter material has a pore size of less than 3 µm, less than 2 µm, less than 1.2 µm, less than 0.8 µm, less than 0.65 µm, less than 0.45 µm or less than 0.2 µm.